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Effect of laser-remelting of surface cracks on microstructure and residual stresses in 12Ni maraging steel

机译:激光重熔表面裂纹对12Ni马氏体时效钢组织和残余应力的影响

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The paper presents the results of a study on possible application of laser-remelting to repair of narrow and comparatively deep cracks at the surface of highly thermo-mechanically loaded parts made of 12% Ni hot-working maraging tool steel. Laser-remelting of maraging steel is, due to very good weldability and flexibility of the process, very prospective for repair of fatigued surfaces of parts made of this steel at which the presence of surface microcracks may be observed. In addition to the efficiency of crack remelting, the influence of laser-remelting on the heat-affected zone in terms of its microstructure and residual stresses was also studied. The microstructure in the laser-remelted track is cellular/dendritic. In the heat-affected zone surrounding the laser-remelted track, the microstructure varies considerably. A microstructure analysis revealed, in the heat-affected zone, five microstructural zones and sub-zones. Residual stresses measured after laser-remelting are with reference to gradual through-depth changing of the stresses favourable. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文介绍了一项研究结果,该研究结果表明,可能应用激光重熔技术修复由12%Ni热加工马氏体时效工具钢制成的高热机械载荷部件表面的狭窄和相对较深的裂纹。由于马氏体时效钢具有很好的可焊性和工艺灵活性,因此对其进行激光重熔非常有可能修复这种钢制成的零件的疲劳表面,并在该处观察到表面微裂纹的存在。除了提高裂纹重熔效率外,还研究了激光重熔对热影响区的微观结构和残余应力的影响。激光重熔轨道中的微结构是蜂窝状/树枝状的。在激光重熔轨道周围的热影响区中,微观结构发生很大变化。微观结构分析显示,在热影响区中,有五个微观结构区和子区。激光重熔后测得的残余应力是根据逐渐变化的有利应力进行的。 (c)2005 Elsevier B.V.保留所有权利。

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