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Characterization of Microstructure and Interface Reactions in Friction Welded Bimetallic Joints of Titanium to 304 Stainless Steel Using Nickel Interlayer

机译:用镍层间摩擦焊接焊接焊接焊接双金属关节与304不锈钢的微观结构和界面反应的特征

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摘要

Direct joining of 304 stainless steel to titanium poses many challenges because of a lack of metallurgical compatibility and the formation of FeTi and CrTi types of brittle intermetallic compounds. The use of a low thermal heat input process of friction welding allows to obtain good microstructure properties through the improvement of metallurgical compatibility between two metals. In the present investigation, a novel approach of nickel interlayer was applied to explore a new bimetallic structure of titanium to stainless steel. Microstructure characterization, interface formation and its reactions were analysed via scanning electron microscope, X-ray diffraction and electron probe microanalyser analyses. The results exhibited that the intermetallic phases were successfully avoided through the use of Ni interlayer. Microhardness values demonstrated the absence of brittle FeTi and CrTi phases in the weld interface. The weld interface was found to be within two intermetallic layers situated at Ti/Ni interface.
机译:由于缺乏冶金相容性和脆性金属间化合物的脆性金属间化合物,直接加入304个不锈钢到钛的挑战构成了许多挑战。使用低热量输入摩擦焊接过程通过改善两种金属之间的冶金相容性来获得良好的微观结构性能。在本研究中,应用了镍中间层的新方法,探讨了钛的新的双金属结构,以不锈钢。通过扫描电子显微镜,X射线衍射和电子探针微脉肤分析分析了微观结构表征,界面形成及其反应。结果表明,通过使用Ni中间层成功地避免了金属间相。显微硬度值证明焊接界面中没有脆性的Feti和CRTI相位。发现焊接接口是位于Ti / Ni接口的两个金属间层内。

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