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加工点工作物変位を最小化する切削プロセスの設計

机译:加工点切削过程的设计可最大程度地减少工件位移

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摘要

Vibrations of a tool or a workpiece in cutting shorten tool life and deteriorate a surface roughness. In this research, we propose a method to reduce vibrations of the workpiece at a cutting point. An algorithm that generates a cutting path to minimize workpiece displacements at a cutting point is developed. In this algorithm, the cutting path is generated with changing feed directions, tool posture and material removal process by considering workpiece compliance matrices and cutting force vectors. Feed directions and tool posture are changed to control the direction of the cutting force vector. Material removal process is changed to control the change of the workpiece compliance. FEM (Finite Element Method) is used to calculate workpiece compliance matrices. SVD (Singular Value Decomposition) is used to calculate the direction which has the lowest compliance in the workpiece compliance matrices. Minimum workpiece displacement at a cutting point is calculated from these calculated results. The algorithm is applied to the cutting path of end milling for a simple bar and the cutting path is compared with two conventional cutting paths by conducting a simulation and a cutting test. As a result, mean values of workpiece displacement were reduced by applying the algorithm.
机译:切削中的工具或工件的振动会缩短工具的寿命并恶化表面粗糙度。在这项研究中,我们提出了一种减少工件在切削点处振动的方法。开发了一种算法,该算法可生成切削路径以最大程度地减少切削点处的工件位移。在该算法中,通过考虑工件顺应性矩阵和切削力矢量,通过改变进给方向,刀具姿态和材料去除过程来生成切削路径。改变进给方向和刀具姿势以控制切削力矢量的方向。改变材料去除过程以控制工件顺应性的变化。 FEM(有限元法)用于计算工件柔度矩阵。 SVD(奇异值分解)用于计算在工件柔度矩阵中柔度最低的方向。根据这些计算结果计算出切削点处的最小工件位移。该算法被应用于简单棒材的立铣刀的切削路径,并通过进行模拟和切削测试将切削路径与两个常规切削路径进行比较。结果,通过应用该算法减小了工件位移的平均值。

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