Claims
- 1. A drinking cup, comprising a body and a single layer elastomeric overmolding partially covering said body.
- 2. A drinking cup according to claim 1, wherein said body has a closed bottom and an open top, said overmolding completely covering said bottom of said body.
- 3. A drinking cup according to claim 2, wherein said body has a sidewall extending between said top and said bottom of said body, said overmolding partially covering said sidewall.
- 4. A drinking cup according to claim 3, wherein said overmolding includes a plurality of ribs spaced apart on said sidewall of said body, thereby forming a plurality of gripping surfaces.
- 5. A drinking cup according to claim 4, wherein said ribs extend circumferentially about said sidewall of said body.
- 6. A drinking cup according to claim 5, wherein said sidewall of said body includes a plurality of depressions, each depression extending longitudinally along said body and being sized and shaped so as to form a handgrip.
- 7. A drinking cup according to claim 6, wherein said overmolding substantially covers each of said depressions in said sidewall of said body.
- 8. A drinking cup according to claim 1, wherein said body is made from a relatively brittle material and said overmolding is made from a softer material which has shock-absorbing properties, whereby said overmolding functions as a bumper for said body.
- 9. A drinking cup according to claim 8, wherein said overmolding enhances the grippability of said body.
- 10. A drinking cup according to claim 9, wherein said overmolding has skid-resistant properties.
- 11. A drinking cup according to claim 1, wherein said body is made from a translucent material and said overmolding is made from an opaque material.
- 12. A drinking cup according to claim 11, wherein said translucent material is clarified polypropylene and said opaque material is a thermoplastic elastomer.
- 13. A drinking cup according to claim 1, wherein said body is made from a translucent thermoplastic material and said overmolding is made from an opaque elastomeric material.
- 14. A drinking cup according to claim 13, wherein said translucent thermoplastic material is selected from the group consisting of polystyrene (PS), polystyrene-acrylonitrile (PSAN), acrylonitrile-butadiene styrene (ABS), stryrene-maleicanhydride (SMA), polycarbonate (PC), polyethylene (PE), polyethylene terephthalate, polypropylene (PP), polyvinylcyclohexane, and copolymers and blends thereof.
- 15. A drinking cup according to claim 13, wherein said opaque elastomeric material is selected from the group consisting of thermoplastic elastomers, thermoset elastomers, and copolymers and mixtures thereof.
- 16. A drinking cup according to claim 1, wherein a bi-component molding process is used to apply said overmolding to said body.
- 17. A drinking cup according to claim 16, wherein said bi-component molding process results in a fusion bond between said body and said overmolding.
- 18. A drinking cup according to claim 17, wherein said bi-component molding process is a two-shot injection molding process.
- 19. A drinking cup according to claim 18, wherein said fusion bond has a bond strength that is equal to or greater than the tensile strength of said material of said overmolding.
- 20. A drinking cup according to claim 19, wherein said overmolding is made from a thermoplastic elastomer and said body is made from clarified polypropylene.
- 21. A drinking cup according to claim 20, wherein said thermoplastic elastomer has a durometer value of about 50 A to about 80 A.
- 22. A lid, comprising a substantially closed top having at least one liquid-dispensing orifice therein and valve-receiving means positioned below said top in communication with said at least one orifice, said valve-receiving means being integral with an internal sealing ring positioned adjacent to a peripheral edge of said lid.
- 23. A lid according to claim 22, wherein said valve-receiving means is a tubular sleeve.
- 24. A lid according to claim 23, wherein said sleeve has a free end and at least one valve-engaging tab depending from said free end of said sleeve.
- 25. A lid according to claim 24, wherein said free end of said sleeve includes a plurality of valve-engaging tabs, each of said tabs having an arcuate shape.
- 26. A lid according to claim 22, further comprising a raised rim having sloping flanks which merge into said tip, said flanks cooperating with said tip to form a pocket having a size and shape selected to accommodate a user's nose.
- 27. A flow control valve, comprising a polygonally-shaped body having a plurality of corners; a liquid-dispensing nipple positioned in one of said corners of said body; a lower surface; and rigidifying ribbing depending from said lower surface of said body.
