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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >In-situ synthesis and superhigh modulus of network structured TiC/Ti composites based on diamond-Ti system
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In-situ synthesis and superhigh modulus of network structured TiC/Ti composites based on diamond-Ti system

机译:基于钻石系统的网络结构TIC / TI复合材料的原位合成与超高模量

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摘要

In order to enhance the elastic modulus and strength of titanium, novel continuous network structured TiC particle reinforced Ti (TiC/Ti) composites were successfully fabricated by hot pressing sintering based on diamond-Ti system. The results showed that 5 vol% fine diamond powders can be homogeneously adhered onto the surface of large Ti powders by lower energy ball milling process of 250 rpm/5 h/3:1. The mixed powders resulted in equiaxed network microstructure of TiC/Ti composites formed by continuous TiC particle reinforcement around large Ti powders after in-situ reaction between diamond and Ti. However, high energy ball milling process of 300 rpm/10 h/10:1 must be employed due to excessive diamond powders, which can result in TiC/Ti composites with a novel flattened network microstructure. Among the composites, the one introduced by 10 vol% diamond exhibited the highest elastic modulus of 184 GPa, which was increased by 64% compared with pure Ti (112 GPa). The composites with 5 vol% and 7.5 vol% diamond presented 830 MPa and 1480 MPa compressive yield strengths respectively, which were 1.9- and 3.4-fold that of pure Ti (429 MPa). The superior elastic modulus and strength of the composites was mainly attributed to the continuous TiC network microstructure and remained reinforcement-lean region based on the Hashin-Shtrikman theory. (C) 2020 Elsevier B.V. All rights reserved.
机译:为了提高钛的弹性模量和强度,通过基于金刚石系统的热压烧结成功制造了新型连续网络结构化TiC颗粒增强Ti(TiC / Ti)复合材料。结果表明,通过250rpm / 5h / 3:1的较低能量球铣削方法,可以通过较低的能量球铣削方法均匀地粘附到大Ti粉末表面上的5体积%的金刚石粉末。混合粉末导致通过连续TIC颗粒增强在金刚石和Ti之间的原位反应后连续TIC颗粒增强形成的TiC / Ti复合材料的等轴网络微观结构。然而,由于过多的金刚石粉末,必须使用高能球铣过程300rpm / 10h / 10:1,这可能导致具有新颖的扁平网络微观结构的TiC / Ti复合材料。在复合材料中,由10Vol%金刚石引入的那个具有184GPa的最高弹性模量,与纯Ti(112GPa)相比,该弹性模量增加了64%。具有5 Vol%和7.5 Vol%金刚石的复合材料分别呈现830MPa和1480MPa压缩屈服强度,其为纯Ti的1.9-和3.4倍(429MPa)。复合材料的卓越弹性模量和强度主要归因于连续的TIC网络微观结构和基于Hashin-Shtrikman理论的剩余增强区域。 (c)2020 Elsevier B.v.保留所有权利。

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