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首页> 外文期刊>Mechanics & Industry >Study of the development of plastic instabilities during tests on metallic plates biaxially loaded in their plane, in tension or in compression
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Study of the development of plastic instabilities during tests on metallic plates biaxially loaded in their plane, in tension or in compression

机译:对在平面,拉伸或压缩状态下双轴加载的金属板进行测试时塑性不稳定性发展的研究

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摘要

Plastic instabilities develop during tension and compression tests on metallic plates biaxially loaded in their plane. They limit the acceptable deformation levels during sheet forming. Carrying out a Linear Stability Analysis, we study the onset of their development. We calculate the growth rate of small symmetrical and antisymmetrical defects with respect to the median plane of the plate, periodic along the loading directions, and we determine the dominant mode. This 3D model applies to dynamic tests whatever the thickness. It retrieves classical results for thin plates statically loaded in tension. Plane tension and compression tests are two particular 2D cases of this model. In plane strain tension on ductile non viscous materials, we retrieve that the first instabilities, which are also long wavelength necking ones, arise very little time before the applied force is maximum; this is consistent with the experimental observations of Considere. As time goes by, antisymmetric modes with shorter wavelengths compete with the symmetric ones.
机译:在平面上双轴加载的金属板上进行拉伸和压缩测试时,塑性不稳定性会加剧。它们限制了片材成形过程中可接受的变形水平。进行线性稳定性分析,我们研究其发展的开始。我们计算相对于板的正中平面的小对称和反对称缺陷的增长率,这些载荷沿着加载方向呈周期性,并确定主导模式。无论厚度如何,此3D模型均适用于动态测试。对于静态承受张力的薄板,它可以检索经典结果。平面拉伸和压缩测试是此模型的两个特定2D情况。在韧性非粘性材料的平面应变张力中,我们发现,第一不稳定性(也是长波颈缩的不稳定性)在施加力最大之前的时间很少。这与康思的实验观察是一致的。随着时间的流逝,具有较短波长的反对称模式与对称模式竞争。

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