Claims
- 1. A process for producing high temperature and flame resistant macroballoon structures which comprises the steps of:
- reacting an oxoimine having the general formula:
- CH.sub.2 --(CH.sub.2)--NHCO
- where "X" is a positive integer from 2 to 4 with an aromatic tetracarboxylic acid dianhydride in a mole ratio thereof between about 0.05:1 and 1.5:1 to produce an N-substituted imide;
- esterfying said N-substituted imide by mixing therewith a reactive solvent;
- adding thereto at least one diamine;
- drying the resulting liquid composition;
- reducing the dried material to an average particle diameter of from about 0.5 to 10 mm.;
- separating said particles from each other;
- heating said particles to a temperature in the range of about 90.degree. to 150.degree. C. while substantially preventing interparticle contact, whereby said particles expand producing a plurality of discrete macroballoons;
- coating said macroballoons with a thin layer of a liquid bonding agent;
- bringing said macroballoons into contact with each other in a desired structural configuration; and
- curing said bonding agent to a dry state;
- whereby a lightweight structure of bonded macroballoons results.
- 2. The process according to claim 1 wherein said liquid bonding agent is a synthetic resin selected from the group consisting of epoxies, polyesters, polyimides, polyvinyls, synthetic rubber, fluorinated hydrocarbons, chlorinated hydrocarbons, phenolics, ureas, melamines and mixtures and copolymers thereof.
- 3. The process according to claim 1 wherein the bonding agent constitutes up to about 10 wt.% of the dry light weight structure.
- 4. The process according to claim 1 wherein said structural configuration is obtained by filling a mold with said coated macroballoons and removing the lightweight structure from the mold after curing of the bonding agent.
- 5. The process according to claim 1 wherein said desired structural configuration is obtained by curing said coated microballoons in contact with a surface so that said bonding agent also serves to bond said macroballoons to said surface.
- 6. The process according to claim 1 wherein said particles are heated and expanded into macroballoons by feeding said particles into a moving hot air stream.
- 7. The process according to claim 1 wherein said aromatic tetracarboxylic acid dianhydride is selected from the group consisting of 3,3', 4,4'-benzophenone tetracarboxylic acid dianhydride, pyromellitic dianhydride, and mixtures thereof, and wherein said oxoimine is selected from the group consisting of caprolactam, 2-pyrrolidone, 2-piperidone and mixtures thereof.
- 8. The process according to claim 1 wherein said oxoimine is caprolactam, said reactive solvent is isopropyl alcohol and said diamine is 4,4'-diaminodiphenyl methane.
- 9. The process according to claim 1 further including the step of adding a filler to said liquid bonding agent prior to said coating step and wherein said filler is selected from the group consisting of aramid fibers, graphite fibers, glass fibers, carbon fibers, graphite powders, fluorocarbon powders and mixtures thereof.
- 10. The process according to claim 1 further including the step of adding from about 2 to 30 weight percent, based on the macroballoon weight, of a fire retardant to said liquid composition prior to said drying step; said fire retardant composition being selected from the group consisting of aluminum trihydrate, antimony oxide and mixtures thereof.
- 11. The process according to claim 1 further including the step of adding prior to said drying step from about 1 to 50 weight percent, based on final composite weight, of glass macroballoons.
- 12. The process according to claim 11 wherein about 25 weight percent glass macroballoons is added.
- 13. The process according to claim 1 further including the step of adding prior to said drying step from about 1 to 50 weight percent, based on final composite weight, of a radar absorbing material selected from the group consisting of graphite, ferrites and metal ceramic compounds.
- 14. The process according to claim 13 wherein said microwave absorbing material is ferro titanate, of which about 10 weight percent is added.
- 15. The product prepared by the process of claim 1.
- 16. The product according to claim 15 wherein said liquid bonding agent is a synthetic resin selected from the group consisting of epoxies, polyesters, polyimides, polyvinyls, synthetic rubber, fluorinated hydrocarbons, chlorinated hydrocarbons, phenolics, ureas, melamines and mixtures and copolymers thereof.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of our copending U.S. patent application Ser. No. 423,802, filed Sept. 27, 1982.
US Referenced Citations (3)
| Number |
Name |
Date |
Kind |
|
4355120 |
Gagliani et al. |
Oct 1982 |
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4360604 |
Gagliani et al. |
Nov 1982 |
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4361453 |
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Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
423802 |
Sep 1982 |
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