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Dynamic strain aging in stress controlled creep-fatigue tests of 316L stainless steel under different loading conditions

机译:316L不锈钢在不同载荷条件下的应力控制蠕变疲劳试验中的动态应变时效

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摘要

Stress controlled fatigue-creep tests were carried out for 316L stainless steel under different loading conditions, i.e. different loading levels at the fixed temperature (loading condition 1, LC1) and different temperatures at the fixed loading level (loading condition 2, LC2). Cyclic deformation behaviors were investigated with respect to the evolutions of strain amplitude and mean strain. Abrupt mean strain jumps were found during cyclic deformation, which was in response to the dynamic strain aging effect. Moreover, as to LC1, when the minimum stress is negative at 550 degrees C, abrupt mean strain jumps occur at the early stage of cyclic deformation and there are many jumps during the whole process. While the minimum stress is positive, mean strain only jumps once at the end of deformation. Similar results were also found in LC2, when the loading level is fixed at -100 to 385 MPa, at higher temperatures (560, 575 degrees C), abrupt mean strain jumps occur at the early stage of cyclic deformation and there are many jumps during the whole process. While at lower temperature (540 degrees C), mean strain only jumps once at the end of deformation.
机译:对316L不锈钢在不同的负载条件下进行了应力控制疲劳蠕变测试,即在固定温度(负载条件1,LC1)下的不同负载水平和在固定负载水平(负载条件2,LC2)下的不同温度。关于应变幅度和平均应变的演化,研究了循环变形行为。在循环变形期间发现了平均应变突变,这是对动态应变时效的响应。而且,对于LC1,当最小应力在550℃为负时,在循环变形的早期发生突然的平均应变跳跃,并且在整个过程中存在许多跳跃。虽然最小应力为正,但平均应变在变形结束时仅跳跃一次。在LC2中也发现了类似的结果,当载荷水平固定在-100至385 MPa时,在较高温度(560、575摄氏度)下,周期性变形的早期会发生突然的平均应变跳跃,而在此期间会有许多跳跃整个过程。在较低温度(540摄氏度)下,平均应变在变形结束时仅跳跃一次。

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