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Mechanical Behavior of Polymers PBXW-128 and PBXN-110 Under Uniaxial and Multiaxial Compression at Different Strain Rates and Temperatures

机译:聚合物PBXW-128和PBXN-110在不同应变速率和温度下的单轴和多轴压缩下的力学行为

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The influence of strain rate, temperature, and confining pressure on the mechanical behavior of PBXN-110 binder "inert" (hydroxy-terminated polybutadiene (HTPB)) and PBXW-128 simulant "inert," which is mixed with small particles of sugar, approximately 50 percent by weight, is presented in this paper. The polymer PBXN-110 is used as the matrix for the particle-reinforced polymer composite (PBXW-128); the latter is the mock or inert equivalent of actual explosive material. Stress-strain response of both polymeric materials under uniaxial compression is found to be dependent on the strain rate. On one hand, it is observed that PBXW-128 exhibits temperature-dependent behavior, while the mechanical response of PBXN-110 is not significantly affected at temperatures above the glass transition temperature. Compression experiments in the presence of confining pressure reveal that the stress-strain response of each material is rate insensitive.
机译:应变速率,温度和限制压力对PBXN-110粘合剂“惰性”(羟基封端的聚丁二烯(HTPB))和PBXW-128模拟物“惰性”(与小颗粒糖混合)的机械性能的影响,本文介绍了约50%的重量。聚合物PBXN-110用作颗粒增强聚合物复合材料(PBXW-128)的基质;后者是实际爆炸材料的模拟或惰性等效物。发现两种聚合物材料在单轴压缩下的应力-应变响应取决于应变速率。一方面,观察到PBXW-128表现出温度依赖性行为,而在高于玻璃化转变温度的温度下,PBXN-110的机械响应并未受到明显影响。在限制压力下的压缩实验表明,每种材料的应力-应变响应对速率均不敏感。

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