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Environmentally Assisted Cracking of 3.5NiCrMoV Low Alloy Steel Under Cyclic Straining

机译:循环紧张下3.5ngrmov低合金钢的环保辅助开裂

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Environmentally assisted cracking of 3.5NiCrMoV low alloy steel under cyclic straining was investigated in water environments at 60deg C. Effects of strain range, strain rate, strain hold time and impuri - ties in the water on the crack initiation life were investigated. The effects of long strain hold time up to 100 hours were studied and found to be especially significant. Lower strain rate, longer strain hold time and higher electric conductivity resulted in shorter crack initiation life. The corrosion current from the strained metal was measured in a simulated electrochemical system to clarify the root cause of the life reduction. Test results showed that higher strain range, lower strain rate, longer strain hold time and higher electric conductivity caused increased charge transfer, which caused shorter crack initiation life. A prediction model for the crack initiation life was proposed based on the charge transfer.
机译:在60deg C的水环境中研究了3.5nicRMov低合金钢的环境辅助开裂。研究了裂纹引发寿命水中应变范围,应变率,应变保持时间和水中的影响。 研究了长菌株保持时间高达100小时的影响,发现特别显着。 降低应变率,较长的应变保持时间和较高的电导率导致较短的裂纹启动寿命。 在模拟电化学系统中测量来自应变金属的腐蚀电流,以阐明寿命减少的根本原因。 试验结果表明,应变范围越高,应变率较低,应变保持时间和较高的电导率导致增加的电荷转移,这导致了较短的裂纹启动寿命。 基于电荷转移,提出了一种裂纹启动寿命的预测模型。

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