Claims
- 1. A curable, solventless, liquid, polyorganosiloxane composition consisting essentially of:
- (a) 100 parts by weight of a linear difunctional alkenyl-diorganosiloxy-terminated polydiorganosiloxane;
- (b) 10 to 300 parts by weight of a linear difunctional hydrogendiorganosiloxy-terminated polydiorganosiloxane having the average structural formula: ##STR7## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, a cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, and x represents a number having a value of about 100 to 500;
- (c) 1 to 10 parts by weight of a crosslinking agent consisting of a polyhydrogenorganosiloxane having three or more reactive groups that are reactive with the reactive alkenyl group of component (a) to form a covalent bond, said polyhydrogenorganosiloxane being a member of the group consisting of ##STR8## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic and aromatic hydrocarbon radicals and halogenated derivatives thereof, and cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, R.sup.1 represents R or hydrogen, y represents a number having a value of 0 to 300, z represents a number having a value of 5 to 300, p represents an integer having a value of 3 to 6, inclusive, with the proviso that from about 1.0 to 3.0 silicon bonded hydrogen atoms are provided by component (b) and component (c) per alkenyl group provided by component (a) and
- (d) a catalyst in an amount sufficient for effecting the reaction of the reactive groups of components (a), (b), and (c) to form covalent bonds, said composition being free of crosslinking agents other than those designated in component (c).
- 2. The composition of claim 1, wherein the alkenyldiorganosiloxy-terminated polydiorganosiloxane has the average structural formula: ##STR9## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals a halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, w represents a number having a value of about 20 to 250, and n represents zero or a number having a value of one to 16.
- 3. A curable, solventless, liquid, polyorganosiloxane composition, curable by a condensation reaction, consisting essentially of
- (a) 100 parts by weight of a linear difunctional diorganosilanol-terminated polydiorganosiloxane,
- (b) 10 to 300 parts by weight of a linear difunctional hydrogendiorganosiloxy-terminated polydiorganosiloxane,
- (c) 1 to 10 parts by weight of a crosslinking agent consisting of a polyhydrogenorganosiloxane having three or more reactive groups that are reactive with the reactive silanol group of component (a) to form a covalent bond, said polyhydrogenorganosiloxane being a member of the group consisting of ##STR10## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic and aromatic hydrocarbon radicals and halogenated derivatives thereof, and cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, R.sup.1 represents R or hydrogen, y represents a number having a value of 0 to 300, z represents a number having a value of 5 to 300, p represents an integer having a value of 3 to 6, inclusive, with the proviso that there are about 0.5 to 5.0 silicon-bonded hydrogen atoms per silanol group, and
- (d) a condensation catalyst in an amount sufficient for effecting the reaction of the reactive groups of components (a), (b), and (c) to form covalent bonds, said composition being free of crosslinking agents other than those designated in component (c).
- 4. The composition of claim 3, wherein the diorganosilanol-terminated polydiorganosiloxane has the average structural formula: ##STR11## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, and w represents a number having a value of about 20 to 250.
- 5. The composition of claim 1, wherein the hydrogendiorganosiloxy-terminated polydiorganosiloxane has the average structural formula: ##STR12## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, and x represents a number having a value of about 100 to 500.
- 6. A process for providing a substrate with a release coating that exhibits slippery feel comprising the steps of:
- (1) coating the substrate with the composition of claim 1; and
- (2) subjecting the coated substrate to conditions to effect cure of the composition.
- 7. A curable, solventless, liquid, polyorganosiloxane composition, curable by a condensation reaction, consisting essentially of
- (a) 100 parts by weight of a linear difunctional diorganosilanol-terminated polydiorganosiloxane,
- (b) 10 to 300 parts by weight of a linear difunctional hydrogendiorganosiloxy-terminated polydiorganosiloxane,
- (c) 1 to 10 parts by weight of a crosslinking agent consisting of a polyhydrogenorganosiloxane having three or more reactive groups that are reactive with the reactive silanol group of component (a) to form a covalent bond, said polyhydrogenorganosiloxane being a member of the group consisting of ##STR13## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, R.sup.1 represents R or hydrogen, y represents a number having a value of 0 to 300, z represents a number having a value of 5 to 300, p represents an integer having a value of 3 to 6, inclusive, with the proviso that there are about 0.5 to 5.0 silicon-bonded hydrogen atoms per silanol group, and
- (d) a condensation catalyst in an amount sufficient for effecting the reaction of the reactive groups of components (a), (b), and (c) to form covalent bonds, said composition being free of crosslinking agents other than those designated in component (c).
