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Experimental Analysis and Geometrical Modeling of Cutting Conditions Effect in 5 Axis Milling with Ti6Al4V Alloy

机译:Ti6Al4V合金五轴铣削切削条件影响的实验分析和几何建模

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摘要

The 5 axis continuous milling is an advanced technique for free-form surfaces manufacturing. In finishing, this technique uses ball-end or hemispherical milling cutter. This type of operation for 5 axis milling allows the possibility to tilt the tool with two different angles. As a consequence, a mass of geometrical configurations exists and establishing accurate parameters is quite difficult to define. A geometrical model has been developed to find the effective cutting diameters and cutting speed on the cut and the finished surface. After an experimental validation, this study proposes an analysis of several 5 axis milling configurations in order to perform this technique.
机译:五轴连续铣削是用于自由曲面加工的先进技术。在精加工中,该技术使用球头或半球形铣刀。 5轴铣削的这种类型的操作允许以两个不同的角度倾斜刀具。结果,存在大量的几何构造,并且很难定义精确的参数。已经开发出一种几何模型来找到有效的切削直径和切削速度以及精加工表面的切削速度。经过实验验证后,本研究建议对几种5轴铣削配置进行分析,以执行该技术。

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