Penetrating viscose across interfaces

A cross-interface, viscose technology, applied in the direction of adhesives, adhesive types, rosin adhesives, etc., can solve problems affecting bond strength, plasticization or dissolution, etc., to prolong open time, reduce impact, and enhance The effect of the penetrating effect

Active Publication Date: 2017-04-12
浙江固特新材料科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Especially when bonding substrates with heavy ink and varnish systems, ordinary hot melt adhesives only bond the ink or varnish layer on the surface, and hot melt adhesives are easily plasticized or dissolved by plasticizers and organic solvents on the surface, thus greatly Affected bond strength

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] The cross-interface penetration viscose described in the present embodiment, it is by 1 weight part ethylene-acrylic acid copolymer wax, 2 weight parts paraffin, 10 weight parts maleic anhydride grafted EVA, the EVA of 10 weight parts VA content 35%, 6 Parts by weight of metallocene catalyzed polyolefin, 10 parts by weight of dehydrated malic acid rosin resin, 10 parts by weight of rosin glyceride, 1 part by weight of liquid C5 petroleum resin, 0.5 parts by weight of leveling agent, 1 part by weight of plasticizer, 0.2 parts by weight It consists of a polymer coupling agent and 0.2 parts by weight of an antioxidant.

[0019] The MI of the EVA with a VA content of 35% is 50.

[0020] The melting point of ethylene-acrylic acid copolymer wax is 95-105°C.

[0021] The VA content in the maleic anhydride grafted EVA is 30%, the MI is 150, and the grafting rate is >3%.

[0022] The melt index of the metallocene-catalyzed polyolefin is 1000 g / 10 minutes.

[0023] The softeni...

Embodiment 2

[0029] The cross-interface penetration viscose described in the present embodiment, it is by 10 parts by weight ethylene-acrylic acid copolymer wax, 12 parts by weight paraffin, 18 parts by weight maleic anhydride grafted EVA, 21 parts by weight EVA of VA content 35%, 15 parts by weight Parts by weight of metallocene catalyzed polyolefin, 18 parts by weight of dehydrated malic acid rosin resin, 25 parts by weight of rosin glyceride, 8 parts by weight of liquid C5 petroleum resin, 2 parts by weight of leveling agent, 6 parts by weight of plasticizer, 1.2 parts by weight It consists of a polymer coupling agent and 1 part by weight of an antioxidant.

[0030] The production method of cross-interface infiltration viscose, mixing ethylene-acrylic acid copolymer wax and paraffin wax, heating to 1140°C, adding maleic anhydride grafted EVA, heating to 150°C after melting, then adding EVA with 35% VA content, Half the amount of antioxidant and polymer coupling agent, after melting, add...

Embodiment 3

[0032] The cross-interface penetration viscose described in the present embodiment, it is by 5 parts by weight ethylene-acrylic acid copolymer wax, 7 parts by weight paraffin, 14 parts by weight maleic anhydride graft EVA, the EVA of 15 parts by weight VA content 35%, 10 parts by weight Parts by weight of metallocene catalyzed polyolefin, 15 parts by weight of dehydrated malic acid rosin resin, 18 parts by weight of rosin glyceride, 4 parts by weight of liquid C5 petroleum resin, 1.3 parts by weight of leveling agent, 3 parts by weight of plasticizer, 0.8 parts by weight It consists of a polymer coupling agent and 1.1 parts by weight of an antioxidant.

[0033] The production method of cross-interface infiltration viscose, mixing ethylene-acrylic acid copolymer wax and paraffin wax, heating to 135°C, adding maleic anhydride grafted EVA, heating to 150°C after melting, then adding EVA with 35% VA content, Half the amount of antioxidant and polymer coupling agent, after melting,...

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Abstract

The invention relates to the hot melt adhesive field, and especially discloses a cross-interface penetration adhesive which can achieve penetration adhesion to a surface film or a gold stamping layer. The penetration adhesive is composed of, by weight, 1-10 parts of ethylene-acrylic acid copolymer wax, 2-12 parts of paraffin, 10-18 parts of maleic anhydride grafting EVA, 10-21 parts of EVA with a high VA content, 6-15 parts of metallocene catalysis polyolefin, 10-18 parts of dehydrated malic acid abietin, 10-25 parts of rosin glyceride, 1-8 parts of liquid-state C5 petroleum resins, 0.5-2 parts of leveling agents, 1-6 parts of plasticizers, 0.2-1.2 parts of high-molecular coupling agents and 0.2-1 part of antioxidants. The obtained cross-interface penetration adhesive can penetrate through printing ink and the like and adheres to internal organic matters, the adhesion fastness is raised and the service life is prolonged.

Description

technical field [0001] The invention relates to the field of hot melt adhesives, in particular to a cross-interface permeable adhesive. Background technique [0002] When the existing smooth film or bronzing paper is packaged, when the existing viscose is bonded to it, it can only be bonded to its surface, resulting in poor bonding fastness, and it is easy to make the viscose and the surface film Or the bronzing layer falls off together, affecting its normal use. [0003] When bonding ordinary coated paper, pressed powder paper, etc., the hot melt adhesive has already started to solidify on the surface, and has not penetrated into the inside of the paper, so degumming is very easy to occur. Especially when bonding substrates with heavy ink and varnish systems, ordinary hot melt adhesives only bond the ink or varnish layer on the surface, and hot melt adhesives are easily plasticized or dissolved by plasticizers and organic solvents on the surface, thus greatly affect the b...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09J151/06C09J123/08C09J123/00C09J193/04C09J157/02C09J123/20C09J11/06
Inventor 李光鹏陈惠娟邵晓巍
Owner 浙江固特新材料科技股份有限公司
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