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Thermoplastic Polyurethane Elastomer Nanocomposites: Morphology, Thermophysical, and Flammability Properties

机译:热塑性聚氨酯弹性体纳米复合材料:形态,热物理和可燃性

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摘要

Novel materials based on nanotechnology creating nontraditional ablators are rapidly changing the technology base for thermal protection systems. Formulations with the addition of nanoclays and carbon nanofibers in a neat thermoplastic polyurethane elastomer (TPU) were melt-compounded using twin-screw extrusion. The TPU nanocomposites (TPUNs) are proposed to replace Kevlar-filled ethylene-propylene-diene-monomer rubber, the current state-of-the-art solid rocket motor internal insulation. Scanning electron microscopy analysis was conducted to study the char characteristics of the TPUNs at elevated temperatures. Specimens were examined to analyze the morphological microstructure during the pyrolysis reaction and in fully charred states. Thermophysical properties of density, specific heat capacity, thermal diffusivity, and thermal conductivity of the different TPUN compositions were determined. To identify dual usage of these novel materials, cone calorimetry was employed to study the flammability properties of these TPUNs.
机译:基于纳米技术的新型材料创造了非传统的消融器,正在迅速改变热防护系统的技术基础。使用双螺杆挤出将在纯净热塑性聚氨酯弹性体(TPU)中添加了纳米粘土和碳纳米纤维的配方进行熔融复合。提议使用TPU纳米复合材料(TPUN)代替凯夫拉尔填充的乙烯-丙烯-二烯-单体橡胶,这是当前最先进的固体火箭发动机内部绝缘材料。进行扫描电子显微镜分析以研究TPUN在高温下的炭特性。检查样品以分析热解反应期间和完全烧焦状态下的形态微观结构。测定了不同TPUN组合物的密度,比热容,热扩散率和热导率的热物理性质。为了确定这些新型材料的双重用途,采用锥形量热法研究了这些TPUN的可燃性。

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