Claims
- 1. A system for heat-shrinking a film onto an open-topped container including:
at least one reflective cup having a reflective interior surface; and at least one radiant energy source, the reflective cup and the radiant energy source being rotationally mounted, wherein the interior surface of the reflective cup has as least an elliptical portion and a parabolic portion.
- 2. The heat shrinking system according to claim 1 including at least two reflective cups.
- 3. The heat shrinking system according to claim 1 including at least three reflective cups.
- 4. The heat shrinking system according to claim 1 further including a protective optical element.
- 5. The heat shrinking system according to claim 4 wherein the protective optical element is plastic.
- 6. The heat shrinking system according to claim 4 wherein the protective optical element is glass.
- 7. The heat shrinking system according to claim 1 wherein the interior surface of the reflective cup is coated with a material to enhance surface reflectivity.
- 8. The heat shrinking system according to claim 7 wherein the interior surface of the reflective cup is coated with a gold or silver metallic reflective surface.
- 9. The heat shrinking system according to claim 1 wherein the reflective cup has cooling fins.
- 10. The heat shrinking system according to claim 1 wherein the radiant energy source is pre-heated.
- 11. The heat shrinking system according to claim 1 further including a marking means.
- 12. The heat shrinking system according to claim 11 wherein the marking means is a straw-hole lamp.
- 13. The heat shrinking system according to claim 12 wherein the straw-hole lamp is pre-heated.
- 14. The heat shrinking system according to claim 12 wherein the straw-hole lamp further includes a reflective cup.
- 15. The heat shrinking system according to claim 14 wherein the straw-hole reflective cup has cooling fins.
- 16. The heat shrinking system according to claim 14 wherein an inner reflective surface of the straw-hole reflective cup is substantially ellipsoidal.
- 17. The heat shrinking system according to claim 12 wherein the straw-hole lamp is capable of imparting radiant energy on a selected radiant energy absorbing area on the film.
- 18. The heat shrinking system according to claim 17 wherein the straw-hole lamp is capable of imparting onto the film a weakened area having a strengthening annulus surrounding the weakened area.
- 19. The heat shrinking system according to claim 1 further including a radiant energy drink marking system.
- 20. The heat shrinking system according to claim 19 wherein the radiant energy drink marking system includes at least one fixed radiant energy assembly, including a radiant energy source capable of imparting radiant energy, the fixed radiant energy assembly capable of directing radiant energy to a surface of the film.
- 21. The heat shrinking system according to claim 20, the fixed radiant energy assembly further including a reflective cup and a reflective cup housing.
- 22. The heat shrinking system according to claim 21 wherein the reflective cup housing is elongated and wherein the elongated reflective cup housing has cooling fins.
- 23. The heat shrinking system according to claim 21 wherein an inner surface of the drink marking reflective cup is substantially ellipsoidal.
- 24. The heat shrinking system according to claim 20 including at least
- 25. The heat shrinking system according to claim 20 including four fixed radiant energy assemblies.
- 26. The heat shrinking system according to claim 19 wherein the film has at least one indicia for indicating drink type on a surface thereof.
- 27. The heat shrinking system according to claim 26 wherein the indicia is selected from the group consisting of “soda”, “diet”, “cola”, “water”, “orange”, and “other”.
- 28. The heat shrinking system according to claim 26 wherein the indicia includes a radiant energy absorbent area.
- 29. The heat shrinking system according to claim 26 wherein each fixed radiant energy assembly is located in proximity to each indicia, and wherein the radiant energy imparted from each fixed radiant energy assembly is capable of impinging its proximate indicia.
- 30. The heat shrinking system according to claim 20, wherein each radiant energy source is pre-heated.
- 31. The heat shrinking system according to claim 1 further including a film brake and tension controller.
- 32. The heat shrinking system according to claim 31 wherein the film brake and tension controller includes:
a substantially U-shaped mechanical arm having a first end and a second end, the second end forming a cross bar; and a force applying means.
- 33. The heat shrinking system according to claim 32 wherein the force applying means is a weight.
