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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >S-N Fatigue and Fatigue Crack Propagation Behaviors of X80 Steel at Room and Low Temperatures
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S-N Fatigue and Fatigue Crack Propagation Behaviors of X80 Steel at Room and Low Temperatures

机译:X80钢在室温和低温下的S-N疲劳和疲劳裂纹扩展行为

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摘要

In the present study, the S-N fatigue and the fatigue crack propagation (FCP) behaviors of American pctroleum Institute X80 steel were examined in the different locations of the base metal (BM), weld metal (WM), and heat-affected zone (HAZ) at 298 K, 223 K, and 193 K (25 °C, -50 °C, and -80 °C). The resistance to S-N fatigue of X80 BM specimen increased greatly with decreasing temperature from 298 K to 193 K (25 °C to -80 °C) and showed a strong dependency on the flow strength (1/2 (yield strength + tensile strength)). The FCP rates of X80 BM specimen were substantially reduced with decreasing temperature from 298 K to 223 K (25 °C to -50 °C) over the entire AK regime, while further reduction in FCP rates was not significant with temperature from 223 K to 193 K (-50 °C to -80 °C). The FCP rates of the X80 BM and the WM specimens were comparable with each other, while the HAZ specimen showed slightly better FCP resistance than the BM and the WM specimens over the entire AK regime at 298 K (25 °C). Despite the varying microstructural characteristics of each weld location, the residual stress appeared to be a controlling factor to determine the FCP behavior. The FCP behaviors of high strength X80 steel were discussed based on the microstructural and the fractographic observations.
机译:在本研究中,在基础金属(BM),焊缝金属(WM)和热影响区(HAZ)的不同位置检查了美国石油学会X80钢的SN疲劳和疲劳裂纹扩展(FCP)行为。 )在298 K,223 K和193 K(25°C,-50°C和-80°C)下进行。 X80 BM样品的SN疲劳强度随着温度从298 K降低到193 K(25°C到-80°C)而大大增加,并表现出对流动强度的强烈依赖性(1/2(屈服强度+拉伸强度)) )。在整个AK范围内,随着温度从298 K降低到223 K(25°C到-50°C),X80 BM样品的FCP速率显着降低,而温度从223 K降低到223 K时FCP速率的进一步降低并不显着。 193 K(-50°C至-80°C)。 X80 BM和WM样品的FCP速率彼此可比,而HAZ样品在298 K(25°C)的整个AK制度下显示出比BM和WM样品更好的FCP抗性。尽管每个焊接位置的微观结构特征都不同,但是残余应力似乎是确定FCP行为的控制因素。基于显微组织和分形观察,讨论了高强度X80钢的FCP行为。

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