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7A52铝合金中厚板MIG焊接工艺优化 被引量:2
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作者 陈鹏达 徐锴 +2 位作者 徐玉君 郭枭 吕晓春 《电焊机》 2023年第1期84-90,共7页
针对7A52铝合金中厚板熔化极惰性气体保护焊(MIG)焊缝成形差、接头系数低等问题,采用半自动MIG、以ER5356焊丝为填充材料对20 mm厚7A52铝合金板材进行不同焊接工艺参数下的焊道成形试验。测量不同焊接工艺参数下的焊道熔深、熔宽、余高... 针对7A52铝合金中厚板熔化极惰性气体保护焊(MIG)焊缝成形差、接头系数低等问题,采用半自动MIG、以ER5356焊丝为填充材料对20 mm厚7A52铝合金板材进行不同焊接工艺参数下的焊道成形试验。测量不同焊接工艺参数下的焊道熔深、熔宽、余高、润湿角等焊道成形特征,选出最佳工艺参数。采用最佳工艺参数进行20 mm厚对接试板的焊接,焊接完成后通过X射线检测、力学性能试验、显微组织观察等测试方法研究对接接头的各项性能。结果表明,ER5356焊丝焊接接头的抗拉强度平均值为302.5 MPa,对接接头系数平均值为0.74,试样断裂位置均为焊缝区;接头的弯曲性能良好,未出现裂纹等缺陷;焊接接头焊缝区硬度值最低,为焊接接头最薄弱区域,与拉伸试验试件断裂位置相符合;焊接接头和熔敷金属的力学性能较好。 展开更多
关键词 工艺参数 接头系数 焊道成形 抗拉强度
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Anisotropy of Fatigue Behavior and Tensile Behavior of 5A06 Aluminum Alloy Based on Infrared Thermography 被引量:1
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作者 闫志峰 张红霞 +1 位作者 chen pengda WANG Wenxian 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第1期155-161,共7页
The fatigue behavior during high cycle fatigue testing and the tensile behavior of 5A06 aluminum alloy considering the anisotropy were studied.Two types of specimens including longitudinal specimen(parallel to the ro... The fatigue behavior during high cycle fatigue testing and the tensile behavior of 5A06 aluminum alloy considering the anisotropy were studied.Two types of specimens including longitudinal specimen(parallel to the rolling direction) and transverse specimen(perpendicular to the rolling direction) were prepared.Infrared thermography was employed to monitor the temperature evolution during the fatigue and tensile tests.The temperature evolution curves in the two directions were contrastively analyzed.It is found that the temperature evolution during fatigue process possesses four stages:initial temperature rise stage,slow temperature decline stage,rapid temperature rise stage,and finial temperature decline stage.The heat generating mechanisms of the four stages are discussed.Obvious differences can be found between the longitudinal specimen and transverse specimen in fatigue strength and fatigue life.The fatigue strength and fatigue life of longitudinal specimen are higher than those of transverse specimen.During the tensile and fatigue testing process,the fracture temperature in the transverse direction are higher than that in the longitudinal direction.The fatigue strength prediction by means of infrared thermography has a good consistency with that by the traditional method. 展开更多
关键词 aluminum alloy ANISOTROPY fatigue strength infrared thermography
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