- 34. The heat shrinking system according to claim 32 wherein the force applying means is a spring.
- 35. The heat shrinking system according to claim 32 wherein the cross bar is at least slightly V-shaped.
- 36. The heat shrinking system according to claim 32 further including a guide bar, the guide bar being in communication with the cross bar.
- 37. The heat shrinking system according to claim 36 wherein the guide bar is at least slightly V-shaped.
- 38. The heat shrinking system according to claim 32 wherein the first end of the mechanical arm has pivot ends.
- 39. The heat shrinking system according to claim 32 wherein the second end is at an angular orientation to the first end.
- 40. The heat shrinking system according to claim 33 wherein the force applying means has a mass of between approximately 1.5-3.5 lbs.
- 41. The heat shrinking system according to claim 1 further including a web cutter.
- 42. The heat shrinking system according to claim 1 further including a perforation assembly.
- 43. The heat shrinking system according to claim 42 wherein the perforation assembly includes a solenoid, a pivotally mounted perforation arm, and a perforation blade, wherein the solenoid is capable of displacing the perforation arm.
- 44. The heat shrinking system according to claim 43 further including a perforation blade guard.
- 45. The heat shrinking system according to claim 43 wherein the pivotally mounted perforation arm is downwardly biased against the solenoid.
- 46. The heat shrinking system according to claim 43 wherein an end of the perforation blade is housed in a blade holder.
- 47. The heat shrinking system according to claim 46 wherein the perforation blade integrally molded to the blade holder.
- 48. The heat shrinking system according to claim 43 wherein the perforation arm is capable of positively holding the blade holder.
- 49. The heat shrinking system according to claim 1 further including a film guide.
- 50. A system for heat-shrinking a film onto an open-topped container including:
a modular rotational assembly, the modular rotational assembly including at least one reflective cup having a reflective interior surface, and at least one radiant energy source, wherein the interior surface of the reflective cup has at least an elliptical portion and a parabolic portion.
- 51. The heat shrinking system according to claim 50 including at least two reflective cups.
- 52. The heat shrinking system according to claim 50 including at least three reflective cups.
- 53. The heat shrinking system according to claim 50 further including a protective optical element.
- 54. The heat shrinking system according to claim 53 wherein the protective optical element is plastic.
- 55. The heat shrinking system according to claim 53 wherein the protective optical element is glass.
- 56. The heat shrinking system according to claim 50 wherein the interior surface of the reflective cup is coated with a material to enhance surface reflectivity.
- 57. The heat shrinking system according to claim 50 wherein the interior surface of the reflective cup is coated with a gold or silver metallic reflective surface.
- 58. The heat shrinking system according to claim 50 further including a perforation assembly.
- 59. The heat shrinking system according to claim 50 further including a film guide.
- 60. The heat shrinking system according to claim 50 further including a driver, and wherein the modular rotational assembly is slideably connectable to the driver.
- 61. The heat shrinking system according to claim 50 wherein the modular rotational assembly further includes at least two locking posts and the driver further includes at least two detents capable of receiving the locking posts.
- 62. A system for heat-shrinking film onto an open-topped container including:
at least one reflective cup having a reflective interior surface, wherein the interior surface of the reflective cup has as least an elliptical portion and a parabolic portion; at least one radiant energy source; a film brake and tension controller; and a web cutter.
- 63. A method of heat-shrinking film onto an open-topped container comprising:
contacting the top of an opening of an open-topped container with a heat-shrink film; placing the covered open-topped container at an opening of a heat shrinking system, wherein the heat shrinking system includes at least one reflective cup having a reflective interior surface, and wherein the interior surface of the reflective cup has as least an elliptical portion and a parabolic portion; and subjecting the heat-shrink film to radiant energy.
- 64. The method according to claim 63 further wherein a protective optical element is provided at the opening of the reflective cup.
- 65. The method according to claim 64 wherein the protective optical element is plastic.
- 66. The method according to claim 64 wherein the protective optical element is glass.
- 67. The method according to claim 63 wherein the interior surface of the reflective cup is coated with a material to enhance surface reflectivity.
