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首页> 外文期刊>Optics & Laser Technology >Phase evolution and wear resistance of in situ synthesized V8C7 particles reinforced Fe-based coating by laser cladding
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Phase evolution and wear resistance of in situ synthesized V8C7 particles reinforced Fe-based coating by laser cladding

机译:原位合成V8C7颗粒通过激光熔覆合成的V8C7颗粒增强Fe基涂层的相位演化和耐磨性

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摘要

In situ synthesized V8C7 reinforced Fe-based composite coating was successfully prepared on 35CrMo steel by laser cladding, aiming at improving the wear resistance. Constituent phases, microstructure, microhardness and wear resistance of the coating were investigated using XRD, SEM, microhardness tester and friction-wear tester. The results showed that the obtained coating was uniform and dense with no pores or cracks appearing, in addition to satisfied metallurgical bonding to the substrate. The coating was mainly composed of alpha-Fe, V8C7, Cr7C3, Fe3C and Mo2C phase. Fine V8C7 reinforced particles were in situ synthesized during the melting process. The shape of V8C7 particles changed from sphere to irregular blocks as a distance from the interface, which was due to the crash and binding of V8C7 particles with each other. The microhardness of coating was 775 HV0.3, which was about 4 times greater than the substrate. The wear resistance of the coating was significantly improved as indicated by the higher relative wear resistance. (C) 2018 Elsevier Ltd. All rights reserved.
机译:原位合成的V8C7通过激光包层成功地在35crmo钢上制备了增强的Fe基复合涂层,旨在改善耐磨性。使用XRD,SEM,微硬度测试仪和摩擦磨损测试仪研究了涂层的组成阶段,微观结构,显微硬度和耐磨性。结果表明,除了满意的冶金结合到基材之外,所得到的涂层均匀,致密,没有孔隙或裂缝。涂层主要由α-Fe,V8C7,Cr7C3,Fe 3C和Mo2C相组成。在熔化过程中,细v8c7增强颗粒原位合成。 V8C7颗粒的形状从球体变为不规则块,从界面到距离,这是由于V8C7颗粒彼此的碰撞和结合。涂层的微硬度为775 HV0.3,比底物大约4倍。如较高的相对耐磨性所示,涂层的耐磨性显着提高。 (c)2018年elestvier有限公司保留所有权利。

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