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Numerical Study of Scale Effects of Ultra-Thin Nickel Beams

机译:超薄镍梁尺度效应的数值研究

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Recent experiments have shown that metallic materials display significant size effects when the characteristic length scale of non-uniform plastic deformation is close to a micron. Couple stress plasticity has been developed to explain such phenomena by Fleck and Hutchinson. The mechanical behaviors of ultra-thin nickel beams in different boundary conditions were studied with the hybrid element developed for couple stress plasticity before. Strong scale effects are found when the beam's thickness is close to the material characteristic length scale. Such phenomena will disappear if the beam's thickness is greatly larger than the material characteristic length scale. The scale effect is the beams inherent property and it does not change with the change of support conditions.
机译:最近的实验表明,金属材料在非均匀塑性变形的特征长度靠近微米时显示出显着的尺寸效应。已经开发出夫妇应力可塑性来解释弗里克和哈钦森这样的这种现象。利用以前为夫妻应力塑性开发的混合元件研究了不同边界条件中的超薄镍梁的机械行为。当光束的厚度接近材料特性长度尺度时,发现强大的效果。如果光束的厚度大于材料特征长度尺度,这种现象将消失。比例效果是梁固有的属性,并且随着支持条件的变化而不会改变。

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