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首页> 外文期刊>Journal of Manufacturing Processes >A comparative study on microstructure and mechanical properties near interface for dissimilar materials during conventional V-groove and narrow gap welding
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A comparative study on microstructure and mechanical properties near interface for dissimilar materials during conventional V-groove and narrow gap welding

机译:传统V型槽和窄缝焊接中异种材料界面附近的组织和力学性能的比较研究

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Low alloy steel and 304 LN austenitic stainless steel pipes were welded together by gas tungsten arc and narrow gap welding. The aim of investigation was to identify particular welding technique, which may able to deliver better joint quality over the other considering mechanical properties of assemblies. Welding consumable was IN82 for both of them. Multilayered buttering was done over low alloy steel prior to welding for conventional GTAW. Microstructural characterisation was done and tensile strength was determined through in-situ deformation of miniature samples for welded joints. Low alloy steel consisted of heat affected zone close to interface. Near fusion boundary between low alloy steel and IN82, islands of martensite, complex alloy carbides, Types-I and II boundaries were formed. Width of heat affected zone and martensite layer was more for conventional welding in comparison to narrow gap welding. During in-situ tensile testing crack was initiated from stress concentration site and propagated through IN82. joint strength and strain hardening co-efficient for narrow gap welded specimen was higher than conventional welded sample. This indicated better formability of narrow gap welded assembly with respect to gas tungsten arc welded specimen. (C) 2016 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:低合金钢和304 LN奥氏体不锈钢管通过气体​​保护钨极电弧焊和窄间隙焊缝焊接在一起。研究的目的是确定特定的焊接技术,与其他考虑组件的机械性能相比,该焊接技术可以提供更好的接头质量。两者的焊接材料均为IN82。在常规GTAW焊接之前,在低合金钢上进行多层涂黄油。进行了微结构表征,并通过焊接接头微型样品的原位变形确定了拉伸强度。低合金钢由靠近界面的热影响区组成。在低合金钢和IN82之间的熔合边界附近,形成了马氏体岛,复杂的合金碳化物,I型和II型边界。与窄缝焊接相比,常规焊接的热影响区和马氏体层的宽度更大。在原位拉伸测试过程中,裂纹从应力集中部位开始,并通过IN82传播。窄缝焊接试样的接头强度和应变硬化系数均高于常规焊接试样。这表明窄缝焊接组件相对于钨极氩弧焊试样具有更好的可成形性。 (C)2016年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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