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MINIMIZATION OF ELASTIC THERMAL STRESSES DURING LASER MACHINING OF CERAMICS USING A DUAL-BEAM ARRANGEMENT

机译:使用双梁布置在陶瓷激光加工过程中弹性热应力的最小化

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Lasers are emerging as a valuable tool for shaping and cutting hard and brittle ceramics. Unfortunately, the large, concentrated heat flux rates that allow the laser to efficiently cut and shape the ceramic also result in large localized thermal stresses in a small heat-affected zone. These notable thermal stresses can lead to micro-cracks, a decrease in strength and fatigue life, and possibly catastrophic failure. In order to assess where, when, and what stresses occur during laser scribing, an elastic stress model has been incorporated into a two-dimensional drilling as well as a three-dimensional scribing and cutting code. The results of the analysis for a single Gaussian laser source show that substantial tensile stresses develop over a thick layer below and parallel to the surface, which may be the cause of experimentally observed subsurface cracks. In this work the effect of splitting the beam into two parts is discussed: a highly-focussed beam that does the actual drilling or scribing, and a partially defocussed beam, used to heat the material ahead of, around, or behind the laser beam. Different secondary beam scenarios are investigated, and their effect on reducing the damaging tensile stresses is evaluated.
机译:激光器正在成为一种塑造和切割硬度和脆性陶瓷的有价值的工具。遗憾的是,允许激光有效地切割和塑造陶瓷的大型浓缩热通量速率也导致小型热影响区域中的大局部热应力。这些显着的热应力可导致微裂纹,强度和疲劳寿命的降低,并且可能是灾难性的故障。为了评估激光划线期间发生的何时,何时和强调,弹性应力模型已经结合到二维钻井中以及三维划线和切割码中。单个高斯激光源的分析结果表明,大幅拉伸应力在下面的厚层上显现,并且平行于表面,这可能是实验观察到的地下裂缝的原因。在这项工作中,讨论了将光束分成两部分的效果:具有实际钻孔或划线的高度聚焦的光束,以及用于在激光束的外部或后面的材料前后加热材料的部分散频梁。研究了不同的二级光束场景,评估其对降低损伤抗拉应力的影响。

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