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Cemented carbide cutting tool: Laser processing and thermal stress analysis

机译:硬质合金刀具:激光加工和热应力分析

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摘要

Laser treatment of cemented carbide tool surface consisting of W, C, TiC, TaC is examined and thermal stress developed due to temperature gradients in the laser treated region is predicted numerically. Temperature rise in the substrate material is computed numerically using the Fourier heating model. Experiment is carried out to treat the tool surfaces using a CO_2 laser while SEM, XRD and EDS are carried out for morphological and structural characterization of the treated surface. Laser parameters were selected include the laser output power, duty cycle, assisting gas pressure, scanning speed, and nominal focus setting of the focusing lens. It is found that temperature gradient attains significantly high values below the surface particularly for titanium and tantalum carbides, which in turn, results in high thermal stress generation in this region. SEM examination of laser treated surface and its cross section reveals that crack initiation below the surface occurs and crack extends over the depth of the laser treated region.
机译:检查了由W,C,TiC,TaC组成的硬质合金刀具表面的激光处理,并通过数值预测了由于激光处理区域中的温度梯度而产生的热应力。使用傅里叶加热模型以数值方式计算基材中的温度升高。进行了使用CO_2激光处理工具表面的实验,同时进行了SEM,XRD和EDS来对处理过的表面进行形态和结构表征。选择的激光参数包括激光输出功率,占空比,辅助气体压力,扫描速度和聚焦透镜的标称聚焦设置。已经发现,特别是对于钛和碳化钽而言,温度梯度在表面以下达到明显较高的值,这又导致在该区域中产生高的热应力。扫描电镜对经过激光处理的表面及其横截面的检查表明,在表面以下发生了裂纹萌生,并且裂纹扩展到了激光处理区域的整个深度。

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