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Mechanical Property Evaluation of Polyurethane Foam under Quasi-static and Dynamic Strain Rates-An Experimental Study

机译:准静态和动态应变率下聚氨酯泡沫的机械性能评价 - 一种实验研究

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Polyurethane foams are widely used as thermal insulators and also as energy absorbers in radioactive material shipping casks. In view of this, an experimental study to observe the change in impact response of rigid polyurethane foam at different strain rates was conducted. For this purpose, uni-axial compression experiments were performed at quasi-static and dynamic rates of loading. The results reveal a significant change in mechanical properties of foam under compression at different strain rates. The response of foam gets stiffer with increase in strain rate, and densification (lockup) occurs well below the strains at which lockup occurs for foam deformed at quasi-static strain rates. Consequently, the energy absorption characteristics of foam are altered with change in strain rate. It is envisioned that nuclear industries could use this information for application of polyurethane foam as an impact limiter in nuclear shipping casks, without causing un-acceptable stresses in the cask structure.
机译:聚氨酯泡沫广泛用作热绝缘体,也是放射性物质运输桶中的能量吸收器。鉴于此,进行了观察刚性聚氨酯泡沫在不同应变率下抗冲击响应变化的实验研究。为此目的,在准静态和动态加载速率下进行单轴压缩实验。结果揭示了不同应变率的压缩下泡沫力学性能的显着变化。泡沫的响应随着应变速率的增加而变硬,致密化(锁定)良好地发生在燃烧室以准静态应变速率变形的燃料。因此,泡沫的能量吸收特性随应变率的变化而改变。设想核工业可以使用该信息将聚氨酯泡沫应用于核运输桶中的冲击限制器,而不会导致木桶结构中的不可接受的应力。

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