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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Delamination Fracture Related to Tempering in a High-Strength Low-Alloy Steel
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Delamination Fracture Related to Tempering in a High-Strength Low-Alloy Steel

机译:高强度低合金钢回火相关的分层断裂

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The delamination or splitting of mechanical test specimens of rolled steel plate is a phenomenon that has been studied for many years. In the present study, splitting during fracture of tensile and Charpy V-notch (CVN) test specimens is examined in a high-strength low-alloy plate steel. It is shown that delamination did not occur in test specimens from plate in the as-rolled condition, but was severe in material tempered in the temperature range 500 deg C to 650 deg C. Minor splitting was seen after heating to 200 deg C, 400 deg C, and 700 deg C. Samples that had been triple quenched and tempered to produce a fine equiaxed grain size also did not exhibit splitting. Microstructural and preferred orientation studies are presented and are discussed as they relate to the splitting phenomenon. It is concluded that the elongated as-rolled grains and grain boundary embrittlement resulting from precipitates (carbides and nitrides) formed during reheating were responsible for the delamination.
机译:轧制钢板的机械试样的分层或分裂是已经研究了很多年的现象。在本研究中,在高强度低合金钢板中检查了拉伸和夏比V型缺口(CVN)测试样品断裂过程中的开裂。结果表明,在轧制条件下,试样在板中不会发生分层,但是在500℃至650℃的温度范围内回火的材料中会发生严重的分层。加热到200℃,400℃后观察到微小的分裂分别在300摄氏度和700摄氏度下进行了三次淬火和回火,以产生细等轴晶粒。提出并讨论了微观结构和首选取向研究,因为它们与分裂现象有关。结论是,再加热过程中形成的沉淀物(碳化物和氮化物)导致拉长的轧制晶粒和晶界脆化是造成分层的原因。

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