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Emerging nanotechnology-based thermal interface materials for automotive electronic control unit application

机译:用于汽车电子控制单元应用的新兴纳米技术的热界面材料

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The under-hood automotive ambient is harsh and its impact on electronics used in electronic control unit (ECU) assembly is a concern. The introduction of Euro 6 standard (Latest European Union Legislation) leading to increase in power density of power electronics in ECU has even amplified the device thermal challenge. Heat generated within the unit coupled with ambient temperature makes the system reliability susceptible to thermal degradation which may result in catastrophic failure if not efficiently dissipated. Previous investigations show that the technology of thermal interface materials (TIMs) is a key to achieving good heat conductions within a package and from a package to heat sinking device. With studies suggesting that conventional TIMs contribute about 60% interfacial thermal resistance, innovative technology is required to improve the thermal performance of TIMs. A review of emerging nanotechnology in TIMs shows that carbon nanotubes (CNTs) and carbon nanofibres (CNFs) when used as the structure of TIM or TIM filler could improve the overall thermal and mechanical properties of TIMs. Hence, CNTs/CNFs have the potentials to advance thermal management issues in ECU. This search identifies chemical vapour deposition (CVD) as a low cost process for the commercial production of CNTs. In addition, this review further highlights the capability of CVD to grow nanotubes directly on a desired substrate. Other low temperature techniques of growing CNT on sensitive substrates are also presented in this paper.
机译:箱内汽车环境是苛刻的,其对电子控制单元(ECU)组件中使用的电子器件的影响是一个问题。欧元6标准(最新欧洲联盟立法)引入ECU中电力电子电力密度增加的推出甚至扩大了器件热挑战。在与环境温度连接的单元内产生的热量使得系统可靠性易受热劣化的影响,这可能导致灾难性的故障如果没有有效地散发。以前的研究表明,热界面材料(TIMS)的技术是在包装内和从包装到散热装置的良好热量的关键。随着研究表明,传统时间表有贡献约60%的界面热阻,需要创新技术来提高TIM的热性能。在TIM中出现纳米技术的综述表明,用作TIM或TIM填充物的结构时,碳纳米管(CNT)和碳纳米纤维(CNFS)可以提高TIMS的总热量和机械性能。因此,CNT / CNFS有可能推进ECU中的热管理问题。该搜索将化学气相沉积(CVD)识别为CNT的商业生产的低成本过程。此外,该审查还突出了CVD直接在所需底物上生长纳米管的能力。本文还提出了在敏感基材上生长CNT的其他低温技术。

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