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lnvestigation on Improving Fatigue Properties of Welded Joints by Ultrasonic Peening Method

机译:超声喷丸法改善焊接接头疲劳性能的研究

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Fatigue strength of welded joints in welded structures are much lower than that of base metals. Many experiments show that the fatigue crack normally initiates at welded toe, so that the fatigue strength can be increased dramatically by peening weld toe.~[l,2,3] Ultrasonic peening made by Tianin University in China under the financial support of Natural Science Foundation of China is one of the most useful methods to improve fatigue behavior of weld toe due to improving toe geometry, removing defects and modifying the residual stresses distribution in this region. For evaluating the ultrasonic peening performance carried out by our equipment, the fatigue tests were performed on butt and cruciform joints of Q235B steel both in the as--welded and peened condition. Test results are as follows: l .Both butt and cruciform peened joints show a significant increase in fatigue life under different stress levels (high cycle fatigue). The results show that the fatigue life of the peened weld toe was 20~30 times as long as the as-welded joints, and in many cases the fatigue cracking initiation was transferred to the base metal instead of the weld toe. 2.The increase in fatigue strength (at 2x l0~6 cycles)of the peened Q235B butt welded joints compared to the as-welded joints was 57/100,and for the cruciform joints, the increase was 64~7l/100. The fatigue strength of both the butt and cruciform welded joints were no lower than that of the base metal. In such cases, weld joints is not the degense location any longer.
机译:焊接结构中的焊接接头疲劳强度远低于贱金属。许多实验表明,疲劳裂纹通常始于焊趾,因此通过对焊趾进行喷丸可以显着提高疲劳强度。〜[1,2,3]中国天宁大学在自然科学的资助下进行的超声波喷丸中国基金会(Foundation of China)是改善焊趾疲劳性能的最有用方法之一,原因是改善了焊趾的几何形状,消除了缺陷并改变了该区域的残余应力分布。为了评估我们设备执行的超声波喷丸性能,在Q235B钢的对接和十字形接头的焊接和喷丸状态下进行了疲劳测试。试验结果如下:l对接和十字形喷丸接头在不同应力水平(高周疲劳)下均显示出明显的疲劳寿命增加。结果表明,经喷丸处理的焊趾的疲劳寿命是焊接接头的20到30倍,并且在许多情况下,疲劳裂纹的产生转移到母材而不是焊趾上。 2.与焊接后相比,Q235B对接焊接头的疲劳强度(在2x l0〜6个循环时)增加了57/100,而对于十字形接头,则增加了64〜7l / 100。对接和十字形焊接接头的疲劳强度均不低于母材的疲劳强度。在这种情况下,焊接接头不再是保护位置。

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