1. 数控编程这张图的程序怎么编
M43
T1
G0X25Z2
G0X0
Z0
G3X10Z5F0.2
Z-15
G1X18Z25F0.2
Z-32
X21
G1X23Z-33F0.2
Z-40
F0X50Z50
M5
M30
你那歌倒角没有标
暂切算成一个吧!!这个是用法兰科的系统编辑的
广数的编辑方式跟法兰科区别不大!如果是西门子的话
这个图中的圆弧的格式为G03X-Z-CR=F-
这样!我只是给你编了个精车的走刀路线,实际加工产品的时候要有粗车的
粗车用G71然后用精车G70循环
2. 请写个数控手工编程(有图)
好吧 编了 第一个图
G90 G40 G17 G99 G97;
G54;
T1 H1;
S800 M3;
M8;
G0 X0Y0Z50;
X-60Y-60;
Z10;
G41G1Z-5D1F0.3;(切深你没给 我自己设了啊)
Y0;
G2 X0 Y60 R60;
G1X40 Y0;
G2 X0 Y-40 R40;
G1 X-70;
G0 Z100;
G71X0 Y0 Z0;
M9;
M5;
M30;
第二个图:
G90 G40 G17 G99 G90 G97 G21;
G55;
T1 H1;
S800 F0.3 M3;
M8;
G0 X0 Y0 Z50;
X-10 Y40 Z10;
G42 G1 Z-5 D1 F0.3;
G2 X0 Y30 R10;
G1 X6 Y29.394
X54 Y19.596;
G2 X38 Y-16 R20;
G3 X24 Y-18 R10;
G2 X30 Y30 R30;
G3 X10 Y40 R10;
G0 Z100;
M5;
M9;
G71 X0 Y0 Z0;
M30;
第一个图刀具直径自定
第二个图刀具直径不要大于 10mm
纯手打
3. 数控编程这两个图编程
车不会,第二张图你应该是要铣外形吧,如果挖槽的话需要做避空,或者线割,我就按铣外形的方法献丑了:XY分中,Z取顶面为0. 材料铝合金 铣深15mm 刀具:T1 Φ100面铣刀 T2 Φ10粗皮刀 T3 Φ8光刀 T4 Φ6倒角刀
考虑到毛坯残料过多,我多加了几刀
具体程序如下:%
( T1/H=1/D=1/DIA=100. / FACEMILL )
( T2/H=2/D=2/DIA=10. / FLATMILL )
( T3/H=3/D=3/DIA=8. / FLATMILL )
( T4/H=4/D=4/DIA=6. A45./ CHMFMILL )
G17 G21 G40 G80 G49 G90
( FACEMILL T1 D=1 H=1 DIA=100. )
M01
( FACEMILL T1 D=1 H=1 DIA=100. )
M06 T1
T2
G00 G90 G54 X95. Y0. S4500 M03
G43 H1 Z10. M08
Z1.
G01 Z0. F3000.
X40. F1500.
X-40.
X-95.
Z1. F6000.
G00 Z10. M09
M05
G91 G30 Z0.
M01
( FLATMILL T2 D=2 H=2 DIA=10. )
M06 T2
T3
G00 G90 G54 X-50. Y-28.5 S5000 M03
G43 H2 Z10. M08
Z1.
G01 Z-2.5 F3000.
X-40. F2500.
X40.
X50.
Z-5. F3000.
X40. F2500.
X-40.
X-50.
Z-7.5 F3000.
X-40. F2500.
X40.
X50.
Z-10. F3000.
X40. F2500.
X-40.
X-50.
Z-12.5 F3000.
X-40. F2500.
X40.
X50.
Z-15. F3000.
X40. F2500.
X-40.
X-50.
Z-14. F6000.
G00 Z10.
Y-36.
Z1.
G01 Z-2.5 F3000.
X-40. F2500.
X40.
X50.
Z-5. F3000.
X40. F2500.
X-40.
X-50.
Z-7.5 F3000.
X-40. F2500.
X40.
X50.
Z-10. F3000.
X40. F2500.
X-40.
X-50.
Z-12.5 F3000.
X-40. F2500.
X40.
X50.
Z-15. F3000.
X40. F2500.
X-40.
X-50.
Z-14. F6000.
G00 Z10.
X-42. Y-50.
Z1.
G01 Z-2.5 F3000.
Y-40. F2500.
Y40.
Y50.
