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首页> 外文期刊>Composites. B, Engineering >Material characterization of a pultrusion specific and highly reactive polyurethane resin system: Elastic modulus, rheology, and reaction kinetics
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Material characterization of a pultrusion specific and highly reactive polyurethane resin system: Elastic modulus, rheology, and reaction kinetics

机译:拉挤型和高反应性聚氨酯树脂系统的材料表征:弹性模量,流变和反应动力学

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摘要

This study presents a detailed material characterization study of a pultrusion specific polyurethane resin system. Firstly, the chemical behaviour was characterized by utilizing differential scanning calorimetry. The cure kinetics was fitted well to an autocatalytic cure kinetics model with Arrhenius temperature dependency. The resin system did not show any inhibition time. Then, the viscosity evolution was observed using a rheometer. From these measurements, the gelation point was estimated from the criterion of cross-over point of storage and loss modulus curves. The corresponding cure degree of gelation point was found to be 0.79 using the cure kinetics model. The complex viscosity evolution through dynamic scans was predicted well with a cure degree and temperature dependent viscosity model. The elastic modulus and glass transition temperature of fully and partially cured samples were measured by means of DMA in tension mode. A five step cure hardening instantaneous linear elastic model was fitted well to a wide range of cure degree values after gelation. Lastly, the fitted material models were employed in a case study of a typical pultrusion process to visualize the effects of pulling speed on the material property evolution.
机译:该研究介绍了拉挤特异性聚氨酯树脂体系的详细材料表征研究。首先,通过利用差分扫描量热法来表征化学行为。固化动力学与Arhenius温度依赖性的自催化固化动力学模型很好。树脂系统没有显示任何抑制时间。然后,使用流变仪观察粘度演化。根据这些测量,从储存和损耗模量曲线的交叉点的标准估计了凝胶点。使用固化动力学模型,发现相应的凝胶化点的固化程度为0.79。通过固化程度和温度依赖性粘度模型预测通过动态扫描的复杂粘度演变。通过张力模式下的DMA测量完全和部分固化的样品的弹性模量和玻璃化转变温度。五步固化硬化瞬时线性弹性模型很好地凝聚到凝胶化后的各种固化度值。最后,在典型的拉挤工艺的情况下采用拟合材料模型,以可视化拉速对材料性能的影响。

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