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Epoxy- and Polyester-Based Composites Reinforced With Glass, Carbon and Aramid Fabrics: Measurement of Heat Capacity and Thermal Conductivity of Composites by Differential Scanning Calorimetry

机译:用玻璃,碳和芳纶织物增强的环氧和聚酯基复合材料:通过差示扫描量热法测量复合材料的热容量和导热系数

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摘要

The primary purpose of the study is to investigate the temperature dependence of heat capacity and thermal conductivity of composites having different fiber/matrix combinations by means of heat-flux differential scanning calorimetry (DSC). The materials used as samples in this study were epoxy- and polyester-based composites. Noncrimp stitched glass, carbon, and aramid fabric were used as reinforcements for making unidirectional composites. For the heat capacity measurements the composite sample and a standard material are separately subjected to same linear temperature program. By recording the heat flow rate into the composite sample as a function of temperature, and comparing it with the heat flow rate into a standard material under the same conditions, the temperature dependence of heat capacity of the composite sample is determined. Measurements were carried out over a wide range of temperatures from about 20 to 250℃. The differential scanning calorimeter was adapted to perform the thermal conductivity measurements in the direction perpendicular to the fiber axis over the temperature range of 45-235℃. The method used in this study utilizes the measurement of rate of heat flow into a sensor material during its first-order phase transition to obtain the thermal resistance of a composite material placed between the sensor material and the heater in the DSC.
机译:这项研究的主要目的是通过热通量差示扫描量热法(DSC)研究具有不同纤维/基体组合的复合材料的热容量和导热系数对温度的依赖性。本研究中用作样品的材料是基于环氧树脂和聚酯的复合材料。非压接缝制的玻璃,碳和芳纶织物被用作制造单向复合材料的增强材料。对于热容量测量,复合样品和标准材料分别经受相同的线性温度程序。通过记录作为温度函数的复合样品中的热流量,并将其与相同条件下与标准材料中的热流量进行比较,可以确定复合样品的热容量与温度的关系。在大约20至250℃的较宽温度范围内进行测量。差示扫描量热仪适用于在45-235℃的温度范围内沿垂直于纤维轴的方向进行热导率测量。本研究中使用的方法利用了在传感器材料的一级相变过程中流入传感器材料的热速率的测量值,从而获得了位于DSC中传感器材料和加热器之间的复合材料的热阻。

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