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Modeling and Simulation of a Machining Process Chain for the Precision Manufacture of Polar Microstructure

机译:极性微结构精密制造加工过程链的建模与仿真

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This paper presents a functional microstructured surface, named Polar Microstructure. Polar microstructure is a three dimensional (3D) structured surface possessing a pattern of distribution of latitude and longitude micro-topographies with geometrical characteristics, which is similar to that in the Earth?¢????s north or south pole. The spacing of its small surface features can achieve form accuracy at the micrometer level. Polar microstructure has great potential for applications in precision measurement of angle displacement based on the characteristics of its surface features. This paper presents the development of a machining process chain system that integrates single point diamond turning (SPDT) and diamond broaching together to fabricate polar microstructure. A framework of a machining process chain system is presented which is composed of input module, design module, simulation module, output module, and metrology module. After that, modeling of the machining process chain composed of SPDT and diamond broaching is built up. The model takes into consideration the initial surface topography of the workpiece. Simulations have been conducted to obtain the optimal machining parameters in each machining process. A series of experiments was conducted for the ultra-precision machining of various types of polar microstructures. The machining results show that the machining process chain system is technically feasible and effective in the precision manufacturing of polar microstructure. The experimental results agree well with the simulated results.
机译:本文介绍了一种功能化的微结构化表面,称为极微结构。极微结构是三维(3D)结构化表面,具有具有几何特征的纬度和经度微地形分布模式,这与地球的北极或南极相似。其小的表面特征的间距可以在微米级别上实现形状精度。极性微结构基于其表面特征的特性,在角位移的精密测量中具有巨大的应用潜力。本文介绍了将单点金刚石车削(SPDT)和金刚石拉削结合在一起以制造极性微结构的加工过程链系统的开发。提出了一种加工过程链系统的框架,该框架由输入模块,设计模块,仿真模块,输出模块和计量模块组成。之后,建立了由SPDT和金刚石拉削组成的加工过程链的建模。该模型考虑了工件的初始表面形貌。已经进行了仿真以获得每个加工过程中的最佳加工参数。进行了一系列实验,以对各种类型的极性微结构进行超精密加工。加工结果表明,该加工工艺链系统在极性微结构的精密制造中具有技术可行性和有效性。实验结果与模拟结果吻合良好。

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