Ultraviolet intercepting thermoplastic polyolefin elastomer coating and application thereof

A thermoplastic and polyolefin technology, applied in the direction of film/sheet without carrier, adhesive, film/sheet adhesive, etc., can solve the problem of improving energy consumption and cost of photovoltaic module production, reducing production efficiency, lamination Problems such as high temperature, good UV cut-off performance, improved production efficiency, and low lamination temperature

Inactive Publication Date: 2019-01-04
CHANGZHOU BAIJIA NIANDAI FILM TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Polyolefin elastomer film (POE film) is gradually replacing ethylene-vinyl acetate copolymer film (EVA film) as the main photovoltaic packaging film due to its excellent water resistance and better anti-PID performance. The commonly used cross-linked POE film requires a high lamination temperature and a long lamination time, which increases the energy consumption and cost of photovoltaic module production and reduces production efficiency, and the existing POE film UV cut-off The performance is poor, and the absorption characteristics of ultraviolet rays need to be improved urgently

Method used

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  • Ultraviolet intercepting thermoplastic polyolefin elastomer coating and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0045] First, use 96.6g of polyolefin elastomer particles, 0.2g of phenolic antioxidant, 0.1g of phosphite antioxidant, 0.1g of sulfide antioxidant, 2g of nano-silica, and 0.6g of polymeric silane coupling agent. g, 0.2g of light stabilizer, 0.1g of organic ultraviolet absorber, and 0.1g of inorganic ultraviolet absorber to prepare the ultraviolet cut-off thermoplastic polyolefin elastomer film (I).

[0046] Then, the obtained ultraviolet cut-off thermoplastic polyolefin elastomer film (I) was laminated at a temperature of 150° C. for 10 minutes, and its damp heat aging yellowing value was 1.2 after the damp heat aging (double 85) test for 500 hours. After ultraviolet irradiation (60KWh), its ultraviolet aging yellowing value is 1.1, and the lamination peeling force between the ultraviolet cut-off thermoplastic polyolefin elastomer film (I) and the back sheet 50 can reach 143N / cm, for the wavelength range The light transmittance of the electromagnetic wave of 200nm-380nm can r...

Embodiment 2

[0048] First, use 96.8g of polyolefin elastomer particles, 0.1g of phenolic antioxidant, 0.1g of phosphite antioxidant, 0.1g of sulfide antioxidant, 3g of nano-silica, and 0.5g of polymeric silane coupling agent. g, 0.1 g of a light stabilizer, 0.1 g of an organic UV absorber, and 0.2 g of an inorganic UV absorber were prepared to obtain a UV-cut thermoplastic polyolefin elastomer film (II).

[0049] Then, the prepared ultraviolet cut-off thermoplastic polyolefin elastomer film (II) was laminated at a temperature of 150°C for 8 minutes, and tested for 500 hours by damp heat aging (double 85), the yellowing value of damp heat aging was 1.0, and after ultraviolet After irradiation (60KWh), the UV aging yellowing value is 1.0, and the lamination peeling force between the UV cut-off thermoplastic polyolefin elastomer film (Ⅱ) and the back sheet 50 can reach 135N / cm, for a wavelength range of 200nm The light transmittance of -380nm electromagnetic waves can reach 86.5%, and the lig...

Embodiment 3

[0051] First, use 96.9g of polyolefin elastomer particles, 0.3g of phenolic antioxidant, 0.4g of phosphite antioxidant, 0.2g of sulfide antioxidant, 1g of nano-silica, and 0.6g of polymeric silane coupling agent. g, 0.3 g of a light stabilizer, 0.2 g of an organic UV absorber, and 0.1 g of an inorganic UV absorber were prepared to obtain a UV-cut thermoplastic polyolefin elastomer film (Ⅲ).

[0052] Then, the prepared ultraviolet cut-off thermoplastic polyolefin elastomer film (Ⅲ) was laminated at 150°C for 8 minutes, and tested for 500 hours by damp heat aging (double 85), and the yellowing value of damp heat aging was 1.1. After irradiation (60KWh), the UV aging yellowing value is 1.0, and the lamination peeling force between the UV-cut thermoplastic polyolefin elastomer film (Ⅲ) and the back sheet 50 can reach 145N / cm, for a wavelength range of 200nm The light transmittance of electromagnetic waves at -380nm can reach 86.1%, and the light transmittance of electromagnetic wa...

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Abstract

The invention discloses an ultraviolet intercepting thermoplastic polyolefin elastomer coating and application thereof. The ultraviolet intercepting thermoplastic polyolefin elastomer coating comprises, by weight part, 87%-99.2% of thermoplastic polyolefin elastomer granule, 0.1%-1% of phenol antioxidant, 0.1%-1% of phosphite ester antioxidant, 0.1%-1% of sulfoether antioxidant, 0.1%-0.6% of nanoparticle filler, 0.1%-1% of polymer silane coupling agent, 0.1%-1% of organic ultraviolet absorbent, 0.1%-1% of inorganic ultraviolet absorbent and 0.1%-1% of light stabilizer. The ultraviolet intercepting thermoplastic polyolefin elastomer coating has the advantages of good ultraviolet absorbing effect, lower lamination temperature, short lamination time and the like, the production energy consumption and cost of photovoltaic assemblies are reduced, the production efficiency is improved, and the coating can be applied to the bonding of battery sheets and back panels of photovoltaic batteries.

Description

technical field [0001] The invention relates to an ultraviolet cutoff thermoplastic polyolefin elastomer adhesive film and the application of the ultraviolet cutoff thermoplastic polyolefin elastomer adhesive film. Background technique [0002] Polyolefin elastomer film (POE film) is gradually replacing ethylene-vinyl acetate copolymer film (EVA film) as the main photovoltaic packaging film due to its excellent water resistance and better anti-PID performance. The commonly used cross-linked POE film requires a high lamination temperature and a long lamination time, which increases the energy consumption and cost of photovoltaic module production and reduces production efficiency, and the existing POE film UV cut-off The performance is poor, and the absorption characteristics of ultraviolet rays need to be improved urgently. Contents of the invention [0003] The present invention aims to solve at least one of the technical problems existing in the prior art. [0004] For...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09J7/10C09J7/30C09J123/08C09J11/04C09J11/06
CPCC08K2201/011C08L2201/08C08L2203/204C09J7/10C09J7/30C09J11/04C09J11/06C09J123/0815C09J2301/408C09J2423/00C08K13/02C08K5/524C08K3/36
Inventor 茹正伟周乐
Owner CHANGZHOU BAIJIA NIANDAI FILM TECH CO LTD
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