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Frequency and temperature dependent dynamic shear response of polyurethane foams

机译:频率和温度相关的聚氨酯泡沫动态剪切响应

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Dynamic mechanical analysis (DMA) experiments have been performed on rigid polyurethane (PU) foams using a torsional rheometer. Circular disk samples were tested at several frequencies between 1-2,000 cpm and at temperatures between 25℃-150℃. The dynamic torsion tests were carried out in two phases. In the first phase, logarithmic frequency sweeps were carried out at each temperature with 0.05° angle of strain. In the second phase, linear strain sweeps in the range of 0.05°-5° angle of strain were carried out at a frequency of 100 cpm. The frequency sweep results allowed to obtain a master curve based on the principle of frequency temperature superposition at a reference temperature of 115℃. The predictions obtained from the master curve have been validated at selected frequencies. The shift factors were found to follow an Arrhenius relationship and the activation energy was found to be 264.46 kJ/mol. Results from the dynamic strain sweep tests indicate that samples go through predominantly viscoelastic behaviour. The strain sweep samples showed significant fracture near the ridges on the top die whereas the frequency sweep samples showed significant striations near the reference temperature.
机译:已经使用扭转流变仪对硬质聚氨酯(PU)泡沫进行了动态力学分析(DMA)实验。在1-2,000 cpm之间的几个频率和25℃-150℃之间的温度下测试了圆盘样品。动态扭转试验分两个阶段进行。在第一阶段,在每个温度下以0.05°应变角进行对数频率扫描。在第二阶段,以100 cpm的频率在0.05°-5°的应变角范围内进行线性应变扫描。根据频率温度叠加原理,在115℃的参考温度下,频率扫描结果可以得出主曲线。从主曲线获得的预测已在选定频率下得到验证。发现位移因子遵循Arrhenius关系,并且活化能为264.46kJ / mol。动态应变扫描测试的结果表明,样品主要经历了粘弹性行为。应变扫描样品在顶部模具的脊附近显示出明显的断裂,而频率扫描样品在参考温度附近显示出明显的条纹。

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