ICE-RESISTANT PAINT FOR WIND TURBINE BLADES, PROCEDURE FOR ITS PREPARATION, USE AND WIND TURBINE BLADE COATED WITH THE ICE-RESISTANT PAINT
    64.
    发明公开
    ICE-RESISTANT PAINT FOR WIND TURBINE BLADES, PROCEDURE FOR ITS PREPARATION, USE AND WIND TURBINE BLADE COATED WITH THE ICE-RESISTANT PAINT 审中-公开
    EISBESTÄNDIGE颜色风力涡轮机叶片,方法及其,使用和风力涡轮机叶片的色彩抗冰

    公开(公告)号:EP2987824A1

    公开(公告)日:2016-02-24

    申请号:EP15001950.3

    申请日:2015-07-01

    Abstract: Ice-resistant paint comprising an ice-resistant base component that in turn comprises a main component entailing a high solid paint with a synthetic polyurethane-based binding component dissolved in a main organic solvent, and a hydrophobe component consisting of hydrophobic ice-resistant functional nanoparticles selected from among nanoparticles functionalized with a polymer and nanoparticles functionalized in sol-gel, where the ice-resistant paint comprises a mixture of the main component with a dispersion of functional nanoparticles dispersed in a dispersing composition constituting the main solvent and a dispersant, and forms a base matrix, where the dispersing composition and functional nanoparticles form a dispersion of nanoparticles in which the functional nanoparticles are in the base matrix, and the dispersion of dispersing nanoparticles mixed with the main component to form an ice-resistant base component of the ice-resistant paint.

    Abstract translation: 抗冰涂料包含耐冰的基础组分反过来做包括主成分将会导致一个高固体与在主有机溶剂中溶解合成聚氨酯类结合成分油漆,和疏水性抗冰功能纳米颗粒的疏水性组分由......组成 从与聚合物和纳米粒子在溶胶 - 凝胶官能化,其中该抗冰涂料包括具有分散在构成主溶剂和分散剂的分散组合物的功能的纳米颗粒,和形式的分散体的主要成分的混合物官能化纳米粒子中选出的 基础基质,其中所述组合物分散和功能纳米颗粒形式,其中所述功能纳米颗粒在基体基质的纳米颗粒的分散体,并与主成分混合的分散的纳米粒子的分散体,以形成冰的抗冰基部部件 耐油漆。

    Formulations comprising metal nanowires and pedot
    65.
    发明公开
    Formulations comprising metal nanowires and pedot 审中-公开
    Formulierungen mitMetallnanodrähtenund PEDOT

    公开(公告)号:EP2977993A1

    公开(公告)日:2016-01-27

    申请号:EP14002584.2

    申请日:2014-07-25

    Abstract: The present invention relates to a composition comprising
    i) particles comprising a conductive polymer,
    ii) metal nanowires, and
    iii) at least one solvent,
    wherein at least one of the following conditions is satisfied:
    α1) the particles comprising the conductive polymer are characterized by a weight average particle diameter of less than 100 nm;
    α2) the content of cations of the metal on which the metal nanowires ii) are based is below 500 ppm, based on the total weight of the composition;
    α3) the composition comprises, in addition to component iii), at least one high-boiling solvent that is miscible with the at least one solvent iii) and that has a boiling point (determined at 1013 mbar) of more than 100 °C.
    The present invention also relates to a process for the production of a layered body, to a layered body obtainable by the process of the present invention, to a layered body comprising a substrate and an electrically conductive layer coated onto the substrate and to the use of a composition.

    Abstract translation: 本发明涉及包含i)包含导电聚合物的颗粒,ii)金属纳米线,和iii)至少一种溶剂,其中满足以下条件中的至少一个:±1)包含导电聚合物的颗粒是 其特征在于重均粒径小于100nm; ±2)金属纳米线ii)所基于的金属的阳离子含量基于组合物的总重量低于500ppm; ±3)除了组分iii)之外,组合物还包含至少一种与至少一种溶剂iii)可溶的高沸点溶剂,并且具有大于100℃的沸点(在1013毫巴下测定) 。 本发明还涉及一种层叠体的制造方法,可以通过本发明的方法获得的层叠体,包括基材和涂覆在基材上的导电层的层叠体,以及使用 一个组成。

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