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Measurement of the response of an elastomer at pressures up to 9 GPa and shear-rates of 10~5-10~6s~(-1)

机译:测量弹性体的响应在高达9GPa的压力下,剪切速率为10〜5-10〜6s〜(-1)

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Pressure-shear plate impact (PSPI) experiments have been conducted to study the mechanical response of an elastomer at high pressures and high strain rates. The previously determined isentrope has been extended to 9 GPa. At this pressure, the high-strain-rate shearing resistance of polyurea is approximately 500 MPa - comparable to, or greater than, that of high strength steels and at much lower density. A new symmetric pressure-shear plate impact (SPSPI) configuration has been developed in order to enable the direct measurement of the thickness-averaged nominal strain rates of the sample-as well as the tractions on both of its interfaces with linear elastic plates. This enhancement is made possible by using a symmetric configuration for which the velocity of the mid-plane of the sample is known from symmetry to be one-half of the impact velocity. One dimensional elastic wave theory is used to obtain tractions and particle velocities at the sample/anvil interface from the measured rearsurface velocities. In this way, nominal strain-rate histories are obtained for both longitudinal and shear strains.
机译:已经进行了压力剪切板冲击(PSPI)实验以研究弹性体在高压和高菌株率下的机械响应。先前确定的Isentrope已扩展至9 GPA。在此压力下,聚脲的高菌株速率剪切抗性约为500MPa - 相当于高强度钢的或大于高强度钢和更低的密度。已经开发了一种新的对称压力剪切板冲击(SPSPI)配置,以便能够直接测量样品的厚度平均标称应变率 - 以及具有线性弹性板的其两个界面上的牵引力。通过使用对称配置来实现这种增强,其中样本的中平面的速度从对称性已知为撞击速度的一半。一种尺寸弹性波理论用于从测量的后表面速度获得样品/砧座界面处的牵引和颗粒速度。以这种方式,为纵向和剪切菌株获得标称应变率历史。

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