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Isothermal solidification stage during transient liquid-phase bonding single-crystal superalloys

机译:瞬态液相键合单晶高温合金的等温凝固阶段

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摘要

In this work, the isothermal solidification stage during transient liquid-phase bonding (TLP) single-crystal superalloys has been investigated. Experiments were performed to ascertain the bonding microstructures and the kinetics during the isothermal solidification. The results have shown that the isothermal solidification stage deviates from the standard parabolic TLP models. Lots of the borides with fine, short bar and acicular morphologies formed in the diffusion affected zone (DAZ) in the thick wall and thin wall substrate specimens at the isothermal solidification stage. Electron probe microanalysis results have shown that there exists B composition peak in the DAZ. Examination of the bonding kinetics presented that there are three stages in the isothermal solidification stage: initial stage, transient stage and final stage with different growth velocity of the isothermal solidification zone (ISZ). And the relationship of the width of the ISZ with the square root of the bonding time didn't satisfy the parabolic relationship. Based on the microstructures and kinetics observed, a film ISZ mechanism is proposed, and a model is constructed to illustrate the isothermal solidification stage during bonding single-crystal superalloys.
机译:在这项工作中,研究了瞬态液相键合(TLP)单晶高温合金的等温凝固阶段。进行实验以确定等温凝固过程中的键合微观结构和动力学。结果表明,等温凝固阶段偏离了标准抛物线TLP模型。在等温凝固阶段,在厚壁和薄壁基体样品的扩散影响区(DAZ)中形成了许多具有精细,短棒状和针状形态的硼化物。电子探针的微分析结果表明,DAZ中存在B组成峰。结合动力学的研究表明,等温凝固阶段包括三个阶段:初始阶段,过渡阶段和最终阶段,等温凝固区(ISZ)的生长速度不同。而且,ISZ的宽度与键合时间的平方根的关系不满足抛物线关系。基于观察到的微观结构和动力学,提出了薄膜ISZ机理,并建立了一个模型来说明单晶高温合金粘结过程中的等温凝固阶段。

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