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Low-Cycle Fatigue Behavior of 10CrNi3MoV High Strength Steel and Its Undermatched Welds

机译:10CrNi3MoV高强度钢及其不匹配焊缝的低循环疲劳行为

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摘要

The use of high strength steel allows the design of lighter, more slender and simpler structures due to high strength and favorable ductility. Nevertheless, the increase of yield strength does not guarantee the corresponding improvement of fatigue resistance, which becomes a major concern for engineering structure design, especially for the welded joints. The paper presents a comparison of the low cycle fatigue behaviors between 10CrNi3MoV high strength steel and its undermatched weldments. Uniaxial tension tests, Push-pull, strain-controlled fatigue tests were conducted on base metal and weldments in the strain range of 0.2–1.2%. The monotonic and cyclic stress-strain curves, stress-life, strain-life and energy-life in terms of these materials were analyzed for fatigue assessment of materials discrepancy. The stress-life results of base metal and undermatched weld metal exhibit cyclic softening behaviors. Furthermore, the shapes of 10CrNi3MoV steel hysteresis loops show a satisfactory Masing-type behavior, while the weld metal shows a non-Masing type behavior. Strain, plastic and total strain energy density amplitudes against the number of reversals to failure results demonstrate that the undermatched weld metal presents a higher resistance to fatigue crack initiation than 10CrNi3MoV high strength steel. Finally, fatigue fracture surfaces of specimens were compared by scanning electron microscopy to identify the differences of crack initiation and the propagation between them.
机译:由于高强度和良好的延展性,高强度钢的使用允许设计更轻,更细长和更简单的结构。然而,屈服强度的增加不能保证抗疲劳性的相应提高,这成为工程结构设计,尤其是焊接接头设计的主要问题。本文比较了10CrNi3MoV高强度钢及其不匹配焊件的低周疲劳行为。在母材和焊件上进行了0.2-1.2%应变范围的单轴拉伸试验,推拉,应变控制疲劳试验。分析了这些材料的单调和循环应力-应变曲线,应力寿命,应变寿命和能量寿命,以对材料差异进行疲劳评估。母材和不匹配的焊缝金属的应力寿命结果显示出周期性的软化行为。此外,10CrNi3MoV钢磁滞回线的形状表现出令人满意的Masing型行为,而焊接金属表现出非Masing型行为。应变,塑性和总应变能密度振幅对破坏次数的反转结果表明,与10CrNi3MoV高强度钢相比,不匹配的焊接金属具有更高的抗疲劳裂纹萌生能力。最后,通过扫描电子显微镜比较试样的疲劳断裂表面,以确定裂纹萌生的差异以及它们之间的传播。

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