Claims
- 1. A cellular material comprising the reaction product of:
- A. an alkylol group containing phenolic polymer of claim 1 of Formula I: ##STR12## wherein: a. R.sup.1 is ##STR13## hydrogen or a radical of Formula II: ##STR14## b. the R.sup.2 's are independently selected from the group consisting of lower alkyl, phenyl, benzyl, halo, nitro and hydrogen,
- c. the R.sup.3 's are independently selected from the group consisting of ##STR15## hydrogen, or a radical of Formula II, d. the R.sup.4 's are independently selected from the group consisting of lower alkyl, hydrogen, phenyl, benzyl, or furyl,
- e. m is an integer from 2 to 10 inclusive,
- f. the phenolic polymer has a molecular weight between 200 and 2000, and
- B. a compound of Formula V: ##STR16## wherein the weight ratio of B:A is 1:30 to 1:2.
- 2. The cellular material of claim 1 having a bulk density of 1 to 5 pounds per cubic foot.
- 3. The cellular material of claim 1 having a thermal conductivity value (k) of from 0.1 to 1.0 BTU-inch/hr-.degree.F-sq.ft.
- 4. The cellular material of claim 1 wherein the reaction product further comprises a foaming catalyst.
- 5. The cellular material of claim 4 wherein the foaming catalyst is an aromatic sulfonic acid.
- 6. The cellular material of claim 5 wherein the aromatic sulfonic acid is equal parts of p-toluene sulfonic acid, and xylene sulfonic acid.
- 7. The cellular material of claim 4 wherein the foaming catalyst is present in an amount sufficient to give the reaction product a cream time of from 10 to 50 seconds.
- 8. The cellular material of claim 4 wherein the foaming catalyst comprises from 0.5 to 20 weight percent based on the weight of the cellular material.
- 9. The cellular material of claim 1 wherein the reaction product further comprises a blowing agent.
- 10. The cellular material of claim 9 wherein the blowing agent has an atmospheric pressure boiling point of from minus 50.degree. to 100.degree. C.
- 11. The cellular material of claim 9 wherein the blowing agent is a halohydrocarbon.
- 12. The cellular material of claim 9 wherein the blowing agent is trichlorofluoromethane.
- 13. The cellular material of claim 9 wherein the blowing agent comprises from 1 to 30 weight percent based on the weight of the cellular material.
- 14. The cellular material of claim 1 wherein the reaction product further comprises a surfactant.
- 15. The cellular material of claim 14 wherein the surfactant is nonionic.
- 16. The cellular material of claim 14 wherein the surfactant is a polydimethyl siloxane-polyoxyalkylene copolymer.
- 17. The cellular material of claim 14 wherein the surfactant comprises from 0.05 to 10 weight percent based on the weight of the phenolic composition employed to produce the cellular material.
- 18. A cellular material comprising the reaction product of:
- A. a methylol group containing phenolic polymer of Formula III: ##STR17## wherein: a. R.sup.1 is HOCH.sub.2 --, hydrogen or a radical of Formula IV: ##STR18## b. the R.sup.3 's are independently selected from the group consisting of HOCH.sub.2 --, hydrogen or a radical of Formula IV,
- c. m is an integer from 3 to 6 inclusive,
- d. the phenolic polymer has a molecular weight between 300 and 1500, and
- B. phenol, wherein the weight ratio of B:A is 1:20 to 1:5,
- C. a foaming catalyst,
- D. a blowing agent,
- E. a surfactant.
- 19. A process for producing a cellular material comprising the step of admixing:
- A. a methylol group containing phenolic polymer of Formula III: ##STR19## wherein: a. R.sup.1 is HOCH.sub.2 --, hydrogen or a radical of Formula IV: ##STR20## b. the R.sup.3 's are independently selected from the group consisting of HOCH.sub.2 --, hydrogen or a radical of Formula IV,
- c. m is an integer from 3 to 6 inclusive,
- d. the phenolic polymer has a molecular weight between 300 and 1500, and
- B. phenol, wherein the weight ratio of B:A is 1:20 to 1:5,
- C. a foaming catalyst,
- D. a blowing agent,
- E. a surfactant.
- 20. A process for producing a cellular material comprising a first step of reacting 3.6 gram-moles of orthocresol, 4.5 gram-moles of paraformaldehyde and 0.09 gram-moles of a 50% solution of sodium hydroxide for 4.75 hours at 90.degree. C. and adding 3.8 gram-moles of paraformaldehyde and 3.6 gram-moles of phenol to the reaction in a second step and maintaining the reaction mixture at 90.degree. C. for 2 hours and thereupon neutralizing the mixture with acetic acid to a pH of 5.0 to 7.0 to produce a liquid mixture comprising:
- A. a methylol group containing phenolic polymer of Formula III: ##STR21## wherein: a. R.sup.1 is HOCH.sub.2 --, hydrogen or a radical of Formula IV: ##STR22## b. the R.sup.3 's are independently selected from the group consisting of HOCH.sub.2 --, hydrogen or a radical of Formula IV,
- c. m is an integer from 3 to 6 inclusive,
- d. the phenolic polymer has a molecular weight between 300 and 1500, and
- B. phenol, wherein the weight ratio of B:A is 1:20 to 1:5, and then adding to 80 grams of the phenolic polymer and 11 grams of phenol
- C. 13 grams of a catalyst which is equal parts by weight of p-toluene sulfonic acid and xylene sulfonic acid,
- D. 10 grams of trichlorofluoromethane and
- E. 2 grams of polydimethylsiloxane polyalkylene oxide block copolymer.
Parent Case Info
This is a divisional of application Ser. No. 509,565, filed Sept. 27, 1974, which is now allowed, and which in turn was a divisional of application Ser. No. 354,636, filed Apr. 26, 1973, now U.S. Pat. No. 3,876,620.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
2744875 |
Thomas et al. |
May 1956 |
|
3297637 |
Akabori et al. |
Jan 1967 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
1,147,564 |
Apr 1969 |
UK |
Divisions (2)
|
Number |
Date |
Country |
Parent |
509565 |
Sep 1974 |
|
Parent |
354636 |
Apr 1973 |
|