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Theoretical Assessment of Dissimilar Metal Joint of Titanium to Stainless Steel

机译:钛不同金属关节与不锈钢的理论评价

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Direct joining of titanium to stainless steel poses some unique challenges because of a lack of metallurgical compatibility and the formation of brittle intermetallic compounds between the two metals. In the first half of this paper, a literature review is provided to assess various existing joining methods (such as explosive welding, diffusion bonding, and brazing) utilizing different interlayer metals (e.g., copper, silver and nickel). The joint strength achieved by different methods is compared. In the second half of the paper, the in-service behaviors of the dissimilar joint are evaluated based on theoretical calculations. A finite element method based model is used to calculate the thermal-stress distribution in the dissimilar metal joint. For simplicity, the residual stresses from the joining process are not considered. In addition, the chemical stability of the joint is evaluated based on the inter-diffusion of alloying elements. It is found that the mismatch of coefficient of thermal expansion has a prominent effect on the thermal-stresses. The interlayer metal can be effective in deterring the inter-diffusion between titanium and stainless steel.
机译:由于缺乏冶金相容性和两种金属之间的脆性金属间化合物,直接加入钛的钛与不锈钢造成一些独特的挑战。在本文的前半部分,提供了利用不同层间金属(例如铜,银和镍)的各种现有连接方法(例如爆炸性焊接,扩散粘合和钎焊)。比较了不同方法实现的关节强度。在本文的下半部分,基于理论计算评估不同关节的在职行为。基于有限元方法的模型用于计算不同金属接头中的热应力分布。为简单起见,不考虑来自连接过程的残余应力。另外,基于合金元素的间扩散来评估关节的化学稳定性。发现热膨胀系数不匹配对热应力具有显着的影响。层间金属可以有效地阻止钛和不锈钢之间的间断。

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