- 68. The method according to claim 67 wherein the interior surface of the reflective cup coated with a gold or silver metallic reflective surface.
- 69. A system for heat-shrinking a film onto an open-topped container including a reflective cup having a reflective interior surface wherein the interior surface of the reflective cup has as least an elliptical portion and a parabolic portion.
- 70. The heat-shrinking system according to claim 69 wherein the reflective cup includes at least one radiant energy source.
- 71. The heat-shrinking system according to claim 69 further including a protective optical element, wherein the protective optical element is provided at an opening in the heat-shrinking system.
- 72. The heat-shrinking system according to claim 71 wherein the protective optical element is plastic.
- 73. The heat-shrinking system according to claim 71 wherein the protective optical element is glass.
- 74. The heat-shrinking system according to claim 69 wherein the interior surface of the reflective cup is coated with a material to enhance surface reflectivity.
- 75. The heat-shrinking system according to claim 74 wherein the interior surface of the reflective cup is coated with a gold or silver metallic reflective surface.
- 76. A method of heat-shrinking a film onto an open-topped container wherein the film is shrunk and sealed onto the open-topped container in approximately one second or less.
- 77. The method of heat-shrinking a film onto an open-topped container according to claim 76 wherein the sealing strength between the film and the open-topped container is at least approximately 16 lbs.
- 78. The method of heat-shrinking a film onto an open-topped container according to claim 76 wherein the sealing strength between the film and the open-topped container is at least approximately 19 lbs.
- 79. The heat shrinking system according to claim 41 or 63 wherein the web cutter includes:
at least one wheel assembly, wherein the wheel assembly includes a wheel housing and at least two wheel members; and at least one cutting member disposed between the wheel members, wherein the wheel assembly has a first position wherein the cutting member does not extend below the wheel members and a second position wherein the cutting member extends below the wheel members.
- 80. The heat shrinking system according to claim 79 wherein the web cutter further includes an upper plate having at least one receiving hole, and wherein the wheel assembly includes at least one post that is in slideable communication with the upper plate receiving hole, and wherein the cutting member is in fixed communication with the upper plate.
- 81. The heat shrinking system according to claim 79 wherein the web cutter includes at least two wheel assemblies.
- 82. The heat shrinking system according to claim 79 wherein the web cutter includes at least three wheel assemblies.
- 83. The heat shrinking system according to claim 79 wherein the web cutter includes at least two cutting members.
- 84. The heat shrinking system according to claim 79 wherein the web cutter includes at least three cutting members.
- 85. The heat shrinking system according to claim 79 wherein the web cutter wheel members are rotatably mounted on a axis.
- 86. The heat shrinking system according to claim 80, the web cutter further including:
a top plate; a vertical alignment mounting bracket, wherein the vertical alignment mounting bracket is in communication with the top plate and in communication with the upper plate; and a fixed ring, wherein the fixed ring is capable of being in communication with a distal end of the wheel assembly post.
- 87. The heat shrinking system according to claim 86, the web cutter further including a fixed ring recess in the fixed ring, wherein the fixed ring recess is capable of receiving a top plate positioning member, and wherein the top plate positioning member is in fixed communication with the top plate.
- 88. The heat shrinking system according to claim 87, the web cutter further including a spring member, wherein the spring member is capable of maintaining a separating force between the top plate and the fixed ring.
- 89. The heat shrinking system according to claim 86, the web cutter further including a lower plate.
- 90. The heat shrinking system according to claim 89, wherein the lower plate has a cutting groove capable of receiving the cutting member.
- 91. The heat shrinking system according to claim 89, wherein the lower plate has an opening capable of receiving an open-topped container.
- 92. The heat shrinking system according to claim 86, the web cutter further including a glass clamp in communication with the vertical alignment bracket.
- 93. The heat shrinking system according to claim 92, the web cutter further including a solenoid in communication with the glass clamp and capable of exerting a downward force on the glass clamp.
- 94. The heat shrinking system according to claim 80 further including a driver in communication with the upper plate, the driver capable of providing rotational movement to the upper plate.
