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Experimental arrangement for measuring the high-strain-rate response of polymers under pressures

机译:测量压力下聚合物高菌株率响应的实验装置

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This study aims to investigate the high-strain-rate shear response of viscoelastic elastomeric coatings at large strains and under elevated levels of hydrostatic pressure. Results of this study shed light on the combined effects of deformation rate and pressure which might promote a transition from viscoelastic to glassy behavior. This work utilizes a Split Hopkinson Pressure Bar (SHPB) apparatus in conjunction with a customized version of the recently proposed Shear Compression Specimen (SCS) which consists of a polymer gage section with two metal ends that remain essentially rigid during deformation. Detailed finite element simulations were used to customize the adopted specimen, to determine its proper dimensions and promote its functionality. The customized specimen permits subjecting the tested specimen to a state of uniform pressure and shear stress, while allowing for measuring pressure, shear stress and shear strain directly. Results obtained using the customized specimen, which are included in this paper, illustrate its usefulness in measuring the effect of high-strain-rate, large strain and hydrostatic pressure on the shear stress-strain response of viscoelastic elastomers.
机译:本研究旨在研究大菌株和静水压压力水平的粘弹性弹性体涂层的高菌速率剪切响应。该研究的结果揭示了变形速率和压力的综合影响,这可能促进从粘弹性到玻璃行为的过渡。这项工作利用了拆分Hopkinson压力棒(SHPB)装置与最近提出的剪切压缩样品(SCS)的定制版本一起,该版本由具有两个金属端部的聚合物测量部分组成,其在变形期间保持基本刚性刚性。详细的有限元模拟用于定制采用的标本,以确定其适当的尺寸并促进其功能。定制的样本允许经过测试的试样在均匀的压力和剪切应力的状态下,同时允许直接测量压力,剪切应力和剪切应变。采用本文中包含的定制样品获得的结果说明了其在测量高菌株,大应变和静压压力对粘弹性弹性体的剪切应力 - 应变响应作用的有用性。

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