ADHESIVE FILM
    31.
    发明申请
    ADHESIVE FILM 有权
    胶粘膜

    公开(公告)号:US20140332782A1

    公开(公告)日:2014-11-13

    申请号:US14337990

    申请日:2014-07-22

    Applicant: LG CHEM, LTD.

    Abstract: An adhesive film, a method for preparing an adhesive film, and an organic electronic device are provided. According to the adhesive film in exemplary embodiments of the present invention, fluidity of an adhesive can be controlled in the case of applying the adhesive between objects to be subsequently adhered to each other and then thermal-compressing by including an adhesive layer with cured side faces contacting with the outside. The adhesive film is used, for example for assembling a panel and the like, and thereby a defect rate at the time of assembling a panel and the like can be reduced and excellent work characteristics can be provided. In addition, before being applied to a panel or the like, a moisture absorbent included inside an adhesive layer of an adhesive film can be protected from external moisture or the like, thereby being easily stored, and also when it is applied to a product, reliability of life span, and the like can be secured.

    Abstract translation: 提供粘合膜,制备粘合膜的方法和有机电子器件。 根据本发明的示例性实施方案中的粘合剂膜,在将粘合剂彼此粘附在一起的物体之间施加粘合剂的情况下可以控制粘合剂的流动性,然后通过包括具有固化侧面的粘合剂层进行热压缩 与外界接触。 使用粘合膜,例如用于组装面板等,从而可以减少组装面板等时的缺陷率,并且可以提供优异的工作特性。 此外,在涂布到面板等之前,可以防止包含在粘合剂膜的粘合剂层内的吸湿剂免受外部湿气等的影响,从而容易地储存,并且当将其应用于产品时, 寿命的可靠性等可以确保。

    ADHESIVE TAPE
    32.
    发明申请
    ADHESIVE TAPE 审中-公开
    胶粘带

    公开(公告)号:US20140308515A1

    公开(公告)日:2014-10-16

    申请号:US13942702

    申请日:2013-07-16

    CPC classification number: C09J7/20 C09J2201/128 C09J2205/31 Y10T428/2848

    Abstract: An adhesive tape is disclosed. The adhesive tape includes a base layer made of light guide materials, a first adhesive layer, and a second adhesive layer. The base layer is positioned and bonded between the first adhesive layer and the second adhesive layer. In use, a first workpiece is adhered to the first adhesive layer, and a second workpiece is adhered to the second adhesive layer. When the first workpiece is required to delaminate, depart or removed from the second workpiece, even if the first workpiece and the second workpiece are made of non-transparent or opaque materials, light can enter the base layer from and through the incident surface, and then emits out from the two emitting surfaces. Thus, the first workpiece can be easily removed from the second workpiece due to the UV deactivation of adhesiveness of the adhesive layer through the incident surface of the base layer.

    Abstract translation: 公开了一种胶带。 胶带包括由导光材料制成的基层,第一粘合剂层和第二粘合剂层。 基层定位并结合在第一粘合剂层和第二粘合剂层之间。 在使用中,第一工件粘附到第一粘合剂层,并且第二工件粘附到第二粘合剂层。 当第一工件需要从第二工件分层,分离或移除时,即使第一工件和第二工件由不透明或不透明的材料制成,光可以从入射表面进入基底层,并且通过入射表面, 然后从两个发射表面发出。 因此,由于粘合剂层通过基层的入射表面的粘附性UV而使第一工件能够容易地从第二工件移除。

    Pressure-Sensitive Adhesive Tapes for Gluing Windows, in Particular in Mobile Devices

