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Transversely Isotropic Hypereiastic Constitutive Model of Short Fiber Reinforced EPDM Based on Tensor Function

机译:基于张量函数的短纤维增强EPDM横向各向同性立面结构型模型

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Short fiber reinforced EPDM is a new kind of composite material used in solid rocket motor winding and coating. It has relatively large deformation under the small stress condition, and the physical non-linear characteristic is obvious. Due to the addition of fiber in the specific direction of the rubber, the macroscopic mechanical properties are expressed as transversely isotropic properties. In order to describe the mechanical behavior under the impact and vibration, the transversely isotropic hypereiastic constitutive model based on tensor function is proposed. The symmetry of the transversely isotropic incompressible material limits the stress tensor 'K' to be characterized as a function of 5 tensor invariants and 4 scalar invariants. The third power constitutive equations of the model give 12 independent elastic constants of the transversely isotropic nonlinear elastic material. The experimental results show that the non-zero elastic constants are different in the fiber direction and at the different strain rate. Number and value of adiabatic layer and related products R&D has a reference value.
机译:短纤维增强EPDM是一种用于固体火箭电机绕组和涂层的新型复合材料。在小的应力条件下具有相对较大的变形,并且物理非线性特性是显而易见的。由于在橡胶的比方向上添加纤维,宏观机械性能表示为横向各向同性特性。为了描述在冲击和振动下的机械行为,提出了基于张量函数的横向各向同性的过度稳态结构型模型。横向各向同性的不可压缩材料的对称性限制了应力张量'k',其特征在于5张张于5张不变量和4个标量不变的函数。该模型的第三功率本构体方程式提供12个横向各向同性非线性弹性材料的12个独立弹性常数。实验结果表明,非零弹性常数在纤维方向和不同应变率下不同。绝热层和相关产品R&D的数量和值具有参考值。

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