ULTRAVIOLET CURABLE TRANSFER COATING FOR APPLYING NANOMETER SIZED METAL PARTICLES TO POLYMER SURFACE
    5.
    发明申请
    ULTRAVIOLET CURABLE TRANSFER COATING FOR APPLYING NANOMETER SIZED METAL PARTICLES TO POLYMER SURFACE 审中-公开
    用于将纳米尺寸金属颗粒应用于聚合物表面的ULTRAVIOLET可固化转印涂层

    公开(公告)号:US20170044394A1

    公开(公告)日:2017-02-16

    申请号:US15305780

    申请日:2015-04-20

    Abstract: An ultraviolet curable transfer coating can comprise: a multifunctional acrylate oligomer; an acrylate monomer; and a photoinitiator; wherein the ultraviolet curable transfer coating includes a total weight, wherein 30% to 80% of the total weight comprises the multifunctional acrylate oligomer, wherein 15% to 65% of the total weight comprises the acrylate monomer, and wherein 3% to 7% of the total weight comprises the photoinitiator.

    Abstract translation: 紫外线固化转移涂层可以包括:多官能丙烯酸酯低聚物; 丙烯酸酯单体; 和光引发剂; 其中所述紫外线固化转移涂层包括总重量,其中总重量的30%至80%包含多官能丙烯酸酯低聚物,其中总重量的15%至65%包含丙烯酸酯单体,并且其中3%至7% 总重量包括光引发剂。

    METHOD OF THERMOFORMING INTEGRATED TRANSPARENT CONDUCTIVE FILMS

    公开(公告)号:US20200253048A1

    公开(公告)日:2020-08-06

    申请号:US16838101

    申请日:2020-04-02

    Abstract: A method of thermoforming an article from an integrated transparent conductive film, comprising: applying an ultraviolet curable transfer coating to a first surface of a recipient substrate or to a first surface of a donor substrate, wherein the first surface of the donor substrate includes a conductive coating coupled thereto; pressing the first surface of the recipient substrate and the first surface of the donor substrate together to form a stack; heating the stack and activating the ultraviolet curable transfer coating with an ultraviolet radiation source; removing the donor substrate from the stack leaving a transparent conductive layer, wherein the ultraviolet curable transfer coating remains adhered to the first surface of the recipient substrate and to the conductive coating; laser etching an electrical circuit onto a transparent conductive layer second surface to form an integrated transparent conductive film; and thermoforming the integrated transparent conductive film to form the article.

    CONDUCTIVE MULTILAYER SHEET FOR THERMAL FORMING AND INJECTION MOLDING APPLICATIONS

    公开(公告)号:US20190152196A1

    公开(公告)日:2019-05-23

    申请号:US15759566

    申请日:2016-09-13

    Abstract: A method of forming an article of manufacture, comprising: forming a mold insert, comprising applying a conductive layer on a donor substrate second surface, wherein the conductive layer includes nanometer sized metal particles arranged in a network; applying an ultraviolet curable coating layer to a recipient substrate first surface; pressing the recipient substrate, the ultraviolet curable coating layer, and the donor substrate together to form a stack; heating the stack and activating the ultraviolet cured coating layer with an ultraviolet radiation source; removing the donor substrate from the stack, wherein the ultraviolet curable coating layer adheres to the recipient substrate first surface and the conductive layer; thermoforming the mold insert; and injection molding a polymeric resin layer around a portion of the recipient substrate second surface.

    HIGH TEXTURE REPLICATION RATE SHEET COMPOSITIONS, METHODS OF MANUFACTURE, AND ARTICLES MADE THEREFROM

    公开(公告)号:US20190023897A1

    公开(公告)日:2019-01-24

    申请号:US16064282

    申请日:2016-12-21

    Abstract: A replication composition includes at least 45 weight percent (wt) of a polycarbonate; 3 to 55 wt % of a polyester comprising a poly(C1-6 alkylene) terephthalate or a polyester comprising repeating units of Formula I: (I); wherein each T is independently a C5-7 cycloaliphatic group or C6-12aromatic group, and each D is independently a C6-12 aromatic group or C2-12 aliphatic group, provided that at least 50 mole percent of D is a 1,4-cyclohexanedimethyl group or a C2-12 aliphatic group; wherein the polyester has a melt viscosity between 0.01 and 3,000 poise (0.001 and 300 Pa·s) measured at 1500/seconds shear rate, at a temperature of 275° C.; and 0.01 to 4 wt % additives; wherein the weight percentages are based on 100 wt % of the composition.

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