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A new method to measure the high-shear bulk properties of pressure sensitive adhesives used in LCD devices

机译:测量LCD设备中压敏胶粘剂高剪切松散性能的新方法

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摘要

The wide application of pressure sensitive adhesives (PSAs)in thin film transistor liquid crystal display (TFT-LCD) devices is based on their advantages that PSAs provide sufficient bond strength and also are cleanly removable upon debonding. These two essential requirements are not obtainable without a proper understanding of the substrate as well as the rheological properties of the PSA. Unlike other substrates, the polarizer, the core unit of an LCD device, may exhibit a considerable dimension change with temperature and humidity. This imposes a large residual stress on the PSA layer, which often generates serious defects such as partial delamination. To overcome this problem, an accurate control of the rheological properties is required in the design of the PSA. In this study a new method is devised to measure the rheological behavior of thin film PSAs under high shear deformation. This method provided us with important information regarding the effects of molar mass and the level of crosslinking on the rheological behavior of the PSA. These findings along with the new method should be applicable not only to the LCD industry but also to other fields where an accurate control of PSA rheology is required.
机译:压敏粘合剂(PSA)在薄膜晶体管液晶显示器(TFT-LCD)器件中的广泛应用是基于它们的优点,即PSA提供足够的粘合强度,并且在剥离时可以干净地移除。如果不正确了解基材以及PSA的流变性能,就无法获得这两个基本要求。与其他基板不同,偏振片(LCD装置的核心单元)可能会随温度和湿度出现较大的尺寸变化。这在PSA层上施加了很大的残余应力,这通常会产生严重的缺陷,例如部分分层。为了克服该问题,在PSA的设计中需要对流变性的精确控制。在这项研究中,设计了一种新的方法来测量高剪切变形下薄膜PSA的流变行为。该方法为我们提供了有关摩尔质量和交联水平对PSA流变行为的影响的重要信息。这些发现以及新方法不仅应适用于LCD工业,而且应适用于需要精确控制PSA流变学的其他领域。

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