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A investigation on Unixial and Quasi-biaxial Tensile Mechanical Properties of Aging HTPB Propellant under Dynamic Loading at Low Temperature

机译:低温动态负载下老化HTPB推进剂术后术和准双轴拉伸力学性能研究

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In order to study the uniaxial and quasi-biaxial mechanical properties of aging solid propellants under low temperature and high strain rate, stress-strain curves and tensile fracture surfaces of HTPB propellant were obtained in a wide range of temperature (-30,25°C) and strain rates (0.4,4.0 and 14.29 s~(-1)), respectively, by means of uniaxial and biaxial tensile tests and electron microscopy scanning on the fracture cross section. The results indicate that the quasi-biaxial tensile mechanical properties of aging HTPB propellant is same as the uniaxial tensile mechanical properties influenced distinctly by temperature and strain rate. With decreasing temperature and increasing strain rate, the mechanical properties gradually strengthen. The damage for HTPB propellant changes from "dehumidification" to grain fracture. The initial elastic modulus E and maximum tensile stress σ of the uniaxial and biaxial tensile increase gradually with decreasing temperature and increasing strain rate, and well present linear-log function relation with strain rate. The ratio of quasi-biaxial and uniaxial stretching under different loading conditions was obtained so that the researchers could predict the quasi-biaxial tensile mechanical properties of the propellant based on the uniaxial test data.
机译:为了研究在低温和高应变率下老化固体推进剂的单轴和准双轴力学性能,在宽范围的温度下获得HTPB推进剂的应力 - 应变曲线和拉伸裂缝表面(-30,25℃通过单轴和双轴拉伸试验和电子显微镜扫描分别通过单轴和双轴拉伸试验和裂缝横截面上的菌株速率(0.4,4.0和14.29 s〜(-1))。结果表明,老化HTPB推进剂的准双轴拉伸力学性能与通过温度和应变速率明显影响的单轴拉伸机械性能。随着温度降低和应变率的增加,机械性能逐渐加强。 HTPB推进剂的损害从“除湿”变为颗粒骨折。单轴和双轴拉伸的初始弹性模量和最大拉伸应力σ逐渐随着温度降低和应变速率的增加而增加,以及具有应变速率的线性对数函数关系。获得了不同负载条件下的准双轴和单轴拉伸的比例,使得研究人员可以基于单轴测试数据预测推进剂的准双轴拉伸力学性能。

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