Z-5. F3000.
Y40. F2500.
Y-40.
Y-50.
Z-7.5 F3000.
Y-40. F2500.
Y40.
Y50.
Z-10. F3000.
Y40. F2500.
Y-40.
Y-50.
Z-12.5 F3000.
Y-40. F2500.
Y40.
Y50.
Z-15. F3000.
Y40. F2500.
Y-40.
Y-50.
Z-14. F6000.
G00 Z10.
X42. Y50.
Z1.
G01 Z-2.5 F3000.
Y40. F2500.
Y-40.
Y-50.
Z-5. F3000.
Y-40. F2500.
Y40.
Y50.
Z-7.5 F3000.
Y40. F2500.
Y-40.
Y-50.
Z-10. F3000.
Y-40. F2500.
Y40.
Y50.
Z-12.5 F3000.
Y40. F2500.
Y-40.
Y-50.
Z-15. F3000.
Y-40. F2500.
Y40.
Y50.
Z-14. F6000.
G00 Z10.
X-50. Y37.
Z1.
G01 Z-2.5 F3000.
X-40. F2500.
X40.
X50.
Z-5. F3000.
X40. F2500.
X-40.
X-50.
Z-7.5 F3000.
X-40. F2500.
X40.
X50.
Z-10. F3000.
X40. F2500.
X-40.
X-50.
Z-12.5 F3000.
X-40. F2500.
X40.
X50.
Z-15. F3000.
X40. F2500.
X-40.
X-50.
Z-14. F6000.
G00 Z10.
X0. Y-42.7
Z1.
G01 Z-1.875 F3000.
Y-32.7 F2500.
X-15.
G02 X-47.7 Y0. I0. J32.7
X-17.374 Y32.614 I32.7 J0.
X-4.704 Y42.7 I12.669 J-2.914
G01 X15.
G02 X34.659 Y31.35 I0. J-22.7
G01 X43.319 Y16.35
G02 X47.7 Y0. I-28.319 J-16.35
X15. Y-32.7 I-32.7 J0.
G01 X0.
X-0.5
Y-42.7
X0. Y-35.2
Y-25.2
X-15.
G02 X-40.2 Y0. I0. J25.2
X-15. Y25.2 I25.2 J0.
G03 X-10.202 Y29.86 I0. J4.8
G02 X-4.704 Y35.2 I5.498 J-.16
G01 X15.
G02 X28.164 Y27.6 I0. J-15.2
G01 X36.824 Y12.6
G02 X40.2 Y0. I-21.824 J-12.6
X15. Y-25.2 I-25.2 J0.
G01 X0.
X-0.5
Y-35.2
X0. Y-42.7
Z-3.75 F3000.
Y-32.7 F2500.
X-15.
G02 X-47.7 Y0. I0. J32.7
X-17.374 Y32.614 I32.7 J0.
X-4.704 Y42.7 I12.669 J-2.914
G01 X15.
G02 X34.659 Y31.35 I0. J-22.7
G01 X43.319 Y16.35
G02 X47.7 Y0. I-28.319 J-16.35
X15. Y-32.7 I-32.7 J0.
G01 X0.
X-0.5
Y-42.7
X0. Y-35.2
Y-25.2
X-15.
G02 X-40.2 Y0. I0. J25.2
X-15. Y25.2 I25.2 J0.
G03 X-10.202 Y29.86 I0. J4.8
G02 X-4.704 Y35.2 I5.498 J-.16
G01 X15.
G02 X28.164 Y27.6 I0. J-15.2
G01 X36.824 Y12.6
G02 X40.2 Y0. I-21.824 J-12.6
X15. Y-25.2 I-25.2 J0.
G01 X0.
X-0.5
Y-35.2
X0. Y-42.7
Z-5.625 F3000.
Y-32.7 F2500.
X-15.
G02 X-47.7 Y0. I0. J32.7
X-17.374 Y32.614 I32.7 J0.
X-4.704 Y42.7 I12.669 J-2.914
G01 X15.
G02 X34.659 Y31.35 I0. J-22.7
G01 X43.319 Y16.35
G02 X47.7 Y0. I-28.319 J-16.35
X15. Y-32.7 I-32.7 J0.
G01 X0.
X-0.5
Y-42.7
X0. Y-35.2
Y-25.2
X-15.
G02 X-40.2 Y0. I0. J25.2
X-15. Y25.2 I25.2 J0.
