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首页> 外文期刊>Journal of engineering materials and technology >Compressibility, Damage, and Age-Hardening Effects of Solid Propellants Using Finite Strain Constitutive Model
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Compressibility, Damage, and Age-Hardening Effects of Solid Propellants Using Finite Strain Constitutive Model

机译:使用有限菌株本构模型,固体推进剂的可压缩性,损伤和年龄 - 硬化效应

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摘要

In this paper, the finite strain viscoelastic constitutive model for particulate composite solid propellants is proposed considering strain rate, large deformation/large strain, thermorheological behavior, stress softening due to microstructural damage, compressibility, and chemical age hardening. The compressible Mooney-Rivlin hyperelastic strain energy density function is used along with the standard model of viscoelasticity. To model the compressibility, the dilatational strain energy is taken as the hyperbolic function of the determinant of deformation gradient. The stress-softening phenomenon during cyclic loading (Mullin's effect) due to microstructural damage is described by an exponential function of the current magnitude of intensity of strain and its previous maximum value. The variation of material properties with time are studied using the isothermal accelerated aging technique through simulation and experimental investigation. The comparison of predictions based on the proposed model with the uniaxial experimental data demonstrates that the proposed model successfully captures the observed behavior of the solid propellants.
机译:本文鉴于菌株,大变形/大菌株,热流变,热损伤,压缩性和化学时代硬化,提出了考虑颗粒复合材料固体推进剂的有限菌株粘弹性型号模型。可压缩的Mooney-Rivlin超弹性应变能密度功能与粘弹性的标准模型一起使用。为了模拟可压缩性,将扩张应变能量作为变形梯度的决定性的双曲线函数。由于菌株强度强度的指数函数及其先前的最大值,描述了由于微观结构损伤而导致的循环载荷(Mullin的效果)期间的应力软化现象。通过模拟和实验调查使用等温加速老化技术研究了与时间的材料性能的变化。基于具有单轴实验数据的提出模型的预测的比较表明,所提出的模型成功地捕获了所观察到的固体推进剂的行为。

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