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EXPERIMENTAL STUDY ON SCC SUSCEPTIBILITY OF X60 STEEL USING FULL PIPE SECTIONS IN NEAR-NEUTRAL PH ENVIRONMENT

机译:X60钢SCC易感性在近中立近中性pH环境中的SCC易感性

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Stress corrosion cracking (SCC) tests were performed using the pipe section buried in a clay type of soil with the pH adjusted to near-neutral range. Pipe specimens with various sizes of fatigue pre-cracks ahead of artificial notch tips on the outer surface were subjected to cyclic loading tests. Maximum level of hoop stress was 105% SMYS, and R-value (Ratio of minimum load to maximum load) was 0.5. Growth of cracks was observed from the fatigue crack tips. Fractographic and metallographic examination has confirmed the quasi-cleavage nature of the transgranular SCC that is typically observed in near-neutral pH SCC. Crack depth measurement using DCPD method revealed the relatively high crack growth rate up to 10~(-5) mm/s. Metallographic examinations showed the existence of many micro-cracks associated with MnS inclusions in the highly strained field ahead of the initial crack tips. The relatively high crack growth rate may be caused by MnS inclusions. The loading rate, dJ/dt, was calculated for each crack condition in order to correlate qualitatively the crack growth rate with the loading rate. J-integral was calculated through non-linear FEM analyses for semi-elliptical cracks based on the stress-strain relationships obtained from the tensile tests using the same X60 steel specimen. Linear relationship was then obtained between the crack growth rate and the loading rate, and therefore the possibility to predict crack growth rates for various loading condition in the field was demonstrated.
机译:使用埋在粘土型土壤中的管段进行应力腐蚀裂纹(SCC)测试,该pH调节至近中立距离。具有各种疲劳前裂缝的管样品,外表面上的人造凹口尖端前方的疲劳前裂缝进行循环加载试验。最大箍应力水平为105%的Smiss,并且R值(最小负载比率为最大负荷)为0.5。从疲劳裂缝尖端观察到裂缝的生长。 Fretography和Metallographic检查证实了近中性pH SCC中通常观察到的转晶体SCC的准切割性质。使用DCPD方法的裂纹深度测量显示出相对高的裂纹生长率,高达10〜(-5)mm / s。金相检查表明,在初始裂纹提示前方的高度应变场中存在许多与MNS夹杂物相关的微裂纹。 MNS夹杂物可能引起相对高的裂纹生长速率。为每个裂纹状况计算加载速率DJ / DT,以便与装载速率相关的裂缝生长速率。通过非线性有限元分析基于使用相同X60钢标本从拉伸试验获得的应力 - 应变关系来计算通过非线性有限元分析来计算J-Intional。然后在裂缝生长速率和加载速率之间获得线性关系,因此证明了该领域中各种负载条件预测裂纹生长速率的可能性。

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