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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Computational studies of variations in Poisson's ratio for thermoviscoelastic solid propellant grains
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Computational studies of variations in Poisson's ratio for thermoviscoelastic solid propellant grains

机译:热粘弹性固体推进剂颗粒的泊松比变化的计算研究

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In this article, the results of an investigation on solid propellant grains considering the effect of Poisson's ratio v under thermal loading are presented. Traditionally the v value of solid propellant grains is assumed to be a constant (e.g. 0.4999) for engineer, but the real v value is dependent on the real chemical recipe design of solid propellant grains. In order to simulate the time-temperature-dependent behaviour of thermoviscoelastic propellants under various Poisson's ratios, concepts of the time-temperature shift principle and reduced integration were used for finite element simulation. Results show that the effect of Poisson's ratio is important for structural integrity of solid propellant grains because the type of polymer material is changed from incompressible (υ ≈ 0.5) to compressible (υ ≠ 0.5). Under thermal loading, the difference between the maximum principal thermal strains for υ = 0.4999 and υ = 0.470 is 68.8 per cent, that between the maximum principal thermal stresses for υ = 0.4999 and υ = 0.470 is 73.5 per cent and that between the maximum shear thermal stresses for υ = 0.4999 and υ = 0.470 is 74.8 per cent. In addition, there are differences in the quasi-elastic analysis because the effect of Poisson's ratio becomes more and more predominant as the material type of solid propellant grains changed from incompressible to compressible.
机译:在本文中,介绍了考虑热负荷下泊松比v的影响的固体推进剂颗粒的研究结果。传统上,工程师认为固体推进剂颗粒的v值是一个常数(例如0.4999),但实际v值取决于固体推进剂颗粒的实际化学配方设计。为了模拟热粘弹性推进剂在各种泊松比下随时间变化的行为,将时温度漂移原理和简化积分的概念用于有限元模拟。结果表明,泊松比的影响对于固体推进剂颗粒的结构完整性很重要,因为聚合物材料的类型从不可压缩(υ≈0.5)变为可压缩(υ≠0.5)。在热负荷下,υ= 0.4999和υ= 0.470的最大主热应变之间的差异为68.8%,υ= 0.4999和υ= 0.470的最大主热应力之间的差异为73.5%,最大剪切力之间的差异为υ= 0.4999和υ= 0.470的热应力为74.8%。另外,准弹性分析也存在差异,因为随着固体推进剂颗粒的材料类型从不可压缩变为可压缩,泊松比的影响越来越明显。

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