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首页> 外文期刊>Journal of Materials Research and Technology >Microstructures and performances of the butt joint of TA1/Q235B bimetallic sheet with addition of a Mo interlayer by using narrow gap laser welding with filler wire
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Microstructures and performances of the butt joint of TA1/Q235B bimetallic sheet with addition of a Mo interlayer by using narrow gap laser welding with filler wire

机译:通过使用窄间隙激光焊接加入Mo中间层的Ta1 / Q235b双金属板对接接头的微观结构和性能

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摘要

By taking molybdenum (Mo) having favorable metallurgical compatibility with both titanium and iron as the interlayer material, the butt joint of TA1/Q235B layered bimetallic sheet with thickness of 6 mm was prepared by utilizing narrow gap multi-pass laser welding with low heat input. Mo generally can favorably isolate Ti from Fe, meanwhile the transition zone of Mo and steel adjacent to Mo interlayer was softened according to the results of microhardness test. The results of face bending testing showed that the softened zone was beneficial to the mechanical properties of the welded joint, which could restrict the crack propagation along the interface of Mo/steel in fusion zone so that fracture appeared in the BM side. The microstructures of the softened zone exhibited a low dislocation density observed by a transmission electron microscope (TEM), which may be the main reason leading to a low microhardness. In additon, Mo interlayer was confined in a small zone, which only accounted for about 6.5% of the total area of cross section of the fusion zone while a small amount of FeTi and λ brittle intermetallic compounds (IMCs) still appeared around the Mo/steel interface in fusion zone. The tensile strength of the welded joint was 467 MPa, which took up about 93% that of base metal. The results of this paper will help guide endeavours for the fabrication of pipes and containers made of Ti/steel bimetallic sheets.
机译:通过将具有良好的冶金与钛和铁具有良好的冶金相容性的钼(MO)作为层间材料,通过利用具有低热输入的窄间隙多通激光焊接来制备厚度为6mm的Ta1 / Q235b层双金属片的对接接头。 Mo通常可以有利地从Fe中分离TI,同时根据微硬度试验的结果,将邻近Mo中间层相邻的Mo和钢的过渡区。面部弯曲测试的结果表明,软化区有利于焊接接头的机械性能,这可以限制沿融合区中钼/钢的界面的裂纹传播,使得骨折出现在BM侧。软化区的微观结构表现出由透射电子显微镜(TEM)观察的低位错密度,这可能是导致低微硬度的主要原因。在接枝中,Mo interlayer限制在一个小区域中,该小区仅占融合区横截面总面积的约6.5%,而少量的胎儿和λ脆性金属间化合物(IMC)周围仍然出现在MO /融合区中的钢界面。焊接接头的拉伸强度为467MPa,其占贱金属的93%。本文的结果将有助于引导努力制造由Ti /钢双金属板制成的管道和容器。

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