ࡱ> cV9 R"kbjbj6 l   8> r++,,,$* JRWx@M,,Q,MMM ,,MMMNNkTn,+ r  /Vl0 oB0r%m9Gn,M Contents Contents . 1 Function introduction .. 2-3 Keyboard introduction .. 4-6 Function table flow chart .. 8 Main function table introduction.. 9-10 F1 Home 11 F8 Editor . 12-13 F1 Edit Z machining material.. 14-17 F8 Auto edit Z .. 18-19 F9 discharge .. 20-23 Machining material table .. 24-25 Operation warnings .. 26 Example .. 27-28 Appendix (Machining material).. 29-44 Function Characteristic Introduction More than 20,000 units of document storage capacity are provided. Namely more than 20,000 different mold or customer numbering can be stored. With mirror surface processing circuit, a true mirror effect can be achieved. Also, it is even better to use orbit processing and powder mixing processing. 10 segments auto editing function. (1) Manual edit: edit the machining condition by experience. (2)AUTOZ auto edit: max. Depths, initial current and finished procession, machining area selection are provided, and then machining condition edit can be finished automatically. (3) Intelligent condition edit: electrode shape, electrode and work piece material, work piece section area and finished precision selection, depth setting area are provided, and then machining condition edit can be finished automatically. With either the three edit methods above, machining can be complete at a time by the way rough!moderate!fine. X.Y.Z axis coordinates are switch with metric and English system0 If unstable, discharging condition is auto adjusted by modifying discharging efficiency and working time. After that, the condition will restore automatically. And it is also adjustable at any time. Auto arcing detecting function. If unsteady caused by arcing occurs, the computer will adjust machining parameters and rise jump up height, then normal condition would return. It could set that after 2~10 times discharging (jumping up control), the electrode will be raised (safe height Z) to the set arbitrary position and the continue machining. This could achieve good slagging off performance for deep hole machining. Function of avoiding second discharging and carbon desposition rapid rising or discharging boundary searching rapid rising. Power control (equal energy) function for homogenizing the machining effect. And this function could be switched off to accelerating graphite electrode machining. Generator new design conforms to power supply box and 15 CRT (display) criterion of European CE Safety Specifications, which it is dustproof, waterproof, electric noise-proof and the circuit board life could also be raised. Industrial class PC-BASE controller is applied and the traditional hard disk is substituted by new DOM type memory, which enables faster and more steadily speed of file reading and it is more suitable for industry application. Up discharging (reverse machining) function makes special machining easier. Two independent machining coordinates. The male die and female die could be parted or machined in different coordinates. After power off, the system restarts and auto reloads the machining condition and coordinate of last times, so discharging could be finished by pushing remote control box without panel operation. Two jmpping up speed type, which the serve speed could be raised when no electrode deformation and the big area machining efficiency could also be raised. Separately storage of coordinate and machining data, and same machining condition could be rapid added in different part machining. Two high voltage circuits could be set in partial voltage or partial current according to customers need. arcing detection setting function could start carbon desposition hardware detecting circuit, and every charging pulse could be detected and the current will be cut off when abnormal pulse occurs. So no short current is caused by short circuit. Discharging high voltage pulse control, which enables the settings of different high voltage pulse type and it could go with machining speed and electrode wear. Keyboard Introduction Function key: F1~F9, according to menu direction with different meaning of each function, please conform to screen display definition operation. 2. Number key: ^,on editing coordinate data, these could be use for data input. 3. Decimal: ' stands for decimal for inputting coordinate data. 4. Symbol key: , stand for replacement direction of coordinate 5. Direction key: ! ! ! ! for controlling cursor moving direction and changing numbers when editing data. 6. Enter key: enter key: when coordinate data keying in completes, then the enter key should be push to confirm storage in the computer. 7. Control key: 8 total, but they will be changed into another 8 function key after F9 function switch (next page), so in fact there are 24 functions. These could be set separately by individual habit and the key meanings are showed on the bottom of the display. When setting, the characters are showed in high brightness. So relatively the corresponding action is operating at the same time. After another pushing, the characters return in normal and the action cancels, too. **Warning: function switch should be performed in discharging mode. A: FAST JMP: Z axis speed of discharging controlling, namely rapid up and down slagging off action. Second page A: TIME ZERO: Machining time zero setting Third page A: ZERO X: When discharging, the X axis coordinate could be zero setting. B: BUZZER: Sound control of keyboard input and alarm sound. Second page B: OSC-HV: Machining could be raised by it. Without it, the machining speed will be reduced but the surface finish will be raised. Third page B: ZERO Y: When discharging, the Y axis coordinate could be zero setting. C:SLEEP: When auto operation finished, all the power supply would be cut off with it setting on, when setting off only the discharging circuit power would be switch off without the computer on. Second page C: JMP-UP1: when up slagging off, the slow speed distance (0~0.9mm adjustable) for reducing vacuum pressure. Third page C : ZERO Z: the Z axis coordinate could be zero setting0 G:OIL LEVEL: According to oil level of machine frame, the oil immersing