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Clarification of strain limits considering the ratcheting fatigue strength of 316FR steel

机译:考虑到316FR钢的棘轮疲劳强度来澄清应变极限

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The effect of ratcheting on fatigue strength was investigated in order to rationalize the strain limit as a design criterion of commercialized fast reactor systems. Ratcheting fatigue tests were conducted at 550 ℃. Duration of the ratchet straining was set for a certain number of strain cycles taking the loading condition of fast reactors into account, and the number of cycles for strain accumulation was defined as the ratchet-expired cycle. Fatigue lives decrease as the accumulated strain by ratcheting increases. Mean stress increased during the ratcheting cycle and its maximum value depended on the accumulated strain and the ratchet-expired cycle. Fatigue life reduction was negligible when the maximum mean stress was less than 25 MPa, corresponding to an accumulated strain of 2.2%. Accumulated strain is limited to 2% in the present design guidelines and this strain limit is considered effective to avoid reducing fatigue life by ratcheting. Microcrack growth behaviors were also investigated in these tests in order to discuss the life reduction mechanisms in ratcheting conditions.
机译:为了使应变极限合理化,作为工业化快速反应堆系统的设计标准,研究了棘轮效应对疲劳强度的影响。棘轮疲劳试验在550℃下进行。考虑快速反应堆的装载条件,将棘轮拉紧的持续时间设置为一定数量的应变循环,并将应变累积的循环数定义为棘轮过期循环。疲劳寿命随着棘轮累积应变的增加而减少。在棘轮循环中平均应力会增加,其最大值取决于累积的应变和棘轮过期的循环。当最大平均应力小于25 MPa时,疲劳寿命的降低可忽略不计,相当于累积应变为2.2%。在本设计指南中,累积应变限制为2%,并且该应变限制被认为是有效的,以避免因棘轮而缩短疲劳寿命。在这些测试中还研究了微裂纹的生长行为,以讨论棘轮条件下的减寿机理。

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