- 8. A differential release liner bearing on one major surface a layer of the cured polyorganosiloxane composition of claim 1 and on the other major surface a layer of the cured polyorganosiloxane composition of claim 1, further containing a release modifier.
- 9. An adhesive transfer tape comprising the differential release liner of claim 8 and a layer of pressure-sensitive adhesive.
- 10. A tape comprising a flexible substrate bearing on one major surface thereof a layer of the cured polyorganosiloxane composition of claim 1 and on the other major surface thereof a layer of pressure-sensitive adhesive.
- 11. A curable, solventless, liquid, polyorganosiloxane composition consisting essentially of:
- (a) 100 parts by weight of a linear difunctional alkenyl-diorganosiloxy-terminated polydiorganosiloxane;
- (b) 10 to 300 parts by weight of a linear difunctional hydrogendiorganosiloxy-terminated polydiorganosiloxane having the average structural formula: ##STR14## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, and x represents a number having a value of about 100 to 500;
- (c) 1 to 10 parts by weight of a crosslinking agent consisting of a polyhydrogenorganosiloxane having three or more reactive groups that are reactive with the reactive alkenyl group of component (a) to form a covalent bond, said polyhydrogenorganosiloxane being a member of the group consisting of ##STR15## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic and aromatic hydrocarbon radicals and halogenated derivatives thereof, and cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, R.sup.1 represents R or hydrogen, y represents a number having a value of 0 to 300, z represents a number having a value of 5 to 300, p represents an integer having a value of 3 to 6, inclusive, with the proviso that 1.0 to 3.0 silicone bonded hydrogen atoms are provided by component (b) and component (c) per alkenyl group provided by component (a), and
- (d) a catalyst in an amount sufficient for effecting the reaction of the reactive groups of components (a), (b), and (c) to form covalent bonds, provided that said composition contains no more than 4.9 parts by weight crosslinking agent per 100 parts by weight of component (a) plus component (b).
- 12. The composition of claim 11, wherein the alkenyldiorganosiloxy-terminated polydiorganosiloxane has the average structural formula: ##STR16## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, w represents a number having a value of about 20 to 250, and n represents zero or a number having a value of one to 16.
- 13. A curable, solventless, liquid, polyorganosiloxane composition curable by a condensation reaction, consisting essentially of
- (a) 100 parts by weight of a linear difunctional diorganosilanol-terminated diorganosiloxane,
- (b) 10 to 300 parts by weight of a linear difunctional hydrogendiorgansiloxy-terminated polydiorganosiloxane,
- (c) 1 to 10 parts by weight of a crosslinking agent consisting of a polyhydrogenorganosiloxane having three or more reactive groups that are reactive with the reactive hydroxyl group of component (a) to form a covalent bond, said polyhydrogenorganosiloxane being a member of the group consisting of ##STR17## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic and aromatic hydrocarbon radicals and halogenated derivatives thereof, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, R.sup.1 represents R or hydrogen, y represents a number having a value of 0 to 300, z represents a number having a value of 5 to 300, p represents an integer having a value of 3 to 6, inclusive, with the proviso that there are about 0.5 to 5.0 silicon-bonded hydrogen atoms per silanol group, and
- (d) a condensation catalyst in an amount sufficient for effecting the reaction of the reactive groups of components (a), (b), and (c) to form covalent bonds, said composition containing up to 4.9 parts by weight crosslinking agent per 100 parts by weight of component (a) plus component (b).
- 14. The composition of claim 13, wherein the diorganosilanol-terminated polydiorganosiloxane has the average structural formula: ##STR18## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, and w represents a number having a value of about 20 to 250.
