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1、<p>  Session 30- Create an OptiPath Library While Building a Tool List</p><p>  This session shows how to build/modify an OptiPath library when building a Tool  List. The sample G-Code tool path f

2、ile to be optimized uses 2 cutting tools: T1, T2. The demonstration shows how to link cutting tools in the tool path file with existing OptiPath records or create new ones interactively while VERICUT is scanning for the

3、tool chance records.</p><p><b>  See also:</b></p><p>  Session 29- Optimize Feed Rates via OptiPath Tool List Method or</p><p>  Session 31- Create an OptiPath Library

4、via Prompting At Runtime</p><p>  Session Steps:</p><p>  Optimize an Inch Tool Path</p><p>  Cutters used by sample tool path "op_mold.mcd":</p><p>  1. In V

5、ERICUT, open the sample "op_mold.usr" User file</p><p>  File > Open</p><p>  Shortcut=CGTECH_SAMPLES</p><p>  File Name=op_mold.usr, Open </p><p>  If pro

6、mpted, respond as follows: Reset cut model? Reset / Save changes? No</p><p>  2. Use OptiPath Control to reference the "optipath.olb" OptiPath Library file, and indicate cutting H13 tool steel

7、 on the 3-axis mill machine</p><p>  OptiPath > Control: Settings tab</p><p>  OptiPath Library, Browse</p><p>  Shortcut=Working Directory</p><p>  File name=optipa

8、th.olb, OK (If "optipath.olb" is not available use CGTech sample "op_mold.olb")</p><p>  Material=H13 Tool Steel</p><p>  Machine=3 ax Mill</p><p><b>  OK

9、</b></p><p>  3. While building a tool list, link OptiPath records to cutting tools used by the tool path file</p><p>  A tool list can be generated by scanning the tool path file. By defa

10、ult, the tool change events in the list represent the pocket numbers of cutting tools used by the tool path file. These events can also be linked to OptiPath records for tool path optimization. When "Prompt for Opti

11、Path settings while building" is active, you can define the OptiPath settings for cutting tools to be optimized in the list.</p><p>  Setup > Toolpath</p><p>  Tool Change By=List</p&

12、gt;<p>  Use Tool list</p><p>  Select "Prompt for OptiPath settings while building"</p><p>  Build Tool List - scans the tool path and generates the tool list </p><p

13、>  In the Optimization Settings window :</p><p>  4. Reference the first tool to an existing OptiPath record</p><p>  In the Optimization Settings window :</p><p>  Select Existi

14、ng</p><p>  Select the record containing ".625D 1.50H FEM", OK</p><p>  Optimization Settings window: OK </p><p>  An existing OptiPath Record is now selected for that too

15、l and the process continues.</p><p>  5. Create a new OptiPath record the second tool</p><p>  Change record description Cutter= .750D 1.5H BEM, Carbide</p><p>  Change record descr

16、iption # Teeth= 4</p><p>  Clear Volume Removal checkbox</p><p>  Change the Feed Per Minute=25</p><p>  Select Volume Removal</p><p>  Select Chip Thickness</p>

17、<p><b>  OK </b></p><p>  A new OptiPath Record has been created and is referenced by tool number 2.</p><p>  Tool Change List window: OK</p><p>  Toolpath window:

18、 OK </p><p>  6. Use OptiPath Control to create an optimized tool path named "op_mold.opti"</p><p>  OptiPath >Control</p><p>  Optimized File=*.opti (OK as is) </p&

19、gt;<p>  The "*" wildcard will be replaced with the "op_mold" toolpath base file name to create an optimized toolpath file named "op_mold.opti".</p><p><b>  On</

20、b></p><p>  OK (Note the red "OptiPath" light on the VERICUT main window indicates optimization is on) </p><p>  7. Open the Status window and configure to also show optimized feed

21、rates and cutting time, as well as the "Tool Use Graph"</p><p>  Info > Status</p><p><b>  Configure</b></p><p>  Ensure OP Time and OP Feedrate are selecte

22、d</p><p>  Select Tool Use Graph, Time interval=60 (minutes)</p><p><b>  OK </b></p><p>  During processing the Feedrate field displays the programmed feed rates while t

