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Characterization of laser-treated Rene 41 surface due to B_4C and SiC particles at surface prior to laser treatment

机译:由于激光处理前表面上的B_4C和SiC颗粒而导致的激光处理过的Rene 41表面的表征

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摘要

Laser surface treatment of Rene 41 high-performance alloy is carried out with the presence of hard particles at the surface. B_4C and SiC particles are uniformly distributed within 40 μm carbon film at the workpiece surface prior to laser treatment process. The effect of hard particles on residual stress and microhardness variations is investigated at the treated surface. Morphological and metallurgical changes in the treated layer are examined by using electron microscopy, energy dispersive spectroscopy, and X-ray diffraction. Residual stress formed at the surface is determined from the X-ray data. It is found that the treated surface is free from asperities such as large size voids and cracks. A dense layer is formed in the surface region, which causes volume shrinkage while contributing to microhardness and residual stress enhancement at the surface. B_4C hard particles result in the highest residual stress and microhardness at the surface, which is attributed to its high thermal expansion coefficient.
机译:Rene 41高性能合金的激光表面处理是在表面存在硬颗粒的情况下进行的。在进行激光处理之前,B_4C和SiC颗粒均匀地分布在工件表面的40μm碳膜内。在处理过的表面上研究了硬颗粒对残余应力和显微硬度变化的影响。通过使用电子显微镜,能量色散光谱和X射线衍射检查处理过的层的形貌和冶金学变化。根据X射线数据确定在表面形成的残余应力。发现处理过的表面没有凹凸不平,例如大的空隙和裂缝。在表面区域中形成致密层,致使体积收缩,同时有助于表面的显微硬度和残余应力的增加。 B_4C硬质颗粒在表面产生最高的残余应力和显微硬度,这归因于其高的热膨胀系数。

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