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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >W-ZrC composites prepared by reactive melt infiltration of Zr2Cu alloy into partially carburized W preforms
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W-ZrC composites prepared by reactive melt infiltration of Zr2Cu alloy into partially carburized W preforms

机译:通过反应性熔融浸润制备的W-ZRC复合材料 2 Cu合金进入部分渗碳的W预制件

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摘要

Abstract W-ZrC composites without residual WC have been prepared for the first time by reactive infiltration at 1300°C for 1h in vacuum using a molten Zr2Cu alloy and a newly designed partially-carburized W powder as raw materials. The as-synthesized composites consist of two major phases of W and ZrC, in which the content of W is 65vol%. The reaction time needed to produce a fully densified W-ZrC bulk ceramic is distinctly shortened by this means, as contrasted with conventional WC/W or WC preforms. The microstructural evolution during reactive melt infiltration is investigated to obtain a better understanding of reaction mechanisms and mechanical properties of the W-ZrC composites derived by infiltrating Zr2Cu alloy into partially carburized W preforms. The flexural strength, Young's modulus and fracture toughness for the W-ZrC composite are 554MPa, 339GPa and 9.7MPa·m1/2, respectively. Highlights ? W-ZrC composites without residual WC were prepared by infiltrating molten Zr2Cu into partially carburized W preforms. ? The reaction time needed to produce a fully densified W-ZrC bulk ceramic is distinctly shortened. ? The flexural strength and fracture toughness for the W-ZrC composite are 554 MPa and 9.7 MPa·m1/2, respectively. ]]>
机译:<![cdata [ 抽象 W-ZRC复合材料没有残留WC通过1300 °C为1 0.25“/> H.> 2 Cu合金和A新设计的部分渗碳W粉末作为原料。作为合成的复合材料由W和Zrc的两个主要阶段组成,其中W的含量为65 Vol%。产生完全致密的W-ZRC批量陶瓷所需的反应时间明显缩短,与常规WC / W或WC预制件形成鲜明对比。研究了反应性熔体渗透过程中的微观结构演化,以更好地了解通过渗透Zr 2 cu合金进入的W-Zrc复合材料的反应机制和机械性能部分渗碳W预制件。 W-ZRC复合材料的弯曲强度,杨氏模量和断裂韧性为554 MPa,339 GPA和9.7 mpa·m 1/2 亮点 < CE:标签>? 通过渗透Molten Zr cu进入部分渗碳的w预制件。 产生完全致密的反应时间所需的反应时间ZRC散装陶瓷明显缩短。 W-ZRC复合材料的弯曲强度和断裂韧性为554MPa和9.7MPa·M 1/2 ,分别。 ]]>

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