激光熔覆B4C-TiO2-Al粉末制备原位TiB2+TiC/Fe复合涂层

来源期刊:中国有色金属学报(英文版)2013年第6期

论文作者:王新洪 潘向宁 杜宝帅 李 帅

文章页码:1689 - 1693

关键词:TiB2-TiC;激光熔覆;显微组织;耐磨性能

Key words:TiB2-TiC; laser cladding; microstructure; wear properties

摘    要:采用B4C、 TiO2、Al以及Fe基自熔合金粉末为前驱体,利用激光熔覆技术在钢基体上制备TiB2+TiC颗粒增强Fe基复合涂层。结果表明,激光熔覆过程通过B4C-TiO2-Al反应生成了均匀分布于基体的TiB2-TiC复合陶瓷相。TiB2 颗粒呈长条块状,TiC以不规则形状分布于基体中。涂层具有比基材1045钢更好的耐磨性能,但涂层的摩擦因数小。

Abstract: Steel matrix composites reinforced with TiB2+TiC reinforcement were produced by laser melting mixture of B4C, TiO2, Al and Fe-based self-melting alloy powders. The results show that TiB2+TiC ceramic particles were synthesized from the reaction of B4C, TiO2 and Al alloys during laser cladding process. The reinforcement particles were evenly distributed in the coating. TiB2 grew in rectangle shape, but TiC presented irregular cubic shape. The wear resistance of the coating was higher than that of the substrate of 1045 steel; meanwhile, the friction coefficient of the coating was considerably lower than that of 1045 steel.

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