The Cutter Radius Compensation for Computer Numerical Control Machine
碩士 === 國立交通大學 === 機械工程系所 === 92 === The main reference of this thesis is Fanuc machine manual. First of all, I studied the basic program commands in the manual, and then investigated the commands of compensation in depth. The purpose of this research is to derive the cutter radius compensation...
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ndltd-TW-092NCTU54890552019-05-15T19:38:01Z http://ndltd.ncl.edu.tw/handle/bbxj4w The Cutter Radius Compensation for Computer Numerical Control Machine 數控工具機刀具半徑補正之研究與分析 黃朝群 碩士 國立交通大學 機械工程系所 92 The main reference of this thesis is Fanuc machine manual. First of all, I studied the basic program commands in the manual, and then investigated the commands of compensation in depth. The purpose of this research is to derive the cutter radius compensation algorithm of computer numerical control machine and implement the derivational mathematics formula by C programming language. In order to test and verify if these formulas are correct, I made use of AutoCAD according to geometry to make different types of pattern, and input the uncompensated coordinates to C Programming language. If the output coordinates obtained from the program disagree with the compensated coordinates from AutoCAD, I have to modify the cutter radius compensation algorithm and my program until they correspond with each other. And then I got the correct cutter radius compensation algorithm. If to rely on the cutter radius compensation function in this thesis, the programmers can compile the machine programs depending on geometric real size of workpieces and then diminish the mistakes when compiling program. 成維華 2004 學位論文 ; thesis 67 en_US |
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碩士 === 國立交通大學 === 機械工程系所 === 92 === The main reference of this thesis is Fanuc machine manual. First of all, I studied the basic program commands in the manual, and then investigated the commands of compensation in depth.
The purpose of this research is to derive the cutter radius compensation algorithm of computer numerical control machine and implement the derivational mathematics formula by C programming language. In order to test and verify if these formulas are correct, I made use of AutoCAD according to geometry to make different types of pattern, and input the uncompensated coordinates to C Programming language. If the output coordinates obtained from the program disagree with the compensated coordinates from AutoCAD, I have to modify the cutter radius compensation algorithm and my program until they correspond with each other. And then I got the correct cutter radius compensation algorithm.
If to rely on the cutter radius compensation function in this thesis, the programmers can compile the machine programs depending on geometric real size of workpieces and then diminish the mistakes when compiling program.
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成維華 |
author_facet |
成維華 黃朝群 |
author |
黃朝群 |
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黃朝群 The Cutter Radius Compensation for Computer Numerical Control Machine |
author_sort |
黃朝群 |
title |
The Cutter Radius Compensation for Computer Numerical Control Machine |
title_short |
The Cutter Radius Compensation for Computer Numerical Control Machine |
title_full |
The Cutter Radius Compensation for Computer Numerical Control Machine |
title_fullStr |
The Cutter Radius Compensation for Computer Numerical Control Machine |
title_full_unstemmed |
The Cutter Radius Compensation for Computer Numerical Control Machine |
title_sort |
cutter radius compensation for computer numerical control machine |
publishDate |
2004 |
url |
http://ndltd.ncl.edu.tw/handle/bbxj4w |
work_keys_str_mv |
AT huángcháoqún thecutterradiuscompensationforcomputernumericalcontrolmachine AT huángcháoqún shùkònggōngjùjīdāojùbànjìngbǔzhèngzhīyánjiūyǔfēnxī AT huángcháoqún cutterradiuscompensationforcomputernumericalcontrolmachine |
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