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ZrCp/W复合材料组织结构与室温力学性能
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TB333 TG146.411

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航天九五预研项目(18.10.2.3);中国博士后科学基金资助项目


Microstructures and Mechanical Properties of ZrCp/W Composites at Room Temperature
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    摘要:

    用XRD、SEM和TEM研究了ZrC颗粒增强钨基复合材料(ZrCp/W,ZrCp的体积分数为30%)的组织结构。由于ZrCp的加入,阻碍了钨晶粒在烧结时的长大,W向ZrC晶格扩散,在ZrC中形成(Zr,W)C固溶体,Zr也向W中发生了少量扩散,使ZrCp/W界面形成冶金结合。在复合材料中还存在很少量的W2C和ZrO2。室温下,复合材料的韧性、弹性模量和硬度都明显比纯钨高,但复合材料的抗弯强度比纯钨低。复合材料的韧化机制是裂纹偏转和细晶韧化。

    Abstract:

    The microstructures of ZrC particle reinforced tungsten matrix composite (ZrC P/W, 30vol%ZrC particles) have been investigated using XRD, SEM and TEM. The experimental results indicate that the ZrC particles inhabit the growth of tungsten grains during sintering. The relative density of the composite is less than that of monolithic tungsten. W atoms diffuse in the lattice of ZrC, resulting in a formation of (Zr, W)C solid solution in ZrC particles, and a little of Zr diffuse in W lattice, resulting in a metallurgical bonding of ZrC particles to W matrix. W 2C and ZrO 2 phases were found rarely in the composites. At room temperature, the fracture toughness, elastic modulus and hardness of the composite increase because of the additive ZrC particles, but the flexural strength of the composite is lower than that of monolithic tungsten. The toughening mechanisms of ZrC P/W composite are crack deflection and grain refining.

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宋桂明 王玉金 等. ZrCp/W复合材料组织结构与室温力学性能[J].稀有金属材料与工程,2001,(6):448~452.[Song Guiming, Wang Yujing, Zhou Yu, Sun Yi . Microstructures and Mechanical Properties of ZrCp/W Composites at Room Temperature[J]. Rare Metal Materials and Engineering,2001,(6):448~452.]
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  • 最后修改日期:2000-08-22
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