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首页> 外文期刊>Procedia CIRP >Fundamental analysis of the cutting edge micro-geometry in orthogonal machining of unidirectional Carbon Fibre Reinforced Plastics (CFRP)
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Fundamental analysis of the cutting edge micro-geometry in orthogonal machining of unidirectional Carbon Fibre Reinforced Plastics (CFRP)

机译:单向碳纤维增强塑料(CFRP)正交加工中切削刃微几何的基础分析

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摘要

Machining of carbon fibre reinforced plastics (CFRP) is closely related to strong abrasive tool wear and represents a significant process challenge due to its anisotropic material structure and brittle fracture behavior. Furthermore, machining of unidirectional CFRP material shows a significant increase in process forces due to tool wear effects, resulting in a changing micro-geometry of the cutting edge. This research work aims to give a detailed analysis of the tool wear behavior with respect to the five micro-geometry parameters based on an approach of “straight line–ellipse–straight line”, capable also to describe the developing asymmetric cutting edge. Therefore, fundamental orthogonal machining experiments with varying fibre orientations and tool geometries are conducted. It can be shown that the micro-geometry changes with increasing cutting length, whereby an increase of the resulting friction length and spring back height can be detected, having a significant influence on the process forces.
机译:碳纤维增强塑料(CFRP)的加工与强烈的研磨工具磨损密切相关,并且由于其各向异性的材料结构和脆性断裂行为,对加工提出了重大挑战。此外,单向CFRP材料的机械加工由于刀具磨损效应而导致加工力显着增加,从而导致切削刃的微观几何形状发生变化。这项研究工作旨在基于“直线-椭圆-直线”的方法,针对五个微观几何参数,对刀具的磨损行为进行详细分析,该方法还可以描述发展中的不对称切削刃。因此,进行了具有不同纤维取向和工具几何形状的基本正交加工实验。可以看出,微观几何形状随着切削长度的增加而变化,由此可以检测到所产生的摩擦长度和回弹高度的增加,这对加工力具有重大影响。

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