Zhuang Qiaoqiao, Zhang Peilei, Li Mingchuan, Yan Hua, Yu Zhishui, Lu Qinghua
School of Materials Engineering, Shanghai University of Engineering Science, Shanghai 201620, China.
Shanghai Collaborative Innovation Center of Laser Advanced Manufacturing Technology, Shanghai 201620, China.
Materials (Basel). 2017 Oct 30;10(11):1248. doi: 10.3390/ma10111248.
The Ni-Ti-Si composite coatings were successfully fabricated on Ti6Al4V by laser cladding. The microstructure were studied by SEM (scanning electron microscopy) and EDS (energy dispersive spectrometer). It has been found that Ti₂Ni and Ti₅Si₃ phases exist in all coatings, and some samples have TiSi₂ phases. Moreover, due to the existence of these phases, coatings presented relatively higher microhardness than that of the substrate (826 HV (Vickers hardness)) and the microhardness value of coating 3 is about twice larger than that of the substrate. During the dry sliding friction and wear test, due to the distribution of the relatively ductile phase of Ti₂Ni and reinforcement phases of Ti₅Si₃ and TiSi₂, the coatings performed good wear resistance. The oxidation process contains two stages: the rapid oxidation and slow oxidation by high temperature oxidation test at 800 °C for 50 h. Meanwhile, the value of the oxidation weight gain of the substrate is approximately three times larger than that of the coating 4. During the oxidation process, the oxidation film formed on the coating is mainly consisted of TiO₂, Al₂O₃ and SiO₂. Phases Ti₂Ni, Ti₅Si₃, TiSi₂ and TiSi were still found and it could be responsible for the improvement in oxidation resistance of the coatings by laser cladding.
通过激光熔覆在Ti6Al4V上成功制备了Ni-Ti-Si复合涂层。利用扫描电子显微镜(SEM)和能谱仪(EDS)对其微观结构进行了研究。研究发现,所有涂层中均存在Ti₂Ni和Ti₅Si₃相,部分样品中还存在TiSi₂相。此外,由于这些相的存在,涂层的显微硬度相对高于基体(维氏硬度826 HV),涂层3的显微硬度值约为基体的两倍。在干滑动摩擦磨损试验中,由于Ti₂Ni相对韧性相以及Ti₅Si₃和TiSi₂增强相的分布,涂层表现出良好的耐磨性。在800℃下进行50 h的高温氧化试验表明,氧化过程包括快速氧化和缓慢氧化两个阶段。同时,基体的氧化增重值约为涂层4的三倍。在氧化过程中,涂层上形成的氧化膜主要由TiO₂、Al₂O₃和SiO₂组成。仍能发现Ti₂Ni、Ti₅Si₃、TiSi₂和TiSi相,这可能是激光熔覆提高涂层抗氧化性的原因。