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Influence of Processing on the Mechanical Properties of Ti-6AI-4V-Based Composites Reinforced with 7.5 mass percent TiC and 7.5 mass percent W

机译:加工工艺对7.5质量%TiC和7.5质量%W增强的Ti-6AI-4V基复合材料力学性能的影响

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摘要

7.5 mass percent TiC and 7.5 mass percent W powder blends were densified with Ti-6A1-4V blends by combined cold and hot isostatic pressing (CHIP) method to result in three types of composites with differing processing histories, namely hot isostatic pressing (HIPping), extrusion, and casting, which were compared with their monolithic counterparts. Tensile and microhardness tests, along with compressive testing, were carried out to investigate the mechanical properties of powder metallurgy (P/M) Ti-6Al-4V-7.5 percentTiC-7.5 percentW composites at ambient temperature. Dissolution of W powder in the Ti-6A1-4V matrix during consolidation seems to be limited by the presence of TiC particles, which can in turn influence mechanical properties of the composites. Cast Ti-6Al-4V-7.5 percentTiC-7.5 percentW composite exhibits superior hardness, yield strength, and tensile strength, with a decrease in ductility, compared to its monolithic counterpart and other composites.
机译:通过冷热等静压(CHIP)组合方法,将7.5质量%的TiC和7.5质量%的W粉末混合物与Ti-6A1-4V混合物进行致密化,得到三种具有不同加工历史的复合材料,即热等静压(HIPping) ,挤压和铸造,并与它们的整体模型进行了比较。进行了拉伸和显微硬度测试以及压缩测试,以研究粉末冶金(P / M)Ti-6Al-4V-7.5%TiC-7.5%W复合材料在环境温度下的力学性能。固结过程中W粉在Ti-6A1-4V基体中的溶解似乎受到TiC颗粒的限制,而TiC颗粒反过来又会影响复合材料的机械性能。与整体式对应物和其他复合材料相比,铸造的Ti-6Al-4V-7.5%TiC-7.5%W复合材料具有优异的硬度,屈服强度和拉伸强度,并且延展性降低。

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