- 15. The composition of claim 13, wherein the hydrogendiorganosiloxy-terminated polydiorganosiloxane has the average structural formula: ##STR19## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, and x represents a number having a value of about 100 to 500.
- 16. A process for providing a substrate with a release coating that exhibits slippery feel comprising the steps of:
- (1) coating the substrate with the composition of claim 11; and
- (2) subjecting the coated substrate to conditions to effect cure of the composition.
- 17. A curable, solventless, liquid, polyorganosiloxane composition consisting essentially of:
- (a) 100 parts by weight of a linear difunctional alkenyl-diorganosiloxy-terminated polydiorganosiloxane;
- (b) 10 to 300 parts by weight of a linear difunctional hydrogendiorganosiloxy-terminated polydiorganosiloxane having the average structural formula: ##STR20## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, and x represents a number having a value of about 100 to 500;
- (c) 1 to 10 parts by weight of a crosslinking agent consisting of a polyhydrogenorganosiloxane having three or more reactive groups that are reactive with the reactive silanol group of component (a) to form a covalent bond, said polyhydrogenorganosiloxane being a member of the group consisting of ##STR21## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, R.sup.1 represents R or hydrogen, y represents a number having a value of 0 to 300, z represents a number having a value of 5 to 300, p represents an integer having a value of 3 to 6, inclusive, with the proviso that 1.0 to 3.0 silicone bonded hydrogen atoms are provided by component (b) and component (c) per alkenyl group provided by component (a), and
- (d) a catalyst in an amount sufficient for effecting the reaction of the reactive groups of components (a), (b), and (c) to form covalent bonds, provided that said composition contains no more than 4.9 parts by weight crosslinking agent per 100 parts by weight of component (a) plus component (b).
- 18. A differential release liner bearing on one major surface a layer of the cured polyorganosiloxane composition of claim 11 and on the other major surface a layer of the cured polyorganosiloxane composition of claim 17, further containing a release modifier.
- 19. An adhesive transfer tape comprising the differential release liner of claim 18 and a layer of pressure-sensitive adhesive.
- 20. A tape comprising a flexible substrate bearing on one major surface thereof a layer of the cured polyorganosiloxane composition of claim 11 and on the other major surface thereof a layer of pressure-sensitive adhesive.
- 21. The composition of claim 17, wherein the hydrogendiorganosiloxy-terminated polydiorganosiloxane has the average structural formula: ##STR22## wherein each R is bonded to a silicon atom and independently represents a monovalent group selected from the group consisting of monovalent aliphatic or aromatic hydrocarbon radicals, halogenated monovalent aliphatic or halogenated monovalent aromatic hydrocarbon radicals, cyanoalkyl radicals, and combinations thereof, R having 1 to 18 carbon atoms, at least 50% of all R groups being methyl, and x represents a number having a value of about 1 00 to 500.
- 22. A process for providing a substrate with a release coating that exhibits slippery feel comprising the steps of:
- (1) coating the substrate with the composition of claim 1; and
- (2) subjecting the coated substrate to conditions to effect cure of the composition.
Parent Case Info
This is a continuation of application Ser. No. 07/794,346 filed Nov. 12, 1991, now abandoned, which is a continuation of application Ser. No. 07/489,363, filed Mar. 6, 1990, now abandoned.
US Referenced Citations (30)
Foreign Referenced Citations (7)
Number |
Date |
Country |
2695088 |
Jun 1989 |
AUX |
0227340 |
Jul 1987 |
EPX |
0322118 |
Jun 1989 |
EPX |
0322118 |
Jun 1989 |
EPX |
2232575 |
Jan 1975 |
FRX |
61-159480 |
Jul 1986 |
JPX |
8303209 |
Sep 1983 |
WOX |
Non-Patent Literature Citations (2)
Entry |
Japanese Laid-Open Appln. No. 02,107,667 (Chem Abstracts 113:80235v). |
European Appln. No. 375,363 (Chem Abstracts 113:133589x). |
Continuations (2)
|
Number |
Date |
Country |
Parent |
794346 |
Nov 1991 |
|
Parent |
489363 |
Mar 1990 |
|