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首页> 外文期刊>Surface & Coatings Technology >Correlation of microstructure with hardness and fracture properties of (TiC,SiC)/Ti-6Al-4V surface composites fabricated by high-energy electron-beam irradiation
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Correlation of microstructure with hardness and fracture properties of (TiC,SiC)/Ti-6Al-4V surface composites fabricated by high-energy electron-beam irradiation

机译:高能电子束辐照制备的(TiC,SiC)/ Ti-6Al-4V表面复合材料的显微组织与硬度和断裂性能的关系

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摘要

Correlation of microstructure with hardness and fracture toughness of (TiC,SiC)/Ti-6Al-4V surface composites fabricated by high-energy electron-beam irradiation was investigated in this study. The mixtures of TiC, SiC, or TiC+SiC powders and CaF2 flux were placed on a Ti-6Al-4V substrate, and then the electron beam was irradiated on these mixtures using an electron-beam accelerator. The surface composite layers of 1.2similar to2.1 mm in thickness were formed, and contained a large amount (up to 66 vol.%) of precipitates such as TiC and Ti5Si3 in the martensitic matrix. This microstructural modification including the formation of hard precipitates and hardened matrix in the surface composite layer improved hardness. In situ observation of the microfracture process revealed that microcracks primarily initiated at precipitates, and that shear bands formed in the matrix between these microcracks. Thus, fracture toughness was determined mainly by the volume fraction of precipitates working as fracture initiation sites and partly by the matrix property interrupting the crack propagation. (C) 2003 Elsevier B.V. All rights reserved. [References: 21]
机译:研究了高能电子束辐照制备的(TiC,SiC)/ Ti-6Al-4V表面复合材料的显微组织与硬度和断裂韧性的关系。将TiC,SiC或TiC + SiC粉末和CaF2助熔剂的混合物放在Ti-6Al-4V基板上,然后使用电子束加速器将电子束照射在这些混合物上。形成了厚度接近于2.1mm的1.2的表面复合层,并在马氏体基体中包含了大量(最高66%(体积))的沉淀物,例如TiC和Ti5Si3。包括在表面复合层中形成硬质沉淀物和硬化基体在内的这种微观结构改性提高了硬度。对微裂缝过程的原位观察表明,微裂纹主要始于沉淀,并且在这些微裂纹之间的基质中形成了剪切带。因此,断裂韧性主要由充当断裂起始点的析出物的体积分数决定,部分由中断裂纹扩展的基体性质决定。 (C)2003 Elsevier B.V.保留所有权利。 [参考:21]

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