- 28. A flow control valve according to claim 27, wherein said nipple includes a fluid passageway extending therethrough; a small-diameter portion remote from said body; a large diameter portion proximate to said body, said large diameter portion communicating with said passageway and said small-diameter portion; and a slitted diaphragm positioned within said small-diameter portion of said nipple.
- 29. A flow control valve according to claim 28, wherein said nipple includes an annular shoulder between said large-diameter portion and said small-diameter portion.
- 30. A flow control valve according to claim 29, wherein said nipple extends from an upper surface of said body.
- 31. A flow control valve according to claim 30, wherein said body includes a handle depending from said lower surface.
- 32. A flow control valve according to claim 31, wherein said handle has a fin-like shape.
- 33. A flow control valve according to claim 32, wherein said handle includes a pair of ribs, one on each side of said handle.
- 34. A flow control valve according to claim 32, wherein said handle includes a peripheral rib.
- 35. A flow control valve according to claim 30, wherein said body has at least one hole extending therethrough from said upper surface to said lower surface, said at least one hole being spaced from said nipple.
- 36. A flow control valve according to claim 27, further comprising a semi-circular collar disposed about nipple, said collar cooperating with said nipple to form a semi-circular trough sized and shaped to frictionally retain a free end of tubular member depending from a lid into which said flow control valve may be inserted.
- 37. A flow control valve according to claim 36, wherein said trough has a bottom provided with at least one female member sized and shaped to frictionally engage a mating male member.
- 38. A flow control valve according to claim 27, further comprising plugging means for partially plugging said passageway in said body.
- 39. A flow control valve according to claim 38, wherein said plugging means includes a retaining strap pivotally attached to said body, said retaining strap including a plug sized and shaped so as to be removably received within said passageway in said body.
- 40. A flow control valve according to claim 39, wherein said body includes a plurality of cutouts and said plug includes a plurality of cutouts, each cutout in said body communicating with said passageway and being alignable with a corresponding cutout in said plug when said plug is received within said passageway.
- 41. A flow control valve according to claim 40, wherein said passageway includes a circular groove and said plug includes at least one bead sized and shaped so as to be removably retained in said groove when said plug is received within said passageway.
- 42. A flow control valve according to claim 41, wherein said retaining strap has a first surface which faces said body when said plug is received within said passageway, said plug extending from said first surface.
- 43. A flow control valve according to claim 42, wherein said retaining strap includes a second surface opposite said first surface and a handle extending from said second surface.
- 44. A flow control valve according to claim 43, wherein said retaining strap is connected to said body by a living hinge.
- 45. A flow control valve according to claim 27, wherein said flow control valve has a monolithic construction.
- 46. A flow control valve according to claim 27, wherein said body has a generally triangular shape.
- 47. A flow control valve according to claim 27, wherein said nipple includes a flexible diaphragm having a slit extending therethrough, the portion of said diaphragm adjacent to said slit being thicker than the remainder of said diaphragm.
- 48. A flow control valve according to claim 27, wherein said nipple includes a flexible diaphragm having a slit extending therethrough and being of substantially uniform thickness.
- 49. A closure assembly for a cup, comprising a lid having a substantially closed top with at least one liquid-dispensing orifice therein and receiving means positioned below said top in communication with said at least one orifice, said receiving means being integral with an internal sealing ring positioned adjacent to said peripheral edge of said lid; and a flow control valve having a polygonally-shaped body with a plurality of corners and a liquid-dispensing nipple positioned in one of said corners of said body, said nipple being removably received within said receiving means of said lid.
- 50. A closure assembly according to claim 49, wherein said receiving is a tubular sleeve having a free end and at least one tab depending from said free end of said sleeve.
- 51. A closure assembly according to claim 50, wherein said flow control valve includes a semi-circular collar disposed about nipple, said collar cooperating with said nipple to form a semi-circular trough sized and shaped to frictionally retain said free end of said sleeve.
- 52. A closure assembly according to claim 51, wherein said free end of said sleeve includes a pair of arcuate tabs extending therefrom and said trough has a bottom provided with a pair or arcuate slots, each of said slots being sized and shaped to frictionally engage a corresponding one of said tabs.
