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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Flexible graphene composites with high thermal conductivity as efficient heat sinks in high-power LEDs
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Flexible graphene composites with high thermal conductivity as efficient heat sinks in high-power LEDs

机译:柔性石墨烯复合材料,具有高导热率,以及高功率LED中的有效散热器

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摘要

Flexible graphene composites (FGCs) have been fabricated for heat dissipation purposes by using a mold-casting method. The flexible graphene composites have an elastic modulus of 18-68 MPa, which is suitable for flexible heat sinks in lighting applications. Scanning electron microscopy (SEM) images show that the graphene nanoplatelets in the FGCs coalesce in the through-plane direction, which enhances the thermal conductivity by increasing the inter-layer contact among the graphene nanoplatelets, and reduces the structural defects and grain boundaries. The heat dissipation properties of the FGCs were compared with devices for aluminum heat sinks (AHSs). For this, the operating temperature in the emitting area of a high-power UV-LED was measured as a function of the mass for each type of heat sink. Experiments on LEDs demonstrated that the FGCs with masses of 4.9 g and 5.5 g cooled down the hottest points on the LEDs at similar temperatures observed when the LED is operating on an AHS with 565 g of mass. The heat dissipation results demonstrated that the FGCs could be used as compact and lightweight heat sinks for high-power LEDs employed as lighting sources.
机译:通过使用模具浇铸方法,已经制造了柔性石墨烯复合材料(FGCS)以进行散热目的。柔性石墨烯复合材料具有18-68MPa的弹性模量,适用于照明应用中的柔性散热器。扫描电子显微镜(SEM)图像显示,FGCS中的石墨烯纳米键在贯穿平面方向上聚结,这通过增加石墨烯纳米孔中的层间接触来增强导热率,并降低结构缺陷和晶界。将FGCS的散热性与铝散热器(AHSS)的装置进行比较。为此,测量高功率UV-LED的发射区域的工作温度作为每种类型的散热器的质量的函数。 LED的实验表明,具有4.9g和5.5g的FGC和5.5克在LED在具有565g质量的AHS上操作时观察到的类似温度下的LED上的最热点。散热结果表明,FGC可用作作为照明源的大功率LED的紧凑和轻质散热器。

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