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首页> 外文期刊>Journal of Materials Science >Dissolution and isothermal solidification behaviour of commercially pure titanium brazed using a pure nickel filler under TLPB conditions
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Dissolution and isothermal solidification behaviour of commercially pure titanium brazed using a pure nickel filler under TLPB conditions

机译:在TLPB条件下使用纯镍填料钎焊商钎焊的溶出和等温凝固行为

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Transient liquid phase bonding of Ti using elemental Ni foils represents a potential low-cost manufacturing route to join aerospace components. To fully develop this technique, the dissolution behaviour and kinetics of isothermal solidification in Ti/Ni joints were determined in this study. During heating, Ti-Ni intermetallic compounds form at the solid/liquid interface, which slows down the dissolution of the Ni foil, while promoting diffusion of Ni into the Ti base metal. These two features limit the amount of liquid gap widening that occurs during initial heating such that it only reaches 55% of the theoretical maximum. Once at the braze temperature of 1050 degrees C, the rate of isothermal solidification becomes constant with the square root of braze time. The IS rate in the Ti-Ni joints was twice as high as that reported for Ti-Cu joints. Comparison of experimental IS rates with model predictions indicated excellent agreement and demonstrated that the difference in IS rate in Ti-Ni compared to Ti-Cu was largely due to a higher rate of diffusion of Ni in Ti compared to Cu in Ti. The actual time required to achieve isothermal solidification depended both on the amount of dissolution/gap widening and on the rate of IS.
机译:使用元素镍箔实现钛的瞬时液相键合是连接航空航天组件的潜在低成本制造途径。为了充分发展这项技术,本研究测定了Ti/Ni接头中的溶解行为和等温凝固动力学。在加热过程中,Ti-Ni金属间化合物在固/液界面形成,这减缓了镍箔的溶解,同时促进了镍向钛基金属的扩散。这两个特性限制了初始加热期间出现的液隙扩大量,使其仅达到理论最大值的55%。一旦钎焊温度达到1050摄氏度,等温凝固速率将随钎焊时间的平方根保持不变。Ti-Ni接头的IS率是Ti-Cu接头的两倍。将实验IS速率与模型预测结果进行比较,结果表明,Ti-Ni中IS速率与Ti-Cu中IS速率的差异主要是由于Ti中Ni的扩散速率高于Ti中Cu的扩散速率。实现等温凝固所需的实际时间既取决于溶解量/间隙扩大,也取决于IS的速率。

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