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Numerical predictions of the creep response of sandwich beams with a metallic foam core

机译:泡沫金属夹芯梁蠕变响应的数值预测

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The creep response of metallic foam sandwich beams in 3-point bend is investigated numerically for the case of a metallic foam core and two steel faces. The face sheets are treated as elastic, while the foam core is modelled by a viscoplastic extension of the Deshpande-Fleck yield surface. This power-law creeping constitutive law has been implemented within the commercial finite element code ABAQUS. It is found that the beams creep by a variety of competing mechanisms, depending upon the choice of material properties and the geometric parameters. A failure map is constructed and effect of rate dependence on the load-deflection curves is quantified, and compared against the available experimental data.
机译:对于金属泡沫芯和两个钢面的情况,数值研究了金属泡沫夹层梁在三点弯曲中的蠕变响应。面板被视为具有弹性,而泡沫芯则通过Deshpande-Fleck屈服面的粘塑性延伸进行建模。此幂律蠕变本构律已在商业有限元代码ABAQUS中实现。已经发现,光束会通过各种竞争机制而蠕变,这取决于材料属性和几何参数的选择。构造一个故障图,量化速率对载荷-挠度曲线的影响,并将其与可用的实验数据进行比较。

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