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Advanced thermal management materials for concentrator photovoltaic arrays

机译:聚光灯光伏阵列的先进的热管理材料

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Thermal management is a critical issue for photovoltaics (PVs), especially concentrator photovoltaic systems. Thermal management problems are similar for all semiconductors, including those used in microelectronics and other optoelectronic applications, such as lasers, light-emitting diodes (LEDs), detectors and displays. We divide the thermal management problem into two parts: heat dissipation and thermal stresses. Heat dissipation affects efficiency and lifetime. Thermal stresses affect manufacturing yield and lifetime. Traditional thermal management materials all have serious deficiencies. Copper and aluminum have high coefficients of thermal expansion (CTEs), which can cause severe thermal stresses during manufacturing and in service. Compliant attach materials, used to minimize thermal stresses, all have major drawbacks. Traditional low-CTE thermal management materials have relatively low thermal conductivities and are hard to machine. In response to these deficiencies, new thermal management materials have been, and are continuing to be developed, which have low CTEs and thermal conductivities up to four times that of copper. Some are reportedly are cheaper than copper. In this paper, we survey the six categories of advanced thermal materials, including properties, state of maturity and cost. We also review a CPV application in which an advanced metal matrix composite with a tailored CTE eliminated solder joint failure and provided other benefits.
机译:热管理是光伏(PVS),尤其是聚光灯光伏系统的关键问题。所有半导体的热管理问题都类似,包括用于微电子和其他光电应用的那些,例如激光,发光二极管(LED),探测器和显示器。我们将热管理问题分为两部分:散热和热应力。散热会影响效率和寿命。热应力影响制造产量和寿命。传统的热管理材料都有严重的缺陷。铜和铝具有高系数的热膨胀系数(CTE),其在制造期间可能导致严重的热应力。符合可靠性的附着材料,用于最小化热应力,所有这些都具有主要的缺点。传统的低CTE热管理材料具有相对较低的热导体,并​​且很难机器。为了应对这些缺陷,已经进行了新的热管理材料,并且继续开发,其具有低CTE和热导率的铜的4倍。据报道,有些人比铜便宜。在本文中,我们调查了六个类别的先进热材料,包括物业,成熟状态和成本。我们还审查了一种CPV应用,其中具有量身定制的CTE的先进金属矩阵复合,消除了焊接接头失效并提供了其他好处。

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