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首页> 外文期刊>Journal of Materials Science >Effect of alloying elements on interdiffusion phenomena in explosive clads of 304LSS/Ti-5Ta-2Nb alloy
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Effect of alloying elements on interdiffusion phenomena in explosive clads of 304LSS/Ti-5Ta-2Nb alloy

机译:合金元素对304LSS / Ti-5Ta-2Nb合金爆炸复合层互扩散现象的影响

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摘要

Dissimilar joints of 304L austenitic stainless steel (SS) and Ti-5Ta-2Nb alloy were fabricated using explosive cladding process with an aim to avoid the formation of brittle intermetallic phases at the interface. Subsequently, diffusion annealing heat treatments were carried out at temperatures in the range of 550-800 A degrees C for various durations. In the present study, concentration and temperature dependence of the distinct diffusion zones, formed at the clad interface, due to interdiffusion of the alloying elements, have been established using Electron Probe Micro Analysis and imaging of the interface. Molar volume showed a close match with the ideal Vegard's law at low temperatures while a non-linear negative deviation has been observed at high temperatures (800 A degrees C) due to the formation of secondary phases such as FeTi, Fe2Ti and beta Ti(Fe) phases. Interdiffusion parameters evaluated by Wagner's method showed sluggish diffusion kinetics of Fe and Ti at concentration corresponding to a two phase mixture of FeTi and Fe2Ti. Further, an attempt has been made to understand multicomponent diffusion using Dayananda's approach and estimation of effective interdiffusion coefficients revealed similar to 22 A mu m shift of the interface from Matano plane at 800 A degrees C.
机译:304L奥氏体不锈钢(SS)和Ti-5Ta-2Nb合金的异种接头采用爆炸熔覆工艺制造,目的是避免在界面处形成脆性金属间相。随后,在550-800℃的温度范围内进行扩散退火热处理各种持续时间。在本研究中,已经通过电子探针显微分析和界面成像建立了由于合金元素相互扩散而在包层界面上形成的不同扩散区的浓度和温度依赖性。摩尔体积显示在低温下与理想的Vegard定律紧密匹配,而在高温(800 A摄氏度)下由于形成了诸如FeTi,Fe2Ti和βTi(Fe )阶段。用Wagner方法评估的互扩散参数显示,Fe和Ti在对应于FeTi和Fe2Ti两相混合物的浓度下的扩散动力学缓慢。此外,已经尝试使用Dayananda的方法来理解多组分扩散,并估计了有效的互扩散系数,显示出与界面在800 A时从Matano平面的22 Aμm位移相似。

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