discharging control is performed. Second page G: Z DOWN INC : The up and down speed of Z axis (no rapid jumping action) machining could be set faster. Third page G :1/2 X: When profile modeling discharging, the current coordinate of X axis could be changed into the half of origins by pushing this button. M :EQU: Discharging with equal power energy output with it. When TON<15s, the energy power control function is auto cut off (according to system parameters), but the display show no change. This function should be cancelled when fine machining and graphite electrode machining with area bigger than 1000m3. The high voltage could not be set to 0 :100V, but to over  1 :150V when disable energy power control. Second page M : Z DOWN DEC: The up and down speed of Z axis (no rapid jumping action) machining could be set slower. Third page M : 1/2 Y: When profile modeling discharging, the current coordinate of Y axis could be changed into the half of origins by pushing this button. N : SYNC FLUID: control the oil supply method, the oil supplies with it, while, oil supply continues without it, either discharging or charging. Second page N :ARC DET: Start the arc hardware detecting circuit. This should be on when big area or deep hole machining. Third page N :HUNT-FLG: In the stop and start discharging process, when there is any short circuit or arcing condition, the rising speed multiples of machine tool. T : PULSE FLUSH: The spraying action on controlling discharging. With it, the up and down slagging off function enables the electromagnetically operated valve to spray the oil, and when machining, it stops. Without it, the electromagnetically operated valve is always in start status, that it makes one more oil outlet. Second page T : ARC SEN: Adjust the carbon desposition sensitivity, normally between 5 and 7. Third page T : PUMP: Control the pump motor switch. U : ARC_ADJ: With it, efficiency value, machining time will be reduced and the jumping height will be set to at least 1.5mm by the computer, when discharging slagging off is in bad status. If there is any amelioration, the set value would be returned. And if it is always in the carbon desposition adjusting status, the carbon desposition action warning will be started to stop machining according to the sensitivity value. Second page U :JMP-CTL: Slagging off method setting. The zero value is normal method and when above 1, machining is generally in jumping type, when below 1; the tool will rise to a safe height then continue machining for deep hole taper type. Third page U : no definition0 Warning : The control key can be set and cancelled only on the view of main menu or discharging operation, but in the process of editing data, it is disabled. The computer would set the FAST JMP, BUZZER, EQU, SYNC FLUID, PUMP in action automatically when machine starts. It can be seen that these characters are in high brightness, but others not. 8. QUIT: Q, Control the finishing of function and action. 9.Hunting : V, When pushing V machine will start discharging function with the lowest current and no slagging off action, in order to facilitate the profile modeling operation. Also, the turns to last page to show the X axis zero adjustment and pump motor. Warning: Before using this function, arcing detect function should be cancelled first. 10. COORD. CHG: X, Relative and referenced coordinate can be switched to each other, and machining can be performed in either coordinate. Also this function is for parting and machining of male die and female die. 11. Y : No definition0 12. Display sleeping : Z When discharging, in order to extend the life of use, display will be shut off automatically by the computer. You can push  Z button to turn on it. Slagging off action schematic diagram  EMBED PBrush  First group Second group Third group The first group is the schematic diagram of Z axis slagging off when is setting; equals 0. The linear part means Z axis rapid moving and the curve part means the speed buffer for approaching machining point. The second group is the schematic diagram of Z axis slagging off when is setting, equals 1. The distance of upward, slow buffer part (curve part) equals to value of (1~9)*0.1mm. The method is used for reducing vacuum pull and prevents deformation of electrode, when slagging off upwards on bigger area part machining. The third group is the schematic of Z axis slagging off action when is closed. The bigger of electrode area, the heavier of it weight and bigger inertia of itself. In order to prevent the inertia of electrode to destroy itself, the rapid jumping action should be cancelled.  The speed of curve part of second, third group above can be modified by changing, after discharging please push F9 to find out the Z slow or Z fast from the function menu, then the M or G can be chosen to modified the speed. Because linear part is in the higher speed of Z axis, it cant be changed. But it can be adjusted by hardware (no detail discussion here). Menu flow chart Main functions   F1 F2 F3 F4 F5 F6 F7 F8 F9 X V : : : : : : : : : : :      F1 F2 F3 F4       F1 F2 F3 F4 F5 F6 F7 F8 F9 Q : : : : : : : : : :     F8 F9 Q  : : :  Main menu introduction The system is composed of 2 major menu and XYZ three axis coordinate view (including absolute and referenced coordinates), so user can easily recognize the position of machining board. Guided by the menu view, we can finish every setting work by interactive method. The main menu is as follows: (Figure 1) F1 =>HOME : Three axis machining board zero adjustment and the three axes absolute coordinate (ABS) return to zero. F2 => X SET : X axis referenced coordinates zero adjustment. Setting the X axis as the first referencing point of mould. F3 => Y SET : Y axis referenced coordinate zero adjustment. Setting the Y axis as the first referencing point of mould. F4 => Z SET : Z axis referenced coordinate zero adjustment. Setting the Y axis as the first referencing point of mould. F5 => AUTO TOUCH Z : Computer would help you finish profile modeling action, after that it would make zero adjustment to Z axis referenced coordinate. F6 =>X /2 : Plus first referencing point of X axis