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Experimental Investigation of Residual Stress Relief Using Pre- and Post-clad Heating in the Laser Cladding Process

机译:激光熔覆过程中熔覆前后加热消除残余应力的实验研究

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摘要

Laser cladding is a coating technology with many advantages as compared to conventional techniques like plasma welding, overlay welding, and thermal spraying, etc. It is meant to deposit a new layer of desired material on the surface of a base material with very low heat input to form coatings which are metallurgical sound and dense. Susceptibility of cracking of coatings is mainly determined by the stresses developing during the solidification of molten coatings and substrate. Residual stress of the deposited layer is crucial to the operating life span and safety of the remanufactured, repaired, or fabricated components by laser cladding. In this work. AISI316L stainless steel powders were cladded on AlSI321 stainless steel substrate using laser cladding technique. Pre- and post-clad heat treatments, using laser beam, were applied on the substrate and individual tracks, respectively. The effects of lead time (time interval between pre-clad heat treatment and cladding) and delay time (time interval between cladding and post-clad heat treatment) on the residual stress of coatings surface were investigated. It was found that the effects of lead time for pre-clad heating and delay time for post-clad heating on residual stress are significant and there exist specific values of lead time and delay time for which residual stress of coatings surface is minimal.
机译:激光熔覆是一种涂层技术,与等离子焊接,堆焊和热喷涂等传统技术相比,具有许多优势。它旨在以非常低的热量输入在基材表面上沉积所需材料的新层形成冶金学上坚固的涂层。涂层开裂的敏感性主要取决于熔融涂层和基材固化过程中产生的应力。沉积层的残余应力对于使用寿命,通过激光熔覆再制造,维修或制造的组件的安全性至关重要。在这项工作中。使用激光熔覆技术将AISI316L不锈钢粉末熔覆在AlSI321不锈钢基底上。使用激光束在包层之前和之后进行的热处理分别施加在基板和各个轨道上。研究了提前时间(熔覆前和熔覆之间的时间间隔)和延迟时间(熔覆和后熔覆之间的时间间隔)对涂层表面残余应力的影响。已经发现包层前加热的提前时间和包层后加热的延迟时间对残余应力的影响是显着的,并且存在使涂层表面的残余应力最小的提前时间和延迟时间的特定值。

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