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Studies of poisson's ratio variation for solid propellant grains under ignition pressure loading

机译:点火压力作用下固体推进剂颗粒的泊松比变化研究

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For structural integrity evaluation of solid propellant grains, an accurate estimation of the stress and strain response is essential, because of the viscoelastic nature of the polymer material. The results of an investigation on solid propellant grains considering the effect of Poisson's ratio U variation under ignition pressurization are presented. Traditionally the v value of solid propellant grains is assumed to be a constant (e.g. 0.4999) to simplify the experimental task, but the real v value is from 0.47 to 0.4999 depending on the chemical design of the solid propellant grains. In order to simulate the time-temperature-dependent behaviour of viscoelastic polymer materials for a range of Poisson's ratio values, the concepts of a time-temperature shift principle and reduced integration were used. In addition, eight different Poisson's ratio values from 0.47 to 0.4999 were assumed and compared using the finite element method. Results show that the Poisson's ratio variation effect is very important for structural integrity of solid propellant grains, and the stress and strain responses versus Poisson's ratio variation are nonlinear because the type of polymer material is changed from incompressible to compressible. Under ignition pressure loading, the stress and strain responses in the compressible case (v not= 0.5) are much higher than those of the incompressible case (v = 0.5). Therefore unlike metallic structures, an exact value of Poisson's ratio for polymer materials is very important, and an improper assumption (v=0.5) may cause the structural integrity of a missile system subjected to pressure loading to be wrongly evaluated.
机译:对于固体推进剂颗粒的结构完整性评估,由于聚合物材料的粘弹性,因此准确估计应力和应变响应至关重要。提出了考虑点火压力下泊松比U变化对固体推进剂颗粒的研究结果。传统上,为简化实验任务,固体推进剂颗粒的v值假定为常数(例如0.4999),但实际v值为0.47至0.4999,具体取决于固体推进剂颗粒的化学设计。为了在一定的泊松比值范围内模拟粘弹性聚合物材料的时间-温度依赖性行为,使用了时间-温度漂移原理和减少积分的概念。此外,假设并使用有限元方法比较了八个不同的泊松比值(从0.47到0.4999)。结果表明,泊松比变化效应对于固体推进剂颗粒的结构完整性非常重要,并且应力和应变响应与泊松比变化呈非线性关系,因为聚合物材料的类型从不可压缩变为可压缩。在点火压力负荷下,可压缩情况下的应力和应变响应(v not = 0.5)远高于不可压缩情况下的应力和应变响应(v = 0.5)。因此,与金属结构不同,聚合物材料的泊松比的精确值非常重要,而且不正确的假设(v = 0.5)可能会导致错误地评估承受压力载荷的导弹系统的结构完整性。

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