首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effect of Preferential Orientation of Lamellae in the Interfacial Region between a Block Copolymer-based Pressure-Sensitive Adhesive and a Solid Substrate on the Peel Strength
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Effect of Preferential Orientation of Lamellae in the Interfacial Region between a Block Copolymer-based Pressure-Sensitive Adhesive and a Solid Substrate on the Peel Strength

机译:嵌段共聚物基压敏粘合剂与固体基材对剥离强度的界面区域中LAMELLAE在界面区域的影响

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摘要

We have investigated the relationship between the peel strength of a block copolymer-based pressure-sensitive adhesive comprising of poly(methyl methacrylate) (PMMA) and poly( n -butyl acrylate) (P n BA) components from the substrate and the microdomain orientations in the interfacial region between the adhesive and the substrate. For the PMMA substrate, the PMMA component in the adhesive with a strong affinity for the substrate is attached to the surface of the substrate during an aging process of the sample at 140 °C. Next, the PMMA layer adjacent to the substrate surface is overlaid with a P n BA layer, which gets covalently connected, resulting in the horizontal alignment of the lamellae in the interfacial region. The peel strength of the adhesive substantially increases during aging at 140 °C, which takes the same time as the completion of the horizontally oriented lamellar structure. However, in the case of the polystyrene (PS) substrate, both the components in the adhesive repel the substrate, leading to the formation of the vertically oriented lamellar structure. As a result, the peel strength of the adhesive with respect to its PS substrate does not entirely increase on aging. It is suggested that the peel strength of the adhesive is highly correlated with the interfacial energy between the adhesive and substrate, which can be estimated from the microdomain orientation in the interfacial region.
机译:我们已经研究了包含来自基材的聚(甲基丙烯酸甲酯)(PMMA)和聚(N-丙烯酸甲酯)和聚(N-丙烯酸丙烯酸甲酯)(P n Ba)组分的嵌段共聚物的压敏粘合剂之间的关系和微米探针在粘合剂和基材之间的界面区域中。对于PMMA基板,在样品的老化过程下在140℃下,对于对基板具有强亲和力的粘合剂中的PMMA分量与基板的表面连接到基板。接下来,与基板表面相邻的PMMA层覆盖有P n Ba层,该P n Ba层被共价连接,导致界面区域中的薄片的水平对准。粘合剂的剥离强度在140℃下老化时基本上增加,这与水平导向的层状结构的完成相同。然而,在聚苯乙烯(PS)衬底的情况下,粘合剂中的部件在粘合剂中抵销基板,导致形成垂直取向的层状结构。结果,粘合剂相对于其PS底物的剥离强度并不完全增加老化。建议粘合剂的剥离强度与粘合剂和衬底之间的界面能量高度相关,粘合剂和基板之间的界面能量可以从界面区域中的微米域取向估计。

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    Functional Base Products Sector Nitto Denko Corporation 18 Hirayama Nakahara Toyohashi Aichi 441-3194 Japan;

    Department of Life Science and Applied Chemistry Gradual School of Engineering and Frontier Research Institute for Materials Science Nagoya Institute of Technology Gokiso-cho Showa-ku Nagoya 466-8555 Japan;

    Department of Life Science and Applied Chemistry Gradual School of Engineering and Frontier Research Institute for Materials Science Nagoya Institute of Technology Gokiso-cho Showa-ku Nagoya 466-8555 Japan;

    Institute for Chemistry Research Kyoto University Gokasho Uji Kyoto 611-0011 Japan;

    Neutron Science Division Institute for Materials Structure Science High Energy Acceleration Research Organization 203-1 Shirakata Tokai Naka Ibaraki 319-1106 Japan;

    Neutron Science and Technology Center Comprehensive Research Organization for Science and Society 162-1 Shirakata Tokai Naka Ibaraki 319-1106 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;化学;
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