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Tool path optimization for free form surface machining

机译:优化刀具路径以进行自由曲面加工

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摘要

This article presents a novel approach to generate optimized tool paths for free form surfaces that are commonly used in automotive, aerospace, biomedical, home appliance manufacturing and die/mold industries. The developed tool path optimization approach can handle various objectives under multiple constraints. Due to anisotropic geometry of free form surfaces, tool paths become one of the most critical factors for determining cutting forces. Here, the concept of force-minimal tool path generation is introduced and demonstrated for free form surfaces. Nowadays, process planning engineers must select the tool paths only from a set of ordinary tool paths available in CAM systems. These standard tool paths available in CAM systems are generated based on geometric computations only, not considering mechanics of processes, and most often these paths are away being optimum for free form surfaces. Here, a new methodology is introduced the first time for generating the tool paths based on process mechanics for globally minimizing the cutting forces for any given free form surface.
机译:本文提出了一种新颖的方法,可为汽车,航空航天,生物医学,家用电器制造和模具行业中常用的自由曲面生成优化的刀具路径。开发的刀具路径优化方法可以在多种约束下处理各种目标。由于自由曲面的各向异性几何形状,刀具路径成为确定切削力的最关键因素之一。在此,介绍了力最小的刀具路径生成的概念并针对自由曲面进行了演示。如今,过程计划工程师必须仅从CAM系统中可用的一组普通刀具路径中选择刀具路径。 CAM系统中可用的这些标准工具路径仅基于几何计算生成,而不考虑过程的机械原理,并且大多数情况下,这些路径对于自由曲面而言并不是最佳选择。在这里,首次引入了一种新的方法,该方法是基于过程力学来生成刀具路径的,从而可以全局地最小化任何给定自由曲面的切削力。

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