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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Effect of preload and stress ratio on fatigue strength of welded joints improved by ultrasonic impact treatment
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Effect of preload and stress ratio on fatigue strength of welded joints improved by ultrasonic impact treatment

机译:超声冲击处理改善预应力和应力比对焊接接头疲劳强度的影响

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摘要

Introduction Ultrasonic impact treatment (UIT) is a post-weld technique to be used for improving the fatigue strength of welded joints. The technique makes use of ultrasonic vibration to impact and plastically deform the weld toe, consequently creating beneficial compressive residual stress near the treated area. Since the compressive residual stress is considered to be a main reason for the improvement of fatigue strength, the improvement effect may be influenced by preload and stress ratio. In the case of ship structures, welded parts may be locally subjected to a stress near the yield strength of the material in heavy weather, and mean stress may change significantly depending on the loading conditions. Tests In the present paper, fatigue tests were conducted using transverse non-load carrying fillet welds to identify the condition that UIT provides substantial benefit for fatigue strength of welded joints. The material used is AH36 shipbuilding high-strength steel. In the investigation of the preload effect, tensile stress of 90% or compressive stress of 60% of the yield strength of the base metal is applied prior to fatigue tests, where the stresses are defined as nominal stress. Results It is found that UIT is more effective than grinding on fatigue strength improvement of welded joints even after application of the preload. The effect of stress ratio was investigated by fatigue tests at stress ratios of 0.1, 0.5, and -1. Though the fatigue strength of the UIT-treated weld joint decreased as the stress ratio increased, the fatigue limits of the UIT-treated weld joint is fairly higher than that of as-welded joints even at the stress ratio of 0.5. Finally, fatigue tests were conducted under random sequence of clustered loading, which may simulate wave-induced load histories. UIT provides substantial benefit for fatigue strength of welded joints under actual service loading in ship structures.
机译:简介超声波冲击处理(UIT)是一种焊后技术,可用于提高焊接接头的疲劳强度。该技术利用超声波振动来使焊趾发生冲击并使焊趾塑性变形,从而在处理区域附近产生有益的压缩残余应力。由于压缩残余应力被认为是改善疲劳强度的主要原因,因此改善效果可能受到预紧力和应力比的影响。对于船舶结构,在恶劣天气下,焊接零件可能会局部承受接近材料屈服强度的应力,并且平均应力可能会根据负载条件而发生明显变化。测试在本文中,使用横向非承重角焊缝进行了疲劳测试,以确定UIT为焊接接头的疲劳强度带来实质性好处的条件。所用的材料是AH36造船用高强度钢。在研究预载效应时,在疲劳试验之前施加母材屈服强度的90%的拉应力或60%的压应力,其中应力定义为标称应力。结果发现,即使在施加预紧力后,UIT仍比磨削更有效地改善了焊接接头的疲劳强度。通过疲劳试验以0.1、0.5和-1的应力比研究应力比的影响。尽管随着应力比的增加,经过UIT处理的焊接接头的疲劳强度降低,但是即使在应力比为0.5的情况下,经过UIT处理的焊接接头的疲劳极限也比经焊接的接头更高。最后,疲劳试验是在随机载荷下进行的,它可以模拟波浪引起的载荷历史。在船舶结构的实际使用载荷下,UIT大大提高了焊接接头的疲劳强度。

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