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首页> 外文期刊>Journal of Manufacturing Processes >Investigating the effects of welding process on residual stresses, microstructure and mechanical properties in HSLA steel welds
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Investigating the effects of welding process on residual stresses, microstructure and mechanical properties in HSLA steel welds

机译:研究焊接工艺对HSLA钢焊缝中残余应力,显微组织和力学性能的影响

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One of the important steps in the design and fabrication of welded structures is the selection of the welding process and the filler consumables. This is because these two factors control the mechanics of thermal distribution and the chemistry of the welded join, which in turn affect weld integrity through the resulting microstructure and residual stresses. The present study employed neutron diffraction to investigate the effects of welding process on the residual stresses in high-strength low-alloy steel weld joints made by SMAW (shielded metal arc welding) and combined MSAW (modified short arc welding) and FCAW (flux cored arc welding) processes. A significantly higher level of residual stress was found in the MASW + FCAW combination which was shown to be in line with the microstructural and mechanical properties. Higher levels of residual stresses may be related to the formation of bainite and Widmanstatten ferrite in the weld metal and HAZ of the combined MSAW and FCAW processes. (C) 2017 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:焊接结构设计和制造中的重要步骤之一是焊接工艺和填充材料的选择。这是因为这两个因素控制着热分布的力学和焊接接头的化学性质,进而通过产生的微观结构和残余应力影响焊接的完整性。本研究利用中子衍射研究了焊接工艺对由SMAW(屏蔽金属电弧焊)和MSAW(改进型短电弧焊)和FCAW(药芯焊丝)组合制成的高强度低合金钢焊接接头中残余应力的影响。电弧焊)过程。在MASW + FCAW组合中发现了明显更高的残余应力水平,这与微观结构和机械性能一致。较高水平的残余应力可能与MSAW和FCAW组合工艺的焊接金属和HAZ中贝氏体和Widmanstatten铁素体的形成有关。 (C)2017年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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