G03 X-10.202 Y29.86 I0. J4.8
G02 X-4.704 Y35.2 I5.498 J-.16
G01 X15.
G02 X28.164 Y27.6 I0. J-15.2
G01 X36.824 Y12.6
G02 X40.2 Y0. I-21.824 J-12.6
X15. Y-25.2 I-25.2 J0.
G01 X0.
X-0.5
Y-35.2
X0. Y-42.7
Z-7.5 F3000.
Y-32.7 F2500.
X-15.
G02 X-47.7 Y0. I0. J32.7
X-17.374 Y32.614 I32.7 J0.
X-4.704 Y42.7 I12.669 J-2.914
G01 X15.
G02 X34.659 Y31.35 I0. J-22.7
G01 X43.319 Y16.35
G02 X47.7 Y0. I-28.319 J-16.35
X15. Y-32.7 I-32.7 J0.
G01 X0.
X-0.5
Y-42.7
X0. Y-35.2
Y-25.2
X-15.
G02 X-40.2 Y0. I0. J25.2
X-15. Y25.2 I25.2 J0.
G03 X-10.202 Y29.86 I0. J4.8
G02 X-4.704 Y35.2 I5.498 J-.16
G01 X15.
G02 X28.164 Y27.6 I0. J-15.2
G01 X36.824 Y12.6
G02 X40.2 Y0. I-21.824 J-12.6
X15. Y-25.2 I-25.2 J0.
G01 X0.
X-0.5
Y-35.2
X0. Y-42.7
Z-9.375 F3000.
Y-32.7 F2500.
X-15.
G02 X-47.7 Y0. I0. J32.7
X-17.374 Y32.614 I32.7 J0.
X-4.704 Y42.7 I12.669 J-2.914
G01 X15.
G02 X34.659 Y31.35 I0. J-22.7
G01 X43.319 Y16.35
G02 X47.7 Y0. I-28.319 J-16.35
X15. Y-32.7 I-32.7 J0.
G01 X0.
X-0.5
Y-42.7
X0. Y-35.2
Y-25.2
X-15.
G02 X-40.2 Y0. I0. J25.2
X-15. Y25.2 I25.2 J0.
G03 X-10.202 Y29.86 I0. J4.8
G02 X-4.704 Y35.2 I5.498 J-.16
G01 X15.
G02 X28.164 Y27.6 I0. J-15.2
G01 X36.824 Y12.6
G02 X40.2 Y0. I-21.824 J-12.6
X15. Y-25.2 I-25.2 J0.
G01 X0.
X-0.5
Y-35.2
X0. Y-42.7
Z-11.25 F3000.
Y-32.7 F2500.
X-15.
G02 X-47.7 Y0. I0. J32.7
X-17.374 Y32.614 I32.7 J0.
X-4.704 Y42.7 I12.669 J-2.914
G01 X15.
G02 X34.659 Y31.35 I0. J-22.7
G01 X43.319 Y16.35
G02 X47.7 Y0. I-28.319 J-16.35
X15. Y-32.7 I-32.7 J0.
G01 X0.
X-0.5
Y-42.7
X0. Y-35.2
Y-25.2
X-15.
G02 X-40.2 Y0. I0. J25.2
X-15. Y25.2 I25.2 J0.
G03 X-10.202 Y29.86 I0. J4.8
G02 X-4.704 Y35.2 I5.498 J-.16
G01 X15.
G02 X28.164 Y27.6 I0. J-15.2
G01 X36.824 Y12.6
G02 X40.2 Y0. I-21.824 J-12.6
X15. Y-25.2 I-25.2 J0.
G01 X0.
X-0.5
Y-35.2
X0. Y-42.7
Z-13.125 F3000.
Y-32.7 F2500.
X-15.
G02 X-47.7 Y0. I0. J32.7
X-17.374 Y32.614 I32.7 J0.
X-4.704 Y42.7 I12.669 J-2.914
G01 X15.
G02 X34.659 Y31.35 I0. J-22.7
G01 X43.319 Y16.35
G02 X47.7 Y0. I-28.319 J-16.35
X15. Y-32.7 I-32.7 J0.
G01 X0.
X-0.5
Y-42.7
X0. Y-35.2
Y-25.2
X-15.
G02 X-40.2 Y0. I0. J25.2
X-15. Y25.2 I25.2 J0.
