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Thermographic approach for high cycle fatigue of seam welded steel joints under variable amplitude loadings

机译:可变幅度载荷下接缝焊接钢接缝高循环疲劳的热敏接头

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摘要

In the automotive field, welded joints are the weak points of the steel parts of the chassis in terms of fatigue. The fatigue strength of arc-welded parts is generally evaluated using fatigue tests under constant amplitude loadings designed according the Palmgren-Miner rule. In this paper, the relevance of this process is tested with an experimental campaign on welded specimens subjected to various variable amplitude loads. In addition, to solve the recurrent issue of lack of fatigue data, a thermographic method is investigated as an alternative for monitoring the damage rate evolution. A theoretical thermal model is proposed to estimate a local heat source from the infrared thermal measurements during constant and variable amplitude loading tests. This heat source is shown to be correlated with fatigue damage, which provides a further insight on the evolution of damage during nonconstant amplitude fatigue tests.
机译:在汽车领域,焊接接头是疲劳方面底盘钢部件的弱点。通常使用根据PalmGren-Miner规则设计的恒定幅度负载下的疲劳试验评估弧焊部分的疲劳强度。在本文中,用经过各种可变幅度载荷的焊接试样上的实验活动测试了该过程的相关性。此外,为了解决缺乏疲劳数据的反复发行问题,研究了热成分方法作为监测损伤率进化的替代方案。提出了理论热模型,以在恒定和可变幅度负载测试期间估计来自红外热测量的局部热源。该热源显示出与疲劳损坏相关的,这提供了对不合适幅度疲劳试验期间损坏的演变的进一步见解。

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