标题:In Situ Formation of Ti47Cu38Zr7.5Fe2.5Sn2Si1Nb2 Amorphous Coating by Laser Surface Remelting
作者:Li, Peizhen; Meng, Lingtao; Wang, Shenghai; Wang, Kunlun; Sui, Qingxuan; Liu, Lingyu; Zhang, Yuying; Yin, Xiaotian; Zhang, Qingxia; 更多
作者机构:[Li, Peizhen; Meng, Lingtao; Wang, Shenghai; Wang, Kunlun; Sui, Qingxuan; Liu, Lingyu; Zhang, Yuying; Yin, Xiaotian; Zhang, Qingxia; Wang, Li] Shandon 更多
通讯作者:Wang, SH;Wang, L
通讯作者地址:[Wang, SH; Wang, L]Shandong Univ Weihai, Sch Mech Elect & Informat Engn, Weihai 264209, Peoples R China.
来源:MATERIALS
出版年:2019
卷:12
期:22
DOI:10.3390/ma12223660
关键词:in situ amorphous coating; laser surface remelting; Ti-based alloy
摘要:In previous studies, Ti-based bulk metallic glasses (BMGs) free from Ni and Be were developed as promising biomaterials. Corresponding amorphous coatings might have low elastic modulus, remarkable wear resistance, good corrosion resistance, and biocompatibility. However, the amorphous coatings obtained by the common methods (high velocity oxygen fuel, laser cladding, etc.) have cracks, micro-pores, and unfused particles. In this work, a Ti-based Ti47Cu38Zr7.5Fe2.5Sn2Si1Nb2 amorphous coating with a maximum thickness of about 100 mu m was obtained by laser surface remelting (LSR). The in-situ formation makes the coating dense and strongly bonded. It exhibited better corrosion resistance than the matrix and its corrosion mechanism was discussed. The effects of LSR on the microstructural evolution of Ti-based prefabricated alloy sheets were investigated. The nano-hardness in the heat affected zone (HAZ) was markedly increased by 51%, meanwhile the elastic modulus of the amorphous coating was decreased by 18%. This demonstrated that LSR could be an effective method to manufacture the high-quality amorphous coating. The in-situ amorphous coating free from Ni and Be had a low modulus, which might be a potential corrosion-resistant biomaterial.
收录类别:SCOPUS;SCIE
资源类型:期刊论文
原文链接:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85075794019&doi=10.3390%2fma12223660&partnerID=40&md5=a4b55a00cf4ee0dc61e8d6e347ada914
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