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On the temperatures developed in CFRP drilling using uncoated WC-Co tools Part I: Workpiece constituents, cutting speed and heat dissipation

机译:使用无涂层WC-Co工具在CFRp钻孔中产生的温度第一部分:工件成分,切削速度和散热

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摘要

Abstract This work investigated the influence of the material properties and cutting speed on the heat dissipation in the drilling of carbon fibre reinforced plastic (CFRP) composites using uncoated WC-Co tools. The first stage of the investigation compared the heat dissipation in drilling three different CFRP systems by measuring the temperatures developed at different distances around the borehole using thermocouples and an infra-red camera. The second stage studied the influence of cutting speed on the maximum temperatures developed in the workpiece in drilling a selected CFRP system in a cutting speed range from 50 to 200 m/min. The cross-linking density of the polymer matrix and the degree of crystallinity and structure of the carbon fibres exhibited a significant influence on the overall temperature and on the heat dissipation, whereas 150–200 m/min cutting speeds yielded higher concentration of heat, compared to 50–100 m/min cutting speeds.
机译:摘要这项工作研究了使用未涂覆的WC-Co工具在碳纤维增强塑料(CFRP)复合材料的钻孔过程中材料性能和切削速度对散热的影响。研究的第一阶段通过使用热电偶和红外热像仪测量钻孔周围不同距离处产生的温度,对钻探三种不同CFRP系统中的热量进行了比较。第二阶段研究了切削速度对以50至200 m / min的切削速度钻孔所选CFRP系统时工件中产生的最高温度的影响。聚合物基体的交联密度以及碳纤维的结晶度和结构对整体温度和散热表现出显着影响,而与之相比,150-200 m / min的切割速度可产生更高的热量集中度。达到50–100 m / min的切割速度。

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