Reliability and accelerated test methods for plastic materials in LED-based products

M. Y. Mehr, W. V. van Driel, G. Zhang
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引用次数: 5

Abstract

In this study the effects of thermal ageing on the optical properties of both lens and the remote-phosphor samples, made from Bisphenol-A polycarbonate (BPA-PC) are investigated. The BPA-PC lens and remote phosphor plates are currently widely used in light conversion carriers and optical lenses in LED-based products. Lens and the remote phosphor BPA-PC samples of 3 mm thickness were thermally aged at temperature range 100 to 140 °C. The phosphor plates, combined with a blue LED light source, produce white light with a correlated colour temperature (CCT) of 4000 K. The colour shifting due to thermal ageing was studied by Integrated Sphere. Results show that thermal ageing leads to a significant decrease in the luminous flux and chromatic properties of plates. It is also shown that by increasing the temperature, the kinetics of degradation reaction becomes faster, inferring that lumen depreciation takes place at shorter time. Lumen depreciation up to 30% reduction is extrapolated to temperatures lower than 100 °C. It is shown that the lifetime, defined as 30% lumen depreciation at 40 °C, is around 35 khrs for remote phosphor and around 100 khrs for BPAPC lens. A significant change both in the correlated colour temperature (CCT) and in the chromaticity coordinates (CIE x,y) is also observed in thermally aged specimens. Deterioration of the chromatic properties of the phosphor plates is correlated to the decrease in the luminous flux. Results also confirm the colour shifting of white light towards yellow region. Based on the observed decay of CCT and colour shifting, one could conclude that the thermal degradation of the remote phosphor plates affects both the efficiency and the colour of the LED products. The proposed thermal-ageing qualification method can be used by industries to efficiently select the proper phosphor materials and verify the product design, without many trial-error based interactions.
led基产品中塑料材料的可靠性和加速测试方法
本文研究了热老化对双酚a聚碳酸酯(BPA-PC)制备的晶状体和远端荧光粉样品光学性能的影响。BPA-PC透镜和远端荧光粉板目前广泛应用于led基产品的光转换载体和光学透镜。透镜和远端荧光粉BPA-PC样品的厚度为3 mm,在100 ~ 140℃的温度范围内热老化。荧光粉板与蓝色LED光源相结合,产生相关色温(CCT)为4000 K的白光。用积分球研究了热老化引起的色移。结果表明,热老化导致光通量和色度性能明显下降。随着温度的升高,降解反应的动力学变快,从而推断出在更短的时间内发生流明衰减。流明衰减高达30%的减少是外推温度低于100°C。结果表明,在40°C时,远端荧光粉的寿命约为35小时,BPAPC透镜的寿命约为100小时,定义为30%流明衰减。在热老化的样品中也观察到相关色温(CCT)和色度坐标(CIE x,y)的显著变化。荧光粉片色性的恶化与光通量的降低有关。结果还证实了白光向黄色区域的色移。根据观察到的CCT衰减和色移,可以得出结论,远端荧光粉板的热降解影响LED产品的效率和颜色。提出的热老化鉴定方法可用于工业有效地选择合适的荧光粉材料和验证产品设计,而不需要许多基于试错的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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