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Initiation and Growth Behavior of Creep Voids in an Austenitic Steel with High Ductility under Multi-axial Stresses

机译:多轴应力下高延性奥氏体钢中蠕变空隙的萌生和生长行为

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This study aims mainly to clarify the effects of the multi-axial stress components on the initiation and growth behavior of creep voids. For this purpose, creep tests, particularly creep interrupt tests are conducted in tension, torsion and in combined tension-torsion stress states at 700℃, using tubular specimens of the austenitic steel SUS310S with high ductility. Creep voids formed in the specimens are examined in detail by observation with the scanning electron micrographs. It is found that creep voids in the torsional creep specimens form easily to a certain size in the primary creep, but they grow difficultly to rupture. While from torsional stress state to tensile one, creep voids become easy to grow. The initiation and growth behaviors of creep voids under the multi-axial stress conditions are discussed. It is further suggested that the von Mises equivalent stress is a dominant component for the initiation of creep voids, and the mean stress component strongly promotes their growth.
机译:这项研究的主要目的是澄清多轴应力分量对蠕变孔隙的产生和生长行为的影响。为此,使用具有高延展性的奥氏体钢SUS310S的管状试样,在700℃的拉伸,扭转和组合拉伸-拉伸应力状态下进行了蠕变试验,尤其是蠕变中断试验。样品中形成的蠕变空隙通过用扫描电子显微镜照片观察而详细检查。已经发现,扭转蠕变试样中的蠕变空隙在初次蠕变中很容易形成一定尺寸,但它们很难破裂。从扭转应力状态到拉伸状态时,蠕变空隙变得易于生长。讨论了蠕变孔隙在多轴应力条件下的萌生和生长行为。进一步表明,冯·米塞斯当量应力是蠕变空隙萌生的主要成分,而平均应力成分则强烈促进了它们的生长。

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