Patent classifications
C09J2203/322
REPAIR TAPE AND METHOD OF REPAIRING A DAMAGED BACKSHEET OF SOLAR CELL MODULE USING THE SAME
A repair tape for solar cell backsheets, comprising a rubber adhesive layer; a substrate film; and a protective layer, laminated in this order, wherein thickness of the rubber adhesive layer is more than 200 μm.
ELECTRICALLY CONDUCTIVE ADHESIVE FOR ATTACHING SOLAR CELLS
The present invention relates to an electrically conductive composition comprising a) a resin selected from the group consisting of epoxy (meth)acrylate, (poly)ester (meth)acrylate, urethane (meth)acrylate, silicone (meth)acrylate, poly(iso)butylene (meth)acrylate, (poly)isoprene (meth)acrylate, polybutylene (meth)acrylate and mixtures thereof; b) an acrylic monomer; c) an electrically conductive filler; and d) a curing agent. The composition is particularly suitable for use in a solar cell and/or a photovoltaic module, especially in the photovoltaic module, wherein the solar cells are shingled.
ADHESIVE TAPE
Disclosed in an adhesive tape having an adhesive layer containing a conductive filler on both sides of a conductive base, wherein the ratio (B/A) of the total thickness (B) of the adhesive layers to the thickness (A) of the conductive base is less than 2 and the content of the conductive filler is 45 parts by mass or more with respect to 100 parts by mass of the resin component of the adhesive layer. This adhesive tape has flame retardancy that passes UL94 HB (horizontal burning test) even if the adhesive layer does not contain a flame retardant, and further, is excellent also in thermal conductivity and adhesiveness.
METHODS OF FORMING AN ADHESIVE COMPOSITION FROM ASPHALT SHINGLE WASTE POWDER
Non-limiting embodiments of the present disclosure relate to a method comprising: obtaining asphalt shingle waste (ASW) and performing grinding, screening, and separating steps on the ASW. In some embodiments, granules are removed from the ASW. In some embodiments, the method transforms ASW into ASW powder. In some embodiments, the ASW powder is formed into a plurality of briquettes. In some embodiments, at least one of: the ASW powder, the plurality of briquettes, or any combination thereof is fed into a mixing process that results in an ASW powder filled coating. In some embodiments, the ASW powder is formed into an adhesive composition.
Encapsulant for PV module, method of manufacturing the same and PV module comprising the same
The present application relates to an encapsulant for a PV module, a method of manufacturing the same, and a PV module. The encapsulant according to an embodiment of the present application has excellent heat resistance or the like and improved creep properties, exhibits a haze with a certain level or less and excellent optical properties such as transparency or the like, when the encapsulant is applied to a PV module, physical properties such as durability, transparency, or the like are improved, and thus excellent generating efficiency of the PV module may be obtained.
ENCAPSULATION ADHESIVE FILM FOR SOLAR CELL AND PREPARATION METHOD AND USE THEREFOR
The present disclosure relates to an encapsulation adhesive film for a solar cell, comprising a transparent layer in contact with a cell sheet, and a first adhesive film layer in contact with the transparent layer, wherein raw materials of the first adhesive film layer comprise the following components: a resin and a colored filler with a mass ratio of 3 to 25:1, a cross-linking agent accounting for 0.1% to 5% of the total mass of the resin and the colored filler, an auxiliary cross-linking agent accounting for 0.1% to 1% of the total mass of the resin and the colored filler, a coupling agent accounting for 0.1% to 1% of the total mass of the resin and the colored filler, a light stabilizer accounting for 0.1% to 1% of the total mass of the resin and the colored filler, and a photo initiator accounting for 0.1% to 5% of the total mass of the resin and the colored filler. The present disclosure can effectively prevent a white substance from overflowing.
Removable pressure-sensitive adhesive strip
Pressure-sensitive adhesive (PSA) strips, configured or adapted for the residue-free and non-destructive removal by which by substantially expanding it in the plane of adhesion, are provided. The PSA strips comprise at least one adhesive compound layer consisting of a PSA compound, constituted by vinyl aromatic block copolymers and one or more adhesive resins, at least 75 wt.-% (relative to the total amount of resin) of a resin being selected that has a DACP (diacetone alcohol cloud point) of greater than 20 C., and a softening point (ring & ball) of greater than or equal to 70 C., and the PSA compound has being foamed.
ADHESIVE SHEET AND TRANSPARENT ELECTRODE COMPRISING THE SAME
The present invention relates to an adhesive sheet. As the adhesive sheet of one embodiment of the present invention retains the properties of conventional adhesive sheet, such as excellent adhesion and durability in high temperature and humidity environment, it can be utilized for manufacturing large-scale electrodes at low prices, and the electrodes manufactured above can be used for various applications such as solar cell, display, and touch panel.
Acrylic-based flexible assembly layer
The present invention is an assembly layer for a flexible device. The assembly layer is derived from precursors that include an alkyl(meth)acrylate ester having 1 to 24 carbon atoms in the alkyl group and a free-radical generating initiator. Within a temperature range of between 30 C. to 90 C., the assembly layer has a shear storage modulus at a frequency of 1 Hz that does not exceed 2 MPa, a shear creep compliance (J) of at least 610.sup.6 1/Pa measured at 5 seconds with an applied shear stress between 50 kPa and 500 kPa, and a strain recovery of at least 50% at at least one point of applied shear stress within the range of 5 kPa to 500 kPa within 1 minute after removing the applied shear stress. In a preferred embodiment, the flexible device is a flexible electronic display.
OLED-compatible adhesive masses having silane water scavengers
A barrier adhesive for the encapsulation of an (opto)electronic arrangement comprising an adhesive base composed of at least one reactive resin having at least one activatable group, at least one polymer, especially an elastomer, optionally at least one tackifying resin, where the adhesive base has a water vapour permeation rate after the activation of the reactive resin of less than 100 g/m.sup.2d, preferably of less than 50 g/m.sup.2d, especially less than 15 g/m.sup.2d, a transparent molecularly dispersed getter material and optionally a solvent, wherein the getter material is at least one silane having at least one alkoxy group and at least one activatable group.