Claims
- 1. A ready-mixed impression composition based on vulcanizable polyether materials comprising(a) about 30 to 70 wt. % of aziridino-polyether, and (b) about 5 to 20 wt. % of a triacyl glyceride of non-animal origin which has a random distribution of stearoyl radicals and a stearoyl content of <70 wt. % with no adverse influences on the storage stability of the impression composition; wherein the wt. % of (a) and (b) are based on the total weight of the composition.
- 2. The impression composition according to claim 1, which further comprises (c) about 10 to 65 wt. % of customary catalysts, auxiliaries or additives.
- 3. The impression composition according to claim 1, wherein component b) comprises a mixture of triacyl glycerides.
- 4. The impression composition according to claim 1, wherein component b) is a synthetic triacyl glyceride.
- 5. The impression composition according to claim 1, wherein the triacyl glyceride has the following formula in which R1, R2, and R3 independently of one another have the meaning C11H23CO, C13H27CO, C15H31CO or C17H35CO, the proportion of C17H35CO being distributed randomly among the radicals R1, R2 and R3.
- 6. The impression composition according to claim 2, which comprises 30 to 40 wt. % of component (a), 5 to 20 wt. % of component (b), and 40 to 65 wt. % of component (c).
- 7. A ready-mixed impression composition based on vulcanizable polyether materials comprising, base components and a catalyst which are present in paste form spatially separate from one another,the base component comprising i) 30 to 75 wt. % aziridino-polyether, ii) 5 to 25 wt. % of a triacyl glyceride having a random distribution of stearoyl radicals and a stearoyl content of <70 wt. % with no adverse influences on the storage stability of the impression composition, and iii) 0 to 65 wt. % of customary auxiliaries and additives, and the catalyst component comprising iv) 10 to 60 wt. % of a customary catalyst, v) 0 to 25 wt. % of a triacyl glyceride according to component ii and vi) 15 to 90 wt. % of customary auxiliaries and additives, the wt. % data in each case being based on the total weight of the base paste and catalyst paste respectively.
- 8. A method of using triacyl glyceride to increase the storage time of a polyether-containing vulcanizable impression material, which comprises mixing an aziridino-polyether with a triacyl glyceride of non-animal origin which has a random distribution of stearoyl radicals and a stearoyl content of <70 wt. % with no adverse influences on the storage stability of the impression composition.
- 9. The ready-mixed impression composition according to claim 1, wherein the triacyl glyceride is hydrogenerated and is selected from the group consisting of avocado oil, cottonseed, oil, groundnut oil, cacao butter, pumpkin seed oil, linseed oil, maize germ oil, olive oil, palm oil, rice oil, rapeseed oils, safflower oil, sesame oil, soya oil, sunflower oil, grapeseed oil, wheatgerm oil, borneo tallow, fulwa tallow, hemp oil, illipé butter, lupin oil, candlenut oil, kapok oil, katiau fat, kenaf seed oil, kekuna oil, poppy oil, mowrah butter, okra oil, perilla oil, sal butter, shea butter and tung oil.
- 10. The method according to claim 8, wherein the triacyl glyceride is hydrogenated and is selected from the group consisting of avocado oil, cottonseed, oil, groundnut oil, cacao butter, pumpkin seed oil, linseed oil, maize germ oil, olive oil, palm oil, rice oil, rapeseed oils, safflower oil, sesame oil, soya oil, sunflower oil, grapeseed oil, wheatgerm oil, borneo tallow, fulwa tallow, hemp oil, illipé butter, lupin oil, candlenut oil, kapok oil, katiau fat, kenaf seed oil, kekuna oil, poppy oil, mowrah butter, okra oil, perilla oil, sal butter, shea butter and tung oil.
- 11. The ready-mixed impression composition according to claim 1, wherein the triacyl glyceride has an iodine number of less than 20.
- 12. The method according to claim 8, wherein the triacyl glyceride has an iodine number of less than 20.
- 13. The ready-mixed impression composition according to claim 1, wherein the triacyl glyceride is synthetic.
- 14. The method according to claim 8, wherein the triacyl glyceride is synthetic.
Priority Claims (1)
Number |
Date |
Country |
Kind |
197 11 514 |
Mar 1997 |
DE |
|
Parent Case Info
This application is a divisional of application Ser. No. 09/044,120, filed on Mar. 19, 1998, now U.S. Pat. No. 6,127,449 the entire contents of which are hereby incorporated by reference.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
5321054 |
Pasini |
Jun 1994 |
A |
5348474 |
Pasini |
Sep 1994 |
A |
5569691 |
Guggenberger et al. |
Oct 1996 |
A |
6127449 |
Bissinger et al. |
Oct 2000 |
A |
Foreign Referenced Citations (3)
Number |
Date |
Country |
4306997 |
Sep 1994 |
DE |
3805482 |
Apr 1995 |
DE |
0566221 |
Oct 1993 |
EP |
Non-Patent Literature Citations (2)
Entry |
Causton et al. “J. Dent. Res.” vol. 51, No. 4, pp. 889-896, (1972). |
Encyclopedia of Industrial Chemistry, Ullman, 5th Edition, vol. A10, pp. 174, 175 and 177. |