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首页> 外文期刊>Metals and Materials International >In-Situ (TiB+TiC) Particulate Reinforced Titanium Matrix Composites: Effect of B_4C Size and Content
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In-Situ (TiB+TiC) Particulate Reinforced Titanium Matrix Composites: Effect of B_4C Size and Content

机译:原位(TiB + TiC)颗粒增强钛基复合材料:B_4C尺寸和含量的影响

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摘要

This study investigated the microstructure and tensile behavior of (TiB+TiC) reinforced titanium matrix composites (TMCs) using an in-situ reaction between Ti and B_4C. Different B_4C sizes (1,500 and 150 μm) and contents (0.94, 1.88 and 3.76 mass%) were added to pure Ti to produce 5, 10, and 20 vol% (TiB+TiC) reinforced TMCs. In-situ synthesized TiB and TiC reinforcements prepared with 150 μm B_4C were very fine, and were distributed more homogeneously than the 1,500 μm B_4C. As the TiB and TiC contents increased, the tensile strength increased and the ductility decreased compared to unreinforced pure Ti. The improvements in the tensile strength of TMCs were obtained by load transfer strengthening and an alpha-Ti matrix grain reduction of 9-26%. In addition, the TMCs produced using 150 μm B_4C showed a greater tensile elongation of approximately 61-117%, with a slightly improved strength compared to that with 1,500 μm B_4C. The tensile elongation of TMCs obtained with 150 μm B_4C was enhanced because the coarse reinforcements produced by 1,500 μm B_4C were more easily and frequently cracked at the fracture surface.
机译:本研究利用Ti和B_4C之间的原位反应研究了(TiB + TiC)增强钛基复合材料(TMC)的微观结构和拉伸性能。将不同的B_4C尺寸(1,500和150μm)和含量(0.94、1.88和3.76质量%)添加到纯Ti中,以生产5、10和20 vol%(TiB + TiC)增强的TMC。用150μmB_4C制备的原位合成TiB和TiC增强材料非常精细,并且比1,500μmB_4C分布更均匀。与未增强的纯钛相比,随着TiB和TiC含量的增加,抗张强度增加,延展性降低。通过负载转移增强和9-26%的α-Ti基体晶粒减少,可实现TMC拉伸强度的提高。此外,与1,500μmB_4C相比,使用150μmB_4C生产的TMC表现出更大的拉伸伸长率,约为61-117%,强度略有提高。用150μmB_4C获得的TMC的拉伸伸长率得到增强,这是因为用1,500μmB_4C产生的粗增强物更容易且经常在断裂表面开裂。

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