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Nd:YAG laser welding of dissimilar metals of titanium alloy to stainless steel without filler metal based on a hybrid connection mechanism

机译:ND:基于混合连接机制的无填充金属的钛合金异种金属的YAG激光焊接不锈钢

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In this paper, Nd:YAG laser welding of TC4 Titanium (Ti) alloy and SUS301L stainless steel (SS) dissimilar metal material was carried out without filler metal by laser biasing. The microstructure and fracture mode of the joint were analyzed by scanning electron microscope (SEM), energy dispersive instrument (EDS), and X-ray diffractometer (XRD). The mechanical properties of the joint were evaluated by a tensile test. The results showed that when the peak temperature was 1116°C, the liquid phase existed only in the narrower region of the Ti-SS interface, and the eutectic reaction zone formed a reaction layer, which was mainly composed of β-Ti solid solution. Ti-Fe intermetallic compound (TiFe, TiFe2) was formed at the Ti alloy-SS interface by heat conduction of the unmelted Ti alloy. The TEM analysis confirmed the presence of the β-Ti and TiFe2phases. The nucleation and growth of the reaction layer depended on the diffusion rate and atomic concentration of Ti and Fe atoms. The growth of the reaction layer could be effectively promoted by increasing the welding heat input, increasing the peak temperature of the Ti-SS interface and prolonging the reaction time. The tensile strength of the joint could be reached 336MPa and an elongation was 0.13 %. The eutectic reaction method could control the thickness and size of the Ti-Fe intermetallic compound at the interface of the Ti alloy-SS and improve the mechanical properties of the joint.
机译:本文通过激光偏置,Nd:TC4钛(Ti)合金和SUS301L不锈钢(SS)不同金属材料的Nd:YAG激光焊接。通过扫描电子显微镜(SEM),能量分散仪(EDS)和X射线衍射仪(XRD)分析关节的微观结构和断裂模式。通过拉伸试验评价关节的力学性能。结果表明,当峰值温度为1116℃时,仅在Ti-SS界面的较窄区域中存在液相,并且共晶反应区形成反应层,其主要由β-Ti固溶体组成。通过未熔化的Ti合金的热传导,在Ti合金-Ss界面处形成Ti-Fe金属间化合物(TIFE,TIEE2)。 TEM分析证实存在β-Ti和Tife2phase。反应层的成核和生长取决于Ti和Fe原子的扩散速率和原子浓度。通过增加焊接热输入可以有效地促进反应层的生长,从而增加Ti-SS界面的峰值温度并延长反应时间。可以达到接头的拉伸强度336MPa,伸长率为0.13%。共晶反应方法可以控制Ti合金-Ss的界面处的Ti-Fe金属间化合物的厚度和尺寸,并改善接头的机械性能。

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