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Friction Welding of Type 304 Stainless Steel to CpTitanium using Nickel Interlayer

机译:304型不锈钢对CPPTITANIUM的摩擦焊接使用镍层间

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Dissimilar metal joints of stainless steel to titanium find extensive industrial applications especially in nuclear industry. However, it is well known that fusion welding of stainless steel to titanium is difficult because of the formation of brittle intermetallic compounds and the associated problems. To avoid this, welding processes or techniques with high reliability and productivity for these dissimilar materials are demanded. In the present work, joints comprising of 304 stainless steel and commercially pure titanium were produced by friction welding using nickel as interlayer. Investigation on the mechanical properties of the joints showed the occurrence of highest hardness value at the interface of titanium and nickel interlayer. X-ray diffraction studies confirmed the presence of various types of intermetallic compounds at the interface of the welded joint. The tensile strength of the joint varied with the thickness of nickel interlayer used. Joints having maximum strength equals to 72% of that of titanium base metal could be produced. In all the joints, tensile failure occurred at Ti-Ni interface due to the presence of the intermetallic compounds at this interface. Fracture surface analysis revealed that the tensile fracture path was along the intermixing zone of titanium and nickel interlayer.
机译:不锈钢的不同金属关节钛发现广泛的工业应用,特别是在核工业中。然而,众所周知,由于脆性金属间化合物和相关问题,因此难以形成不锈钢与钛的融合焊接。为避免这种不同材料的焊接工艺或具有高可靠性和生产率的技术。在本工作中,通过使用镍作为中间层,通过摩擦焊接制造包含304个不锈钢和商业纯钛的关节。对关节力学性能的研究显示钛和镍层间界面处的最高硬度值的发生。 X射线衍射研究证实了在焊接接头的界面处存在各种类型的金属间化合物。接头的拉伸强度随着所用镍中间层的厚度而变化。可以生产最大强度的关节等于钛基金金属的72%。在所有关节中,由于该界面处存在金属间化合物,Ti-Ni界面发生拉伸破坏。断裂表面分析显示拉伸裂缝路径沿钛和镍中间层的混合区。

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