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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Temperature dependence of low cycle fatigue of 316(N) weld metals and 316L(N)/316(N) weld joints
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Temperature dependence of low cycle fatigue of 316(N) weld metals and 316L(N)/316(N) weld joints

机译:316(N)焊接金属和316L(N)/ 316(N)焊接接头的低周疲劳的温度依赖性

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摘要

The low cycle fatigue behaviour of 316(N) weld metals and 316L(N)/316(N) weld joints have been investigated in the temperature range of 300-873 K, at a strain amplitude of +0-6% and a strain rate 3 x 10~(-3) s~(-1), to study the influence of dynamic strain aging (DSA). The 316(N) weld metal exhibited better fatigue life than the weld joint, though the weld metal has shown higher cyclic stress response and higher plastic strain accumulation than the weld joint. Significant features observed in the temperature regime of 300-873 K include the maximum in fatigue life at 573 K and DSA in the range of 673-873 K. Occurrence of DSA has been manifested through drastic reduction in fatigue life in the range of 673-873 K, associated with anomalous stress response. Dominant DSA effects have been observed at about 773 K in the weld joint and at 823 K in the weld metal. However, the effect of DSA is found to be nominal beyond 823 K where the reduction in fatigue life is attributed to the combined effects of oxidation and DSA. Secondary crack density measurements (in the range of 300-873 K) in the weld joint specimens revealed the severity of the heat affected zone (HAZ) in inducing fatigue damage. Parameters have been identified to determine the temperature corresponding to dominant DSA effects.
机译:研究了316(N)焊接金属和316L(N)/ 316(N)焊接接头在300-873 K的温度范围,+ 0-6%的应变幅度和应变下的低周疲劳行为以3 x 10〜(-3)s〜(-1)的速率,研究动态应变时效(DSA)的影响。 316(N)焊接金属比焊接接头具有更好的疲劳寿命,尽管与焊接接头相比,焊接金属显示出更高的循环应力响应和更高的塑性应变累积。在300-873 K的温度范围内观察到的重要特征包括573 K处的最大疲劳寿命和673-873 K范围内的DSA。DSA的发生已通过在673-873 K范围内急剧降低疲劳寿命得到了证明。 873 K,与异常压力反应有关。在焊缝处约773 K处和焊缝金属处823 K处观察到了显着的DSA效应。然而,发现DSA的影响在823 K以上是名义上的,其中疲劳寿命的降低归因于氧化和DSA的综合作用。焊接接头样品中的二次裂纹密度测量(在300-873 K范围内)揭示了热影响区(HAZ)引起疲劳损伤的严重程度。已经确定参数以确定对应于主要DSA效应的温度。

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