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首页> 外文期刊>Journal of the European Ceramic Society >In situ synthesis and sintering of B4C/ZrB2 composites from B4C and ZrH2 mixtures by spark plasma sintering
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In situ synthesis and sintering of B4C/ZrB2 composites from B4C and ZrH2 mixtures by spark plasma sintering

机译:B4C / ZrH2混合物通过火花等离子体烧结原位合成和烧结B4C / ZrB2复合材料

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摘要

B4C/ZrB2 composites were fabricated from raw mixtures of B4C and ZrH2 by spark plasma sintering at 1700 degrees C in vacuum by applying 32 MPa pressure and held at 1700 degrees C for 10 min. X-ray diffraction analysis illustrated that a chemical reaction took place between B4C and ZrH2 which resulted in B4C/ZrB2 composites. The in situ reaction between B4C and ZrH2 produced elemental carbon and ZrB2, both of them aided the sintering process. The effect of ZrH2 addition on the microstructure and mechanical properties of B4C matrix was studied. Microstructrual coarsening was restrained by the incorporation of ZrB2 particles and its mechanical properties were consequently enhanced. The specimen with 8 wt% of ZrH2 as a sintering aid was found to have 98.73% relative density, 31.28 GPa hardness, 511 MPa flexural strength, and 4.2 MPa m(1/2) fracture toughness. (C) 2014 Elsevier Ltd. All rights reserved.
机译:B4C / ZrB2复合材料由B4C和ZrH2的原始混合物通过在真空中施加32 MPa的压力在1700摄氏度下进行火花等离子体烧结而制成,并在1700摄氏度下保持10分钟。 X射线衍射分析表明,B4C和ZrH2之间发生了化学反应,从而形成了B4C / ZrB2复合材料。 B4C和ZrH2之间的原位反应产生了元素碳和ZrB2,二者均有助于烧结过程。研究了添加ZrH2对B4C基体组织和力学性能的影响。 ZrB2颗粒的加入抑制了显微组织的粗化,因此提高了其机械性能。发现具有8wt%的ZrH 2作为烧结助剂的样品具有98.73%的相对密度,31.28GPa的硬度,511MPa的弯曲强度和4.2MPa的m(1/2)断裂韧性。 (C)2014 Elsevier Ltd.保留所有权利。

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