- 53. A closure assembly according to claim 52, wherein said lid includes a raised rim having sloping flanks which merge into a tip, said flanks cooperating with said tip to form a pocket having a size and shape selected to accommodate a user's nose.
- 54. A closure assembly according to claim 53, wherein said flow control valve has a monolithic construction.
- 55. A closure assembly according to claim 54, wherein said body of said flow control valve has a generally triangular shape.
- 56. A closure assembly according to claim 49, wherein said nipple includes a flexible diaphragm having a slit extending therethrough, the portion of said diaphragm adjacent to said slit being thicker than the remainder of said diaphragm.
- 57. A feeding device, comprising a cup having a body and an elastomeric overmolding partially covering said body, said overmolding being made out of a material different from said body; a lid removably attached to said body and having a substantially closed top with at least one liquid-dispensing orifice therein and receiving means positioned below said top in communication with said at least one orifice, said receiving means being positioned in close proximity to a peripheral edge of said lid; and a flow control valve having a polygonally-shaped body with a plurality of corners and a liquid-dispensing nipple positioned in one of said corners of said body, said nipple being removably received within said receiving means of said lid.
- 58. A feeding device according to claim 57, wherein said lid includes an internal sealing ring positioned adjacent to said peripheral edge of said lid, said receiving means including a tubular sleeve which merges into said sealing ring, said sleeve having a free end and at least one tab depending from said free end of said sleeve.
- 59. A feeding device according to claim 58, wherein said flow control valve includes a semi-circular collar disposed about nipple, said collar cooperating with said nipple to form a semi-circular trough sized and shaped to frictionally retain said free end of said sleeve.
- 60. A feeding device according to claim 59, wherein said free end of said sleeve includes a pair of arcuate tabs extending therefrom and said trough has a bottom provided with a pair of arcuate slots, each of said slots being sized and shaped to frictionally engage a corresponding one of said tabs.
- 61. A feeding device according to claim 60, wherein said lid includes a raised rim having sloping flanks which merge into a tip, said flanks cooperating with said tip to form a pocket having a size and shape selected to accommodate a user's nose.
- 62. A feeding device according to claim 61, wherein said flow control valve has a monolithic construction.
- 63. A feeding device according to claim 62, wherein said body of said flow control valve has a generally triangular shape.
- 64. A feeding device according to claim 57, wherein said nipple includes a flexible diaphragm having a slit extending therethrough, the portion of said diaphragm adjacent to said slit being thicker than the remainder of said diaphragm.
- 65. A feeding device according to claim 57, wherein said body is made from a translucent thermoplastic material and said overmolding is made from an opaque elastomeric material.
- 66. A feeding device according to claim 65, wherein said translucent thermoplastic material is selected from the group consisting of polystyrene (PS), polystyrene-acrylonitrile (PSAN), acrylonitrile-butadiene styrene (ABS), stryrene-maleicanhydride (SMA), polycarbonate (PC), polyethylene (PE), polyethylene terephthalate, polypropylene (PP), polyvinylcyclohexane, and copolymers and blends thereof.
- 67. A feeding device according to claim 65, wherein said opaque elastomeric material is selected from the group consisting of thermoplastic elastomers, thermoset elastomers, and copolymers and mixtures thereof.
- 68. A feeding device according to claim 57, wherein a bi-component molding process is used to apply said overmolding to said body.
- 69. A feeding device according to claim 68, wherein said bi-component molding process results in a fusion bond between said body and said overmolding.
- 70. A feeding device according to claim 69, wherein said bi-component molding process is a two-shot injection molding process.
- 71. A feeding device according to claim 70, wherein said fusion bond has a bond strength that is equal to or greater than the tensile strength of said material of said overmolding.
- 72. A feeding device according to claim 71, wherein said overmolding is made from a thermoplastic elastomer and said body is made from clarified polypropylene.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/475,558, filed Dec. 30, 1999.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09475558 |
Dec 1999 |
US |
Child |
09826270 |
Apr 2001 |
US |