Abstract:
Described is image-bearing article comprising an opaque layer bearing an image which is coated on the image-bearing side and over the image with an adhesion promoter and laminated to an ionomer interlayer sheet. Also described is a process of preparing an image-bearing article comprising a coated image-bearing opaque layer laminated to an ionomer interlayer sheet, comprising the steps of providing a opaque layer; printing an image on the opaque layer so as to produce an image-bearing opaque layer containing an image-bearing side; coating an adhesion promoter on the image-bearing side and over the image to produce a coated image-bearing opaque layer containing a coated image-bearing side; and laminating an ionomer interlayer sheet to the coated image-bearing side of the coated image-bearing opaque layer by the adhesion promoter.
Abstract:
An image-bearing article comprising a rigid sheet bearing an image and a polymeric interlayer sheet comprising an ionomer copolymer of an alpha-olefin and about 15 to about 30 wt % of an alpha, beta-ethylenically unsaturated carboxylic acid based on the total weight of the ionomer copolymer, wherein about 5 to about 90 percent of the carboxylic acids are neutralized with a metal ion. In addition, a process of preparing an image-bearing article comprising an image-bearing rigid sheet and an ionomer interlayer sheet: (a) providing a rigid sheet; (b) printing an image on the rigid sheet so as to produce an image-bearing rigid sheet containing an image-bearing side; and (c) laminating an ionomer interlayer sheet to the image-bearing side of the image-bearing rigid sheet. Preferably the rigid sheet is coated on the image-bearing side and over the image with an adhesion promoter.
Abstract:
A solar cell pre-laminate assembly comprising (i) a solar cell component comprising one or a plurality of solar cells and having a light-receiving side and a back side, and (ii) stiff poly(vinyl butyral) sheet as an encapsulant layer, wherein the stiff poly(vinyl butyral) sheet is positioned next to the light-receiving or the back side of the solar cell component and comprises a poly(vinyl butyral) composition containing about 10 to about 23 wt % of a plasticizer based on the total weight of the composition.A process of preparing solar cell assembly comprising (i) providing a solar cell component and a stiff poly(vinyl butyral) sheet comprising a poly(vinyl butyral) composition containing about 10 to about 23 wt % of a plasticizer based on the total weight of the poly(vinyl butyral) composition, and (ii) encapsulating the solar cell component in a polymer matrix comprising the poly(vinyl butyral) composition.
Abstract:
The present invention provides a solar cell module comprising an encapsulant layer formed of a polymeric sheet comprising an acid copolymer, an ionomer derived therefrom, or a combination thereof and having a thickness greater than or equal to 50 mils (1.25 mm).
Abstract:
Sulfonated aromatic copolyesters and articles made therefrom, and processes for producing the sulfonated aromatic copolyesters and articles are provided. Articles that can be made from the sulfonated aromatic copolyesters include films, coatings and laminates. Some of the compositions and articles are biocompostable. The films can further be used to form shaped articles such as sheets, food packaging such as sandwich wraps, thermoformed containers, and coatings for, for example, films and other substrates. The sulfonated aromatic copolyesters contain a hydroxyalkanoic acid component.
Abstract:
The present invention provides a solar cell module comprising at least one layer of a poly(allyl amine) or poly(vinyl amine)-primed polyester film, and the process for making the solar cell module.
Abstract:
The present invention provides a thermoplastic film or sheet comprising two surface layers made of acid copolymers, or ionomers, or combinations thereof and at least one inner layer made of ethylene acrylate ester copolymers, a solar cell module comprising at least one encapsulant layer derived therefrom, and a process of manufacturing the solar cell module.
Abstract:
A process for producing a polyester that comprises 65 to 90 wt. % poly(alkylene ether) glycol. The process comprises the step of copolymerizing a preformed polyester polymer having an inherent viscosity of at least 0.4 dL/g and a poly(alkylene ether) glycol, to obtain said polyester comprising said 65 to 90 wt. % poly(alkylene ether glycol).
Abstract:
A process for the hydrolysis of a dinitrile (e.g., adiponitrile) utilizing a dicarboxylic acid (e.g., adipic acid) as the sole catalyst followed by addition of a diamine (e.g., hexamethylenediamine) and heating to produce polymerization. Such a process is particularly usefull in the production of nylon 6,6 having a low BHMT content and improved melt stability.
Abstract:
A solar cell module comprising a solar cell layer and a sheet comprising at least one layer of a sodium ionomer composition, wherein the sodium ionomer composition consists essentially of a sodium ionomer that is an ionic, neutralized derivative of a precursor α-olefin carboxylic acid copolymer, wherein about 10% to about 35% of the total content of the carboxylic acid groups present in the precursor α-olefin carboxylic acid copolymer have been neutralized with sodium ions, and wherein the precursor α-olefin carboxylic acid copolymer comprises (i) copolymerized units of an α-olefin having 2 to 10 carbons and (ii) about 20 to about 25 wt %, based on the total weight of the α-olefin carboxylic acid copolymer, of copolymerized units of an α,β-ethylenically unsaturated carboxylic acid having 3 to 8.