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Microstructure and Properties of Hot Roll Bonding Layer of Dissimilar Metals (2)

机译:异种金属热轧结合层的组织和性能(2)

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摘要

The hot roll bonding of zirconium and stainless steel inserted with tantalum was investigated using the newly developed rolling mill. The effect of hot rolling temperatures of zirconium/stainless steel joints on bonding interface structure was evaluated. Intermetallic compound layer containing cracks was observed at the bonding interface between stainless steel and tantalum when the rolling temperature was above 1373K. the hardness of the bonding layer of zirconium and tantalum bonded above 1273K was higher than tantalum or zirconium base metal in spite of absence of intermetallic compound. The growth of reaction layer at the stainless steel and tantalum interface and at the tantalum and zirconium interface was conforming a parabolic low when that was isothermally heated after hot roll bonding, and the growth rate was almost same as that of static diffusion bonding without using hot roll bonding process. It is estimated that the strain caused by hot roll bonding gives no effect on the growth of reaction layer. It was confirmed that the dissimilar joint of zirconium and stainless steel with insert of tantalum having the sound bonding the newly developed hot roll bonding process.
机译:使用最新开发的轧机研究了锆和嵌入钽的不锈钢的热轧粘合。评估了锆/不锈钢接头的热轧温度对粘结界面结构的影响。当轧制温度高于1373K时,在不锈钢和钽之间的结合界面处观察到含有裂纹的金属间化合物层。尽管没有金属间化合物,但在1273K以上的温度下结合的锆和钽的结合层的硬度仍高于钽或锆的贱金属。在热轧结合后等温加热时,不锈钢和钽界面处以及钽和锆界面处反应层的生长呈抛物线形低点,且生长速率与不使用热的静态扩散键合几乎相同辊压粘合工艺。据估计,由热轧结合引起的应变对反应层的生长没有影响。可以确定的是,锆和不锈钢的异种接头与钽嵌件之间具有良好的粘结性,这是新开发的热轧粘结工艺。

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