首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Two-Phase Micrestructures of Gamma+Gamma-Prime Formed by Phase-Separations due to Heat-Treatments of Eiastically Constrained Ni-AI-Ti Alloys
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Two-Phase Micrestructures of Gamma+Gamma-Prime Formed by Phase-Separations due to Heat-Treatments of Eiastically Constrained Ni-AI-Ti Alloys

机译:由于热约束Ni-Al-Ti合金的热处理,由相分离形成的Gamma + Gamma-Prime的两相微结构

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摘要

In the eiastically constrained Ni-Al-Ti alloy system, three kinds of phase-separations, i.e. microstructure changes, take place to bring the two-phase state of γ+γ' depending on the alloy compositions and heat treatments: 1) in Ni-8at%Al-6at%Ti, the phase-separation of γ phase takes place and γ' particles appear in the γ matrix, 2) in Ni-13at%Al-9at%Ti, the phase-separation of γ' intermetallic phase takes place and γ particles appear in the γ' matrix, 3) in Ni-8.5at%Al-5.4at%Ti, the phase-separation of γ' precipitate phase takes place and γ particles appear in the γ' precipitate.
机译:在严格约束的Ni-Al-Ti合金体系中,根据合金成分和热处理,发生了三种相分离,即微观结构变化,使γ+γ'进入两相状态:1)在Ni中-8at%Al-6at%Ti发生γ相分离并且γ'颗粒出现在γ基体中; 2)在Ni-13at%Al-9at%Ti中发生γ'金属间相的相分离3)在Ni-8.5at%Al-5.4at%Ti中发生γ颗粒出现在γ'基体中,发生γ'沉淀相的相分离,并且γ颗粒出现在γ'沉淀中。

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