    公开(公告)号:US20130295356A1

    公开(公告)日:2013-11-07

    申请号:US13884098

    申请日:2011-10-27

    Abstract: The invention relates to a double-sided adhesive tape, comprising a carrier layer and two exterior pressure-sensitive adhesive compound layers, wherein at least one of the pressure-sensitive adhesive compounds is the crosslinking product composed of a polymer compound which comprises at least the following components: A) a polymer component (component A) comprising 88 to 100 wt % of one or more polyacrylates (component A1) composed of at least: a) 1 to 15 wt %, relative to component A1, of one or more monomers having at least one ethylenically unsaturated bond, each being selected such that the glass transition temperatures TG of the corresponding homopolymers composed of the respective monomers are at least 0° C. (monomers a), wherein at least some of the monomers (a) still comprise at least one carboxylic acid (monomers a1), b) 85 to 99 wt %, relative to component A1, of one or more monomers from the group of acrylic acid esters and methacrylic acid esters, each being selected such that the glass transition temperatures TG of the corresponding homopolymers composed of the respective monomers are not higher than −30° C. (monomers b), B) at least one covalently cross-linking bifunctional or polyfunctional crosslinking agent (component B), wherein components A and B in total amount to at least 95 wt % of the polymer compound, and wherein the at least one crosslinking agent is added in a quantity such that the quantity ratio V=nZ/nP of the substance quantity nZ of the crosslinking-active centers of the crosslinking agent to the theoretical substance quantity nP of the macromolecule of polymer component A1 has a value between 0.15 and 0.60, wherein the substance quantity nZ of the crosslinking-active centers of the crosslinking agent is obtained from the mass mV of the crosslinking agent, multiplied by the number f of crosslinking-active centers per crosslinking agent molecule, divided by the molecular weight Mv of the crosslinking agent, that is, nZ=f·mV/MV, and the theoretical substance quantity nP of the macromolecule of polymer component A1 is obtained from the mass mP of the polymer component in the pressure-sensitive adhesive compound, divided by the average molecular weight Mn,P of said component, that is nP=mP/Mn,P.

    Intrusion Resistant Glass Laminates
    37.
    发明申请
    Intrusion Resistant Glass Laminates 审中-公开
    防侵入玻璃层压板

    公开(公告)号:US20130224456A1

    公开(公告)日:2013-08-29

    申请号:US13614775

    申请日:2012-09-13

    Abstract: Composite laminate interlayers for adhering a glass laminate comprising a sheet of polyethylene terephthalate (PET) between layers of plasticized polyvinyl butyral (PVB) adhesive layers, wherein at least one of the PVB adhesive layers is stiffened, e.g. by reduction in the amount of plasticizer, and has a glass transition temperature greater than 35° C. The PET is preferably 0.075 to 0.25 mm (3-10 mils) thick and can have a functional coating for reducing radiation, e.g. UV or IR or visible light, transmission through the glass laminate. The laminate can also comprise at least one elastomeric layer adapted to reducing sound transmission through the glass laminate. The laminates exhibit enhanced maximum flexural modulus of greater than about 350 Newtons/centimeter.

    Abstract translation: 用于将包含聚对苯二甲酸乙二醇酯片材(PET)的玻璃层压板粘附在增塑聚乙烯醇缩丁醛(PVB)粘合剂层的层之间的复合层压夹层,其中至少一个PVB粘合剂层被硬化,例如, 通过减少增塑剂的量并且具有大于35℃的玻璃化转变温度.PET优选为0.075-0.25mm(3-10密耳)厚,并且可以具有用于减少辐射的功能性涂层。 UV或IR或可见光,透过玻璃层压板。 层压体还可以包括至少一个弹性体层,适于减少通过玻璃层压体的声音传播。 层压板表现出最大弯曲弹性模量大于约350牛顿/厘米。

    METHOD FOR CONNECTING CONDUCTOR, MEMBER FOR CONNECTING CONDUCTOR, CONNECTING STRUCTURE AND SOLAR CELL MODULE
    38.
    发明申请
    METHOD FOR CONNECTING CONDUCTOR, MEMBER FOR CONNECTING CONDUCTOR, CONNECTING STRUCTURE AND SOLAR CELL MODULE 有权
    用于连接导体,连接导体的部件,连接结构和太阳能电池模块的方法

    公开(公告)号:US20130220540A1

    公开(公告)日:2013-08-29

    申请号:US13835018

    申请日:2013-03-15

    Abstract: The electric conductor connection method of the invention is a method for electrical connection between a mutually separated first electric conductor and second electric conductor, comprising a step of hot pressing a metal foil, a first adhesive layer formed on one side of the metal foil and a first electric conductor, arranged in that order, to electrically connect and bond the metal foil and first electric conductor, and hot pressing the metal foil, the first adhesive layer or second adhesive layer formed on the other side of the metal foil, and the second electric conductor, arranged in that order, to electrically connect and bond the metal foil and the second electric conductor.

