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Experimental Study on Heat Dissipative Ability in Recycled Thermoplastic Vulcanizate and Reclaimed Rubber Composites

机译:再生热塑性硫化酸盐和再生橡胶复合材料中散热能力的实验研究

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摘要

In our time with the growing cooling demand in electronics and energy industries, new thermally conductive materials are in high demand. Thermal gasket and thermal interface materials (TIM) are applications acquiring the characteristics of the thermally conductive materials. They are used to offer bonding strength and efficient heat dissipation for heat dissipating device applications. These materials are inserted between two components in order to increase the thermal coupling between them. Elastomeric materials are promising as the thermal gasket and TIM. They are, however, limited for thermal conductivity causing a thermal insulator behaviour. In this framework, the major challenge is to create suitable elastomeric composites for enhancing thermal conductivity, whereas remaining a good elastic behavior. This article presents the effects of thermally conductive fillers (aluminum nitride and zinc oxide) on thermal properties and flexibility of recycled thermoplastic elastomer vulcanizate composites and reclaimed rubber composites, while the analysis of composite morphology is scrutinized. The objective of this research is to perceive the characteristics of recycled elastomeric composites in order to deduce a fundamental notion to develop the gaskets or TIMs from recycled materials. New flexible composites are capable of providing approximately 0.4 W/m-K of thermal conductivity. The result indicates that the composites are conceivable to be applied for thermally conductive tape or adhesive applications which required the thermal conductivity in the range of 0.4-0.5 W/m-K.
机译:在我们的时间在电子和能源行业中不断增长的冷却需求,新的导热材料需求量很大。热垫圈和热界面材料(TIM)是获取导热材料特性的应用。它们用于提供用于散热装置应用的粘合强度和有效的散热。这些材料在两个部件之间插入,以增加它们之间的热耦合。弹性材料具有热垫圈和蒂姆。然而,它们限制导致导热率导致热绝缘体行为。在该框架中,主要挑战是制造合适的弹性体复合材料以提高导热率,而剩余良好的弹性行为。本文介绍了导热填料(氮化铝和氧化锌)对再循环热塑性弹性体硫化盐复合材料和再生橡胶复合材料的热性质和柔韧性的影响,同时仔细检查复合形态的分析。本研究的目的是感知再循环弹性体复合材料的特性,以推断出基本的观念,以开发来自再生材料的垫圈或跳跃。新的柔性复合材料能够提供大约0.4W / m-K的导热率。结果表明,可以想到复合材料以施加用于导热的带或粘合剂应用,其在0.4-0.5W / m-K的范围内需要导热率。

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