G03 X-10.202 Y29.86 I0. J4.8
G02 X-4.704 Y35.2 I5.498 J-.16
G01 X15.
G02 X28.164 Y27.6 I0. J-15.2
G01 X36.824 Y12.6
G02 X40.2 Y0. I-21.824 J-12.6
X15. Y-25.2 I-25.2 J0.
G01 X0.
X-0.5
Y-35.2
X0. Y-42.7
Z-15. F3000.
Y-32.7 F2500.
X-15.
G02 X-47.7 Y0. I0. J32.7
X-17.374 Y32.614 I32.7 J0.
X-4.704 Y42.7 I12.669 J-2.914
G01 X15.
G02 X34.659 Y31.35 I0. J-22.7
G01 X43.319 Y16.35
G02 X47.7 Y0. I-28.319 J-16.35
X15. Y-32.7 I-32.7 J0.
G01 X0.
X-0.5
Y-42.7
X0. Y-35.2
Y-25.2
X-15.
G02 X-40.2 Y0. I0. J25.2
X-15. Y25.2 I25.2 J0.
G03 X-10.202 Y29.86 I0. J4.8
G02 X-4.704 Y35.2 I5.498 J-.16
G01 X15.
G02 X28.164 Y27.6 I0. J-15.2
G01 X36.824 Y12.6
G02 X40.2 Y0. I-21.824 J-12.6
X15. Y-25.2 I-25.2 J0.
G01 X0.
X-0.5
Y-35.2
Z-14. F6000.
G00 Z10. M09
M05
G91 G30 Z0.
M01
( FLATMILL T3 D=3 H=3 DIA=8. )
M06 T3
T4
G00 G90 G54 X4.464 Y-26.268 S6000 M03
G43 H3 Z10. M08
Z1.
G01 Z-15. F3000.
G41 D3 X1. Y-24.268 F1500.
G03 X0. Y-24. I-1. J-1.732
G01 X-15.
G02 X-39. Y0. I0. J24.
X-15. Y24. I24. J0.
G03 X-9.003 Y29.825 I0. J6.
G02 X-4.704 Y34. I4.298 J-.125
G01 X15.
G02 X27.124 Y27. I0. J-14.
G01 X35.785 Y12.
G02 X39. Y0. I-20.785 J-12.
X15. Y-24. I-24. J0.
G01 X0.
X-1.
G03 X-2. Y-24.268 I0. J-2.
G01 G40 X-5.464 Y-26.268
X4.464
G41 D3 X1. Y-24.268
G03 X0. Y-24. I-1. J-1.732
G01 X-15.
G02 X-39. Y0. I0. J24.
X-15. Y24. I24. J0.
G03 X-9.003 Y29.825 I0. J6.
G02 X-4.704 Y34. I4.298 J-.125
G01 X15.
G02 X27.124 Y27. I0. J-14.
G01 X35.785 Y12.
G02 X39. Y0. I-20.785 J-12.
X15. Y-24. I-24. J0.
G01 X0.
X-1.
G03 X-2. Y-24.268 I0. J-2.
G01 G40 X-5.464 Y-26.268
Z-14. F6000.
G00 Z10. M09
M05
G91 G30 Z0.
M01
( CHMFMILL T4 D=4 H=4 DIA=6. )
M06 T4
T1
G00 G90 G54 X0. Y-22.1 S6000 M03
G43 H4 Z10. M08
Z1.
G01 Z-1.3 F3000.
Y-21.1 F1500.
X-15.
G02 X-36.1 Y0. I0. J21.1
X-15. Y21.1 I21.1 J0.
G03 X-6.104 Y29.741 I0. J8.9
G02 X-4.704 Y31.1 I1.399 J-.041
G01 X15.
G02 X24.613 Y25.55 I0. J-11.1
G01 X33.273 Y10.55
G02 X36.1 Y0. I-18.273 J-10.55
X15. Y-21.1 I-21.1 J0.
G01 X0.
X-1.
Y-22.1
Z-0.3 F6000.
G00 Z10. M09
M05
G91 G30 Z0.
G91 G28 Y0.
