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An Investigation into the Dependency of Cutting Forces on the Volume Fraction and Fibre Orientation during Machining Composite Materials

机译:复合材料加工过程中切削力对体积分数和纤维取向的依赖性研究

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摘要

This paper presents an empirical force model quantifying the effect of fibre volume fraction and fibre orientation on the cutting forces during orthogonal cutting of unidirectional composites. Glass fibre plates and high speed steel cutting tools are used to perform orthogonal cutting on shaping machine whereas cutting forces are measured using platform force dynamometer. The analysis of forces shows almost linear dependency of cutting forces on the fibre content for both cutting and thrust forces. High dependency of cutting forces is also observed on fibre orientation with high percentage contribution ratio (up to 95.31%). Lowest forces corresponded to 30° and highest to 90° fibre orientation. Multivariate regression technique is used to construct the empirical model.
机译:本文提出了一种经验力模型,该模型量化了单向复合材料正交切割过程中纤维体积分数和纤维取向对切割力的影响。玻璃纤维板和高速钢切割工具用于在成型机上进行正交切割,而切割力则使用平台测力计进行测量。力的分析表明,对于切削力和推力,切削力几乎与纤维含量呈线性关系。还观察到切割力对纤维取向的高度依赖性,具有较高的百分比贡献率(高达95.31%)。最小的力对应于30°的纤维方向,最大的对应于90°的纤维方向。使用多元回归技术构建经验模型。

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