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Laser cladding of martensitic stainless steels on armor steels

机译:在盔甲钢上的马氏体不锈钢的激光覆层

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摘要

Armor steels in the defense industry are widely used in ballistic applications due to their high mechanical strength and toughness. Problems caused by wear and in service conditions have limited the life of these steels. In recent years, the laser cladding method is one of the preferred hard-facing method. Laser powder cladding is a widely used process for improving the surface and near-surface properties of a metallic part or to resurface a component that has become worn through use. Cladding involves the creation of a hard surface layer on substrate. Compared with welding methods, cladding offer lower heat-related distortion, reduced dilution, extremely low porosity and better surface uniformity. In this study, martensitic stainless steel powders were deposited using the laser cladding method to improve the surface resistance of armor steel. In experimental studies, the effects of process parameters (laser power, laser speed and powder feed rate) on the layer were investigated. The microstructure and dilution properties of the cladding layers were examined. It was determined that the cladding layer structure had a high hardness and a low dilution, as well as a completely martensitic phase. Increased surface resistance with laser cladding increased both the service life and wear resistance of armor steel.
机译:由于其高机械强度和韧性,国防工业的护甲钢广泛用于弹道应用。磨损和服务条件引起的问题限制了这些钢的寿命。近年来,激光熔覆法是优选的硬盘方法之一。激光粉末包层是一种广泛使用的方法,用于改善金属部件的表面和近表面性质或者通过使用已经磨损的部件。包层涉及在基板上产生硬表面层。与焊接方法相比,包层提供较低的热相关的变形,减少稀释,极低的孔隙度和更好的表面均匀性。在该研究中,使用激光熔覆法沉积马氏体不锈钢粉末,以改善铠装钢的表面电阻。在实验研究中,研究了过程中工艺参数(激光功率,激光速度和粉末进料速率)的影响。检查了包层的微观结构和稀释性能。确定包层结构具有高硬度和低稀释度,以及完全马氏体相。随着激光熔覆增加的表面电阻增加了铠装钢的使用寿命和耐磨性。

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