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首页> 外文期刊>Journal of Composite Materials >Experimental investigation of the cutting temperature and surface quality during milling of unidirectional carbon fiber reinforced plastic
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Experimental investigation of the cutting temperature and surface quality during milling of unidirectional carbon fiber reinforced plastic

机译:单向碳纤维增强塑料铣削过程中切削温度和表面质量的实验研究

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摘要

The surface machining of carbon fiber reinforced plastics materials is a challenging process, given the heterogeneity and anisotropic nature of composites, which, combined with the abrasiveness of the fibers, can produce some surface damage and extensive tool wear. The cutting temperature is one of the most important factors associated with the tool wear rate and nnachinability of these materials, which are also affected by the mechanical and thermal properties of the workpiece material and the cutting conditions. In this work, the cutting temperature, cutting forces, and composite surface roughness were measured under different cutting conditions for the end milling of unidirectional carbon fiber reinforced plastics. Cutting speeds ranging from 200 to 350 m/min; a feed rate of 0.063 mmirev; fiber orientations of 0, 45, 90, and 135 degrees; and a 0.5 nnnn depth of cut were considered. The results show that the cutting speed and fiber orientation have a significant influence on the cutting temperature and cutting forces. The maximum and minimum cutting forces and temperatures were achieved for fiber orientations of 90 and 0, respectively.
机译:考虑到复合材料的异质性和各向异性,碳纤维增强塑料材料的表面加工是一个具有挑战性的过程,再加上纤维的磨蚀性,会产生一些表面损伤和广泛的工具磨损。切削温度是与这些材料的刀具磨损率和可切削性相关的最重要因素之一,它们也受工件材料的机械和热性能以及切削条件的影响。在这项工作中,针对单向碳纤维增强塑料的端铣削,在不同的切削条件下测量了切削温度,切削力和复合材料表面粗糙度。切割速度从200到350 m / min;进给速度为0.063 mmirev;纤维方向为0、45、90和135度;并考虑了0.5 nnnn的切割深度。结果表明,切削速度和纤维取向对切削温度和切削力有显着影响。纤维取向分别为90和0时,达到了最大和最小切割力和温度。

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