Ultraviolet curing printing ink with anti-static effect and preparation method thereof

A technology of antistatic effect and ultraviolet light, which is applied in the direction of ink, application, household utensils, etc., can solve the problem of unsatisfactory antistatic effect, achieve the effect of unaffected physical and chemical properties, maintain stability, and improve toughness

A technology of antistatic effect and ultraviolet light, which is applied in the direction of ink, application, household utensils, etc., can solve the problem of unsatisfactory antistatic effect, achieve the effect of unaffected physical and chemical properties, maintain stability, and improve toughness

CN103666014AActive Publication Date: 2014-03-26TONGLING FOUNDER PLASTICS TECH

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Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0009] specific implementation plan

[0010] The present invention will be described in detail below through specific examples.

[0011] A UV curable ink with antistatic effect, prepared from the following raw materials in parts by weight (kg): organic pigment 2, methyl methacrylate 12, diaminodiphenylmethane 3, melamine formaldehyde resin 20, E -12 epoxy resin 10, polytetrafluoroethylene 2, diatomite 1, calcined clay powder 2, citric acid 3, polyacrylonitrile microsphere 1, glycidyl butyl ether 1, triethylene glycol 3, polyvinyl alcohol 1. Antioxidant DSTP 1, 184 photoinitiator 5, accelerator D 1.3, auxiliary agent 4;

[0012] The auxiliary agent is prepared from the following raw materials in parts by weight (kg): 0.2 nanometer diatomite powder, 0.2 nanometer mica powder, 2 silane coupling agent KH550, 2 crosslinking agent TAC2, 2 polyisobutylene, 1 hydroquinone , trimethylolpropane triacrylate 10, dimethylaminoethyl acrylate 2, phenyl glycidyl ether 1, cobalt naphthenate ...

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Abstract

The invention discloses an ultraviolet curing printing ink with an anti-static effect. The ultraviolet curing printing ink with the anti-static effect is characterized by comprising the following raw materials in parts by weight: 1-3 part(s) of an organic pigment, 12-15 parts of methyl methacrylate, 3-5 parts of diaminodiphenyl-methane, 20-24 parts of melamine formaldehyde resin, 10-12 parts of E-12 epoxy resin, 2-3 parts of polytetrafluoroethylene, 1-2 part(s) of diatomaceous earth, 2-4 parts of calcined pottery clay powder, 3-4 parts of citric acid, 1-2 part(s) of polyacrylonitrile microspheres, 1-2 part(s) of glycidol butyl ether, 3-4 parts of triethylene glycol, 1-2 part(s) of polyving akohol, 1-2 part(s) of an antioxidant DSTP, 5-8 parts of 184 photoinitiator, 1.3-1.5 parts of an accelerant D and 4-5 parts of auxiliaries. According to the invention, antistatic agents such as methyl methacrylate are added in the formulation of the ultraviolet curing printing ink, so that the ultraviolet curing printing ink can be used for absorbing static charge on the surfaces of materials better so as to achieve the anti-static effect, in addition, the processing and treatment are simple and convenient, and the physical and chemical property of base material is not influenced.

Description

technical field [0001] The invention relates to an ink and a preparation method thereof, in particular to an ultraviolet curable ink with antistatic effect and a preparation method thereof. Background technique [0002] Ultraviolet curing (UV) ink refers to the ink that uses ultraviolet light of different wavelengths and energies to form a film and dry the ink under ultraviolet radiation. Using different ultraviolet spectra, different energies can be generated to polymerize monomers in different ink binders into polymers, so the color film of UV ink has good mechanical and chemical properties. The main advantages of UV ink are: (1) No solvent is used; (2) Fast drying speed and less energy consumption; (3) Good gloss and bright colors; (4) Water resistance, solvent resistance, and good wear resistance. The photoinitiator in UV ink is a compound that is easily excited by light. After absorbing light, it is excited into a free radical, and the energy is transferred to the phot...

Claims

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Application Information

Patent Timeline
26 Mar 2014
Publication
CN103666014A
IPC
C09D11/00
Inventors
万红霞; 陈可亮