mould and the current view value and the result divides 2. Then show the operation value on display. F7 => Y /2 : Plus first referencing point of Y axis mould and the current view value and the result divides 2. Then show the operation value on display. F8 => EDITOR : Settings of Z axis depth and machining condition, and file management. F9 => DISCHARGE : Execute discharging action, according to settings of Z axis depth and machining condition. X =>COORD. CHG : The switch of relative and referenced coordinates. The relative coordinate is used as machining coordinate and the referenced coordinate is for measuring and also for machining. V => Hunting : Pushing V, the machine would start discharging function with lowest current and no slagging off action to facilitate profile modeling. Reference :X=+00000.000 METRIC+ABS : X=+00000.000 MAIN  Y=+00000.000 Y=+00000.000  Z=+00000.000 MAXZ=+00000.000 F1: HOME F2: X SET X + 0 0 0 0 0 . 0 0 0 F3: Y SET Y + 0 0 0 0 0 . 0 0 0 F4: Z SET Z + 0 0 0 0 0 . 0 0 0 F5: AUTO TOUCH Z F6: X/ 2 F7: Y / 2 F8: EDITOR F9: DISCHARGE A:FAST JMP B:BUZZER C:SLEEP G:OIL LEVEL X: COORD. CHG M:EQU N: SYNC FLUID T:PULSE FULSH U:ARC.ADJ V: Hunting ZNC control system 00:00:00   (Figure 1) Main menu view Reference:X=+00000.000 METRIC+ ABS : X=+00000.000 HOME  Y=+00000.000 Y=+00000.000  Z=+00000.000 MAXZ=+00000.000 F1:X HOME F2:Y HOME X + 0 0 0 0 0 . 0 0 0 F3: Z HOME Y + 0 0 0 0 0 . 0 0 0 F4:ZERO REF. XYZ Z + 0 0 0 0 0 . 0 0 0 A:FAST JMP B:BUZZER C:SLEEP G:OIL LEVEL M:EQU N: SYNC FLUID T:PULSE FULSH U:ARC.ADJ ZNC control system 00:00:00   (Figure 1) Machining HOME view X HOMEPush F1: X axis zero adjustment point would turn white, then move X axis till the  toot sound which means absolute coordinate zero adjusted. Y HOMEPush F2: Y axis zero adjustment point would turn white, then move Y axis till the  toot sound which means absolute coordinate zero adjusted. Z HOMEPush F3: Z axis zero adjustment point would turn white, then move Z axis till the toot sound which means absolute coordinate zero adjusted. Because there are mechanical origin for every 50mm of X axis and Y axis, we should mark on the machine board first, move the board to marked position ,then do zero adjustment operation and move at the same direction. So it wouldnt come to the fault mechanical origin. Only X, Y, Z origins are found and edited machining condition is saved, the reloaded file coordinates data can be inerrant. So the first action after booting machine should be board zero adjustment. And the action should at least include Z zero adjustment, so that the machine board moved can return to origin in case of power off. Referenced point coordinate zero adjustment: Push F4, referenced point coordinate zero adjustment, then all the three axes should be zero adjusted. F8 Editor Editor function is mainly for entering machining data of Z axis and save these data. Guided by the menu view, the user can enter and save machining data one by one. The detail as follows: F1 =>EDIT Z : Machining depth, current, cyclem slagging off heightfinished by this function (Figure 3). F2 =>DATA END : Editing Z, we need to set an end point for the last segment. Move the cursor to last segment and push F2 then there would be an E character before the last segment. Finish setting action. F3 =>LOAD FILE : Load the former data files to avoid repeated entering. F4 =>SAVE FILE : Finished editing, these data can be saved in DOM harddisk for loading next time. F5 =>DEL FILE : Push the key and enter file number to delete unnecessary file. F6 =>FILE LIST : Push the key to show all file numbers entered on the display. F7 =>CURR. TABLE : Comparison table of current and cycle (T-ON). The cycle value for every segment of current can be preset here, and then it is no need entering the cycle value for later editing. F8 => AUTOZ SET : Push the key, enter depth, current, precision and area. The discharging parameters from rough to fine machining would be arranged automatically by segments to save time. F9 =>FUZZY Z EDIT : Push the key, select electrode shape, material, area, precision and depth. The discharging parameters from rough to fine machining would be arranged automatically by segments to save time. QUIT => Q: Exit edit function, return to main menu. Reference:X=+00000.000 METRIC+ ABS : X=+00000.000 EDITOR  Y=+00000.000 Y=+00000.000  Z=+00000.000 MAXZ=+00000.000 F1:EDIT Z F2: DATA END X + 0 0 0 0 0 . 0 0 0 F3: LOAD FILE Y + 0 0 0 0 0 . 0 0 0 F4: SAVE FILE Z + 0 0 0 0 0 . 0 0 0 F5: DEL FILE F6: FILE LIST F7: CURR. TABLE F8: AUTOZ SET A:FAST JMP B:BUZZER C:SLEEP G:OIL LEVEL F9: FUZZY Z EDIT M:EQU N: SYNC FLUID T:PULSE FULSH U:ARC.ADJ Q:QUIT  ZNC control system 00:00:00 (Figure 2) F8 Editor view F1 Edit Z machining data Please push F1 then table in figure (3) would be on display. There is a flashing cursor. Please enter corresponding values on the cursor place to edit Z axis machining data one by one. Segment : The Z axis segment value to be edited. Total 10, coded with 0-9,no need of entering. Depth : Depth value of Z axis segement to be edited. Because the downward value is positive for Z axis coordinate, there is no need of entering minus or positive sign. The value is defined by absolute coordinate below zero. Max. Value is +40000.000~-40000.000. Generally small area given depth = given current valye*1.0~1.5/100(mm);given depth for current below 4A = current value of segment/100(mm);given depth for area more than 1000m3 = given current value/100(mm). The given depth for little area or column and taper shape should be bigger. Current : Current for discharging. The value is 0-75.Max. Value could be 75A. The general setting should be accorded to electrode (copper) section area. Current for small area should refer to the table below or there will be big consumption of electrode. Section area of copperBelow 3m33~6m36~9 m39~12 m312~15 m3Max. current1A1.5A2A2.5A3A Cycle(T-on) : The current on time of discharging voltage wave shape. The value is 2~2400(S). Gerenally, the value is 20 to 30 times of current value(S) for below 10A0About situation of more than 10A, the origin value should be added 20(S) for every 1A. In order