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Effect of laser irradiation on failure mechanism of TiCp reinforced titanium composite coating produced by laser cladding

机译:激光辐照对激光熔覆TiCp增强钛复合涂层破坏机理的影响

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摘要

Laser cladding is an effective technique to coat a metallic substrate with a layer of a different nature.It has been widely reported that the most important combined parameters controlling the quality ofthe coating are the specific energy (E) and the powder density ( ). In the present work, clad depositsof Ti6Al4V + 60 wt.% TiC were prepared on a Ti6Al4V substrate using an optimum combination ofEc= 24 J/mm2and c= 3 mg/mm2. These experiments were performed using a laser power of 400 and600 W, in order to study the effect of laser power on the properties of the clad. The microstructure, phasecomposition and nanohardness of the coatings were investigated by optical microscopy, scanning elec-tron microscopy and X-ray diffraction. During laser processing, TiC can be partially converted to TiCX(X = 0.5) due mainly to the TiC dissolution into the laser-generated melting pool and subsequent precipi-tation during cooling. It was observed that the lower laser power limit reduces primary TiC dissolution butit also promotes secondary carbide alignment at the interface. On the other hand, the damage mechanisminduced by high laser power is dominated by primary TiC particle cracking by the high stress concentra-tion at the particle¿matrix interface followed by ductile failure of the matrix. It is also remarkable thatirradiance affects the TiC/TiCxratio despite Ecand care fixed and it determines hardness distributioninside the coating.
机译:激光熔覆是一种在金属基材上涂覆不同性质层的有效技术。据广泛报道,控制涂层质量的最重要的综合参数是比能(E)和粉末密度()。在本工作中,使用Ec = 24 J / mm2和c = 3 mg / mm2的最佳组合,在Ti6Al4V基板上制备了Ti6Al4V + 60 wt。%TiC的复合沉积物。为了研究激光功率对包层性能的影响,使用400和600 W的激光功率进行了这些实验。通过光学显微镜,扫描电子显微镜和X射线衍射研究了涂层的微观结构,相组成和纳米硬度。在激光加工过程中,TiC可以部分转化为TiCX(X = 0.5),这主要是因为TiC溶解在激光产生的熔池中,并且随后在冷却过程中析出。观察到较低的激光功率极限降低了初次TiC的溶解,但也促进了界面处的二次碳化物排列。另一方面,由高激光功率引起的破坏机理主要是由初次TiC颗粒开裂所致,即在基体界面处的高应力集中导致基体的延性破坏。同样值得注意的是,尽管固定了Ecand护理,但辐照度仍会影响TiC / TiCx比率,并决定涂层内部的硬度分布。

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