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Effect of strain rate and relative density on compressive deformation behavior of aluminum cenosphere syntactic foam

机译:应变速率和相对密度对铝空心球复合泡沫压缩变形行为的影响

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The compressive deformation behavior of aluminum cenosphere syntactic foams of varying densities and cenosphere sizes have been studied at different strain rates (from 0.01/s to 10/s). The plateau stress, densification strain, energy absorption and strain rate sensitivity parameter as a function of relative density, strain rate and cenosphere size have been examined. Densification strain is found to be almost invariant to relative density, strain rate and cenosphere size. But, the plateau stress and energy absorption of syntactic foams are influenced by the relative density and cenosphere size. However, plateau stress is found to be almost invariant to the strain rate. The energy absorption is marginally higher in case of syntactic foam with coarser cenosphere at higher strain rate, whereas reverse is true at lower strain rate. This is attributed to the differences in deformation mechanism at different strain rates.
机译:已经研究了在不同应变率(从0.01 / s到10 / s)下,不同密度和空心层尺寸的铝空心层复合泡沫的压缩变形行为。考察了高原应力,致密化应变,能量吸收和应变率敏感性参数与相对密度,应变率和空心球大小的关系。发现致密化应变几乎不变于相对密度,应变率和空心球大小。但是,句法泡沫的平台应力和能量吸收受相对密度和平流层尺寸的影响。但是,发现平台应力几乎与应变速率无关。在较高的应变速率下,具有较粗的空心球的复合泡沫的能量吸收略高,而在较低的应变速率下则相反。这归因于在不同应变率下变形机制的差异。

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