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Cutting parameters effects on the machining of two high density polyethylene pipes resins: Cutting parameters effects on HDPE machining

机译:切削参数对两种高密度聚乙烯管材树脂加工的影响:切削参数对HDPE加工的影响

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摘要

The market demand for machining and cutting of various plastics parts is in continuous increase. The aim of this study is to extract prediction laws for surface roughness, cutting forces and temperatures evolution during the machining of two polyethylene pipes grades (HDPE-100) and (HDPE-80). It was found that feed rate is the most prevailing factor on roughness criteria and that better surfaces are obtained during the machining of the harder HDPE-80 resin. Also, cutting speed improved surface quality for speeds up to 200 m.min~(-1) but the rising interface temperature caused surface damage and material rapid softening. Also, feed exponents, in mathematical models, were found to be 3 to 4 times higher than those of cutting speed and depth of cut. An increase in the cutting speed led to a gradual reduction for the 3 cutting forces components (Fr, Fa and Fv) with a dominance of the tangential force (Fv). As expected, the value of the depth of cut had a large influence on the temperature within the cutting zone. This temperature is slightly higher during the machining of HDPE-80 compared to that of HDPE-100 most probably because of hardness differences. The analysis of variance (ANOVA) was performed to check the adequacy of the mathematical models relating cutting parameters with roughness, cutting forces and global cutting zone temperature.
机译:对各种塑料零件进行机加工和切割的市场需求在不断增长。这项研究的目的是提取两种聚乙烯管材等级(HDPE-100)和(HDPE-80)加工过程中表面粗糙度,切削力和温度变化的预测规律。已发现进给速度是粗糙度标准中最主要的因素,并且在加工较硬的HDPE-80树脂时可获得更好的表面。同样,切削速度提高了表面质量,最高速度达到了200 m.min〜(-1),但是界面温度的升高导致了表面损伤和材料快速软化。另外,在数学模型中,进料指数比切削速度和切削深度高3至4倍。切削速度的提高导致三个切削力分量(Fr,Fa和Fv)逐渐减小,而切向力(Fv)占优势。不出所料,切削深度的值对切削区域内的温度有很大的影响。与HDPE-100相比,HDPE-80在加工过程中的温度略高。进行方差分析(ANOVA),以检查与切削参数,粗糙度,切削力和整体切削区域温度相关的数学模型是否适当。

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