Claims
- 1. A method of controlled introduction of additives within a polyurethane slabstock foam producing system utilizing a liquid dosing assembly comprising a valve, a feed line, and a liquid collecting vessel; wherein said feed line acts as a transport conduit between said valve and said liquid collecting vessel; wherein, said liquid dosing assembly exhibits substantially no leakage of a liquid from the feed line into the liquid collecting vessel when said valve is oriented in the closed position, substantially all of said liquid is retained within said feed line at the moment said valve is oriented in the closed position, and, upon reorientation of said valve from the closed to the open position, said liquid instantaneously moves into the liquid collecting vessel; said method comprising the steps of
(a) providing a liquid polyol within said collecting vessel; (b) introducing at least one liquid additive from the group consisting of at least one dye, at least one pigment, at least one polymeric colorant, at least one catalyst, at least one surfactant, at least one flame retardant, water, and any mixtures thereof, into said collecting vessel through said feed line to form a resultant mixture of said liquid polyol and said at least one liquid additive.
- 2. The method of claim 1 wherein said valve is a ball valve.
- 3. The method of claim 2 wherein said ball valve is a 3-way ball valve comprising at least one channel.
- 4. A method of controlled introduction of additives within a polyurethane slabstock foam producing system utilizing a liquid dosing assembly comprising a ball valve, a feed line, and a liquid collecting vessel, wherein said feed line acts as a transport conduit between said valve and said feed line, and wherein, upon introduction of a liquid possessing a surface tension of about 50 dynes/cm2 into said dosing assembly, substantially all of said liquid present within said feed line at the moment said valve is oriented in the closed position is retained within said feed line resulting in substantially no leakage of said liquid from said feed line into said liquid collecting vessel when said valve is oriented in the closed position and said liquid instantaneously moves into said liquid collecting vessel upon reorientation of said valve from the closed to the open position; said method comprising the steps of
(a) providing a liquid polyol within said collecting vessel; (b) introducing at least one liquid additive from the group consisting of at least one dye, at least one pigment, at least one polymeric colorant, at least one catalyst, at least one surfactant, at least one flame retardant, water, and any mixtures thereof, into said collecting vessel through said feed line to form a resultant mixture of liquid polyol and said at least one liquid additive.
- 5. The method of claim 4 wherein said valve is a ball valve.
- 6. The method of claim 5 wherein said ball valve is a 3-way ball valve comprising at least one channel.
- 7. A method of controlled introduction of additives within a polyurethane slabstock foam producing system utilizing a liquid dosing assembly comprising a valve, a substantially cylindrical feed line, and a liquid collecting vessel, wherein said feed line simultaneously connects to said valve and feeds into said liquid collecting vessel, and wherein said feed line exhibits a liquid storage capacity of at most 30 mL, and exhibits a diameter of at most 0.42 inches (1.07 cm); said method comprising the steps of
(a) providing a liquid polyol within said collecting vessel; (b) introducing at least one liquid additive from the group consisting of at least one dye, at least one pigment, at least one polymeric colorant, at least one catalyst, at least one surfactant, at least one flame retardant, water, and any mixtures thereof, into said collecting vessel through said feed line to form a resultant mixture of liquid polyol and said at least one liquid additive.
- 8. The method of claim 7 wherein said valve is a ball valve.
- 9. The method of claim 8 wherein said ball valve is a 3-way ball valve comprising at least one channel.
- 10. The method of claim 7 wherein said feed line exhibits a liquid storage capacity of at most 10 mL and exhibits a diameter of at most 0.33 inches.
- 11. The method of claim 10 wherein said feed line exhibits a liquid storage capacity of at most 4 mL and exhibits a diameter of at most 0.187 inches.
- 12. The method of claim 11 wherein said feed line exhibits a liquid storage capacity of at most 1 mL and exhibits a diameter of at most 0.078 inches.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of co-pending application 09/578,535, filed on May 24, 2000. This parent application is herein entirely incorporated by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09578535 |
May 2000 |
US |
Child |
09992303 |
Nov 2001 |
US |