to reduce consumption, other segments should be 15~20 times (S) of current. About tungsten steel, it should be 15~20 times (S) of current. About steel to steel, it should be 5~10 times(S) of current. About graphite to steel, it should be 10~20 times (S) of current. Efficiency(T-off): The ratio between on time of discharging voltage wave and the whole cycle time.The value is 1~9, namely 10%~90%. Gerenally according to cycle ratio, as follows: If there is any unsteady situation, the efficiency can be reduced 1. Cycle2~1515~3030~5050~8080~120120~300Above 300Efficiency6545678 Gap : The gap voltage between electrode and mould when discharging. The value is 25~99, Min. value is 25 V, Max. Value is 99V. Common setting is 30~80. Tt can be set according to high voltage as follows: High voltage0(100V)1(150V)2(200V)3(250V)Gap35~4545~6050~7065~85 Setting as follows when cycle is lower than15S or power control is cancelled. High voltage0(100V)1(150V)2(200V)3(250V)Gap20~3530~4540~5045~60 Jumpping : The distance between electrode rising and the deepest point, namely slagging off height when discharging. The value is 0~99, slagging off height for every unit is 0.1m/m. 0 means no slagging off and 99 means slagging off height is 9.9m/m. According to depth. depth Below 3mm 3~6mm6~9mm9~12mmAbove 12mm Jumping57101520 Work Time : Working time of discharging. Value is 0~99. Time per unit is 0.1 s. Max value is 9.9s.Setting as the current and depth. The lower current, the shorter of discharging time, and the machining depth and machining time should be shorter too. Gerenal time should be equal to current value plus 3. If the result value exceeds 15, it should be 15. The machining time should be 10~20 when boundary mending. Polarity : The polarity of electrode and mould. The value is 0~1.0 means electrode is positive and the mould is minus. 1 means electrode is minus and mould is positive. Setting as machining material High voltage (H-V): Voltage type: The highest voltage between electrode and mould. The value should be 0~3. 0 means no high voltage;1 means 150V; 2 for 200V; 3 for 250V. The voltage for small area should be below 150V. Gerenally it is 200V. If small consumption is needed, please set high voltage as  0 : no high voltage. The value for area above 1000m 3should be  3 : 250V. The high voltage of first segment for area below 10m should be  0 : no high voltage. Other segment can be  1 :150V. The voltage for current below 4A should be  1 :150V; current above 5A should be  2 :200V. According to machining area as follows: Copper section areaBelow 15m315~100m3100~400 m3Above 400 m3High voltage0(100V)1(150V)2(200V)3(250V) Current type: The highest voltage between electrode and mould. The value should be 0~3. 0 means 50mA ;1 means 0.2A; 2 for 0.5A; 3 for 1A. The voltage for small area should be below 0.2A. Gerenally it is 0.5A. If small consumption is needed, please set high voltage as 0: 50mA. The value for area above 1000m 3should be  3 : 250V. The high voltage of first segment for area below 10m3 should be  0 : no high voltage. Other segment can be  1 :0.2A. The voltage for current below 4A should be  1 :0.2A; current above 5A should be  2 :0.5A. According to machining area as follows: Copper section areaBelow 15m315~100m3100~400 m3Above 400 m3High voltage0(50mA)1(0.2A)2(0.5A)3(1A) Warning: After entering the data, please move the cursor to the last  segment you input, and push  F2 to end setting for confirm the end segment of machining. If not, there will be Z axis data error information when executing. Finally please input Q after editing to move to another edit form. HOME : after arriving the depth of discharging, the distance between electrode rising height and mould. When electrode reaches the point, it would stop automatically. The min. value of the point is -1, and max. is -40000.000(or the max travel value of Z axis). The downward direction of Z positive coordinate is minus and the opposite is positive. When the input value exceeds the extent, there would be a warning information ofZ axis data error. Please refer to machining relative position schematic diagram. DWELL: The pause time on deepest bottom. Max. value is 98 minutes. The function is used for locking Z axis to make even discharging action at the final deepest depth(such as10.000m/m ), till time on to stop discharging. The pause time is to lock the nose for 1~98 minutes; 0 means no pause time; 99 means locking the nose forever. This function should be go with side laying of shaking machining tool and shaking hole extending. SAFE POS : The discharging position of machining should be the very height to start machining. If the discharging is above that position, it would be carbon desposition situation. So this is a safe setting. The min. value is -1 and the max is -40000.000(or the max travel value of Z axis). The downward direction of Z positive coordinate is minus and the opposite is positive. When the input value exceeds the extent, there would be a warning information ofcarbon desposition action. Please refer to machining relative position schematic diagram. When jumping controlling, the open rising height is according to this given height.  Electrode (copper) minus of coordinate   end jumping Z and given position of safe height(-1.000) at least above -1  0 segment coordinate planar origin (0.000)  1 segment  2 segment  positive of coordinate  last segment (15.000)  Working board planar (20.000) Part (mould blank) (positive) Machining relative position schematic diagram (1)  Electrode (copper) minus of coordinate   end jumping Z and given position of safe height (-21.000) at least above -2  0 segment part planar (-20.000)  1 segment  2 segment  positive of coordinate  last segment (-5.000)  Working boart planar coordinate origin (0.000) Part (mould blank) (minus) Machining relative position schematic diagram (2) Reference :X=+00000.000 METRIC+ ABS : X=+00000.000 EDITOR Y=+00000.000 Y=+00000.000  Z=+00000.000 MAX : Z=+00000.000 F1: EDIT Z F2:DATA END CHDEPTHITonTofGapJmpW-TPolH-V0+9.40010300750510021+9.5209180750510022+9.6408160750510023+9.7307140750510024+9.8106120750510025+9.8705100750510026+9.920480750510027+9.960360750510028 E9 +9.985 +10.0002 140 207 750 505 510 100 02 2 F9:FUZZY Z EDIT HOMEDWELLSAFE POSINVERSE-1.000+0.000-1.0000  A:FAST JMP B:BUZZER C:SLEEP G:OIL LEVEL M:EQU N: SYNC FLUID T:PULSE FULSH U:ARC.ADJ Q:QUIT  ZNC control system 00:00:00 (Figure 3)F1 Edit Z view F8 AUTO EDIT Reference:X=+00000.000 METRIC+ ABS: X=+00000.000 EDETOR  Y=+00000.000 Y=+00000.000  Z=+00000.000 MAXZ=+00000.000 F1:EDIT Z F2: DATA END X + 0 0 0 0 0 . 