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基于最小有向距离算法的刀具轨迹计算
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作者 赵萍 何丽辉 赵波 《辽宁省交通高等专科学校学报》 2012年第2期15-16,共2页
本文针对复杂曲面加工中存在的刀具轨迹计算和干涉判断复杂的问题,将最小有向距离算法应用于复杂曲面的加工中。通过对曲面加工原理分析,将求刀触点的问题转化为数学规划问题。实验证明该方法有对曲面适应范围广,计算量小、计算速度快... 本文针对复杂曲面加工中存在的刀具轨迹计算和干涉判断复杂的问题,将最小有向距离算法应用于复杂曲面的加工中。通过对曲面加工原理分析,将求刀触点的问题转化为数学规划问题。实验证明该方法有对曲面适应范围广,计算量小、计算速度快等特点,适用于复杂曲面的加工。 展开更多
关键词 曲面加工 最小有向距离算法 刀具轨迹计算
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叶片数控加工关键技术的研究 被引量:9
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作者 李海滨 余颖婷 《机床与液压》 北大核心 2010年第11期14-16,25,共4页
介绍叶片的结构特点,分析叶片数控加工的关键技术,包括叶片的造型技术、叶片的加工工艺与刀路轨迹规划、叶片刀具轨迹计算、叶片加工变形控制等。同时介绍叶片加工时刀具的选择,四坐标端铣刀和球头刀的刀位计算。
关键词 叶片造型 刀路规划 刀具轨迹计算 变形控制
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Real-time Bezier interpolation satisfying chord error constraint for CNC tool path 被引量:4
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作者 FAN Wei LEE ChenHan +1 位作者 CHEN JiHong XIAO Yao 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第2期203-213,共11页
G01 code generated by a computer-aided manufacture (CAM) system is the most common form of tool trajeclory in computer numerical control (CNC) machining. A tool path composed of short line segments has discontinuo... G01 code generated by a computer-aided manufacture (CAM) system is the most common form of tool trajeclory in computer numerical control (CNC) machining. A tool path composed of short line segments has discontinuous tangenc t and curvature, generating large fluctuations of feedrate and acceleration, which in turn produces vibration in a machine tool. To obtain a smooth tool path, many methods on tool-path smoothing have been developed. However, the shortcomings i:1 these methods exist when they are employed in a CNC system. It is difficult to simultaneously to guarantee the following requirements of CNC machining: (1) chord error should be rigidly constrained; (2) G01 points should be interpolated; (3) cur,,ature should be continuous (G2); (4) machining should be applicable to spatial cases; (5) real-time performance of computaEion is required.Based on these various requirements, this study proposes an interpolation scheme using CUDlC t^ezler curves anu mciuucb illl adjustment strategy to eliminate deficiencies in the tool path. The tool path generated is G2, chord-elror-constrained, G01-point-interpolated, loop-free, and optimized for both stretch and jerk energy. The method is applicable :o 3D cases and involves only simple algebraic computations. Thus, the algorithm can be applied to real-time CNC machining. A simulation is conducted to validate the efficiency of the algorithm. In addition, an experiment reveals its advantage over Hermite interpola- tion in surface quality and machining efficiency. 展开更多
关键词 real-time CNC machining stretch energy jerk energy loop-free chord error
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