Claims
- 1. An atomizer for atomizing a liquid comprising:
- a body;
- an elastomeric barrier mounted to the body, the barrier having outer and inner surfaces and a slit formed therethrough to provide restricted fluid communication between the inner and outer surfaces, the outer surface facing the ambient environment;
- a supply of the liquid to be atomized housed within the body;
- a cylinder, housed within the body, fluidly coupled to the supply of liquid and opening onto the inner surface of the barrier, the cylinder housing a dose of the liquid to be atomized; and
- a piston mounted within the body, in direct contact with the dose of the liquid in the cylinder, for reciprocal movement within the cylinder between a retracted position, at least partially withdrawn from the cylinder, and a discharged position, substantially within the cylinder, wherein the piston applies direct pressure on the dose of the liquid in the cylinder to force the liquid through the slit so that the liquid is atomized.
- 2. The atomizer of claim 1 further including
- a spring, coupled to the piston, for biasing the piston from the retracted position to the discharged position.
- 3. The atomizer of claim 2 wherein the body includes a tip end and a base end, the barrier mounted to the tip end, the atomizer further including
- a cap slidably mounted to the body at the base end; and means for connecting the cap to the piston, so that moving the cap moves the piston therewith.
- 4. The atomizer of claim 2 further including
- maintaining means for selectively maintaining the piston in the retracted position, the maintaining means including an outwardly biased resilient arm having an end, a catch positioned to engage the end of the arm when the piston is at the retracted position, and a trigger, manipulatable by a user, for deflecting the end of the arm away from the catch to permit the spring to force the piston to the discharged position.
- 5. The atomizer of claim 1 wherein the elastomeric barrier is of a hydrophobic material.
- 6. The atomizer of claim 1 wherein the elastomeric barrier has a durometer hardness of about 35 to 50.
- 7. The atomizer of claim 1 wherein the elastomeric barrier is of silicone rubber.
- 8. The atomizer of claim 1 wherein the elastomeric barrier has a natural, uncompressed thickness of about 1.65 mm.
- 9. The atomizer of claim 1 wherein the slit in the elastomeric barrier is about 1.0 mm long.
- 10. The atomizer of claim 1 wherein the barrier means is configured so the liquid is atomized into drops no greater than about 100 microns in diameter.
- 11. The atomizer of claim 1 further comprising means for modifying any liquid dispersal pattern of the liquid forced through the slit.
- 12. An atomizer for atomizing a liquid comprising:
- a body having a tip end and a base end;
- an elastomeric barrier mounted to the body, the barrier having outer and inner surfaces and a slit formed therethrough to provide restricted fluid communication between the inside and outside surfaces, the outside surface facing the ambient environment; and
- pressure means for providing the liquid to the inside surface at an elevated pressure so to force the liquid through the slit, the barrier configured so the liquid is atomized as it passes into the ambient environment, the pressure means including:
- a cylinder, housed within the body, opening onto the inner surface of the barrier;
- a piston mounted within the body for reciprocal movement within the cylinder between a retracted position, at least partially withdrawn from the cylinder, and a discharged position, substantially within the cylinder;
- a spring, coupled to the piston, for biasing the piston from the retracted position to the discharged position;
- a cap slidably mounted to the body at the base end;
- means for connecting the cap to the piston, so that moving the cap moves the piston therewith; and
- maintaining means for selectively maintaining the piston in the retracted position, the maintaining means including an outwardly biased resilient arm having an end, a catch positioned to engage the end of the arm when the piston is at the retracted position, and a trigger, manipulable by a user, for deflecting the end of the arm away from the catch to permit the spring to force the piston to the discharged position;
- the body including an axially extending annular reservoir for the liquid to be atomized in fluid communication with the cylinder when the piston is in the retracted position; and
- means for urging the liquid in the reservoir into the cylinder, the urging means including an axially movable ring seal mounted within the axially extending annular reservoir and a coil spring biasing the ring seal along the annular reservoir.
- 13. An atomizer for atomizing a liquid comprising:
- a body;
- an elastomeric barrier mounted to the body, the barrier having outer and inner surfaces and a slit formed therethrough to provide restricted fluid communication between the inner and outer surfaces, the outer surface facing the ambient environment;
- pressure means for providing the liquid to the inner surface at an elevated pressure so to force the liquid through the slit, the barrier configured so the liquid is atomized as it passes into the ambient environment, wherein the pressure means includes:
- a cylinder, housed within the body, opening onto the inner surface of the barrier; and
- a piston mounted within the body for reciprocal movement within the cylinder between a retracted position, at least partially withdrawn from the cylinder, and a discharged position, substantially within the cylinder;
- wherein the body includes an axially extending annular reservoir for the liquid to be atomized in fluid communication with the cylinder when the piston is in the retracted position; and,
- means for urging the liquid in the reservoir into the cylinder, the urging means including an axially movable ring seal mounted within the axially extending annular reservoir and a coil spring biasing the ring seal along the annular reservoir.
- 14. A method of atomizing a liquid comprising the steps of:
- providing a body and a cylinder housed within the body, the cylinder housing a dose of the liquid to be atomized providing an elastomeric barrier;
- fluidly coupling the dose of liquid within the cylinder to an inner surface of an elastomeric barrier having an outer surface facing an ambient environment and a slit formed therethrough to provide restricted fluid communication between the inner and outer surfaces providing a piston;;
- moving a piston from a retracted position, at least partially withdrawn from the cylinder, to a discharged position, substantially within the cylinder; and
- driving at least a portion of the dose of liquid in the cylinder through the slit formed in the elastomeric barrier from the inner surface to the outer surface and atomizing the liquid.
- 15. The method of claim 14 further comprising the steps
- re-filling the cylinder with the liquid from a liquid reservoir after the moving step; and
- preventing flow of the liquid from the cylinder to the liquid reservoir during at least a portion of the time during the moving step.
Parent Case Info
This is a Continuation of application Ser. No. 07/924,358, filed Jul. 31, 1992, now abandoned, which is a Continuation of application Ser. No. 07/551,990, filed Jul. 12, 1990, now abandoned.
US Referenced Citations (10)
Non-Patent Literature Citations (1)
Entry |
McGraw-Hill Encyclopedia of Science & Technology, Atomization, pp. 858-862. |
Continuations (2)
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Number |
Date |
Country |
Parent |
924358 |
Jul 1992 |
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Parent |
551990 |
Jul 1990 |
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