0 0 0 F3:LOAD FILE Y + 0 0 0 0 0 . 0 0 0 F4:SAVE FILE Z + 0 0 0 0 0 . 0 0 0 F5:DEL FILE F6:FILE LIST DEPTH: 10.000 CURRENT: 10 F7:CURR. TABLE MODE: 3 Area: 2 F8: AUTOZ SET A:FAST JMP B:BUZZER C:SLEEP G:OIL LEVEL F9: FUZZY Z EDIT M:EQU N: SYNC FLUID T:PULSE FULSH U:ARC.ADJ Q:QUIT  ZNC control system 00:00:00 (Figure 4)F8 Auto edit Z view Auto edit Z: Push the key and enterdepth such as10.000m/m, currentsuch as 10A and precision such as 3 hyper-precise. Then next page will be showed as figure 5. From rough machining fine machining, discharging parameters such as segments, depth, current, cycle, efficiency, gap, jumping, time, polarity, high voltage would be arrange by segements to save time automatically(figure 5). When using Edit Z, or after Auto edit Z, and return to F4 Save file to save edit data to the harddisk, and then return to the main menu. If there is any unsteady situation of discharging, you can push function key F1~F9 to modify each parameter in the F9discharging mode.  Reference :X=+00000.000 METRIC+ ABS : X=+00000.000 EDITOR Y=+00000.000 Y=+00000.000  Z=+00000.000 MAX : Z=+00000.000 F1: EDIT Z F2:DATA END CHDEPTHITonTofGapJmpW-TPolH-V0+9.52010.0300740711021+9.7208.0150740710022+9.8206.01207407902 3+9.8804.510074077024+9.9303.58064076025+9.9702.5505407502E6+10.0002.03054084027+0.0001.51544084028 9+0.000 +0.0001.0 0.510 84 440 358 83 30 02 2 HOMEDWELLSAFE POSINVERSE-1.000+0.000-1.0000  A:FAST JMP B:BUZZER C:SLEEP G:OIL LEVEL F9: FUZZY Z EDIT M:EQU N: SYNC FLUID T:PULSE FULSH U:ARC.ADJ Q:QUIT  ZNC control system 00:00:00 (Figure 5)Auto edit Z view F3INS. LINE Copy the row floating cursor pointing at, and the under rows would move down. F4DEL. LINE Delete the row floating cursor pointing at, and the under rows would move up. SAFE POS Except for the meaning of safe machining position, it is the referencing value of jumping height. DWELL means locking the nose for 1~98 minutes, 0 for no pause, 99 for locking the head forever.  Reference :X=+00000.000 METRIC+ ABS : X=+00000.000 MAIN  Y=+00000.000 Y=+00000.000  Z=+00000.000 deepest pointZ=+00000.000  F1:HOME F2:X SET X + 0 0 0 0 0 . 0 0 0 F3: Y SET Y + 0 0 0 0 0 . 0 0 0 F4: Z SET Z + 0 0 0 0 0 . 0 0 0 F5:AUTO TOUCH Z  F6:X / 2 Machining startsZ(0) Machining endsZ(9) F7:Y / 2 F8:EDITOR F9:DISCHARGE A:FAST JMP B:BUZZER C:SLEEP G:OIL LEVEL X: COORD. CHG M:EQU N: SYNC FLUID T:PULSE FULSH U:ARC.ADJ V: Hunting ZNC control system 00:00:00  (Figue 6)Main menu view Select F9Discharging, the view would be showed. Machining startsZ(0)The start machining segment can be selected. Machining endsZ(9)The end machining segment can be selected. F9 Discharging After all the Z axis depth and machining parameter settings are finished, we can enter discharging mode to execute mould machining. When entering discharging mode, the function key can be used to change discharging parameter, and the detail function is as follows: figure (5) F1 =>current(I) : Changing current value. Push the key and up- down key to change parameter value, then push it again to finish the operation. Setting value is 0-75. F2 =>Cycle(Ton) : Changing the discharging current width of on cycle. Push the key and up- down key to change parameter value, and then push it again to finish the operation. Setting value is 1-999. F3 =>Efficiency(Toff) : Changing the discharging current width of off cycle. Push the key and up- down key to change parameter value, and then push it again to finish the operation. Setting value is 1-9. F4 =>Gap voltage: Change voltage. The same process as above , and setting valye is 25-990 F5 =>Jumping height: Change slagging off height. The same process as above , and setting valye is 0-990 F6 =>Work time: Change working time. The same process as above , and setting valye is 0-990 F7 =>Polarity : Change polarity. The same process as above , and setting valye is 0-10 F8 =>High voltage : Change voltage. The same process as above , and setting valye is 0-30 F9 =>Function change : Control key function change.For changing 8 control key functions to another 8 functions 0 Q =>QUIT : Exit edit function, and return to main menu. ReferenceX=+00000.000 METRIC+ ABS: X=+00000.000 discharge  Y=+00000.000 Y=+00000.000  Z=+00000.000 MAXZ=+00000.000 CHDEPTHITonTofGapJmpW-TPolH-VDo +9.52010.0300740711021+9.7208.0150740710022+9.8206.01207407902 3+9.8804.510074077024+9.9303.58064076025+9.9702.5505407502E6+10.0002.03054084027+0.0001.51544084028+0.0001.01044083029+0.0000.584358302HOMEDWELLSAFE POSINVERSE-1.000+0.000-1.0000 A:FAST JMP B:BUZZER C:SLEEP G:OIL LEVEL F8:Change Form M:EQU N: SYNC FLUID T:PULSE FULSH U:ARC.ADJ F9:Change Func. Q:QUIT ZNC control system 00:00:00   (Figure 7)F8 discharging machining view Operating method of adjusting machining condition on machining process a. Push direction key or or or to move the cursor to the parameter position, then input values and push ENTER to confirm it. b. PushF8: Change Form to move cursor to the table below and modify parameters such asHOME, DWELL, after that push the key again to return cursor to the table above0 ReferenceX=+00000.000 METRIC+ ABS: X=+00000.000 discharge  Y=+00000.000 Y=+00000.000  Z=+00000.000 MAXZ=+00000.000 CHDEPTHITonTofGapJmpW-TPolH-VDo +9.52010.0300740711021+9.7208.0150740710022+9.8206.01207407902 3+9.8804.510074077024+9.9303.58064076025+9.9702.5505407502E6+10.0002.03054084027+0.0001.51544084028+0.0001.01044083029+0.0000.584358302HOMEDWELLSAFE POSINVERSE-1.000+0.000-1.0000 A:TIME ZERO B:OSC-HV C:JMP-UP1 G:Z DOWN INC F8:Change Form M:Z DOWN DEC N: ARC DET T:ARC SEN U:JMP-CTL F9:Change Func. Q:QUIT ZNC control system 00:00:00   (Figure 8)F9 discharging machining view Push F9:Change Func. to change function page  50A currentCycle (T-ON)01234567890153060901201501802102402701300320340360380400420440460480250052054056058060062064066068037007207407607808008208408608804900920940960980100010201040106010805110011201140116011801200 Notice: the table above is machining current and cycle caparison from original factory setting, and the user can manually modify it. Current unit is Acycle unit(T-ON) isS 0 A, cycle 15ms 10 A, cycle300 ms 50 A, cycle 1100 ms 75A currentCycle (T-ON)012345678901530609012015018021024027013003203403603804004204404604802500520540560580600620640660680370072074076078080082084086088049009209409609801000102010401060108051100112011401160118012001220124012601280613001300130013001300130013001300130013007130013001300130013001300 Notice:the table above is machining current and cycle caparison from original factory setting, and the user can manually modify it. Current unit is Acycle unit(T-ON) isS Operation sequence: When starting, please execute X,Y,Z axis panel zero adjustment(F1). At least Z panel axis zero adjustment. Find out XYZ three axis mould benchmark point (F2-F4) or mould center point (F6-F7). Enter edit function (F8), key in every Z axis data (F1) or enter AUTOZ edit (F8). Key in all the data to the disk drive, with file store function (F4). Return to main menu (Q), enter the discharging function (F9). Action when power off: Restart the machine. Perform X,Y,Z axis panel zero adjustment(F1). At least Z panel axis zero adjustment. Enter edit function (F8), load the data saved before into memory with the file load function (F3). Return the main menu (END), readjust benchmark point of XY axis (F2-F3). It is no need of this action, if X, Y axis panel zero adjustment (F1) or no movement of machine frame. Enter discharging function (F9). Warning: All of above should be in sequence, or else there would be some trouble in profile remodeling Z and data editing. ; In case no movement of machine frame after power off, we can enter the discharging function directly(F9) or push discharging key on wire control box(DIS), with low requirement of machining size situation. When editing or executing, there would be some error or status information, such askey error or data setting errorplease reset data according to these information. If there are too many files, the unnecessary files can be deleted or the data can be saved in disk with the same number, while new data will cover the old one. Combination of synchronously oil supply action: Synchronously oil supply action: supply oil only in discharging situation. No action of synchronously oil supply: supply oil when no discharging, as well as charging. The function is just for machine frame cleaning. S/C key on remote control box controls the movement of machine board when electrode short current. So please be careful of it. Push the key, all the short current would no longer be detected and warning information would be showed on display by sound warning. If no any short current of electrode, please push the S/C key again right now, or else there may be some danger of electricity destroys. The method of changing machining parameter when discharging Push direction key or or or to move the cursor to the parameter position, then input values and push ENTER to confirm. If same part machined by the same electrode(copper) tool, there is no need of push any key on panel when machining, just fixing the part on the original position and then push DIS on wire control box to restart machining. Machining condition edit example Machining depth=10 m/m Machining method: rough!moderate!fine in one time , 5 segments machining Rough machining current=8A , Cycle=220S , efficiency=70% Moderate machining current =6A , Cycle =120S , efficiency =60% Moderate machining current =4A , Cycle =90S , efficiency =50% Fine machining current =3A , Cycle =60S , efficiency =40% Fine machining current =2A , Cycle =40S , efficiency =40% as follows: SegmentsDepthCurrent Cycle efficiencyGapJumpingTimeHigh voltagePolarity09.7882207758102019.876120670872029.93490565872039.973604608620E410.02404558620Machining condition warnings: Every gap of segmental auto fine machining current could be too large; especially the situation below 4A, the gap should be about 1A. Every machining allowance depth should be set, according to the current value and machining area. The higher of current value, the depth should be bigger; also it is better bigger depth for relatively small area condition. Generally, given depth for small area = current value of last segment *1.5/100(mm), given depth for below 4A = current value of last segment /100(mm). If given depth for area more than 1000m3 = current value of last segment/100(mm). If there any uneven situation on the bottom of part, it may be because the given machining depth of every segment is not enough or too big distance of every current value gap. If slow machining and big consumption of electrode, it may be because too big given machining depth of every segment or too big difference between every current segment. About cycle setting, the first segment should be the 30 times (us) of current value, others should be 15 times (us) of current value, so that the electrode consumption can be lower and the machining speed could be higher. Generally current should be set according to electrode (copper) area. Electrode current of area below 10m3 shoule be lower than 3A, or else it would be a big consumption of electrode. About high voltage setting, for area above 1000m3 it should be  3 ,namely 250V. For area below 10m3, the high voltage of first segment should be  0 ,namely no high voltage. Others with current lower than 4A should be  1 , namely 150V;with current above 5A should be  2 ,namely 2000V. Machining on area above 1000m3, the power control and carbon deposition adjustment should be cancelled and the carbon detection should be on, and the gap voltage should be set to 50 V. Especially fine machining; make sure to do adjustment as above. About fine machining, if the cycle is between 30(us) ~10(us), carbon deposition adjustment should be cancelled, and high voltage should be above (1)150V. If cycle below 10(us), high voltage should be above (2)200V. It should be negative polarity and