首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Effects of Specimen Thickness and Notch Shape on Fracture Mode Appearing in Drop Weight Tear Test (DWTT) Specimens of API X70 and X80 Linepipe Steels
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Effects of Specimen Thickness and Notch Shape on Fracture Mode Appearing in Drop Weight Tear Test (DWTT) Specimens of API X70 and X80 Linepipe Steels

机译:在API X70和X80管线钢的落锤撕裂试验(DWTT)样品中,试样厚度和缺口形状对断裂模式的影响

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摘要

Effects of specimen thickness and notch shape on fracture mode appearing in drop weight tear test (DWTT) specimens of API X70 and X80 linepipe steels were investigated. Detailed microstructural analysis of fractured DWTT specimens showed that the fractures were initiated in normal cleavage mode near the specimen notch, and that some separations were observed at the center of the fracture surfaces. The Chevron-notch (CN) DWTT specimens had broader normal cleavage surfaces than the pressed-notch (PN) DWTT specimens. Larger inverse fracture surfaces appeared in the PN DWTT specimens because of the higher fracture initiation energy at the notch and the higher strain hardening in the hammer-impacted region. The number and length of separations were larger in the CN DWTT specimens than in the PN DWTT specimens, and increased with increasing specimen thickness due to the plane strain condition effect. As the test temperature decreased, the tendency to separations increased, but separations were not found when the cleavage fracture prevailed at very low temperatures. The DWTT test results, such as upper shelf energy and energy transition temperature, were discussed in relation with microstructures and fracture modes including cleavage fracture, shear fracture, inverse fracture, and separations.
机译:研究了API X70和X80管线钢的落锤撕裂试验(DWTT)标本中试样厚度和缺口形状对断裂模式的影响。对断裂的DWTT样品进行的详细的微观结构分析表明,该裂纹是在样品缺口附近以正常劈裂模式开始的,并且在断裂表面的中心处观察到一些分离。人字形缺口(CN)DWTT标本比法向缺口(PN)DWTT标本具有更宽的法向劈裂面。 PN DWTT试样中出现较大的反向断裂面,这是因为在缺口处的断裂起始能量较高,而锤击区域的应变硬化较高。 CN DWTT标本中的分离次数和长度比PN DWTT标本中的大,并且由于平面应变条件效应,随着标本厚度的增加而增加。随着测试温度的降低,分离的趋势增加,但是当在非常低的温度下发生劈裂断裂时,则没有发现分离。讨论了DWTT测试结果,例如上架能量和能量转换温度,以及与微结构和断裂模式(包括劈裂断裂,剪切断裂,反断裂和分离)有关的结果。

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