    Abstract translation: 本发明的电导体连接方法是在相互分离的第一导电体和第二导体之间进行电连接的方法,其特征在于,包括热压金属箔的步骤,形成在所述金属箔一侧的第一粘接层和 第一导电体,按顺序排列,将金属箔和第一导体电连接并结合,热压金属箔,形成在金属箔的另一侧的第一粘合层或第二粘合层,第二导电体 电导体,以该顺序布置,以电连接和接合金属箔和第二导电体。

    MORTARLESS TILE INSTALLATION SYSTEM AND METHOD FOR INSTALLING TILES
    39.
    发明申请
    MORTARLESS TILE INSTALLATION SYSTEM AND METHOD FOR INSTALLING TILES 有权
    无轨道安装系统及其安装方法

    公开(公告)号:US20130047538A1

    公开(公告)日:2013-02-28

    申请号:US13664045

    申请日:2012-10-30

    Abstract: The installation system and method for installing an architectural covering material to a substrate surface utilizes an adhesive mat having layers of adhesive and release layers arranged to allow the covering material to be initially positioned, and later repositioned to be permanently set. The adhesive mat includes a planar carrier member, one or more adhesive layers on at least one planar side of the planar carrier member, and at least one release layer of material removably covering the one or more adhesive layers. In one form, the adhesive mat includes a carrier sheet, first and second adhesive layers on opposing planar sides of the carrier sheet, and first and second release layers of material removably covering the two adhesive layers.

    Abstract translation: 用于将建筑覆盖材料安装到基底表面的安装系统和方法利用具有布置成允许覆盖材料被初始定位并且随后重新定位以永久设置的粘合剂层和释放层的粘合剂垫。 粘合垫包括平面载体构件,在平面载体构件的至少一个平面侧上的一个或多个粘合剂层和至少一个可移除地覆盖一个或多个粘合剂层的材料释放层。 在一种形式中,粘合剂垫包括载体片,载体片的相对平面侧上的第一和第二粘合剂层,以及可移除地覆盖两个粘合剂层的材料的第一和第二释放层。

    DOUBLE-COATED PRESSURE-SENSITIVE ADHESIVE SHEET FOR OPTICAL USE
    40.
    发明申请
    DOUBLE-COATED PRESSURE-SENSITIVE ADHESIVE SHEET FOR OPTICAL USE 审中-公开
    双重涂层压敏粘合片用于光学使用

    公开(公告)号:US20120276378A1

    公开(公告)日:2012-11-01

    申请号:US13511716

    申请日:2010-11-22

    Abstract: An object of the present invention is to provide a double-coated pressure-sensitive adhesive sheet for optical use satisfying both high corrosion resistance and adhesion reliability. The double-coated pressure-sensitive adhesive sheet for optical use according to the present invention has a pressure-sensitive adhesive layer having a resistance ratio determined by a specific corrosion resistance test of from 90 to 120 and an average air bubble diameter of air bubbles determined by a specific bubbling delamination resistance test of 1.0 mm or less. Further, the double-coated pressure-sensitive adhesive sheet for optical use according to the present invention preferably has a total light transmittance of 90% or more and a haze of 1.5% or less.

    Abstract translation: 本发明的目的是提供一种满足高耐蚀性和粘合可靠性的双重光学用粘合片。 根据本发明的用于光学用途的双面涂布压敏粘合片具有通过特定耐腐蚀性试验确定的电阻比为90至120并且确定气泡的平均气泡直径的压敏粘合剂层 通过1.0mm以下的特定的冒泡耐层析试验。 此外,根据本发明的双面光学用粘合片优选具有90%以上的总透光率和1.5%以下的雾度。

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