M30
%
4. 数控铣床编程图及代码
数控铣床编程图及代码如下:
1、准备功能G代码用来规定刀具和工件的相对运动轨迹、机床坐标系、坐标平面、刀具补偿、坐标偏置等多种加工操作。
G00 快速点定位、G01 直线插补、G02 顺时针圆弧插补、G03 逆时针圆弧插补、G04 暂停
G05.1 预读处理控制、G07.1 圆柱插补、G08 预读处理控制、G09 准确停止、G10 可编程数据输入。
G11 可编程数据输入、G15 极坐标取消、G16 极坐标指令、G17 选择XY平面、G18 选择ZX平面、G19 选择YZ平面、G20 英寸输入等等。
2、辅助功能M代码用于指令数控机床辅助装置的接同和关断,如主轴转/停、切削液开/关,卡盘夹紧/松开、刀具更换等动作。
M00 程序暂停、M01 程序选择停止、M02 程序结束、M03 主轴正转、M04 主轴反转 、M05 主轴停止、M06 换刀、M08 切削液开、M09 切削液关、M98 调用子程序等等。
5. 求下图的数控编程
以Fanuc 0-TC为例,宏程序辅助编程
G28U0W0;
G40T0101;
G50S2400;
G96S220M3;
#100=50.;
N1 G00Z5.X54.M8;
#100=#100-2;
X(0+#100);
G42G01Z0F0.2;
G03X(20.+#100)Z-10.R10.;
G01Z-16.4;
G03X(36+#100)Z-48.65R22.;
G01Z-75.;
G02X(50.+#100)R7.;
G01Z-95.;
G40G00X(54.+#100);
IF(#100GT0)GOTO1;
G28U0W0;
M30;
6. 数控车床编程实例带图的
G99(每转进给)
G0X200Z100(快速移动到安全位)
T0101(换1号外圆刀,执行1号刀补)
M03S500(开启主轴正转,速度500R/MIN)
G0X112Z2(快速接近工件毛坯)
G71U3R0.5F0.2(G71轴向精车循环加工,U3每次吃刀3MM单边,退刀0.5MM,速度0.2MM/R)
G71P1Q2U0W0(P1程序开始阶段,Q2程序结束阶段,U0——X轴不留精加工余量,W0——Z轴不留精加工余量)
N1G0X30(循环开始以后的第一阶段)
G1Z-50
X90
Z-70
X110
N2Z-140(循环结束的最后一阶段)
G0X200Z100(快速移动至安全换刀位)
T0202(换2号刀螺牙刀,执行2号刀补)
G0X200Z100S300(快速移动至安全位,转速改为300R/MIN)
X30Z4(快速定位至螺牙循环开始位置)
G92X29.8Z-48F1.5(车螺牙,X轴牙底径29.8,Z牙长48MM,牙距1.5MM)
X29.6
X29.4
X29.2
X29
X28.8
X28.6
X28.4
X28.3
X28.2
X28.1
X28.05
G0X200Z100(快速移动至安全换刀位置)
T0303(换3号割刀,执行3号刀补)
G0X200Z100S200(快速定位,转速200R/MIN)
X110Z-84(移动至割槽循环开始位置)
G75R0.5F0.08(G75割槽循环,R——每次退刀0.5MM,F——每转进给0.08MM)
G75X60Z-120P6000Q4000(槽底径60MM,Z轴最大深度120MM,P——每次切入6MM,Z轴移动量)
M09(关水泵)
G0X200Z100M05(快速移动至换刀安全位,关闭主轴)
T0101(换1号刀)
M30(程序结束)
7. 数控编程题,编写下图所示的二维外形轮廓零件的数控铣削代码,并画出走刀路线简图。刀具为Ф10立铣刀。
程序按FANUC格式
刀具钨钢D10刀号T1刀补D1
材料 45#钢
切削深度假设为5个厚 一刀完成
G54 X0.Y0.工件中心,Z0工件表面
用半径补偿,刀路与工件轮廓重合,简化编程。
%
G5.1 Q1(开启轮廓铣功能,保证加工精度)
G91 G28 Z0.(向上返回Z参考点,保证安全)
T1 M6(换1号刀)
G40 G80 G17 G49(程序头,具体代码功能参考说明书)
G90 G54 G0 X40. Y100.(快移到下刀点)
M3 S1294(切削速度40米)
G0 G43 Z100 H1(刀具补偿至安全高度)
Z0.M8(刀尖至工件表面持平,利于操作者检视,开冷却液)
G1 Z-5. F400(Z轴插补到Z-5.切削速度400毫米/每分钟)
G41 X40. Y40. D1(刀具半径补偿,地址D1,至切削起点)
G1 Y-30.(至N20处为零件外形)
X20.Y-40.
