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首页> 外文期刊>International Journal of Adhesion & Adhesives >Shock absorption of semi-interpenetrating network acrylic pressure-sensitive adhesive for mobile display impact resistance
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Shock absorption of semi-interpenetrating network acrylic pressure-sensitive adhesive for mobile display impact resistance

机译:用于移动显示抗冲击性半互穿网络丙烯酸压敏粘合剂的减震

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摘要

With the development of mobile display shapes from flat to flexible, the conventional glass cover window must be replaced by a film-type window. However, film-type cover windows have low impact resistance owing to their poor shock absorption. Therefore, to realize their application to flexible displays, it is essential to characterize and improve the shock-absorbing characteristics of the display film. In this study, a semi-interpenetrating network (semi-IPN) acrylic pressure-sensitive adhesive (PSA) consisting of a crosslinked network structure with a linear acrylic polymer chain was developed. The influence of the multi-functional monomer content and UV dose on the properties of the semi-IPN PSA was studied. The peel strength of the semi-IPN PSA was higher than 10 N/25 mm, which is generally considered as the PSA standard for mobile displays. With an increase in crosslink density, the storage modulus increased, but the damping factor decreased. To evaluate shock absorption, a falling ball impact tester was used to estimate the shock absorption ratio (Delta F) of the film. The semi-IPN PSA incorporating 30 phr of the multi-functional monomer exhibited higher Delta F (31.2%) than that of a conventional UV-curable PSA film (24.6%). This shows that even with the relatively low damping factor of the semiIPN PSA, its structure could improve shock absorption. Moreover, we suggested two mechanisms for shock absorption of the semi-IPN PSA, energy dissipation into the PSA layer and extended contact time.
机译:随着移动显示形状的开发从平面到柔性,传统的玻璃盖窗必须由薄膜型窗口替换。然而,由于减震差,薄膜式盖窗具有低抗冲击性。因此,为了实现柔性显示器的应用,必须表征和改善显示膜的减震特性。在该研究中,开发了由具有线性丙烯酸类聚合物链的交联网络结构组成的半互连网络(半IPN)丙烯酸缩敏粘合剂(PSA)。研究了多功能单体含量和UV剂量对半IPN PSA性能的影响。半IPN PSA的剥离强度高于10N / 25 mm,通常被认为是移动显示器的PSA标准。随着交联密度的增加,储存模量增加,但阻尼因子降低。为了评估减震,使用下降的球冲击测试仪来估计薄膜的减震比(Delta F)。包含30phr的多功能单体的半IPN PSA表现出比常规的UV固化PSA膜(24.6%)的更高的δf(31.2%)。这表明即使SEMIIPN PSA的相对低的阻尼因子,其结构也可以改善减震。此外,我们建议了两种用于减震的Semi-IPN PSA的机制,将能量耗散到PSA层中并延伸接触时间。

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