23、he OP Feedrate field displays the optimized feed rates.</p><p>  8. Cut the model</p><p>  Play to End  </p><p>  9. Open the Log file window and review the "OptiPath SUMM

24、ARY", then close the Log file viewer</p><p>  Info > VERICUT Log</p><p>  Scroll to bottom of file and search for the "OptiPath SUMMARY" header. </p><p>  Sample L

25、og File OptiPath Summary:</p><p>  Close the VERICUT Log window</p><p>  章節(jié)30創(chuàng)建一個(gè)圖書(shū)館在建設(shè)OptiPath工具列表</p><p>  本次章節(jié)展示了如何建立/修改OptiPath圖書(shū)館建筑工具列表時(shí)。示例代碼的刀具路徑文件進(jìn)行優(yōu)化,采用2切削工具:T1,T2。演示展示了如何鏈接

26、刀具在刀具路徑文件與現(xiàn)有OptiPath記錄或創(chuàng)建新的交互而VERICUT是掃描工具的機(jī)會(huì)記錄。</p><p><b>  參見(jiàn):</b></p><p>  章節(jié)29優(yōu)化進(jìn)給速度OptiPath工具列表的方法或通過(guò)</p><p>  章節(jié)31創(chuàng)建一個(gè)庫(kù)在運(yùn)行時(shí)通過(guò)促使OptiPath</p><p><b&g

27、t;  章節(jié)的步驟:</b></p><p>  一英寸的刀具路徑優(yōu)化</p><p>  通過(guò)樣品的刀具路徑”用刀op_mold MCD &amp;quot;;:</p><p>  1。在VERICUT,打開(kāi)樣品”op_mold。使用“用戶文件</p><p><b>  ?文件>打開(kāi)</b>

28、;</p><p>  ?快捷= cgtech_samples</p><p>  ?文件名= op_mold.usr,打開(kāi)</p><p>  如果出現(xiàn)提示,反應(yīng)如下:復(fù)位切模型?復(fù)位/保存更改?沒(méi)有</p><p>  2。使用OptiPath控制參考“OptiPath。OLB”O(jiān)ptiPath庫(kù)文件,并顯示切割H13工具鋼在三軸銑床&l

29、t;/p><p>  ?OptiPath >控制:設(shè)置標(biāo)簽</p><p>  ?OptiPath庫(kù),瀏覽</p><p><b>  ?快捷=工作目錄</b></p><p>  ?文件名= optipath.olb,好(如果“OptiPath。OLB”是不可利用CGTech樣本”op_mold OLB?!保?lt;

30、/p><p>  ?材料= H13工具鋼</p><p><b>  ?機(jī)= 3斧頭磨</b></p><p><b>  ?好</b></p><p>  3。而構(gòu)建工具列表,鏈接OptiPath記錄刀具的刀具路徑文件</p><p>  一個(gè)工具列表可以通過(guò)掃描的刀具路徑生成

31、的文件。默認(rèn)情況下,列表中的工具更改事件代表刀具的刀具路徑文件使用袖珍數(shù)字。這些事件也可以鏈接到刀具路徑優(yōu)化OptiPath記錄。當(dāng)“提示OptiPath設(shè)置在建設(shè)”是積極的,您可以定義刀具是列表中的設(shè)置優(yōu)化OptiPath。</p><p><b>  ?設(shè)置>路徑</b></p><p><b>  ?換刀的列表</b></p&g

32、t;<p><b>  ?使用工具列表</b></p><p>  ?選擇“提示OptiPath設(shè)置在建設(shè)”</p><p>  ?構(gòu)建工具列表-掃描刀具路徑生成工具列表</p><p><b>  在優(yōu)化設(shè)置窗口:</b></p><p>  4。對(duì)現(xiàn)有OptiPath記錄第一個(gè)工具

33、的參考</p><p><b>  在優(yōu)化設(shè)置窗口:</b></p><p><b>  ?選擇現(xiàn)有的</b></p><p>  ?選擇包含“記錄。625d 1.50h有限元”,好的</p><p>  ?優(yōu)化設(shè)置窗口:好的</p><p>  現(xiàn)有OptiPath記錄現(xiàn)在

