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Aluminum-ceramic composites for thermal management in energy-conversion systems

机译:铝陶瓷复合材料用于能量转换系统中的热管理

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摘要

The most important property of energy-conversion ceramics in high-power lighting devices based on laser diodes (LDs) is thermal durability because high-energy LDs act as excitation and heat sources for ceramics. Herein, aluminum-ceramic composites (ACCs) are introduced for the manipulation of heat generated during high-power lighting. The cerium-doped aluminum garnet (YAG:Ce) phosphor is selected as the energy-conversion ceramic material. The ACCs have an all-in-one structure bridged by a low-melting glass material. In ACCs, the heat flow from the ceramic to Al is manipulated by a heat-flux throttling layer (TL) comprised of Al and glass. During high-power lighting operation, the input-output temperature differences (Tin − Tout) between the ceramic layer (input heat) and end face of the Al layer (output heat) are 13 and 3.9 °C in the absence and presence of the TL, respectively. A lower Tin − Tout means less heat is loss during heat flow from the ceramic to the metal due to the temperature gradient created by inserting the TL. The results provide a potential application for multi-energy-conversion systems, i.e., optical to heat and heat to electric energy, in terms of heat flow manipulation.
机译:在基于激光二极管(LD)的高功率照明设备中,能量转换陶瓷的最重要属性是热耐久性,因为高能量LD充当陶瓷的激发和热源。在此,引入铝陶瓷复合材料(ACC)来控制在大功率照明过程中产生的热量。选择铈掺杂的铝石榴石(YAG:Ce)荧光粉作为能量转换陶瓷材料。 ACC具有由低熔点玻璃材料桥接的多合一结构。在ACC中,从陶瓷到Al的热流由铝和玻璃组成的热流节流层(TL)控制。在大功率照明操作期间,在不存在和存在陶瓷层的情况下,陶瓷层(输入热量)与Al层端面(输出热量)之间的输入输出温度差(Tin-Tout)为13和3.9C。 TL,分别。 Tin-Tout较低意味着由于插入TL所产生的温度梯度,在从陶瓷流向金属的热流中,热量损失较小。结果在热流操纵方面为多能量转换系统,即从光到热以及从热到电能的多能量转换系统提供了潜在的应用。

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