X-20.
G3 Y-20. R20.
G1 Y40.
X-20.
G3 X20. R180.
N20 X30.
G0 Z100.
M5
M9
G91 G28 Z0.
M30(程序结束)
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8. 数控车床简单编程(见图)
假设毛坯是φ30的圆钢,法那科系统的数控车床,建立如图工件坐标系
程序编写如下:
M03S500;
T0101;
G00X32 Z0 M08;
G01X28Z0F1;
Z-37;
G00X30Z0;
G01X24;
Z-32;
G00X30Z0;
G01X20;
G00X30Z0
G01X16;
Z-14;
G00X30Z0;
G01X14;
Z-14;
X20Z-22;
G00X30Z0;
X0Z0;
G03X14Z-7R7;
G00X32Z0;
M09;
M05;
M30;
9. 数控图片编程大全
数控车床编程基础简介1.公制(米制)与英制编程
数控车床使用的长度单位量纲有公制(米制)和英制两种,由专用的指令代码设定长度单位量纲,如FANUC-0TC系统用G20表示使用英制单位量纲,G21表示使用公制(米制)单位量纲。系统通电开机后,机床自动处于公制尺寸状态。
2.直径编程和半径编程
(1)直径编程:采用直径编程时,数控程序中X轴的坐标值即为零件图上的直径值。
(2)半径编程:采用半径编程,数控程序中X轴的坐标值为零件图上的半径值。考虑使用上的方便,一般采用直径编程。CNC系统缺省的编程方式为直径编程。
a)直径编程
b)半径编程
图1 数控车削编程分类
a) A:(30.0,80.0),B:(40.0,60.0)
b) A:(15.0,80.0),B:(20.0,60.0)
3.车床的前置刀架与后置刀架
数控车床刀架布置有两种形式:如图2所示
图2 车床的前置刀架与后置刀架
(1)前置刀架。前置刀架位于Z轴的前面,与传统卧式车床刀架的布置形式一样,刀架导轨为水平导轨,使用四工位电动刀架;
(2)后置刀架。后置刀架位于Z轴的后面,刀架的导轨位置与正平面倾斜,这样的结构形式便于观察刀具的切削过程、切屑容易排除、后置空间大,可以设计更多工位的刀架,一般多功能的数控车床都设计为后置刀架。
4.刀尖半径补偿
在数控车削编程中为了编程方便,把刀尖看作为一个尖点,数控程序中刀具的运动轨迹即为该假想尖点的运动轨迹。(如图3所示)
图3 假想刀尖与刀尖半径
数控系统中引入了刀尖半径补偿: 在数控程序编写完成后,将已知刀尖半径值输入刀具补偿表中,程序运行时数控系统会自动根据对应刀尖半径值对刀具的实际运动轨迹进行补偿。
数控加工中一般都使用可转位刀片,每种刀片的刀尖圆角半径是一定的,选定了刀片的型号,对应刀片的刀尖圆角半径值即可确定。
刀尖圆弧半径补偿指令:
指令格式 G41(G42、G43)G01(G00)X(U)_Z(W)
指令功能 G41为刀尖圆弧半径左补偿;
G42为刀尖圆弧半径右补偿;
G40是取消刀尖圆弧半径补偿。
指令说明 顺着刀具运动方向看,刀具在工件的左边为刀尖圆弧半径左补偿;刀具在工件的右边为刀尖圆弧半径右补偿。只有通过刀具的直线运动才能建立和取消刀尖圆弧半径补偿。
5.数控机床的初始状态
初始状态: 指数控机床通电后具有的状态,也称为数控系统内部默认的状态,一般设定绝对坐标方式编程、使用米制长度单位量纲、取消刀具补偿、主轴和切削液泵停止工作等状态作为数控机床的初始状态。 不过数控编程是最重要的。 目前国内这内技术人才。真正重要的不多。不过这个学会。很有用的。 然后编程学会。把CAD精通下。 因为CAD画图出来。它精确之后。 你数控编程才好。
10. 求此图的数控编程 10分全给
10 O0000
(PROGRAM NAME - LATHE DEFAULT MM)
(DATE=DD-MM-YY - 02-01-15 TIME=HH:MM - 17:01)
(MCX FILE - D:MY DOCUMENTSMY MCAMX6MCX .0.MCX-6)
(NC FILE - D:MY DOCUMENTSMY MCAMX6LATHENCLATHE DEFAULT MM.NC)
(MATERIAL - ALUMINUM MM - 2024)
N20 G21
(TOOL - 1 OFFSET - 1粗车外圆单边留0.4)
(OD ROUGH RIGHT - 80 DEG. INSERT - CNMG 12 04 08)
N30 G0 T0101
N40 G18
N50 G97 S1786 M03
N60 G0 G54 X49. Z.2
N70 G50 S3600
N80 G96 S275
N90 G99 G1 X-1.6 F.25
N100 G0 Z2.2
N110 X39.118
N120 Z4.5
N130 G1 Z2.5
N140 Z-47.874
N150 X42.373 Z-50.153