high voltage should be (3)250V, when mirror machining. If machining depth of slice or tip shape is more than 5mm, the power control should be cancelled and carbon desposition detection should be on, as well as carbon desposition adjust should be off. At the same time, jumping control is on and efficiency can be higher and the high voltage should be set to above (1)150V. Big area fine machining condition edition example: Machining depth=0.3 m/m Machining method: rough!moderate!fine in one time , electrode(copper) shape 10 segment machining  Rough maching current=6A , Cycle=180S , Efficiency=70% round planar Moderate maching current =5A , Cycle =100S , Efficiency =60% Moderate maching current =4 A , Cycle =70S , Efficiency =50% 150mm Fine maching current =3 A , Cycle =50S , Efficiency =50% Fine maching current =2 A , Cycle =30S , Efficiency =50% Fine maching current =2 A , Cycle =20S , Efficiency =50% Fine maching current =1 A , Cycle =15S , Efficiency =50% Fine maching current =1 A , Cycle =10S , Efficiency =50% Fine maching current =1 A , Cycle =6S , Efficiency =45% Fine maching current =1 A , Cycle =3S , Efficiency =40% as follows : CHDepth Current Ton Toff Gap Jmp W-TH-VPol 00.06061807455103010.12051006805103020.1704705755103030.2103505705103040.240230565583050.260220555583060.270115555553070.280110550553080.2901(0.5)65455430E90.3001(0.5)36405430Machining condition warnings Jumping action, power control and carbon desposition adjustment function should be cancelled and carbon desposition detecting function should be on. Z axis speed should be over 6, oil spraying pressure should not be too high. And it is better machine in oil immersing condition to get a good effect. With big area machining, all the high voltage should be set to 3  Eletrode: steel Intermittent voltage: 60 V Polarity: 0 (+/-) Jumping height: 8 Part: steel Working time: 15 Area: 20m3 high voltage: 3(250) V Depth: 5mm (A) Current S Cycle% EfficiencymRa Surface finish% Consumemm/min Speed(mm) Gap between two sides4103234210.047103294020.14132032025100.1213303282211.20.14131005302013.60.16132506321617.20.17133207337210.2013520734115.50.22254533730430.182511053820470.202515063915500.22252507408520.24253207413.8570.26255208422500.28259008431470.305015064315830.295025074411850.31503208459870.33505209463900.35509009471820.38  Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 16mm Working time : 7 Machining depth : 1mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN02220.5870.0130.0002606220.7420.011.50.0011012221.0950.01<10.00096 Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 16mm Working time : 7 Machining depth : 1mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN112221.0650.066.60.00043125421.2950.07<0.10.0019150421.3520.08<0.10.00141100421.4660.1<0.10.00091200421.580.13<0.10.00041400421.6940.17<0.10.0001Testing material :MITUTOYO Surface finish detecing machine ,SUFTEST-211 Testing length :3.2mm  Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 16mm Working time : 20 Machining depth : 10mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN525723.2150.11.40.043550723.5020.110.50.0245100723.520.140.20.025200723.5380.180.10.0185400723.5560.24<0.10.0165800723.5740.31<0.10.014 Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 16mm Working time : 20 Machining depth : 10mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN1025724.410.142.140.1141050724.9850.151.70.16710100726.4020.181.60.11610200727.8190.211.50.06510400729.2360.261.40.024108007210.6530.291.30.016Testing material :MITUTOYO Surface finish detecing machine ,SUFTEST-211 Testing length :3.2mm  Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 16mm Working time : 20 Machining depth : 10mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN1550725.310.1630.2515100726.9920.211.70.23515200727.9770.250.70.19115400728.9620.290.30.14715800729.8620.340.10.103 Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 16mm Working time : 20 Machining depth : 10mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN2050726.2750.215.80.3320100728.5850.2410.3820200729.0850.260.430.3520400729.5850.310.20.32208007210.0850.360.10.29Testing material :MITUTOYO Surface finish detecing machine ,SUFTEST-211 Testing length :3.2mm  Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 32mm Working time : 20 Machining depth : 10mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN3050629.6820.248.61.098301007211.430.283.181.155303007212.1950.431.20.958305007212.960.520.60.86307007213.7550.580.40.77309007214.5150.640.20.68 Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 32mm Working time : 20 Machining depth : 10mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN40757214.1550.269.41.652401507217.4470.385.81.385403007218.5050.52.51.264405007219.5630.611.51.2407007220.6210.711.15409007221.6790.75<11.099Testing material :MITUTOYO Surface finish detecing machine ,SUFTEST-211 Testing length :10mm  Electrode : red brass (+) Intermittent voltage : 50 V Machining part : S 45C steel (-) Jumping height : 5 Maching diameter : 32mm Working time : 20 Machining depth : 10mm Polarity : 0(+"-) Psraying oil pressure : 0.73/cm Machining liquid : MENTOR CURRENT (A)ON-TIME Cycle (S)OFF-TIME Efficiency *10%H.V. (V)Surface finish mRa2*GAP (mm)Electrode consume %Machining speed g/MIN501007218.230.3811.51.979503007219.50.523.81.608505007220.770.641.21.483507007222.040.7611.421509007223.310.80.91.359Testing material :MITUTOYO Surface finish detecing machine ,SUFTEST-211 Testing length :10mm Machining data Matetialcopper to steel Polarity+  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 311240.513<0.20.0411440.5510<0.20.04511840.657.5<0.30.052111040.75<0.40.057111540.84<0.40.063112040.93<0.50.069113041.02.3<0.60.076115051.11.5<0.80.084117051.20.8<10.0881244118<0.40.0581284136<0.50.06312104135<0.50.06812154154.8<0.60.07512204184.5<0.70.08312304214.3<0.80.08712505251.6<10.08912705281.21.20.09512905310.81.40.10513641.492.80.065131041.8750.0721315424.570.08132042.22.580.09133042.51.58.50.10134552.80.870.11136053.20.660.12139063.50.54.50.131312064-30.14Machining data Matetialcopper to steel Polarity+  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 