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Hyperelastic behavior of two rubber materials under quasistatic and dynamic compressive loadings - testing, modeling and application

机译:准静态和动态压缩载荷下两种橡胶材料的超弹性行为-测试,建模和应用

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The mechanical properties of two rubber materials, RB-55 rubber and FM-32 foam rubber, were tested under quasistatic and dynamic compressive loadings with a universal testing machine and a nonmetallic split Hopkinson pressure bar (SHPB), respectively. The results show that the hyperelasticity dominates the mechanical characteristics of the both materials. And the strain rate dependencies can be observed over the wide strain rate range from 10(-2) s(-1) to order 10(3) s(-1). But in the rather narrow bands of 10(-2)-10(0) s(-1) and 2 . 10(3)-6 . 10(3) s(-1), the strain rate effects are not significant. In order to numerically simulate rod-explosive loading tests where the two rubber materials were used as a combined buffer, the strain rate-independent hyperelastic behaviors at the strain rate of order 10(3) s(-1) were characterized by Ogden constitutive models, incompressible for RB-55 rubber and compressible for FM-32 foam rubber, respectively. The numerical prediction of the structural responses agrees very well with the experimental results. This means the testing and modeling are successful.
机译:RB-55橡胶和FM-32泡沫橡胶这两种橡胶材料的力学性能分别在万能试验机和非金属裂合式霍普金森压力棒(SHPB)的准静态和动态压缩载荷下进行了测试。结果表明,超弹性支配两种材料的机械特性。并且可以在从10(-2)s(-1)到10(3)s(-1)的宽应变速率范围内观察到应变速率相关性。但是在10(-2)-10(0)s(-1)和2的相当窄的频带中。 10(3)-6。 10(3)s(-1),应变率影响不明显。为了对两种橡胶材料作为组合缓冲材料进行的棒爆炸载荷试验进行数值模拟,采用Ogden本构模型对应变速率为10(3)s(-1)的应变速率无关的超弹性行为进行了表征。 ,分别对于RB-55橡胶不可压缩和对于FM-32泡沫橡胶可压缩。结构响应的数值预测与实验结果非常吻合。这意味着测试和建模是成功的。

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