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首页> 外文期刊>Surface Engineering >Investigation of hydroabrasive erosion of laser alloyed nickel and titanium based intermetallic matrix composites with TiC reinforcement
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Investigation of hydroabrasive erosion of laser alloyed nickel and titanium based intermetallic matrix composites with TiC reinforcement

机译:TiC增强激光合金镍钛基金属间化合物的水磨蚀研究。

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摘要

B2-NiTi and Ti3Al based single and dual phase intermetallic matrix composites (IMC) with TiC reinforcement were laser alloyed using Ni/Al-VC, Al-VC and Al-Cr3C2 powder mixtures. A sufficient amount of Ti from the substrate reacted with the injected alloy powder mixture to form Ti based intermetallics and TiC. The coatings were characterised by optical microscopy (OM), scanning electron microscopy (SEM), X-ray diffraction analysis (XRD) and energy dispersive spectroscopy (EDS). The erosion resistance of the alloyed layers was characterised by high speed particle laden liquid impact erosion tests. The high work hardening ability of Ti3Al IMC strengthened by TiC reinforcement improved the erosion resistance up to a factor of 1˙39. Compared to the single phase IMC, the dual phase IMC coatings were found not to be suitable for applications similar to the present test conditions due to possibly preferential removal of secondary precipitates. An attempt has been made to identify the influence of different depth sensing indentation (DSI) derived mechanical properties to the erosion resistance of the alloyed layers. The correlation indicates the combined contribution of hardness, strain hardening exponent, surface elasticity and yield strength on improving the erosion resistance.
机译:Ni / Al-VC,Al-VC和Al-Cr 3 < / sub> C 2 粉末混合物。来自基材的足够量的Ti与注入的合金粉末混合物反应形成Ti基金属间化合物和TiC。通过光学显微镜(OM),扫描电子显微镜(SEM),X射线衍射分析(XRD)和能量色散光谱(EDS)对涂层进行表征。合金层的耐蚀性通过高速载有颗粒的液体冲击腐蚀试验来表征。 TiC增强增强的Ti 3 Al IMC的高加工硬化能力将其耐蚀性提高到1˙39。与单相IMC相比,发现双相IMC涂层由于可能优先去除次级沉淀物而不适用于类似于本试验条件的应用。已经尝试确定不同深度感测压痕(DSI)衍生的机械性能对合金层的耐蚀性的影响。相关性表明硬度,应变硬化指数,表面弹性和屈服强度对改善耐蚀性的综合贡献。

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