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Laser Cladding for Railway Repair: Influence of Depositing Materials and Heat Treatment on Microstructural Characteristics

机译:铁路维修用激光熔覆:沉积材料和热处理对微结构特征的影响

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The contact between train wheels and rail tracks is known to induce material degradation in the form of wear, and rolling contact fatigue in the railhead. Laser cladding, a state of the art surface engineering technique, is a promising solution to repair damaged railheads so as to alleviate the rates of degradation and extend the component longevity. In this paper, effects of cladding material and heat treatment on microstructures of laser treated rails is presented. Laser cladding of premium hypereutectoid rail, four different depositing materials, and different heat treatments were investigated. For the preheating length of 400 mm, equal to the cladding length, the formation of martensite in heat affected zone (HAZ) was not hindered by the application of preheating to 350 °C on the rail-longitudinally deposited railhead of the four materials. Consequentially, cracking in the clad and HAZ was expected. An uncracked microstructure with excellent microstructural consistency across the entire rail-longitudinally deposited railhead and its HAZ was established using a heat treatment combination consisting of pre-heating, post-heating, and slow cooling, regardless of the depositing materials.
机译:众所周知,火车车轮和铁轨之间的接触会导致材料以磨损的形式退化,并导致轨道头中的滚动接触疲劳。激光熔覆是一种最先进的表面工程技术,是修复受损轨道头以减轻降解率并延长部件使用寿命的一种有前途的解决方案。本文介绍了包覆材料和热处理对激光处理过的钢轨的微观结构的影响。研究了优质超共析钢轨的激光熔覆,四种不同的沉积材料以及不同的热处理方法。对于等于包层长度的400 mm预热长度,在四种材料的沿轨道纵向沉积的轨头上施加350°C的预热不会阻碍在热影响区(HAZ)中形成马氏体。因此,预计覆层和热影响区会破裂。使用包括预热,后加热和慢冷在内的热处理组合,无论沉积的材料是什么,都可以在整个轨道纵向沉积的轨道头及其热影响区中形成具有优异的微观结构一致性的无裂纹的微观结构。

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