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Brazing TiC/Ti matrix composite using Ti-Ni eutectic braze alloy

机译:使用Ti-Ni共晶钎焊合金钎焊TiC / Ti基质复合材料

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Vacuum brazing of TiC/Ti matrix composite was performed using Ti-28mass%Ni eutectic brazing alloy. The brazed joints were obtained at different temperatures and holding times. The microstructure and mechanical properties of the joints were investigated in detail. The results show that the typical interfacial microstructure of the brazed joints is Ti solid solution, delta-Ti2Ni phase and TiC particles. As the brazing temperature was increased from 1283 K/l0min to 1353 K/10min, the joint shear strength first increased and then decreased. Prolonging the holding time, caused the shear strength of the joints to decrease. The maximum shear strength reached 711.4 MPa at 1333 K for 10 min, which is more than twice that obtained with the conventional brazing of Ti alloys. The fracture location varied from the brazing joints to the substrate in different brazing processes. The fracture path, located at the substrate, can only be found at 1333 K/10min. The microstructural evolution of the brazed joints with different brazing processes was clarified and its relationship with the mechanical performance was revealed in detail.
机译:使用Ti-28mass%Ni共晶钎焊合金进行TiC / Ti基质复合材料的真空钎焊。在不同的温度下获得钎焊的关节并保持时间。详细研究了关节的微观结构和机械性能。结果表明,钎焊接头的典型界面微观结构是Ti固溶体,Delta-Ti2Ni相和TiC颗粒。随着钎焊温度从1283 k / l0min增加至1353k / 10min,关节剪切强度首先增加,然后降低。延长保持时间,导致关节的剪切强度降低。最大剪切强度达到711.4MPa,1333 k持续10分钟,其与常规Ti合金钎焊的两倍多。断裂位置在不同钎焊过程中从钎焊接头变化到基板。位于基材的断裂路径只能在1333k ​​/ 10min处找到。阐明了不同钎焊过程的钎焊接头的微观结构演变,并详细揭示了与机械性能的关系。

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