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HEAT-AFFECTED ZONE MICROSTRUCTURE AND MECHANICAL PROPERTIES EVOLUTION FOR LASER REMANUFACTURING 35CrMoA AXLE STEEL

机译:激光再制造35克拉轴钢的热影响区域微观结构和力学性能演化

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In this article, by using orthogonal test the technological test was conducted and the optimum processing of the remanufacturing35CrMoA axle were obtained. The evolution of microstructure and mechanical property of HAZ were investigated. The microstructure of HAZ was characterized by means of OM and SEM. Meanwhile hardness distribution in HAZ and tensile property of cladding-HAZ-substrate samples were measured. The microstructure of cladding and HAZ were observed. The microsturcture evoltion and the mechanism of harden in the HAZ was discussed and revealed. The results indicated that the remanufacturing part has excellent strength due to grain refining and dispersive distribution of nanoscale cementite. The remanufacturing part will have uniform microstructure and hardness matching with that of 35CrMoA axle by using stress-relieving annealing at 580°C.
机译:在本文中,通过使用正交测试,进行了技术测试,并获得了雷纳制造35crmoA轴的最佳处理。研究了HAZ的微观结构和力学性能的演变。 HAZ的微观结构是通过OM和SEM的特征。同时测定了熔化杂交衬底样品的HAZ和拉伸性质中的硬度分布。观察包层和HAZ的微观结构。讨论并揭示了Microsturcture Evoltion和Harden的机制。结果表明,由于纳米级渗碳石的晶粒精制和分散分布,再制造部具有优异的强度。通过在580℃下使用应力缓解退火,再制造部分将具有均匀的微观结构和硬度与35crmoa轴匹配的硬度。

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