Abstract:
A safety laminate comprises an interlayer that comprises a crosslinkable blend of ethylene copolymers. The first ethylene copolymer comprises copolymerized units of ethylene, optionally a first olefin having the formula CH2═C(R1)CO2R2, and a second olefin having the formula CH2═C(R3)COOH. The first ethylene copolymer is optionally at least partially neutralized. The second ethylene copolymer consists essentially of copolymerized units of ethylene, optionally a first olefin having the formula CH2═C(R1)CO2R2, and a third olefin having the formula CH2═C(R4)D. R1, R3 and R4 represent hydrogen or an alkyl group; R2 represents an alkyl group; and D represents a moiety containing an epoxy group. The crosslinkable blend is useful as an interlayer in safety laminates. Methods for preparing the safety laminates are also provided.
Abstract:
Disclosed is a multilayer film laminate comprising a layer consisting essentially of a fluorinated copolymer resin and a layer consisting essentially of an ethylene terpolymer. The ethylene terpolymer layer can be used as an encapsulant layer for solar cells and the multilayer laminate is useful as a component of photovoltaic modules. Methods for preparing photovoltaic modules are also included.
Abstract:
A process of manufacturing a solar cell module, the process comprising: (i) providing a solar cell pre-laminate assembly comprising a solar cell component comprising one or a plurality of solar cells and an encapsulant film or sheet consisting essentially of a non-neutralized acid copolymer composition prepared from (a) non-neutralized acid copolymer of an alpha olefin and about 15 to about 23 wt % of alpha,beta-ethylenically unsaturated carboxylic acid having 3 to 8 carbons, based on the total weight of the acid copolymer, wherein the acid copolymer has a Melt Index of greater than 100 to about 600 g/10 min, and (b) about 0.01 to about 10 wt %, based upon the total weight of the acid copolymer composition, of organic peroxide; and (ii) laminating the pre-laminate assembly to form the solar cell module by subjecting the assembly to heat and, optionally, vacuum.
Abstract:
A multilayer film comprises a layer consisting essentially of a fluorinated copolymer resin film and a layer consisting essentially of a blend of two ethylene copolymers. The first ethylene copolymer comprises copolymerized units of ethylene, optionally a first olefin having the formula CH2═C(R1)CO2R2, and a second olefin having the formula CH2═C(R3)COOH. The second ethylene copolymer consists essentially of copolymerized units of ethylene, optionally a first olefin having the formula CH2═C(R1)CO2R2, and a third olefin having the formula CH2═C(R4)D. R1, R3 and R4 represent hydrogen or an alkyl group; R2 represents an alkyl group; and D represents a moiety containing an epoxy group. The multilayer film is useful as an integrated frontsheet or backsheet for photovoltaic modules. Methods for preparing the multilayer film and the photovoltaic modules are also included.
Abstract:
The present invention provides a safety laminate or solar cell module comprising an acid terpolymer containing film or sheet, wherein the acid terpolymer comprises copolymerized units derived from an α-olefin, about 15 to about 30 wt % of an α,β-ethylenically unsaturated carboxylic acid having 3 to 8 carbons, and about 0.5 to about 40 wt % of an α,β-ethylenically unsaturated carboxylic acid ester having 4 to 12 carbons, based on the total weight of the acid terpolymer.
Abstract:
The present invention provides a solar cell pre-lamination assembly comprising a terionomer multilayer film or sheet and solar cell modules prepared therefrom.
Abstract:
The present invention provides a solar cell pre-lamination assembly comprising a terionomer multilayer film or sheet and solar cell modules prepared therefrom.
Abstract:
The present invention provides an acid terpolymer comprising multilayer film or sheet and safety laminates and solar cell pre-lamination assemblies comprising the same.
Abstract:
Disclosed is a composition comprising a neutralized acid copolymer or ionomer thereof, an organic acid, and optionally other polymers, having a ratio of wet cup permeance to dry cup permeance greater than 10. The composition is useful as a variable vapor barrier for moisture control of buildings. Also disclosed are articles comprising the variable vapor composition and methods of their use.
Abstract:
This invention relates to a polymer precursor dispersion for use in making a polymer that is a solid at room temperature and further relates to a method of making same where the dispersion comprises a polymer precursor comprising an addition monomer, a condensation monomer, a prepolymer, or a polymer modifier and 0.01 to 50 weight percent of a micropulp having a volume average length of from 0.01 to 100 micrometers.