数控铣设计图案以及编程(数控铣床编程创意图案)
数控铣削简单图案编程
数控铣削简单图案编程:
G54G0Z50M3S800
X0Y0X-100Y-110Z5
G1Z-35F200
G41Y-100D1
G40X0Y0X0Y-110Z5
G1Z-25G41Y-100D1Y0
G2I100J0
G1Y110Z5
D1X50X100Y0X50Y-86.603X-50X-100Y0X-42.265Y100Z5
G0Z50
G40X0Y0X-61.237Y-110Z5
G1Z-10G41Y-100D1Y61.237
G40X0Y0M5M30
含义
随着数控技术的发展,先进的数控系统不仅向用户编程提供了一般的准备功能和辅助功能,而且为编程提供了扩展数控功能的手段。FANUC6M数控系统的参数编程,应用灵活,形式自由,具备计算机高级语言的表达式、逻辑运算及类似的程序流程,使加工程序简练易懂,实现普通编程难以实现的功能。
以上内容参考:百度百科-数控编程
数控铣床简单图案编程
G54G0Z50M3S800
X0Y0X-100Y-110Z5
G1Z-35F200
G41Y-100D1
Y100X100Y-100X-110Z5
G0Z50
G40X0Y0X0Y-110Z5
G1Z-25G41Y-100D1Y0
G2I100J0
G1Y110Z5
G0Z50
G40X0Y0X-110Y86.603Z5
G1Z-10
G41X-100
D1X50X100Y0X50Y-86.603X-50X-100Y0X-42.265Y100Z5
G0Z50
G40X0Y0X-86.603Y-110Z5
G1Z-15G41Y-100D1Y0
G2I86.603J0
G1Y110Z5
G0Z50
G40X0Y0X-61.237Y-110Z5
G1Z-10G41Y-100D1Y61.237
G40X0Y0M5M30
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。
数控铣床编程加工一个图案
这是一副一箭穿心的图案!!!
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N0020 G55 G90X42.87 Y-1.
N35 S3000 M03
N40 G0 G43 Z12. H1
N50 G1 Z12.1200.
N55 G3 X42.18 Y.47 I-90.578 J-41.627
N60 G1 X42.18 Y.47 Z12.
N65 Z12.
N70 G0 X38.58 Y-40.43
N75 G1 Z0. F1200.
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N85 X39.414 Y-41.578
N90 X39.875 Y-42.291
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N150 X49.82 Y-55.855
N155 X50.652 Y-56.502
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N525 X33.589 Y69.854
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N685 X-3.76 Y-41.12
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N905 X34.875 Y-52.327
N910 X35.44 Y-51.303
N915 X35.983 Y-50.174
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N925 X37.003 Y-47.513
N930 X37.477 Y-45.925
N935 X37.921 Y-44.117
N940 X38.329 Y-42.044
N945 X38.688 Y-39.661
N950 X38.989 Y-36.935
N955 X39.222 Y-33.852
N960 X39.388 Y-30.442
N965 X39.503 Y-26.764
N970 X39.56 Y-22.856
N975 X39.533 Y-18.594
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N985 X39.071 Y-9.13
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N1020 X31.95 Y24.417
N1025 X30.122 Y29.499
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N1035 X25.854 Y39.68
N1040 X23.562 Y44.49
N1045 X21.328 Y48.863
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N1070 X11.885 Y63.649
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N1155 X-18.138 Y65.932
N1160 X-19.9 Y63.943
N1165 X-21.693 Y61.737
N1170 X-23.546 Y59.249
N1175 X-25.49 Y56.406
N1180 X-27.544 Y53.145
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N1195 X-34.308 Y40.864
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N1205 X-38.186 Y32.498
N1210 X-39.742 Y28.562
N1215 X-41.105 Y24.659
N1220 X-42.356 Y20.598
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N1580 Z12.
N1585 G0 X-104.568 Y-10.44
N1590 G1 Z0. F1200.
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N1610 G0 X110.648 Y-7.18
N1615 G1 Z0. F1200.
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N1635 X110.648 Y-7.18
N1640 Z12.
N1645 G0 X121.095 Y0.
N1650 G1 Z0. F1200.
N1655 X-115.035
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N1665 X-93.838
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N1675 X-93.838 Y-10.44
N1680 X-124.258
N1685 X-115.035 Y0.
N1690 Z12.
N1695 M30
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数控铣床铣六角怎么编程和对刀?
数控铣床铣六角的编程和对刀步骤如下:
编程:先确定六角的切削方向和角度,并计算出刀具切入和切出点的坐标位置。在程序中编写刀补和补偿程序,确保六角的加工精度和表面质量。
对刀:在铣削六角之前,需要对刀。首先安装合适的铣刀,并安装测量仪器。然后将刀具移动到工件表面的一个确定位置,使用测量仪器测量刀具到工件表面的距离,调整刀具高度,使其与工件表面平行。最后进行刀具补偿。
具体操作步骤如下:
安装合适的铣刀并夹紧。
将刀具移动到工件表面,离表面约1mm左右。
手动调整刀具高度,使其与工件表面平行。
安装刀具测量仪器,测量刀具到工件表面的距离。
根据测量结果进行刀具高度的微调,以确保刀具与工件表面平行。
进行刀具补偿,根据刀具直径、长度等参数设置相应的补偿值,保证加工精度和表面质量。
完成对刀后,进行六角的铣削加工。