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首页> 外文期刊>Journal of Materials Engineering and Performance >Enhanced Strength of 304 SS-Ti6Al4V Laser-Welded Joints Containing Composite Interlayers
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Enhanced Strength of 304 SS-Ti6Al4V Laser-Welded Joints Containing Composite Interlayers

机译:增强的304 SS-Ti6Al4V激光焊接接头的强度含有复合层间

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This paper investigates the microstructural characterization of the fracture propagation edge during laser beam welding of Ti6Al4V and 304 stainless steel using Cu, V, and Ni interlayers as a single Cu interlayer and composite interlayer structures with different Cu interlayer thicknesses. This study attempts to increase the Ti-SS joint strength through the use of the composite interlayers. X-ray diffraction characterization based on a 0.5-mm-thick Cu interlayer showed that the SS/Cu/Ti joint contained considerable brittle IMCs; however, the fracture surface of the SS/Cu-V/Ti composite interlayer sample did not contain any Fe-Ti IMCs or Cr2Ti. EBSD observation indicated that the crack propagated transgranularly from solidified CuTi in the interdendritic regions of the FeTi compounds in the composite interlayer sample; however, the crack propagated intergranularly along Fe2Ti grain boundaries in the single interlayer sample. The investigation based on a 1-mm-thick Cu interlayer showed that the SS/Ni-Cu1/Ti sample was stronger than the SS/Cu1/Ti sample due to a lack of CuTi at 3.5kW. The tensile strength of the SS/Cu1-V/Ti joint was greater than that of the SS/Ni-Cu1/Ti joint due to the formation of ductile NiTi instead of brittle NiTi2. The microstructures of the fracture edges after tensile testing illustrated that the eutectic CuTi+CuTi2 fractured at the SS/Cu1/Ti joint after tensile testing, while CuTi2 and eutectoid Ti+CuTi2 compounds fractured during the tensile experiment at the SS/Ni-Cu1/Ti and SS/Cu1-V/Ti joints, respectively. Investigations based on both the 0.5- and 1-mm-thick Cu interlayers showed that the tensile strength and elongation of the composite interlayer joints at a laser power of 3.5kW were greater than those of the single interlayer joints.
机译:本文使用Cu,V和Ni中间层作为单个Cu中间层和具有不同Cu层间厚度的单个Cu中间层和复合层间结构,研究了Ti6Al4V和304不锈钢的激光束焊接期间裂隙传播边缘的微观结构表征。该研究试图通过使用复合层间来增加Ti-SS关节强度。基于0.5mm厚的Cu中间层的X射线衍射表征显示SS / Cu / Ti接头含有相当大的脆性IMC;然而,SS / Cu-V / Ti复合层性样品的断裂表面不含任何Fe-Ti IMC或CR2TI。 EBSD观察表明,在复合层间样品中,裂缝从胎儿化合物的凝固性区域中的凝固切割传播;然而,裂纹沿着单层样品中的Fe2Ti晶界跨晶体繁殖。基于1mm厚的Cu interlayer的研究表明,由于3.5kW的缺乏CUTI,SS / Ni-Cu1 / Ti样品比SS / Cu1 / Ti样品强。由于延性Niti的形成而不是脆性Nit2,SS / Cu1-V / Ti接头的拉伸强度大于SS / Ni-Cu1 / Ti接头的拉伸强度。拉伸试验后断裂边缘的微观结构表明,在拉伸试验后Ss / Cu1 / Ti关节处的共晶切割+切割,而在SS / Ni-Cu1 /的拉伸实验期间Cuti2和Eutectoid Ti + Cuti2化合物裂缝。 TI和SS / CU1-V / TI关节分别。基于0.5-和1mm厚的Cu夹层的研究表明,复合层间接头在3.5kW的激光功率下的拉伸强度和伸长率大于单层关节的激光功率。

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