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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effects of Microstructure on Inverse Fracture Occurring during Drop-Weight Tear Testing of High-Toughness X70 Pipeline Steels
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Effects of Microstructure on Inverse Fracture Occurring during Drop-Weight Tear Testing of High-Toughness X70 Pipeline Steels

机译:显微组织对高韧性X70管线钢落锤撕裂试验过程中发生反向断裂的影响

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摘要

The effects of microstructure on inverse fracture occurring in the hammer-impacted region were analyzed after conducting a drop-weight tear test (DWTT) on high-toughness pipeline steels. Three kinds of steels were fabricated by varying the alloying elements, and their microstructures were varied by the rolling conditions. The pressed-notch (PN) or chevron-notch (CN) DWTT and Charpy V-notch (CVN) impact tests were conducted on the rolled steel specimens, and the results were discussed in comparison with the data obtained from CVN tests of prestrained specimens. In the hammer-impacted region of the DWTT specimens, abnormal inverse fracture having a cleavage fracture mode appeared, and the inverse fracture area correlated well with the upper-shelf energy (USE) obtained from the CVN test and with the grain size. The steel specimens having a higher USE or having coarse polygonal ferrite tended to have a larger inverse fracture area than those having a lower USE or having fine acicular ferrite. This was because steels having a higher impact absorption energy required higher energy for fracture initiation and propagation during the DWTT. These results were confirmed by the CVN data of prestrained steel specimens.
机译:在对高韧性管线钢进行落锤撕裂试验(DWTT)之后,分析了微结构对锤击区中发生的反向断裂的影响。通过改变合金元素来制造三种钢,并根据轧制条件改变其显微组织。对轧制钢试样进行了压痕(PN)或V形缺口(CN)DWTT和夏比V型缺口(CVN)冲击试验,并与从预应变试样​​的CVN试验获得的数据进行了比较,讨论了结果。在DWTT试样的锤击区域中,出现了具有分裂断裂模式的异常反断裂,反断裂面积与CVN试验获得的上架能量(USE)和晶粒尺寸密切相关。 USE含量高或多边形铁素体较粗的钢试样,与USE含量低或针状铁素体较细的钢相比,具有更大的反向断裂面积。这是因为具有较高冲击吸收能的钢在DWTT期间需要较高的能量来引发和扩展断裂。这些结果由预应力钢试样的CVN数据证实。

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