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Immersion-Specific Defects of High-Receding-Angle Topcoat

机译:后角高的面漆的浸入特定缺陷

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Dynamic receding contact angle (RCA) is a well-known parameter for estimating the degree of immersion-specific defects that have mainly circular and bridge shapes. In general, these defects decrease in number with increasing RCA of the topcoat (TC). However, we found the occurrence of circular defects despite using the TC with a large RCA. In this study, we analyzed the relationship between the physical properties of TC to reduce the number of defects. The result shows that the number of defects depends not only on a large RCA but also on a small amount of water uptake of TC. To understand well the degree of defects, the effective hysteresis (EH) is defined in terms of the RCA, the advancing contact angle (ACA) and the water absorption of TC. EH will be a useful way of explaining the circular defects. The characteristics of the defects are also discussed with a focus on the structure of the polymer attached to water.
机译:动态后退接触角(RCA)是众所周知的参数,用于估计主要具有圆形和桥形形状的浸没缺陷的程度。通常,这些缺陷随着面漆(TC)的RCA的增加而减少。但是,尽管使用了具有较大RCA的TC,我们仍然发现了圆形缺陷的发生。在这项研究中,我们分析了TC的物理性质之间的关系,以减少缺陷数量。结果表明,缺陷数量不仅取决于较大的RCA,而且取决于TC的吸水量。为了很好地了解缺陷的程度,有效滞后(EH)由RCA,前进接触角(ACA)和TC的吸水率定义。 EH将是解释圆形缺陷的一种有用方法。还讨论了缺陷的特征,重点是附着在水上的聚合物的结构。

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  • 来源
    《Applied physics express》 |2010年第6issue1期|P.066502.1-066502.6|共6页
  • 作者单位

    Materials & Processing Technology Department, Advanced Technology R&D Center, Mitsubishi Electric Corporation, 8-1-1 Tsukaguchihonmachi, Amagasaki, Hyogo 661-8661, Japan;

    Materials & Processing Technology Department, Advanced Technology R&D Center, Mitsubishi Electric Corporation, 8-1-1 Tsukaguchihonmachi, Amagasaki, Hyogo 661-8661, Japan;

    Renesas Technology Corporation, 4-1 Mizuhara, Itami, Hyogo 664-0005, Japan;

    Renesas Technology Corporation, 4-1 Mizuhara, Itami, Hyogo 664-0005, Japan;

    Research & Development Department, Tokyo Ohka Kogyo Co., Ltd., 1590 Tabata, Samukawa, Kanagawa 253-0114, Japan;

    Toray Research Center Inc., 3-3-7 Sonoyama, Otsu 520-8567, Japan;

    Toray Research Center Inc., 3-3-7 Sonoyama, Otsu 520-8567, Japan;

    Toray Research Center Inc., 3-3-7 Sonoyama, Otsu 520-8567, Japan;

    Toray Research Center Inc., 3-3-7 Sonoyama, Otsu 520-8567, Japan;

    Toray Research Center Inc., 3-3-7 Sonoyama, Otsu 520-8567, Japan;

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  • 入库时间 2022-08-18 03:16:15

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