Microencapsulated adhesive

6375872
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Inventors

Chao, Hung Ya

Application #

977834

Filed

Nov-17-1992

Published

Apr-23-2002

Current US Class

264/4.1
264/4.3
264/4.33
264/4.7
411/258
428/402.2
428/402.21
428/402.22
428/402.24
523/176

International Classes

B01J 013/16; B01J 013/20; C09J 133/08

Field of Search

264/4.1 264/4.3 264/4.33 264/4.7 428/402.2 428/402.24 428/402.21 428/402.22 523/176 411/258

Assignee

Moore Business Forms (Grand Island, NY)

Examiners

Lovering; Richard D.

Attorney, Agent or Firm

Finnegan, Henderson, Farabow, Garrett & Dunner, L.L.P.

US Patent References

4001480   Encapsulation proc...
4066568   Method of producin...
4076774   Dual-walled micro...
4080238   One-liquid cold sett...
4098736   Liquid membrane...
4120913   Epoxy-amine adhe...
4228216   Production of radia...
4254201   Pressure sensitive a...
4272398   Microencapsulatio...
4273827   Adhesive assembly
4389330   Microencapsulatio...
4425065   Adhesively securab...
4439581   Method for the prod...
4442267   Heat resistant tough...
4497916   Adhesive compositi...
4517141   Production of micr...
4536524   Microencapsulated...
4555206   Adhesively securab...
4588639   Micro-capsules an...
4681806   Particles containin...
4693652   Adhesively securab...
4830558   Adhesively securab...
4861627   Preparation of mult...
4994322   Pressure-sensitive a...
5000636   Thread lock
5043314   Recording medium
 

Referenced by:

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Citation

Cite This Patent

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Abstract
A microencapsulated adhesive and a method for producing that microencapsulated adhesive is disclosed. The adhesive is produced from an alkyl acrylate or methacrylate monomer having about 4 to about 12 carbon atoms, or a mixture thereof. The monomer is encapsulated by interfacial polymerization, gelatin/gum arabic coacervation or melamine/formaldehyde encapsulation. The microcapsules may be polyamide or polyurea. The monomer is polymerized in the microcapsules by heating to form an adhesive that is non-tacky, but becomes tacky upon application of external forces, such as shearing. The microencapsulated adhesive composition may be used, among other applications, as an adhesive for stamps or envelopes.
 
Claims
What is claimed is:

1. A method of producing a microencapsulated adhesive comprising:

providing a mixture containing as a major component an alkyl acrylate or methacrylate monomer, or a mixture thereof, and a free radical initiator;

microencapsulating said mixture of monomer and initiator;

heating said microencapsulated monomer and initiator for a time and at a temperature sufficient to cause said monomer to polymerize inside said microcapsules.

2. The method of claim 1, wherein said alkyl group has about 4 to about 12 carbons.

3. The method of claim 2, wherein said monomer is selected from the group consisting of isobutyl acrylate, isobutyl methacrylate, isodecyl acrylate, isodecyl methacrylate, isooctyl acrylate, 2-ethyl hexyl acrylate, isobornyl acrylate, 4-methyl-2-pentyl acrylate, 2-methyl butyl acrylate, isoamyl acrylate, isononyl acrylate, and mixtures thereof.



Description
BACKGROUND OF THE INVENTION

The present invention relates to microencapsulated adhesives and processes for producing such microencapsulated adhesives. More particularly, the invention relates to a process for microencapsulating acrylate-based or methacrylate-based adhesives to produce an adhesive composition that is initially non-tacky but exhibits tacky properties upon application of external forces, such as shearing.

Adhesive compositions are generally tacky and gluey. However, there are numerous applications where it would be beneficial to mask the tacky nature of the adhesive prior to its use. Examples of such applications include adhesive materials for stamps or envelopes.

One potential way of rendering adhesives non-tacky is to microencapsulate the adhesive. Various attempts have been made to encapsulate adhesives such as hot melt ethylene/vinyl acetate copolymers and styrene/isoprene/styrene-type block copolymers. However, due to their high molecular weight and high viscosity, these copolymers tend to be solids at room temperature and precipitate when emulsified, and thus are very difficult to microencapsulate.
 
  The coacervation of ferrocene and ferrocene derivative is carried out in a ater-soluble polyol, coacervation mixture at a reaction temperature from about...  High concentration drag reducing agents may be prepared by microencapsulating polymer drag reducing agent. The microencapsulation may be performed prior...