基于切削接触条件的不可展开直纹面侧铣削仿真效率优化方法

Yanyu Chen, Liwen Guan
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引用次数: 0

摘要

表面形貌仿真是研究工件表面织构、控制加工质量和优化工艺参数的重要手段。不可展直纹曲面由于其独特的几何特性,常用于高精度曲面部件,使得不可展直纹曲面的仿真方法受到国内外学者的广泛关注。然而,由于不可展直纹面的几何特性和侧铣削加工的特点,现有的仿真效率优化方法并不适合模拟侧铣削加工中不可展直纹面的形貌。针对传统的基于Z-map方法的形貌仿真算法仿真效率低的问题,提出了一种基于切削接触条件的不可展直纹面侧铣形貌仿真效率优化方法。该方法在传统的仿真方法中引入了受侧面铣削接触条件约束的刀位姿遍历过程,旨在减少局部表面残余高度更新的循环次数。最后,通过仿真实验和加工实验验证了本文提出的优化方法的有效性。
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Simulation Efficiency Optimization Method of Flank Milling for Nondevelopable Ruled Surface Based on Cutting Contact Conditions
Surface topography simulation is crucial in studying the surface texture of workpieces, controlling processing quality, and optimizing process parameters. Nondevelopable ruled surfaces are often used for high-precision surface components due to their unique geometric features, making the simulation method of non-developable ruled surfaces an area of widespread interest among scholars both domestically and abroad. However, due to the geometric characteristics of nondevelopable ruled surfaces and the characteristics of flank milling processing, current simulation efficiency optimization methods are not suitable for simulating the topography of nondevelopable ruled surfaces in flank milling processing. To solve the problem of low simulation efficiency of traditional morphology simulation algorithms based on Z-map method, this paper proposes an efficiency optimization method for simulating the topography of nondevelopable ruled surfaces in flank milling processing based on the cutting contact condition. In the proposed method, the tool pose traversal process constrained by flank milling contact condition was introduced to the traditional simulation method aiming at reducing the number of cycles for updating residual height of the local surface. Finally, the effectiveness of the optimization method proposed in this paper is verified by simulation experiments and processing experiments.
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