34、是選擇,工具和過(guò)程仍在繼續(xù)。</p><p>  5。創(chuàng)建一個(gè)新的OptiPath記錄第二工具</p><p>  ?變化記錄描述刀具=。750d 1.5h BEM,硬質(zhì)合金</p><p>  ?變化記錄描述#牙= 4</p><p>  ?清晰的體積去除復(fù)選框</p><p>  ?變化= 25每分鐘進(jìn)給</

35、p><p><b>  ?選擇去除量</b></p><p><b>  ?選擇芯片厚度</b></p><p><b>  ?好</b></p><p>  一個(gè)新的記錄被創(chuàng)建和OptiPath由2號(hào)工具參考。</p><p>  ?工具更改列表窗口:好的

36、</p><p><b>  ?路徑窗口:好的</b></p><p>  6。使用OptiPath控件創(chuàng)建優(yōu)化的刀具路徑命名為“op_mold優(yōu)化?!?lt;/p><p>  ?OptiPath >控制</p><p>  ?優(yōu)化文件= *。優(yōu)化(可以是)</p><p>  “*”通配符將取

37、代“op_mold”路徑的基文件名創(chuàng)建一個(gè)優(yōu)化的刀具路徑文件命名為“op_mold優(yōu)化?!薄?lt;/p><p><b>  ?上</b></p><p>  ?好(注意在VERICUT主窗口的紅色“OptiPath”燈指示的優(yōu)化上)</p><p>  7。打開(kāi)窗口狀態(tài)和配置也顯示優(yōu)化的進(jìn)給率和切削時(shí)間,以及“工具使用圖”</p>

38、<p><b>  ?信息>狀態(tài)</b></p><p><b>  ?配置</b></p><p>  ?確保運(yùn)算時(shí)間和運(yùn)算速度的選擇</p><p>  ?選擇工具的使用圖,時(shí)間間隔= 60(分鐘)</p><p><b>  ?好</b></p>

39、;<p>  加工速度場(chǎng)期間顯示編程進(jìn)給速率而運(yùn)算速度字段顯示優(yōu)化的進(jìn)給率。</p><p><b>  8。切割模型</b></p><p><b>  ?活動(dòng)結(jié)束</b></p><p>  9。打開(kāi)日志文件窗口和審查,然后關(guān)閉“OptiPath總結(jié)”日志文件查看器</p><p>

40、;  ?信息> VERICUT日志</p><p>  ?滾動(dòng)到文件底部尋找“OptiPath總結(jié)“頭。</p><p>  示例日志文件OptiPath總結(jié):</p><p>  ?關(guān)閉VERICUT日志窗口</p><p>  Session 31- Create an OptiPath Library via Prompting

41、at Runtime</p><p>  This session shows how to build/modify an OptiPath library interactively while cutting the part . The sample G-Code tool path file to be optimized uses 2 cutting tools: T1, T2. The demons

42、tration shows how to link cutting tools in the tool path file with existing OptiPath records or create new ones interactively while VERICUT cutting the part. At the end of the session a results file is generated, showing

43、 each tool used, the OptiPath settings and time saving for each tools.</p><p>  See also: Session 30- Create an OptiPath Library While Building a Tool List</p><p>  Session Steps:</p><

44、;p>  Optimize an Inch Tool Path</p><p>  Cutters used by sample tool path "op_mold.mcd":</p><p>  1. In VERICUT, open the sample "op_mold.usr" User file</p><p&g

45、t;  File > Open</p><p>  Shortcut:CGTECH_SAMPLES</p><p>  File Name=op_mold.usr, Open </p><p>  If prompted, respond as follows: Reset cut model? Reset  /Save changes?

