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Effect of laser reheat post-treatment on the microstructural characteristics of laser-cladded ultra-high strength steel

机译:激光再加热后处理对激光熔轮超高强度钢微观结构特性的影响

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摘要

Repair of defence-grade ultra-high strength steels such as 300M which are damaged or worn during service is a very challenging problem. More often than not, laser cladding repair of such steels results in the formation of untempered martensite which adversely affects the mechanical properties of the components. On the other hand, bulk heat treatment of the repaired component is an expensive post-treatment operation and may also lead to other deleterious effects. In this study, laser reheat post-treatment (LPHT) is proposed as a solution for localised heat treatment for such repair applications. The microstructural and microhardness characteristics of both the single track and multi-track cladded structures were Investigated in the as-deposited and LPHT conditions. The LPHT treatment induced tempering of the martensite resulting in a decrease in the hardness to within a range between 500 and 590 HV. Furthermore, the M23C6 carbides present in the as-deposited state dissolved in the martensite matrix upon laser reheating, ensuing an increase in the volume of retained austenite. In multi-track cladding, the untempered martensite was subjected to partial tempering due to the overlapping track deposition. An additional laser reheat pass further tempered the cladded layer resulting in a reduction of the hard untempered martensite with a uniform distribution of tempered martensite. From this study it can be inferred that LPHT treatment can be effectively employed for localised control of the microstructure in the laser clad repaired parts by tuning the laser reheat parameters.
机译:防御级超高强度钢维修,如300米,在服务期间受损或佩戴的是一个非常具有挑战性的问题。更常见的是,这种钢的激光熔覆修复导致未经维持的马氏体的形成,这对组分的机械性能产生不利影响。另一方面,修复成分的散装热处理是昂贵的后处理操作,也可能导致其他有害效果。在该研究中,提出了激光再加热后处理(LPH)作为这种修复应用的局部热处理的解决方案。在沉积和LPHT条件下研究了单轨道和多轨道包覆结构的微观结构和显微硬度特征。 LPHT处理诱导马氏体的回火,导致硬度降低到500和590HV之间的范围内。此外,在激光再加热时,溶解在马氏体基质中的沉积状态中存在的M23C6碳化物,随后随后增加保留奥氏体的体积。在多轨包层中,由于重叠的轨道沉积,未经维持的马氏体受到部分回火。另外的激光再加热通过进一步回火包衣层,导致具有均匀的回火马氏体分布的硬无限马氏体的减少。从该研究可以推断,通过调谐激光再加热参数,可以有效地用于通过调谐激光再加热参数来有效地用于激光包覆修复部件中的微观结构的局部控制的LPHT处理。

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