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SEM in situ investigation on fatigue cracking behavior of X80 pipeline steel with inclusions

机译:X80管线钢疲劳裂解行为的SEM原位调查夹杂物

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The micro-mechanical behavior of inclusions in X80 pipeline steel under fatigue loading was investigated by means of SEM in situ observation. The influence of sizes and shapes of inclusion on crack initiation and propagation was analyzed. The result shows that for large-size single-particle inclusion, cracks initiate from the interior under the fatigue loading. When a certain circulation cycles are reached, cracks initiate at the matrix near the sharp corner of the inclusion. The cracks extend at the matrix during the stable extension period and unstable extension period following the crack initiation, until fracture occurred. For chain inclusion, cracks first initiate at the interface between inclusion and matrix within the chain area, and the circulation cycles needed for initiation are far less than single inclusion. Cracks steadily extend after the initiation, and then fracture after very short circulation cycles. A chain of inclusion with the shape corners is serious harmful to the fatigue properties.
机译:通过SEM,研究了疲劳载荷下X80管线钢中夹杂物的微力学行为。分析了尺寸和形状对裂纹引发和繁殖的影响。结果表明,对于大尺寸的单颗粒夹杂物,裂缝在疲劳负载下从内部引发。当达到某个循环循环时,裂缝在夹杂物的尖锐角附近发起矩阵。在裂纹启动后稳定的延伸期和不稳定的延伸期间,裂缝在基质中延伸,直到发生骨折。对于链夹,裂缝首先在链区域内的包含和基质之间的界面中发起,并且启动所需的循环循环远小于单个包含。裂缝在开始后稳步延伸,然后在非常短的循环循环后骨折。将包含形状角的链链对疲劳性能严重有害。

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