不同电弧金属化工艺模式下耐磨涂层结构的研究

M. Z. Borisova, N. F. Struchkov, G. G. Vinokurov
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摘要

电弧金属化是现代表面工程技术之一,可保证高质量的表面层。电弧喷涂工艺广泛应用于金属的防腐保护以及机械和机构磨损部件的修复。本研究采用添加刚玉的包芯线显影IPNPN。通过在钢基体上电弧金属化,制备了约300 μm厚度的耐磨损涂层。电弧金属化的工艺模式如电流强度和电弧电压对镀层的形成有重要影响。研究了电流强度为220 ~ 250a、250 ~ 280a和280 ~ 300a时涂层的结构。采用扫描电子显微镜(SEM)和x射线衍射仪(XRD)对涂层的微观结构进行了表征。金属化层的结构具有非均匀层状结构的特点。增强相的分布和数量对机械零件和机构表面的耐磨性、硬度和强度有显著影响。研究电弧金属化工艺模式对其形成的影响,有助于进一步发展这种零件和机械表面处理方法。关键词:电弧金属化,包芯线,耐磨涂层,改性,粉末线,结构,刚玉
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Study of the Structure of Wear-Resistant Coatings Obtained under Different Technological Modes of the Arc Metallization
Arc metallization of the cored wires is one of the modern surface engineering technologies assuring high quality surface layers. The wire arc spraying process is widely used for protection of metal against corrosion and for restoration of worn parts of machines and mechanisms. The present study used a cored wire development IPNPN with additives of corundum. Wear resistant coatings of about 300 μm thickness were prepared through arc metallization of the flux-cored wires onto steel substrate. Technological modes of arc metallization such as current strength and arc voltage have a significant influence on the formation of coatings. The structure of coatings obtained at the current strength of 220-250, 250-280 and 280-300 A was studied. The microstructure of the coatings was characterized by scanning electron microscope (SEM) and X-ray diffraction (XRD). The structure of the metallized layer is characterized by a non-uniform layered structure. The distribution and number of reinforcing phases significantly affect the wear resistance, hardness and strength of the treated surface of machine parts and mechanisms. The study of the structure of the wear-resistant coating and the influence of technological modes of arc metallization on its formation will help in the further development of this method of surface treatment of parts and machines. Keywords— wire arc metallization, cored wire, wear-resistant coating, modification, powder wire, structure, corundum
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