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FVM based Methodology for Evaluating Adhesion Wear of Cutting Tools

机译:基于FVM的切削刀粘附磨损的方法论

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摘要

In the machining processes, surface quality of the worked pieces depends strongly on the tool conditions. Tool wear has, by that, a determinant influence on the surface finishing quality of the machined products. Tool wear has been commonly associated with the loss of tool material. Standards, procedures and methodologies have been developed for evaluating tool wear under that idea. However, currently, the tool wear concept must be considered in a wider meaning. In effect, nowadays, tool wear must be related to the changes in the cutting tool caused by the machining process. These changes contain both its geometrical and physicochemical properties variations. The first of them involves not only the loss of material but also the incorporation of machined material to the cutting tool, as in the secondary adhesion wear, where workpiece material is adhered to the tool in two well-defined zones: rake face, giving rise to the Built-Up Layer (BUL); edge and clearance face, giving rise to the Built-Up Edge (BUE). Up to the present, the evaluation of BUL and BUE has not been satisfactorily solved and, by that, the secondary adhesion tool wear is hardly evaluated Only some indirect methods can be found based in output variables and parameters (Cutting Forces, Surface Quality Parameters). In this paper, a BUL and BUE measuring methodology, based in the reproduction of BUL-BUE 3D surfaces through Focus Variation Microscopy, has been proposed. This methodology can serve as a first reference for standardizing the evaluation of secondary adhesion tool wear.
机译:在加工过程中,工作件的表面质量在刀具条件下强烈取决于刀具条件。刀具磨损具有对机加工产品表面整理质量的决定因素。工具磨损通常与工具材料的损失有关。已经开发了标准,程序和方法,用于评估该想法下的工具磨损。然而,目前,必须在更广泛的含义中考虑工具磨损概念。实际上,如今,工具磨损必须与由加工过程引起的切削工具的变化有关。这些变化包含其几何和物理化学性质的变化。其中首先涉及材料的损失,而且涉及加工材料的加工材料,如二次粘合磨损,其中工件材料粘附在两个明确的区域中的工具中:耙面,产生到内置层(BUL);边缘和间隙面,引起内置边缘(Bue)。至今,Bul和Bue的评估尚未令人满意地解决,其次,次级粘附工具磨损几乎没有评估,只能基于输出变量和参数(切割力,表面质量参数)找到一些间接方法。本文已经提出了基于通过聚焦变异显微镜的泡光珠3D表面的再现的BOL和BUE测量方法。该方法可以作为标准化二次粘合工具磨损评估的第一个参考。

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