N160 G18 G3 X42.82 Z-50.85 I-.976 K-.697
N170 G1 Z-57.85
N180 X45.648 Z-56.436
N190 G0 Z4.5
N200 X35.417
N210 G1 Z2.5
N220 Z-45.283
N230 X39.518 Z-48.154
N240 X42.347 Z-46.74
N250 G0 Z4.5
N260 X31.715
N270 G1 Z2.5
N280 Z-37.3
N290 X32.117 Z-37.501
N300 G3 X32.82 Z-38.35 I-.848 K-.849
N310 G1 Z-43.465
N320 X35.817 Z-45.563
N330 X38.645 Z-44.149
N340 G0 Z4.5
N350 X28.013
N360 G1 Z2.5
N370 Z-18.91
N380 X30.097 Z-19.951
N390 G3 X30.8 Z-20.8 I-.849 K-.849
N400 G1 Z-33.35
N410 Z-36.868
N420 G3 X31.117 Z-37.002 I-.69 K-.982
N430 G1 X32.115 Z-37.5
N440 X34.943 Z-36.086
N450 G0 Z4.5
N460 X24.312
N470 G1 Z2.5
N480 Z-12.084
N490 G3 X24.785 Z-12.8 I-.963 K-.716
N500 G1 Z-17.616
N510 G3 X26.097 Z-17.951 I-.193 K-1.184
N520 G1 X28.413 Z-19.11
N530 X31.242 Z-17.695
N540 G0 Z4.5
N550 X20.61
N560 G1 Z2.5
N570 Z-9.982
N580 G2 X23.877 Z-11.86 I5.861 K3.448
N590 G3 X24.712 Z-12.506 I-.746 K-.94
N600 G1 X27.54 Z-11.091
N610 G0 Z4.5
N620 X16.908
N630 G1 Z2.5
N640 Z-2.509
N650 G3 X18.8 Z-5.8 I-5.254 K-3.291
N660 G1 Z-7.211
N670 G2 X21.01 Z-10.301 I6.766 K.676
N680 G1 X23.838 Z-8.887
N690 G0 Z4.5
N700 X13.207
N710 G1 Z2.5
N720 Z-.618
N730 G3 X17.308 Z-2.852 I-3.404 K-5.183
N740 G1 X20.137 Z-1.438
N750 G28 U0. V0. W0. M05
N760 T0100
N770 M01
(TOOL - 41 OFFSET - 41粗精车4*2退刀槽 3毫米宽割刀)
(OD GROOVE CENTER - NARROW INSERT - N151.2-185-20-5G)
N780 G0 T4141
N790 G18
N800 G97 S2745 M03
N810 G0 G54 X35.02 Z-36.85
N820 G50 S3600
N830 G96 S302
N840 G1 X26.8 F.05
N850 G0 X35.02
N860 Z-36.25
N870 G1 X26.8 F.1
N880 X26.92 Z-36.31
N890 G0 X35.02
N900 G97 S500
N910 Z-36.05
N920 X33.
N930 G1 X29. F.05
N940 X26.8
N950 G18 G2 X26. Z-36.45 K-.4
N960 G1 Z-36.55
N970 X26.3 Z-36.4
N980 G0 X31.02
N990 G18
N1000 Z-35.05
N1010 G1 Z-37.05
N1020 X26.8
N1030 G18 G3 X26. Z-36.65 K.4
N1040 G1 Z-36.55
N1050 G0 X29.5
N1060 X33.4
N1070 G28 U0. V0. W0. M05
N1080 T4100
N1090 M01
(TOOL - 12 OFFSET - 12试精车外圆 单边留0.2 测量尺寸)
(OD RIGHT 55 DEG INSERT - DNMG 15 06 08)
N1100 G0 T1212
N1110 G18
N1120 G97 S3600 M03
N1130 G0 G54 X6.4 Z2.2
N1140 G50 S3600
N1150 G96 S550
N1160 G1 Z.2 F.5
N1170 G18 G3 X18.4 Z-5.8 K-6.
