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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Laser Irradiation Effects in Simulated Laser-Assisted Machining of Type 316L SS
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Laser Irradiation Effects in Simulated Laser-Assisted Machining of Type 316L SS

机译:316L SS模拟激光辅助加工中的激光辐照效果

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Laser surface heating allows for the thermal treating of clearly defined surface areas thanks to the ability to focus the laser beam to a specific point. Thus, the rapid heating and subsequent rapid cooling when the beam is moved away, typically associated with laser light, is used as an in-machine process to improve the machinability of hard- or difficult-to-machine alloys. In laser-assisted machining (LAM), laser irradiation occurs simultaneously with materials removal; however, it is difficult to ensure a complete removal of the irradiated areas. In the present work, the two processes were decoupled to investigate the interaction effects of laser radiation type 316L. The surface residual stress, hardness, and microstructure of milled flat specimens were measured prior to and after diode-generated laser beam irradiation. Laser exposure of samples was conducted under protective gas shielding (Argon) using heating parameter combinations that would limit or avoid laser surface melting. Conversely, when the surface underwent melting, the formation of a fast solidification layer resulted in the removal of the cold-worked effect and the significant softening of the surface layers. Beam power density in-homogeneities and incomplete machining of the treated areas in LAM have the potential to introduce significant undesired changes on components’ surface integrity.
机译:由于能够将激光束聚焦到特定点,因此激光表面加热可以对明确定义的表面区域进行热处理。因此,当光束移开时通常与激光相关联的快速加热和随后的快速冷却被用作机器内工艺,以改善难加工或难加工的合金的机械加工性。在激光辅助加工(LAM)中,激光照射与材料去除同时发生。但是,难以确保完全去除照射区域。在目前的工作中,将这两个过程解耦以研究316L型激光辐射的相互作用。在二极管产生的激光束辐照之前和之后,测量研磨后的扁平样品的表面残余应力,硬度和微观结构。在保护性气体屏蔽(氩气)下,使用会限制或避免激光表面熔化的加热参数组合对样品进行激光曝光。相反,当表面熔融时,快速凝固层的形成导致冷加工效果的消除和表面层的显着软化。光束功率密度的不均匀性以及LAM中处理区域的不完全加工可能会导致组件表面完整性发生不希望的重大变化。

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