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Low-Velocity Impact and Flexural Properties of Thermoplastic Polyurethane/Woven Glass Fabric Composite Laminates

机译:热塑性聚氨酯/编织玻璃织物复合层压板的低速冲击和弯曲性能

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Composite laminates based on a commercial thermoplastic polyurethane (TPU) grade and reinforced by woven glass fibers were prepared by film stacking and compression molding procedures and subjected to static and dynamic mechanical tests, at ambient and low temperatures. The results were interpreted taking into account that preliminary analysis of TPU based laminates showed a fiber volume fraction equal to 53%, 56% and 48% for plates involving 10,16 and 22 lamina, respectively. Flexural tests, performed so far only at room temperature (RT), revealed that the intermediate thickness laminates offer the highest performances, probably for their higher volumetric fraction of reinforcement. Impact results collected, instead, also at low temperatures (-25 °C and -50 °C) indicated that no delamination is verified all over the considered range of impact temperatures and thickness of plates. On the contrary crack propagation phenomena are enhanced by increasing the thickness of impacted samples and/or reducing the impact temperature.
机译:基于商业热塑性聚氨酯(TPU)等级的复合层压板通过薄膜堆叠和压缩模塑程序制备编织玻璃纤维并通过薄膜堆叠制备,并在环境温度和低温下进行静态和动态机械测试。考虑到涉及10,16和22层的平板的TPU基层层压板的初步分析表明,TPU基层的初步分析表明纤维体积分别等于53%,56%和48%。仅在室温(RT)的弯曲试验,透露,中间厚度层压材料提供最高的性能,这可能是其较高的增强件的体积分数。收集的影响结果,而不是低温(-25°C和-50°C)表明,没有验证除去的抗冲温度和厚度范围内的分层。通过增加受影响的样品的厚度和/或降低冲击温度来增强相反裂纹繁殖现象。

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