46、No</p><p>  2. Use OptiPath Control to reference the "optipath.olb" OptiPath Library file, and indicate interactive optimization while cutting H13 tool steel on the 3-axis mill machine</p>&

47、lt;p>  OptiPath > Control</p><p>  OptiPath Library, Browse</p><p>  Shortcut=Working Directory</p><p>  File name=optipath.olb, Open (If "optipath.olb" is not avail

48、able use CGTech sample "op_mold.olb")</p><p>  Material=H13 Tool Steel</p><p>  Machine=3 ax Mill</p><p>  OptiPath Mode =Prompt While Cutting</p><p><b>

49、;  OK </b></p><p>  3. Open the Status window and configure to also show optimized feed rates and cutting time, as well as the "Tool Use Graph"</p><p>  Info > Status</p>

50、;<p><b>  Configure</b></p><p>  Ensure OP Time and OP Feedrate are selected</p><p>  Select Tool Use Graph, Time interval=60 (minutes)</p><p><b>  OK </

51、b></p><p>  During processing the Feedrate field displays the programmed feed rates while the OP Feedrate field displays the optimized feed rates.</p><p>  4. Cut the model</p><p&g

52、t;  Play to End  </p><p>  5. Optimize the first tool with an existing OptiPath record</p><p>  In the Optimization Settings window :</p><p>  Select Existing</p><p&

53、gt;  Select the record containing ".625D 1.50H FEM", OK</p><p>  Optimization Settings window: OK </p><p>  An existing OptiPath Record is now selected for that tool and the process co

54、ntinues.</p><p>  6. Create a new OptiPath record the second tool</p><p>  Change record description Cutter= .750D 1.5H BEM, Carbide</p><p>  Change record description # Teeth= 4<

55、;/p><p>  Clear Volume Removal checkbox</p><p>  Clear Chip Thickness checkbox</p><p>  Change the Feed Per Minute=25</p><p>  Select Volume Removal</p><p>  

56、Select Chip Thickness</p><p><b>  OK </b></p><p>  A new OptiPath Record has been created and is used by tool number 2.</p><p>  7. Generate an HTML Results file</p&g

57、t;<p>  File > Report >Create Report > HTML</p><p>  File Name = optipath.htm </p><p><b>  Save </b></p><p>  Scroll to bottom of file and search for the

58、 "Tool Summary" header. </p><p>  Sample Results file Tool Summary with optimization statistics:</p><p><b>  Close</b></p><p>  章節(jié)31創(chuàng)建一個(gè)庫(kù)在運(yùn)行時(shí)通過(guò)促使OptiPath</p

59、><p>  本次會(huì)議展示了如何建立/修改OptiPath庫(kù)交互而切割的部分。示例代碼的刀具路徑文件進(jìn)行優(yōu)化,采用2切削工具:T1,T2。演示展示了如何鏈接刀具在刀具路徑文件與現(xiàn)有OptiPath記錄或創(chuàng)建新的交互而VERICUT切割的部分。在生成的結(jié)果文件的會(huì)議結(jié)束時(shí),顯示每個(gè)工具的使用,每個(gè)工具OptiPath設(shè)置和時(shí)間節(jié)約。</p><p>  參見(jiàn):章節(jié)30創(chuàng)建一個(gè)圖書(shū)館在建設(shè)Opti

60、Path工具列表</p><p><b>  章節(jié)的步驟:</b></p><p>  一英寸的刀具路徑優(yōu)化</p><p>  通過(guò)樣品的刀具路徑”op_mold MCD使用刀。”:</p><p>  1。在VERICUT,打開(kāi)樣品”op_mold。使用“用戶文件</p><p><b&

61、gt;  ?文件>打開(kāi)</b></p><p>  ?快捷:cgtech_samples</p><p>  ?文件名= op_mold.usr,打開(kāi)</p><p>  如果出現(xiàn)提示,反應(yīng)如下:復(fù)位切模型?復(fù)位/保存更改?沒(méi)有</p><p>  2。使用OptiPath控制參考“OptiPath。OLB”O(jiān)ptiPath

62、庫(kù)文件,并顯示在交互式優(yōu)化切削H13工具鋼在三軸銑床</p><p>  ?OptiPath >控制</p><p>  ?OptiPath庫(kù),瀏覽</p><p><b>  ?快捷=工作目錄</b></p><p>  ?文件名= optipath.olb,打開(kāi)(如果“OptiPath OLB?!安豢衫肅GT

63、ech樣本”op_mold OLB?!保?lt;/p><p>  ?材料= H13工具鋼</p><p><b>  ?機(jī)= 3斧頭磨</b></p><p>  ?OptiPath模式=提示在切割</p><p><b>  ?好</b></p><p>  3。打開(kāi)窗口狀態(tài)和