3141041.7760.08141541.9680.09142042.14.590.1143042.42.5100.11144542.81.5100.12146053.20.890.13149063.50.580.1414120640.360.151415074.5-40.16251541.87170.092520425200.1253042.23230.11254542.51.5250.122560531.2220.14259063.50.8180.1525120640.5130.162515074.5-110.172518075-90.18261542.410200.1262042.85.5230.11263043.24260.12264543.52.5290.132660542300.15269064.21250.162612064.50.8220.1726150750.5180.182618076-150.2Machining data Matetialcopper to steel Polarity+  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 3283043.55.5360.122860542.8420.14289064.51.8440.162812065.51.3400.1728150760.8360.1928200770.5340.212825078-320.222830079-290.2328350710-250.24293043.56380.142960543450.16299064.52470.182912065.51.5440.1929150761400.2129200770.5370.232925078-350.242930079-340.2529350710-320.2621050546540.17210100654630.19210150761.5530.21210200771500.24210250780.5480.2621030079-450.27210350710-420.28210400811-400.29210450812-380.3Machining data Matetialcopper to steel Polarity+  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 321550557910.17215100663.8970.221515077.51.51050.2421520078.51960.2621525079.80.8940.282153007100.5920.3215350710.5-900.31215400811-880.32215450812-800.332205055101380.212201006751490.252201507931550.282202007101.51500.3220250710.51.31500.3122030071111500.332204008120.51350.352205008130.31300.37220600814-1150.412255055151300.182251006791550.222251507961600.242252007103.51700.2822530071121800.322540081211650.322255008130.51600.352256008150.51520.42257008160.51450.43Machining data Matetialcopper to steel Polarity+  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 32305056121800.2423010068102100.272302007113.52200.3323030071222300.3623040071412200.42305008150.52100.432306008180.52050.452307008180.52000.48230900820-2000.532405057203200.2624010068133500.292402007993600.3324030071063700.3724040071243700.412405008142.53600.452406008161.53500.492408008200.83300.562401000824-2800.652505058234200.29250100610184600.33250200712134700.37250300714104800.425040071674650.4425050081844600.4825060082024500.522508008240.54200.625010008260.53500.7Machining data Materialcopper tungsten alloy to steel tungsten alloy Polarity-  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 326251.1218.53.060.1226451.26162.840.1226851.6162.240.12261251.8151.860.12262552141.090.13265052.5140.80.14267552.8140.660.152610053.2110.510.162615053.2110.360.1628252.2204.670.1328452.2174.30.1328852.5163.940.13281252.8163.550.14282553.2142.480.14285053.2131.680.15287553.2131.280.152810053.5130.870.162815053.5120.470.16312251.6202.040.14312451.8202.700.14312852183.350.143121252.2184.010.153122553.2164.670.153125053.5164.230.163127553.5164.010.1631210064143.790.1731215064.5143.570.17Machining data Materialcopper tungsten alloy to steel tungsten alloy Polarity-  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 3318251.6203.230.15318451.8204.050.15318852.2185.080.153181252.2185.300.163182553.2165.740.163185053.5164.670.163187563.5164.140.1631810064.5143.610.1731815064.5143.070.17325452.2215.480.16325852.2185.720.163251252.5185.800.163252552.8189.150.163255063.2166.100.1732510063.2165.180.1732515063.5164.730.1732520063.5144.270.1832530063.5143.810.18335452.2199.920.17335852.51810.330.173351253.2189.850.173352553.5178.930.173355064.0156.790.1833510064.5124.620.1833515064.5124.260.1833520064.593.890.1933530064.593.520.19Machining data Materialgraphite to steel Polarity+  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 3362422490.136452.2413.4110.1236852.511140.143612537.9170.143618535.5190.16362563.51.96220.163635640.79210.23845314.5190.1638852.511.9210.183812538290.183818535.9310.2382563.51.7350.223835651.4360.26385066.5-340.26312653.1513.7280.183121253.58390.23121853.56420.2231225641.9460.243123565.51.5490.2631250671.0470.283127568.5-330.323181256.37530.223182556.52.2750.2631835672780.283185067.50.9810.283187568.50.7790.3031810069-610.34Machining data Materialgraphite to steel Polarity+  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 33251266.57.4660.2232525672.31000.283253567.521070.32325506811150.343257578.50.81110.3632510079-850.36325200711-640.433525672.31050.2833535681.91740.283355068.51.11800.303357578.50.91680.36335100790.21410.40335200711-1330.42335400712.5-1160.443502568.52.52090.2835035692.12220.28350506101.32360.30350757111.22430.363501007110.42370.42350200712.5-1800.46350400717-1750.503755068.63570.763757572.23600.8237510071.73730.863752007-3210.923754007-3120.963Machining data Material  polarity  High voltage HV Current I(A) Cycle us Efficiency *10%SURFACE FINISH Ra(um)WEAR %SPEED 3/min2-GAP 3     - PAGE 2- X/ 2 Z SET Y SET X SET AUTO TOUCH Z X HOME Y/2 EDITOR DISCHARGE 3 3 3 3 FUZZY Z EDIT QUIT SAVE FILE DATA END LOAD FILE DEL FILE Change Form FILE LIST CURR. TABLE AUTO Z SET QUIT This position should be above the machining planar, or machining could nt be carried out 3 Change Func. 3 3 3 Y HOME 3 ZERO REF. XYZ This position should be above machining planar, or there will be danger of mould striking. Machining counting direction F8:AUTOZ SET F3:INS. LINE F4:DEL. LINE F5:DEL FILE F6:FILE LIST F7: F7:CURR.TABLE F3:INS. LINE F4:DEL. LINE F5 F5:DEL FILE F6:FILE LIST F7:CURR. TABLE F8:AUTOZ SET 3 When machining depth is reached, the machine would continue according to given time , and it can go with shaking machining. Value 1 stands for reverse machining This position should be above machining planar, or there will be danger of mould striking. Machining timing JMP-UP1: 1 Machining current material table EDIT Z Hunting Appendix Machining material Machining material Machining material Machining material Machining material The end machining segment can be selected The start machining segment can be selected Z HOME This position should be above the machining planar, or machining could nt be carried out Value 1 stands for reverse machining When machining depth is reached, the machine would continue according to given time , and it can go with shaking machining. JMP-UP1: 1 Floating cursor JMP-CTL: 0 ARC-SEN : 5 Z SPEED : 6 Machining timing JMP-CTL: 0 ARC-SEN : 5 Z SPEED : 6 Floating cursor HOME COORD. 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