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首页> 外文期刊>Journal of Materials Engineering and Performance >Role of Si in the Surface Damage Mechanism of RB-SiC/Si Under Mechanical Loading
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Role of Si in the Surface Damage Mechanism of RB-SiC/Si Under Mechanical Loading

机译:Si在机械负载下RB-SiC / Si表面损伤机制的作用

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摘要

Indentation test (Nanoindentation and Vickers indentation), diamond scratching and high spindle speed grinding are conducted to investigate the role of silicon (Si) in the surface damage behavior of reaction-bonded SiC/Si composites (RB-SiC/Si). Even though the addition of Si contributes to densifying the bulk materials and improving the toughness, the indentation and diamond scratching results firstly indicate that the cracks initiate at the SiC/Si interfaces due to the non-uniform deformation caused by the existence of Si, and the phase transformation of Si also leads to the pop-out effect during the nanoindentation and the diamond scratching test. The ground surface of RB-SiC/Si is characterized by scratching grooves and brittle fracture, indicating the ductile material removal mode and brittle material removal mode for RB-SiC/Si, respectively, and the surface reliefs form on the ground surface due to the different hardness between Si and SiC phases. Moreover, the phase transformation of Si contributes to the easy fracture of phase boundaries under the mechanical loading, and the accompanied volume change also results in the dislodgement of hard particles and the generation of surface burs on the ground surface.
机译:压痕试验(纳米狭窄和维氏压痕),进行金刚石刮擦和高主轴速度研磨,以研究硅(Si)在反应键合SiC / Si复合材料的表面损伤行为(RB-SiC / Si)中的作用。尽管Si的添加有助于使散装材料致密并改善韧性,但凹陷和钻石刮擦结果首先表明由于Si的存在引起的不均匀变形,裂缝引发了SiC / Si界面。 Si的相变也导致纳米茚满和钻石刮擦试验期间的弹出效应。 RB-SiC / Si的接地表面的特征在于刮擦凹槽和脆性断裂,表明延性材料去除模式和脆性材料去除模式分别用于RB-SiC / Si,并且由于所引起的地面上的表面浮雕形式Si和SiC阶段之间的不同硬度。此外,Si的相变有助于在机械负载下易于相位边界的骨折,并且伴随的体积变化也导致硬颗粒的脱发和地面上表面毛刺的产生。

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