64、配置也顯示優(yōu)化的進(jìn)給率和切削時(shí)間,以及“工具使用圖”</p><p><b>  ?信息>狀態(tài)</b></p><p><b>  ?配置</b></p><p>  ?確保運(yùn)算時(shí)間和運(yùn)算速度的選擇</p><p>  ?選擇工具的使用圖,時(shí)間間隔= 60(分鐘)</p><

65、;p><b>  ?好</b></p><p>  加工速度場(chǎng)期間顯示編程進(jìn)給速率而運(yùn)算速度字段顯示優(yōu)化的進(jìn)給率。</p><p><b>  4。切割模型</b></p><p><b>  ?活動(dòng)結(jié)束</b></p><p>  5。與現(xiàn)有記錄的第一個(gè)工具OptiPa

66、th優(yōu)化</p><p><b>  在優(yōu)化設(shè)置窗口:</b></p><p><b>  ?選擇現(xiàn)有的</b></p><p>  ?選擇包含“記錄。625d 1.50h有限元”,好的</p><p>  ?優(yōu)化設(shè)置窗口:好的</p><p>  現(xiàn)有OptiPath記錄現(xiàn)

67、在是選擇,工具和過(guò)程仍在繼續(xù)。</p><p>  6。創(chuàng)建一個(gè)新的OptiPath記錄第二工具</p><p>  ?變化記錄描述刀具=。750d 1.5h BEM,硬質(zhì)合金</p><p>  ?變化記錄描述#牙= 4</p><p>  ?清晰的體積去除復(fù)選框</p><p>  ?清除切屑厚度的復(fù)選框</

68、p><p>  ?變化= 25每分鐘進(jìn)給</p><p><b>  ?選擇去除量</b></p><p><b>  ?選擇芯片厚度</b></p><p><b>  ?好</b></p><p>  一個(gè)新的記錄被創(chuàng)建和OptiPath由2號(hào)工具。&l

69、t;/p><p>  7。結(jié)果生成一個(gè)HTML文件</p><p>  ?文件>報(bào)告>創(chuàng)建HTML報(bào)告></p><p>  ?文件名= optipath.htm</p><p><b>  ?保存</b></p><p>  ?滾動(dòng)到文件底部尋找“工具概要”頭。</p>

70、<p>  樣品的結(jié)果與優(yōu)化統(tǒng)計(jì)文件工具綜述:</p><p><b>  關(guān)閉</b></p><p>  Session 32- Build a Kinematics Model of a 3-axis Mill</p><p>  This session shows how to configure a VERICUT M

71、achine file that describes the kinematics of a 3-axis vertical mill, then configure VERICUT to simulate a G-code tool path destined for the NC machine. The 3-axis mill machine is controlled via a Yasnac control and progr

72、ammed using the "tool tip" programming method. </p><p>  3-axis vertical mill to run sample milling tool path "gtooltip.mcd": </p><p>  Session Steps: </p><p>  

73、1. Start from a new Inch User file</p><p>  File > Properties </p><p>  Default Units=Inch, OK </p><p>  File > New Session (創(chuàng)建一新文件)</p><p>  If prompted, respond

74、 as follows: Reset cut model? Yes / Save changes? No</p><p>  2. Display Component axis systems</p><p>  View > Axes </p><p>  Component </p><p><b

75、>  Close </b></p><p>  3. Open the Yasnac MX-3 Control file (機(jī)床控制文件)for mill machines</p><p>  Setup > Control > Open </p><p>  Shortcut=CGTECH_LIBRARY </p>&l

76、t;p>  File Name=yasmx3.ctl, (機(jī)床控制文件)Open </p><p>  The following steps define the components from "Base" to "Tool"</p><p>  The components to be defined on the tool s

77、ide of the machine are: Base > Z > Tool </p><p>  4. Display the Component Tree</p><p>  Model > Component Tree </p><p>  5. Add "Z" to "Base"</p>

78、<p>  Select the Base in the Component Tree </p><p>  With the cursor on Base, Right click to pop up the menu </p><p>  Append > Z Linear </p><p>  6. Add &

