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RESIDUAL STRESSES IN LASER-DEPOSITED METAL PARTS

机译:激光沉积金属部件中的残余应力

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Several laser-based techniques to fabricate parts by depositing metals or ceramic powders or a combination thereof have been developed in recent years. These fabrication techniques are incomplete and not fully useful to an operator without any predictive capability to calculate the geometries of the fabricated parts or equations to calculate their expected yield and ultimate strengths. Data concerning the energy transfer from the processing laser beam to the material powder, such as the metal vapor-plasma plume temperature and plume absorption coefficient, the efficiency of laser energy transfer and mathematical analysis for the thermal and dimensional process characteristics are unavailable. Also the characterization of the mechanical properties of such laser-fabricated parts has just begun. A one-dimensional model to calculate the thermal and dimensional process characteristics is developed. The model accounts for the transmission of the laser beam through the plume, energy transfer in the molten phase and the Stefan conditions at the solid-liquid and liquid-vapor interfaces. The yield and ultimate strengths of laser-fabricated stainless steel (SS 304) parts have been measured. A mathematical model is developed accounting for directionally preferred solidification to calculate the residual stresses generated in the part during solidification.
机译:近年来,通过沉积金属或陶瓷粉末制造零件的基于激光的技术或其组合。这些制造技术对操作者不完全并且不完全有用,而没有任何预测能力来计算制造的部件或方程的几何形状以计算它们的预期产量和最终的强度。关于从加工激光束到材料粉末的能量转移的数据,例如金属蒸汽等离子体羽流温度和羽流吸收系数,激光能量传递效率和热量和尺寸工艺特性的数学分析是不可用的。此外,这种激光制造部件的机械性能的表征刚刚开始。开发了计算热敏和尺寸过程特性的一维模型。该模型考虑了激光束通过灌注,在熔融相中的能量传递和固体 - 液体和液体 - 蒸气界面的梯形条件。测量了激光制造的不锈钢(SS 304)部件的产量和极限强度。开发了一种数学模型,用于定向优选的凝固,以计算在凝固过程中部分产生的残余应力。

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