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Influence of Thermal Aging on Tensile and Low Cycle Fatigue Behavior of Type 316LN Austenitic Stainless Steel Weld Joint

机译:热老化对316LN奥氏体不锈钢焊接接头拉伸和低循环疲劳行为的影响

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摘要

Influence of short-term thermal aging on the low-cycle fatigue (LCF) behavior of 316LN austenitic stainless steel weld joint with 0.07 wt pct N has been investigated. Prior thermal exposure was found to improve the fatigue life compared with the as-welded condition. Besides, the treatment also imparted a softening effect on the weld metal, leading to an increase in the ductility of the weld joint which had a bearing on the cyclic stress response. The degree of cyclic hardening was seen to increase after aging. Automated ball-indentation (ABI) technique was employed toward understanding the mechanical properties of individual zones across the weld joint. It was observed that the base metal takes most of the applied cyclic strain during LCF deformation in the as-welded condition. In the aged condition, however, the weld also participates in the cyclic deformation. The beneficial effect of thermal aging on cyclic life is attributed to a reduction in the severity of the metallurgical notch leading to a restoration of ductility of the weld region. The transformation of delta-ferrite to sigma-phase during the aging treatment was found to influence the location of crack initiation. Fatigue cracks were found to initiate in the base metal region of the joint in most of the testing conditions. However, embrittlement in the weld metal caused a shift in the point of crack initiation with increasing strain amplitude under LCF.
机译:研究了短期热老化对316LN奥氏体不锈钢焊接接头的低循环疲劳(LCF)行为,具有0.07wt PCT n。发现了与用焊接条件相比改善疲劳寿命的先前热暴露。此外,该处理还赋予焊接金属的软化效果,导致焊接接头的延展性增加,该焊接接头在循环应力响应上具有轴承。在老化后,观察到循环硬化程度增加。采用自动球凹口(ABI)技术,了解焊接接头上各个区域的机械性能。观察到基础金属在用焊接条件下的LCF变形期间采用大部分施加的循环菌株。然而,在老化条件下,焊缝也参与循环变形。热老化对循环寿命的有益效果归因于冶金凹口的严重程度降低,导致焊接区域的延展性的恢复。发现δ-铁素体在老化处理期间对Sigma相的转化为影响裂纹引发的位置。发现疲劳裂缝在大多数测试条件下在关节的基础金属区域中引发。然而,焊接金属中的脆化导致裂纹引起的裂缝的转变,随着LCF下的应变幅度的增加。

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