首页> 外文期刊>Journal of the European Ceramic Society >Transient liquid phase spark plasma sintering of B4C-based ceramics using Ti-Al intermetallics as sintering aid
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Transient liquid phase spark plasma sintering of B4C-based ceramics using Ti-Al intermetallics as sintering aid

机译:用Ti-Al金属间金属间烧结烧结助剂的B4C陶瓷瞬态液相火花血浆烧结

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Fully-dense B4C-based ceramics were fabricated using Ti-Al intermetallics as sintering aid by Spark Plasma Sintering at a low temperature of 1700 degrees C whilst applying 32 MPa uniaxial pressure. The influence of the intermetallic additions on the phase composition, morphology and mechanical properties of the ceramics were investigated. The intermetallics flowed and react with B4C to form a three-phase composite containing B4C, TiB2 and Al4C3 during the transient liquid phase sintering process. The TiB2 and Al4C3 particles were located on the boundaries between B4C grains and effectively inhibited the growth of B4C, which improved the mechanical properties. Good bonding between B4C and the phases formed was confirmed by TEM analysis. The specimens with 5 wt.% Ti-Al provide an attractive combination of homogeneous morphology and excellent mechanical properties, including a Vickers hardness of 33.5 +/- 0.4 GPa, a flexural strength of 506 +/- 16 MPa and a fracture toughness of 5.5 +/- 0.1 MPa m(0.5). (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用Ti-Al金属间金属剂制造完全密集的B4C陶瓷,作为烧结等离子体烧结在施加32MPa的单轴压力时,通过火花等离子体烧结在1700℃的低温下烧结。研究了金属间成分对陶瓷的相组成,形态和力学性能的影响。金属间化合物流动并与B4C反应,在瞬态液相烧结过程中形成含有B4C,TIB2和AL4C3的三相复合材料。 TiB2和Al 4C3颗粒位于B4C晶粒之间的边界上,有效地抑制B4C的生长,这改善了机械性能。通过TEM分析确认形成B4C和形成的相之间的良好键合。具有5重量%的试样。%Ti-A1提供均匀形态和优异的机械性能的有吸引力的组合,包括33.5 +/- 0.4GPa的维氏硬度,弯曲强度为506 +/- 16MPa和5.5的断裂韧性+/- 0.1 MPa m(0.5)。 (c)2016 Elsevier Ltd.保留所有权利。

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