79、quot;Tool" to "Z"</p><p>  Select the Z in the Component Tree </p><p>  With the cursor on Z, Right click to pop up the menu </p><p>  Append > Tool

80、 </p><p>  Component Tree after adding "Tool side" components: </p><p>  The following steps define the components from "Base" to "Stock"</p><p>  The

81、components to be defined on the stock side of the machine are: Base Y > X > Fixture > Stock > Design </p><p>  7. Add "Y" to "Base"</p><p>  Select the Base&

82、#160;in the Component Tree </p><p>  With the cursor on Base, Right click to pop up the menu </p><p>  Append > Y Linear </p><p>  8. Add "X" to "Y"</

83、p><p>  Select the Y in the Component Tree </p><p>  With the cursor on Y, Right click to pop up the menu </p><p>  Append > X Linear </p><p>  9. Connec

84、t "Design" to "Stock"</p><p>  Select the Design in the Component Tree </p><p>  With the cursor on Design, right-click to pop up the menu </p><p>

85、;  Component Attributes </p><p>  In the Modeling window, Component Attributes tab: Connect To=Stock </p><p><b>  Apply </b></p><p>  10. Connect stock to Fixture</p&

86、gt;<p>  Select the Stock in the Component Tree </p><p>  In the Modeling window, Component Attributes tab: Connect To=Fixture </p><p><b>  Apply </b></p><

87、;p>  11. Connect Fixture To X axis</p><p>  Select the Fixture in the Component Tree </p><p>  With the cursor on Fixture, Right click to pop up the menu </p><p>&

88、lt;b>  Cut </b></p><p>  With the cursor on X, Right click to pop up the menu </p><p><b>  Paste </b></p><p>  Expand the Tree under the Fixture and t

89、he Stock by pressing the + </p><p>  Components Tree after adding "Stock side" components: (完成了機(jī)床運(yùn)動(dòng)的樹(shù)形結(jié)構(gòu))  </p><p>  12. Close the Component Attributes window and save a &qu

90、ot;3axmill.mch" Machine file</p><p>  Modeling window, Cancel </p><p>  Setup > Machine > Save As </p><p>  Shortcut=Working Directory </p><p>  File Na

91、me=3axmill.mch, Save </p><p>  13. Add a Stock model to be a 4.4 x 3.4 x 1.2  block</p><p>  Model > Model Definition: Model tab </p><p>  Active Component=Stock&#

92、160;(can also be changed by selecting Stock in the Component Tree window) </p><p>  Type=Block </p><p>  Length(X)=4.4, Width(Y)=3.4, Height(Z)=1.2 </p><p><b

93、>  Add </b></p><p><b>  OK </b></p><p><b>  Fit      </b></p><p>  14. Configure to simulate G-Code tool path "gtoolti

94、p.mcd" programmed using the "Tool Tip" programming method</p><p>  Setup > Toolpath </p><p>  Toolpath Type=G-Code Data </p><p>  Tool Change By=Tool Number </p

95、><p><b>  Add </b></p><p>  Shortcut=CGTECH_LIBRARY </p><p>  File Name=gtooltip.mcd, OK </p><p><b>  OK </b></p><p>  Setup >

96、 G-Code > Settings: Settings tab </p><p>  Programming Method=Tool Tip </p><p><b>  OK </b></p><p>  15. Locate the program origin</p><p>  Setup > G-

97、Code > Settings: Tables tab </p><p>  Add/Modify </p><p>  Table Name = Program Zero </p><p>  Select From/To Locations</p><p>  From, Name = Tool</p><p&g

98、t;  To, Name = Stock</p><p>  Offset= 0.2 0.2 1.2 </p><p><b>  Add </b></p><p><b>  Close </b></p><p><b>  OK </b></p><p&

99、gt;  16. Configure to retrieve tool data from the "gtooltip.tls" Tool Library file</p><p>  Setup > Tool Manager </p><p>  In the Tool Manager window: File > Open </p><

100、;p>  Shortcut=CGTECH_LIBRARY </p><p>  File Name=gtooltip.tls, Open </p><p>  File > Close, Yes </p><p>  17. Reset the model to ensure VERICUT is aware of changes to the

