Claims
- 1. A double container squeezing mechanism, comprising:
a first side adapted to contact a surface of a first container; and a second side adapted to contact a surface of a second container when disposed adjacent the first container, said first and second sides of the double container squeezing mechanism fixed to surround both of the first and second containers and adapted to squeeze material from within respective interiors of the first and second containers through respective outlets of said first and second containers as said first and second sides of the double container squeezing mechanism are displaced towards the outlets of said first and second containers; one of said first and second sides including preventing means for preventing displacement of the first and second sides in an opposite direction to said displacement towards the outlets.
- 2. The double container squeezing mechanism of claim 1, wherein the other of said first and second sides includes second preventing means for preventing displacement of the first and second sides in the opposite direction.
- 3. The double container squeezing mechanism of claim 1, wherein said preventing means includes at least one tooth adapted to engage the surface of one of said first and second containers when the first and second sides of the double container squeezing mechanism is displaced in the opposite direction.
- 4. The double container squeezing mechanism of claim 3, wherein the other of said first and second sides includes at least one tooth adapted to engage the surface of the other of said first and second containers when the first and second sides of the double container squeezing mechanism is displaced in the opposite direction.
- 5. The double container squeezing mechanism of claim 1, wherein said preventing means includes a plurality of teeth arranged behind one another in a direction of movement of the first and second sides and adapted to engage the surface of one of said first and second containers when the first and second sides of the double container squeezing mechanism is displaced in the opposite direction.
- 6. The double container squeezing mechanism of claim 5, wherein the other of said first and second sides includes a plurality of teeth arranged behind one another in a direction of movement of the first and second sides and adapted to engage the surface of the other of said first and second containers when the first and second sides of the double container squeezing mechanism is displaced in the opposite direction.
- 7. The double container squeezing mechanism of claim 1, wherein one of said first and second containers has a flexible wall on which a plurality of depressions and projections are arranged in the longitudinal direction; and the preventing means is comprised of at least one tooth urging against the flexible wall of said one of said first and second containers and is displaced as it engages said depressions and projections, said at least one tooth shaped to prevent displacement of the first and second sides in the opposite direction.
- 8. The double container squeezing mechanism of claim 7, wherein the at least one tooth is adapted to emit an audible click upon displacement past each of the projections on the flexible wall as the first and second sides of the double container squeezing mechanism is moved towards the outlets of the first and second containers.
- 9. The double container squeezing mechanism of claim 7, wherein the at least one tooth is adapted to emit a tactile click upon displacement past each of the projections on the flexible wall as the first and second sides of the double container squeezing mechanism is moved towards the outlets of the first and second containers.
- 10. The double container squeezing mechanism of claim 1, wherein both of said first and second containers has a flexible wall on which a plurality of depressions and projections are arranged in the longitudinal direction; and the preventing means is comprised of a tooth urging against the flexible wall of said first containers and a tooth urging against the flexible wall of said second container; said first tooth and second tooth being displaced as they engage said depressions and projections and shaped to prevent displacement of the first and second sides in the opposite direction.
- 11. The double container squeezing mechanism of claim 1, wherein the preventing means includes a roller that urges against the surface of one of said first and second containers, said roller rotating as the first and second sides of the double container squeezing mechanism is moved towards the outlets of said first and second containers.
- 12. The double container squeezing mechanism of claim 11, wherein the roller includes a plurality of projections extending from its periphery; and the preventing means also includes a catch engageable with each of the projections of the roller as the roller rotates; the catch adapted to allow rotation of the roller in one direction when the double container squeezing mechanism is moved towards the outlets and adapted to prevent rotation of the roller in the opposite direction.
- 13. The double container squeezing mechanism of claim 12, wherein the catch is adapted to emit one of an audible or tactile click upon displacement past each of the projections on the roller as the double container squeezing mechanism is moved towards the outlets.
- 14. The double container squeezing mechanism of claim 12, wherein the preventing means further includes a second roller that urges against the surface of the other of said first and second containers, said second roller rotating as the first and second sides of the double container squeezing mechanism is moved towards the outlets of said first and second containers.
- 15. The double container squeezing mechanism of claim 14, wherein the second roller includes a plurality of projections extending from its periphery; and the preventing means further includes a second catch engageable with each of the projections of the second roller as the second roller rotates; the second catch adapted to allow rotation of the second roller in one direction when the double container squeezing mechanism is moved towards the outlets and adapted to prevent rotation of the second roller in the opposite direction.
- 16. The double container squeezing mechanism of claim 1, wherein one of the first and second containers has a surface on which a plurality of projections and depressions are arranged in the longitudinal direction; and the preventing means includes a roller having a plurality of projections extending from its periphery, a respective one of the projections of the roller being received within a respective one of the depressions of said one of the first and second containers as the double container squeezing mechanism is moved towards the outlets; the preventing means further including a catch engageable with each of the projections of the roller as the roller rotates; the catch adapted to allow rotation of the roller in one direction when the double container squeezing mechanism is moved towards the outlets and adapted to prevent rotation of the roller in the opposite direction.
