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水电工程1000 MPa等级超高强钢埋弧自动焊接头显微组织及力学性能研究
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作者 司广全 李太江 +1 位作者 李巍 孙琦 《热力发电》 CAS CSCD 北大核心 2024年第11期47-55,共9页
为研究水电工程1000 MPa等级超高强钢埋弧焊焊接接头的显微组织及力学性能特征,通过扫描电子显微镜表征了焊接接头不同区域的显微组织,通过拉伸试验、冲击试验和弯曲试验测定了焊接接头的力学性能。研究结果表明:打底焊道和填充焊道焊... 为研究水电工程1000 MPa等级超高强钢埋弧焊焊接接头的显微组织及力学性能特征,通过扫描电子显微镜表征了焊接接头不同区域的显微组织,通过拉伸试验、冲击试验和弯曲试验测定了焊接接头的力学性能。研究结果表明:打底焊道和填充焊道焊缝金属由柱状晶、树枝晶以及等轴晶组成,组织多为针状铁素体和少量粒状贝氏体;热影响区形成了多个典型区域,靠近熔合线沿厚度方向上分别出现了临界粗晶区和粗晶区;远离焊缝出现了细晶区和临界区,组织多为粒状贝氏体、M-A组元和板条马氏体;盖面焊道焊缝金属为典型的柱状晶,组织主要为针状铁素体;热影响区包含了粗晶区、细晶区、临界区和亚临界区,由于没有后续焊道,未形成临界粗晶区,组织主要为板条马氏体、粒状贝氏体及M-A组元;焊接接头的平均抗拉强度达到980 MPa等级,在焊缝区和热影响区–40℃低温冲击吸收能量分别为118.7、149.3J(T/4部位)和67.0、154.0J(T/2部位),横向侧弯未出现裂纹。 展开更多
关键词 埋弧焊焊接接头 扫描电镜 显微组织 力学性能
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Influence of Tacking Sequence on Residual Stress and Distortion of Single Sided Fillet Submerged Arc Welded Joint 被引量:2
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作者 Arpan Kumar Mondal Pankaj Biswas Swarup Bag 《Journal of Marine Science and Application》 CSCD 2015年第3期250-260,共11页
Submerged arc welding (SAW) is advantageous for joining high thickness materials in large structure due to high material deposition rate. The non-uniform heating and cooling generates the thermal stresses and subseq... Submerged arc welding (SAW) is advantageous for joining high thickness materials in large structure due to high material deposition rate. The non-uniform heating and cooling generates the thermal stresses and subsequently the residual stresses and distortion. The longitudinal and transverse residual stresses and angular distortion are generally measured in large panel structure of submerged arc welded fillet joints. Hence, the objective of this present work is to quantify the amount of residual stress and distortion in and around the weld joint due to positioning of stiffeners tack. The tacking sequence influences the level of residual stress and proper controlling of tacking sequences is required to minimize the stress. In present study, an elasto-plastic material behavior is considered to develop the thermo mechanical model which predicts the residual stress and angular distortion with varying tacking sequences. The simulated result reveals that the tacking sequence heavily influences the residual stress and deformation pattern of the single sided fillet joint. The finite element based numerical model is calibrated by comparing the experimental data from published literature. Henceforth, the angular distortions are measured from an in-house developed experimental set-up. A fair agreement between the predicted and experimental results indicates the robustness of the developed numerical model. However, the most significant conclusion from present study states that tack weld position should be placed opposite to the fillet weld side to minimize the residual stress. 展开更多
关键词 residual stress DISTORTION submerged arc welding (SAW) material deposition finite element method
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