101、 machine and control, then open the Status window to monitor the simulation</p><p>  Reset Model  </p><p>  Info > Status </p><p>  Configure </p><p>  Select&#

102、160;Machine Axes </p><p>  Select Tool Tip </p><p><b>  OK </b></p><p>  View > Axes> Machine Origin </p><p>  The status window is configured to

103、 show machine axis and tool tip locations. Notice that the Machine axes are located at 0 0 0. By default VERICUT starts at this position. The machine must be first positioned at a retracted safe position 15.2 inches abov

104、e the machine zero (see graphic above) </p><p>  18. Define Initial Machine Location table</p><p>  Setup > Machine > Settings; Tables tab </p><p>  Add/Modify </p><

105、;p>  Table Name = Initial Machine Location </p><p>  Values (XYZABCUVWABC) = 0 0 15.2 </p><p><b>  Add </b></p><p><b>  Close </b></p><p><

106、;b>  OK </b></p><p>  Reset Model  </p><p>  Info > Status </p><p>  In the Status window, notice that Machine Axes Z value is now 15.2 </p><p> 

107、 Since VERICUT is now configured with the correct stock, tool path/orientation, and tools for simulating the "gtooltip.mcd " G-code tool path file, all that is left is to press "Play". </p><

108、;p>  19. Cut the model</p><p>  View > Axes > Clear All </p><p><b>  Close </b></p><p>  Play to End  </p><p>  20. Save the user File</p&g

109、t;<p>  File > Save As </p><p>  Shortcut=Working Directory </p><p>  File Name=3axmill.usr, Save </p><p>  This session provided experience with configuring the kine

110、matics properties of a Yasnac-controlled 3-axis mill. A sample G-code milling tool path is simulated using tooling retrieved from an existing VERICUT Tool Library file.</p><p>  會(huì)議32 -建立一個(gè)三軸機(jī)運(yùn)動(dòng)學(xué)模型</p>

111、<p>  此次會(huì)議顯示了如何配置一個(gè)VERICUT機(jī)文件,描述了一個(gè)三軸立式磨的運(yùn)動(dòng),然后配置軟件來(lái)模擬一個(gè)G代碼數(shù)控機(jī)床的刀具路徑注定。三軸銑床的控制是通過(guò)一個(gè)yasnac控制和程序使用“工具提示”的編程方法。</p><p>  三軸立式磨運(yùn)行銑削刀具路徑”gtooltip MCD?!保?lt;/p><p>  1。從一個(gè)新的英寸的用戶文件開(kāi)始</p><

112、p><b>  ?文件>屬性</b></p><p>  ?默認(rèn)單位為英寸,好的</p><p>  ?文件>新建章節(jié)(創(chuàng)建一新文件)</p><p>  如果出現(xiàn)提示,反應(yīng)如下:復(fù)位切模型?是的/保存更改?沒(méi)有</p><p><b>  2。顯示組件軸系統(tǒng)</b></p&

113、gt;<p><b>  ?視圖>軸</b></p><p><b>  ?組件</b></p><p><b>  ?關(guān)閉</b></p><p>  3。打開(kāi)yasnac MX-3控制文件(機(jī)床控制文件)磨機(jī)</p><p><b>  ?設(shè)置

114、>控制>打開(kāi)</b></p><p>  ?快捷= cgtech_library</p><p>  ?文件名= yasmx3.ctl,(機(jī)床控制文件)開(kāi)放</p><p>  以下步驟定義組件從“基地”到“工具”</p><p>  在機(jī)床側(cè)定義組件:基地Z >工具></p><p&g

115、t;<b>  4。顯示組件樹(shù)</b></p><p><b>  ?模型>組件樹(shù)</b></p><p>  5。添加“Z”到“基地”</p><p><b>  ?選擇組件樹(shù)中的基</b></p><p>  ?與底座上的光標(biāo),單擊右鍵彈出菜單</p>

116、<p><b>  ?附加> Z線</b></p><p>  6。添加“工具”到“Z”</p><p><b>  ?選擇Z在組件樹(shù)</b></p><p>  ?與Z光標(biāo),單擊右鍵彈出菜單</p><p><b>  ?附加>工具</b></p&