- 17. A double container squeezing assembly, comprising:
a first elongated container having an outlet; a second elongated container having an outlet, said second elongated container being disposed adjacent to said first elongated container; a squeezing mechanism surrounding exteriors of the first and second containers for squeezing material from interiors of the first and second containers through said outlets by displacing said squeezing mechanism toward said outlets; said squeezing mechanism including a discontinuous contact surface shaped to preventing displacement of the squeezing mechanism in an opposite direction to said displacement towards the outlets.
- 18. The assembly of claim 17, wherein the discontinuous contact surface is disposed on the squeezing mechanism to contact one of said first and second containers; said squeezing mechanism including a second discontinuous contact surface disposed to contact the other of said first and second containers and shaped to prevent displacement of the squeezing mechanism in the opposite direction.
- 19. The assembly of claim 17, wherein said discontinuous contact surface is a tooth adapted to engage a surface of one of said first and second containers when the squeezing mechanism is displaced in the opposite direction.
- 20. The assembly of claim 19, wherein the squeezing mechanism includes a second tooth adapted to engage a surface of the other of said first and second containers when the squeezing mechanism is displaced in the opposite direction.
- 21. The assembly of claim 17, wherein one of said first and second containers has a flexible wall on which a plurality of depressions and projections are arranged in the longitudinal direction; and the discontinuous contact surface is comprised of a tooth urging against the flexible wall and is displaced as it engages said depressions and projections, said tooth shaped to prevent displacement of the squeezing mechanism in the opposite direction.
- 22. The assembly of claim 21, wherein the tooth is adapted to emit one of an audible and tactile click upon displacement past each of the projections on the flexible wall.
- 23. The assembly of claim 17, wherein both of said first and second containers have a respective flexible wall on which a plurality of depressions and projections are arranged in the longitudinal direction; and the squeezing mechanism includes a first tooth urging against the flexible wall of said first container and a second tooth urging against the flexible wall of said second container; said first tooth and second tooth being displaced as they engage said depressions and projections and shaped to prevent displacement of the squeezing mechanism in the opposite direction.
- 24. The assembly of claim 17, wherein the squeezing mechanism includes a roller that urges against the surface of one of said first and second containers, said roller rotating as the squeezing mechanism is moved towards the outlets of said first and second containers.
- 25. The assembly of claim 24, wherein the roller includes a plurality of projections extending from its periphery; and the squeezing mechanism includes a catch engageable with each of the projections of the roller as the roller rotates; the catch adapted to allow rotation of the roller in one direction when the squeezing mechanism is moved towards the outlets and adapted to prevent rotation of the roller in the opposite direction.
- 26. The assembly of claim 25, wherein the catch is adapted to emit one of an audible or tactile click upon displacement past each of the projections on the roller as the squeezing mechanism is moved towards the outlets.
- 27. The assembly of claim 25, wherein the squeezing mechanism further includes a second roller that urges against the surface of the other of said first and second containers, said second roller rotating as the squeezing mechanism is moved towards the outlets of said first and second containers.
- 28. The assembly of claim 27, wherein the second roller includes a plurality of projections extending from its periphery; and the squeezing mechanism includes a second catch engageable with each of the projections of the second roller as the second roller rotates; the second catch adapted to allow rotation of the second roller in one direction when the squeezing mechanism is moved towards the outlets and adapted to prevent rotation of the second roller in the opposite direction.
- 29. The assembly of claim 17, wherein one of the first and second containers has a surface on which a plurality of projections and depressions are arranged in the longitudinal direction; and the squeezing mechanism includes a roller having a plurality of projections extending from its periphery, a respective one of the projections of the roller being received within a respective one of the depressions of said one of the first and second containers as the squeezing mechanism is moved towards the outlets; the squeezing mechanism including a catch engageable with each of the projections of the roller as the roller rotates; the catch adapted to allow rotation of the roller in one direction when the squeezing mechanism is moved towards the outlets and adapted to prevent rotation of the roller in the opposite direction.
RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/685,263, filed Oct. 10, 2000, now U.S. Pat. No. 6,302,298, which issued Oct. 16, 2001, which is a continuation of U.S. application Ser. No. 09/116,609, filed Jul. 16, 1998, abandoned. The disclosure of U.S. Pat. No. 6,302,298 is incorporated herein by reference.
Continuations (1)
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Number |
Date |
Country |
Parent |
09116609 |
Jul 1998 |
US |
Child |
09685263 |
Oct 2000 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09685263 |
Oct 2000 |
US |
Child |
09975915 |
Oct 2001 |
US |