N1180 G1 Z-7.221
N1190 G2 X23.628 Z-12.017 I6.966 K.687
N1200 G3 X24.385 Z-12.8 I-.621 K-.783
N1210 G1 Z-17.8
N1220 X24.4
N1230 G3 X25.814 Z-18.093 K-1.
N1240 G1 X29.814 Z-20.093
N1250 G3 X30.4 Z-20.8 I-.707 K-.707
N1260 G1 Z-33.35
N1270 Z-36.978
N1280 G3 X30.834 Z-37.143 I-.49 K-.872
N1290 G1 X31.834 Z-37.643
N1300 G3 X32.42 Z-38.35 I-.707 K-.707
N1310 G1 Z-43.53
N1320 X42.047 Z-50.269
N1330 G3 X42.42 Z-50.85 I-.813 K-.581
N1340 G1 Z-57.05
N1350 X45.248 Z-55.636
N1360 G0 X300
N1370 Z200.
N1380 M01
(TOOL - 12 OFFSET - 12精车外圆)
(OD RIGHT 55 DEG INSERT - DNMG 15 06 08)
N1390 G0 T1212
N1400 G18
N1410 G97 S3600 M03
N1420 G0 G54 X6.4 Z2.2
N1430 G50 S3600
N1440 G96 S550
N1450 G18
N1460 G0 Z2.
N1470 X6.4
N1480 G1 Z0.
N1490 G18 G3 X18. Z-5.8 K-5.8
N1500 G1 Z-7.23
N1510 G2 X23.38 Z-12.174 I7.166 K.697
N1520 G3 X23.985 Z-12.8 I-.497 K-.627
N1530 G1 Z-18.
N1540 X24.4
N1550 G3 X25.531 Z-18.235 K-.8
N1560 G1 X29.531 Z-20.234
N1570 G3 X30. Z-20.8 I-.566 K-.566
N1580 G1 Z-33.35
N1590 Z-37.104
N1600 G3 X30.551 Z-37.285 I-.29 K-.745
N1610 G1 X31.551 Z-37.784
N1620 G3 X32.02 Z-38.35 I-.565 K-.566
N1630 G1 Z-43.594
N1640 X41.722 Z-50.385
N1650 G3 X42.02 Z-50.85 I-.651 K-.465
N1660 G1 Z-57.05
N1670 X44.848 Z-55.636
N1680 G28 U0. V0. W0. M05
N1690 T1200
N1700 M01
(TOOL - 94 OFFSET - 94车螺纹. 若系统不支持《E》为螺距可更改《F》或《K》)
(OD THREAD RIGHT- SMALL INSERT - R166.0G-16MM01-100)
N1710 G0 T9494
N1720 G18
N1730 M05
N1740 G0 G54 X34. Z.636
N1750 X28.596
N1760 G32 Z-34. E2.
N1770 G0 X34.
N1780 Z.426
N1790 X27.835
N1800 G32 Z-34. E2.
N1810 G0 X34.
N1820 Z.262
N1830 X27.244
N1840 G32 Z-34. E2.
N1850 G0 X34.
N1860 Z.123
N1870 X26.743
N1880 G32 Z-34. E2.
N1890 G0 X34.
N1900 Z0.
N1910 X26.3
N1920 G32 Z-34. E2.
N1930 G0 X34.
N1940 Z0.
N1950 X26.3
N1960 G32 Z-34. E2.
N1970 G0 X34.
N1980 Z.636
N1990 G28 U0. V0. W0.
N2000 T9400
N2010 M01
(TOOL - 1 OFFSET - 1精车端面)
(OD ROUGH RIGHT - 80 DEG. INSERT - CNMG 12 04 08)
N2020 G0 T0101
N2030 G18
N2040 G97 S3600 M03
N2050 G0 G54 X12.045 Z0.
N2060 G50 S3600
N2070 G96 S275
N2080 G1 X-1.6 F.25
N2090 G0 Z2.
N2100 G28 U0. V0. W0. M05
N2110 T0100
N2120 M30
%