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Fracture Toughness Breakthrough Morphology Microstructural Analysis of the T2 Copper-45 Steel Welded Joints

机译:T2 Copper-45钢焊接接头的断裂韧性突破形貌显微组织分析

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摘要

The performance and flaws of welded joints are important features that characteristics of the welding material influence. There is significant research activity on the performance and characteristics of welding joint materials. However, the properties of dissimilar welding materials and the cracking problem have not been thoroughly investigated. This investigation focuses on the evaluation and analysis of fracture mechanics, including fracture toughness, microstructural analysis, and crack initiation of T2 copper-45 steel dissimilar welding materials. Standard tensile and three-point bending experiments were performed to calculate the ultimate strength, yield strength, and elastic modulus for fracture toughness. The macro/micro-fracture morphology for tensile fracture and three-point bending fracture were analysed. Based on these investigations, it was concluded that the fracture types were quasi-cleavage and an intergranular brittle fracture mixed model. The deflection of the crack path was discussed and it was determined that the crack was extended along the weld area and tilted towards the T2 copper. Finally, the crack propagation and deflecting direction after the three-point bending test could provide the basis for improvement in the performance of welded joints based on experimental testing parameters and ABAQUS finite element analysis.
机译:焊接接头的性能和缺陷是影响焊接材料特性的重要特征。关于焊接接头材料的性能和特性有大量研究活动。然而,尚未完全研究异种焊接材料的性能和开裂问题。这项研究的重点是对断裂力学的评估和分析,包括断裂韧性,显微组织分析和T2铜45钢异种焊接材料的裂纹萌生。进行标准拉伸和三点弯曲实验以计算极限强度,屈服强度和断裂韧性的弹性模量。分析了拉伸断裂和三点弯曲断裂的宏观/微观断裂形态。根据这些研究,得出的结论是,裂缝类型为准裂解和晶间脆性断裂混合模型。讨论了裂纹路径的偏转,并确定了裂纹沿焊接区域扩展并向T2铜倾斜。最后,基于实验测试参数和ABAQUS有限元分析,三点弯曲试验后的裂纹扩展和偏转方向可为改善焊接接头的性能提供基础。

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