Claims
- 1. A reaction injection molded elastomer made by reacting in a closed mold amine terminated polyethers of greater than 1,500 average molecular weight having greater than 50% of their active hydrogen in the form of amine hydrogens, a chain extender, a chloro silane coupling agent, untreated filler material, and an aromatic polyisocyanate.
- 2. An elastomer as in claim 1 wherein the filler material is glass based.
- 3. An elastomer as in claim 1 wherein the chain extender is diethyltoluene diamine.
- 4. An elastomer as in claim 1 wherein the polyisocyanate is a quasi-prepolymer.
- 5. A method for making a reaction injection molded elastomer comprising reacting in a closed mold amine terminated polyethers greater than 2,500 average molecular weight having greater than 50% of their active hydrogen in the form of amine hydrogens, a chain extender, a chloro silane coupling agent, untreated filler material and an aromatic polyisocyanate.
- 6. A method as in claim 5 wherein the filler material is glass based.
- 7. A method as in claim 5 wherein the chain extender is diethyltoluene diamine.
- 8. A method as in claim 5 wherein the polyisocyanate is a quasi-prepolymer.
- 9. A method for making a reaction injection molded elastomer comprising reacting in a closed mold amine terminated polyethers of at least 5,000 molecular weight and having a functionality of from about 2 to 3 having greater than 50% of their active hydrogen in the form of amine hydrogens, an amine terminated chain extender, a chloro silane coupling agent, untreated filler material and an aromatic polyisocynate.
- 10. A method as in claim 9 wherein the chain extender is diethyltoluene diamine.
- 11. A method as in claim 9 wherein the filler material is glass based.
- 12. A reaction injection molded elastomer made by reacting in a closed mold a polyether polyol having an equivalent weight of at least 500, a chain extender, a chloro silane coupling agent, untreated filler material and an aromatic polyisocyanate.
- 13. A method for making a reaction injection molded elastomer comprising reacting in a closed mold a polyether polyol having an equivalent weight of at least 500, a chain extender, a chloro silane coupling agent, untreated filler material and an aromatic polyisocyanate.
- 14. A reaction injection molded elastomer made by reacting in a closed mold amine terminated polyethers of greater than 1,500 average molecular weight having greater than 50% of their active hydrogen in the form of amine hydrogens, a chain extender, an isocyanate silane coupling agent, untreated filler material, and an aromatic polyisocyanate.
- 15. A method for making a reaction injection molded elastomer comprising reacting in a closed mold amine terminated polyethers greater than 1,500 average molecular weight having greater than 50% of their active hydrogen in the form of amine hydrogens, a chain extender, an isocyanate silane coupling agent, untreated filler material and an aromatic polyisocyanate.
- 16. A reaction injection molded elastomer made by reacting in a closed mold a polyether polyol having an equivalent weight of at least 500, a chain extender, an isocyanate silane coupling agent, untreated filler material and an aromatic polyisocyanate.
- 17. A method for making a reaction injection molded elastomer comprising reacting in a closed mold a polyether polyol having an equivalent weight of at least 500, a chain extender, an isocyanate silane coupling agent, untreated filler material and an aromatic polyisocyanate.
Parent Case Info
This application is related to application Ser. No. 503,382, filed June 8, 1983, now allowed. Also related are the following applications filed of even date: Ser. No. 645,721 and Ser. No. 645,600.
US Referenced Citations (17)
Non-Patent Literature Citations (2)
Entry |
Schwartz et al., Jour., Elastomers & Plastics, vol. 11, (Oct., 1979) pp. 280-299. |
Galli, Plastics Compounding, (Jan.-Feb. 1982) pp. 21-28. |