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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 >Mechanical, thermal physical properties and thermal shock resistance of in situ (TiB2+SiC)/Ti3SiC2 composite
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Mechanical, thermal physical properties and thermal shock resistance of in situ (TiB2+SiC)/Ti3SiC2 composite

机译:原位(TIB2 + SIC)/ TI3SIC2复合材料机械,热物理性能和热抗震性能

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Dense (TiB2+SiC)/Ti3SiC2 composite with 20 vol% TiB2 and 10 vol% SiC was synthesized by in situ reaction hot pressing. The room and high temperature mechanical and thermal physical properties, as well as thermal shock resistance of the composite were investigated and compared with SiC/Ti3SiC2 composite as prepared by the same process. The synergistic action of TiB2 and SiC produced a significant strengthening and toughening effect and (TiB2+SiC)/Ti3SiC2 composites exhibit superior room-and high-temperature mechanical properties compared with SiC/Ti3SiC2 composite. Especially, (TiB2+SiC)/Ti3SiC2 composite shows higher Young's modulus from 25 degrees C to high temperature and can retain a high modulus of 313 GPa (about 81% of room temperature value) up to 1200 degrees C. From 25 degrees C to 800 degrees C, (TiB2+SiC)/Ti3SiC2 composite has higher thermal conductivity and slightly lower coefficient of thermal expansion. Both water quenching test results and calculation of thermal shock resistance parameters, R, R-st and R-IV indicate an improved thermal shock resistance of (TiB2+SiC)/Ti3SiC2 composite, with an increase of the critical thermal shock temperature difference Delta T-c from 325 degrees C for SiC/Ti3SiC2 to 440 degrees C for (TiB2+SiC)/Ti3SiC2. Superior properties render (TiB2+SiC)/Ti3SiC2 composite a promising prospect as high temperature structural materials. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过原位反应热压合成致密(TIB2 + SiC)/ Ti3SIC2复合材料,其中20Vol%TiB2和10Vol%SiC合成。研究了房间和高温机械和热物理性质,以及复合材料的热抗震性,并与通过相同工艺制备的SiC / Ti3SIC2复合材料进行比较。 TIB2和SiC的协同作用产生了显着的强化和增韧效果,(TIB2 + SiC)/ Ti3SIC2复合材料与SiC / Ti3 SiC 2复合材料相比表现出优质的室温和高温机械性能。特别地,(TIB2 + SIC)/ TI3SIC2复合材料显示较高的杨氏模量从25摄氏度到高温,可以保留313GPa的高模量(约81%的室温值),高达1200℃。 800℃,(TIB2 + SIC)/ TI3SIC2复合材料具有较高的导热性和略微较低的热膨胀系数。淬火试验结果和热抗冲击参数的计算结果,R,R-ST和R-IV表示(TIB2 + SIC)/ TI3SIC2复合材料的改善的热抗震性,随着临界热冲击温度差DELTA TC的增加对于(TIB2 + SIC)/ TI3SIC2,SiC / Ti3SIC2至440c的325℃。优异的特性呈现(TIB2 + SIC)/ TI3SIC2复合具有高温结构材料的有希望的前景。 (c)2017年Elsevier B.V.保留所有权利。

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