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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >A FULL CONSTITUTIVE RELATION OF SILICON-STEEL SHEET WITH ANISOTROPY CONSIDERED
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A FULL CONSTITUTIVE RELATION OF SILICON-STEEL SHEET WITH ANISOTROPY CONSIDERED

机译:考虑各向异性的硅钢片的全本构关系

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摘要

We present a full constitutive relation of silicon steel which can describe the anisotropy effect as well.Using a pilot rolling machine, initial silicon strip with thickness of 2.5mm is rolled into sheet with several thicknesses as reduction ratio increases from 10% to 90%. To examine the effect of anisotropy on the stress-strain behavior, the specimen was cut out from the sheet so that the direction of specimen and sheet is 0°, 30°, 45°, 60° and 90°, respectively. A series of tensile test are then performed with the specimens.The stress-strain curves computed from the proposed constitutive relation are compared with the experimental data. Results show that the predicted curves are in overall in a good agreement with measured ones. The work hardening and unstable softening behaviors of silicon steel during rolling are predicted by the proposed full constitutive relation.
机译:我们提供了硅钢的完整本构关系,它也可以描述各向异性的影响。使用中试轧机,将原始2.5mm厚度的硅带轧制成具有多种厚度的薄板,随着压下率从10%增加到90%。为了检查各向异性对应力-应变行为的影响,从薄片上切下样本,使样本和薄片的方向分别为0°,30°,45°,60°和90°。然后对试件进行一系列的拉伸试验,将根据建议的本构关系计算出的应力-应变曲线与实验数据进行比较。结果表明,预测曲线总体上与实测曲线吻合良好。通过所提出的全本构关系,可以预测硅钢在轧制过程中的工作硬化和不稳定的软化行为。

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