117、gt;<p>  組件樹(shù)加入“工具”后的部件:</p><p>  以下步驟定義組件從“基地”到“樹(shù)”</p><p>  要在機(jī)器的樹(shù)方面定義的組件:基地y > x > > >設(shè)計(jì)夾具的樹(shù)</p><p>  7。加上“Y”到“基地”</p><p><b>  ?選擇組件樹(shù)中的基</b

118、></p><p>  ?與底座上的光標(biāo),單擊右鍵彈出菜單</p><p><b>  ?附加> y的線性</b></p><p>  8。加上“X”到“Y”</p><p><b>  ?選擇Y部件樹(shù)</b></p><p>  ?與Y光標(biāo),單擊右鍵彈出菜單&l

119、t;/p><p><b>  ?附加> X線</b></p><p>  9。將“設(shè)計(jì)”到“樹(shù)”</p><p>  ?選擇組件樹(shù)中的設(shè)計(jì)</p><p>  ?對(duì)設(shè)計(jì)的光標(biāo),單擊右鍵彈出菜單</p><p><b>  ?組件的屬性</b></p><

120、p>  ?在模型窗口,組件的屬性標(biāo)簽:連接=樹(shù)</p><p><b>  ?申請(qǐng)</b></p><p>  10。連接到夾具的樹(shù)</p><p><b>  ?選擇組件樹(shù)中的樹(shù)</b></p><p>  ?在模型窗口,組件的屬性標(biāo)簽:連接=夾具</p><p>&

121、lt;b>  ?申請(qǐng)</b></p><p>  11。連接到X軸夾具</p><p>  ?選擇組件樹(shù)中的夾具</p><p>  ?與夾具上的光標(biāo),單擊右鍵彈出菜單</p><p><b>  ?切</b></p><p>  ?與X光標(biāo),單擊右鍵彈出菜單</p>

122、<p><b>  ?糊</b></p><p>  ?擴(kuò)大樹(shù)下夾具和按+樹(shù)</p><p>  組件樹(shù)加入“樹(shù)”后的部件:</p><p>  12。關(guān)閉組件屬性窗口并保存一個(gè)“3axmill。婦幼保健機(jī)”的文件</p><p><b>  ?建模窗口,取消</b></p>

123、;<p>  ?設(shè)置>機(jī)械>另存為</p><p><b>  ?快捷=工作目錄</b></p><p>  ?文件名= 3axmill.mch,拯救</p><p>  13。添加一個(gè)庫(kù)存模型是一個(gè)4.4×3.4×1.2塊</p><p>  ?模型>模型定義:模型選

124、項(xiàng)卡</p><p>  ?活性成分=樹(shù)(也可以通過(guò)在組件樹(shù)窗口選擇改變庫(kù)存)</p><p><b>  ?類型=塊</b></p><p>  ?長(zhǎng)度(x)= 4.4,寬度(Y)= 3.4,高度(z)= 1.2</p><p><b>  ?添加</b></p><p>

125、<b>  ?好</b></p><p><b>  ?擬合</b></p><p>  14。配置模擬的G代碼的刀具路徑”gtooltip。MCD”使用“工具提示”的編程方法,編程</p><p><b>  ?設(shè)置>路徑</b></p><p>  ?軌跡類型= G代

126、碼數(shù)據(jù)</p><p><b>  ?換刀的刀具號(hào)</b></p><p><b>  ?添加</b></p><p>  ?快捷= cgtech_library</p><p>  ?文件名= gtooltip.mcd,好的</p><p><b>  ?好<

127、;/b></p><p>  ?G代碼>設(shè)置>設(shè)置:設(shè)置標(biāo)簽</p><p>  ?編程方法為工具提示</p><p><b>  ?好</b></p><p><b>  15。確定程序原點(diǎn)</b></p><p>  ?G代碼>設(shè)置>設(shè)置:表

128、格標(biāo)簽</p><p><b>  ?添加/修改</b></p><p><b>  ?表名稱=程序零點(diǎn)</b></p><p><b>  ?選擇從/到位置</b></p><p><b>  ?,名稱=工具</b></p><p&g

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