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Structure and thermophysical properties of polytetrafluoroethylene-aluminum composite materials produced by explosive pressing

机译:爆炸压制生产的聚四氟乙烯 - 铝复合材料的结构和热物理性能

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Metal filled composite materials on the basis of polytetrafluoroethylene (PTFE) are widely used in tribotechnical units of different equipment. Amongst the metal fillers for PTFE, aluminum is the most perspective, it has high thermal conductivity and low density, which is relevant for the aircraft industry. Due to low adhesion of PTFE to metals, the thermal conductivity and strength properties of these CM are low, so it is perspective to use explosive pressing (EP) which provides the conditions for an increase in physical-chemical interaction between CM components. The work researches the influence of EP on the structure, thermal expansion and thermal conductivity of composite materials on the basis of PTFE containing 10 and 30% vol. of aluminum. It has been established that EP, as well as sintering in a closed volume, contributes to a decrease in thermal expansion and an increase in the thermal conductivity of composite materials, which is connected to structural changes accompanied by an intensification of adhesive interfacial interaction. At the same time, with an increase in aluminum concentration, the efficiency of EP increases due to the increase in the number of contacts between metal particles, as well as the occurrence of an interphase zone, with peculiar properties.
机译:金属填充的复合材料基于聚四氟乙烯(PTFE)广泛用于不同设备的TricoteChnical。在PTFE的金属填料中,铝是最透视的,它具有高导热性和低密度,与飞机行业相关。由于PTFE对金属的粘附性低,因此这些CM的导热率和强度性能低,因此使用爆炸性按压(EP)是透视,该爆炸性压制(EP)提供了CM组分之间的物理化学相互作用的增加。该工作研究了EP对复合材料的结构,热膨胀和热导率的影响,基于含有10和30%Vol的PTFE。铝制。已经确定EP和烧结在封闭的体积中有助于热膨胀的降低和复合材料的导热率的增加,该复合材料的导热率连接到结构变化伴随着粘合剂界面相互作用的强化。同时,随着铝浓度的增加,由于金属颗粒之间的触点数量的增加,以及具有特殊特性的偶联的触点数量的增加,EP的效率增加。

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