- 95. The heat shrinking system according to claim 41 or 63 wherein the web cutter includes:
a modular rotational assembly, wherein the modular rotational assembly includes an upper plate having at least one receiving hole, at least one wheel assembly, wherein the wheel assembly includes a wheel housing and at least two wheel members, and at least one cutting member disposed between the wheel members, wherein the wheel assembly has a first position wherein the cutting member does not extend below the wheel members and a second position wherein the cutting member extends below the wheel members.
- 96. The heat shrinking system according to claim 95 wherein the wheel assembly includes at least one post that is in slideable communication with the upper plate receiving hole, and wherein the cutting member is in fixed communication with the upper plate.
- 97. The heat shrinking system according to claim 95 wherein the web cutter includes at least two wheel assemblies.
- 98. The heat shrinking system according to claim 95 wherein the web cutter includes at least three wheel assemblies.
- 99. The heat shrinking system according to claim 95 wherein the web cutter includes at least two cutting members.
- 100. The heat shrinking system according to claim 95 wherein the web cutter includes at least three cutting members.
- 101. The heat shrinking system according to claim 95 wherein the web cutter wheel members are rotatably mounted on a axis.
- 102. The heat shrinking system according to claim 95 further including an upper plate, and wherein the at least one cutting member is housed within a cutting member assembly, wherein an upper portion of the cutting member assembly extends above the upper plate.
- 103. The heat shrinking system according to claim 95 wherein the upper portion of the cutting member is a locking post.
- 104. The heat shrinking system according to claim 103 further including a driver, and wherein the modular rotational assembly is slideably connectable to the driver.
- 105. The heat shrinking system according to claim 104 wherein the modular rotational assembly further includes at least two locking posts and the driver further includes at least two detents capable of receiving the locking posts.
- 106. The heat shrinking system according to claim 95 further including wheel retraction stopper means capable of holding each wheel in the first position when the modular rotational assembly is removed from the heat shrinking system.
- 107. The heat shrinking system according to claim 106 wherein the wheel retraction stopper means includes a cylindrical housing, a pivot driver located at a first end of the cylindrical housing and extending above the upper plate, and a stopper piece located at a second end of the cylindrical housing.
- 108. The heat shrinking system according to claim 107 wherein the stopper piece is positively biased to contact a wheel assembly post.
- 109. The heat shrinking system according to claim 108 further including a driver, wherein the driver further includes openings capable of receiving the pivot drivers.
- 110. The heat shrinking system according to claim 109 wherein the stopper piece is capable of being moved away from the post when the pivot drivers are received in the openings.
- 111. A radiant energy drink marking system including at least one fixed radiant energy assembly, the fixed radiant energy assembly further including a radiant energy source capable of imparting radiant energy, the fixed radiant energy assembly capable of directing radiant energy to a surface of a film.
- 112. The radiant energy drink marking system according to claim 111 further including a reflective cup and a reflective cup housing.
- 113. The radiant energy drink marking system according to claim 112 wherein the reflective cup housing is elongated and wherein the elongated reflective cup housing has fins.
- 114. The radiant energy drink marking system according to claim 112 wherein an inner surface of the drink marking reflective cup is substantially ellipsoidal.
- 115. The radiant energy drink marking system according to claim 111 including at least two fixed radiant energy assemblies.
- 116. The radiant energy drink marking system according to claim 111 including four fixed radiant energy assemblies.
- 117. The radiant energy drink marking system according to claim 111 wherein the film has at least one indicia for indicating drink type on a surface thereof.
- 118. The radiant energy drink marking system according to claim 117 wherein the indicia is selected from the group of “soda”, “diet”, “cola”, “water”, “orange”, and “other”.
- 119. The radiant energy drink marking system according to claim 117 wherein the indicia includes a radiant energy absorbent area.
- 120. The radiant energy drink marking system according to claim 117 wherein each fixed radiant energy assembly is located in proximity to each indicia, and wherein the radiant energy imparted from each fixed radiant energy assembly is capable of impinging its proximate indicia.
- 121. The radiant energy drink marking system according to claim 111 wherein each radiant energy source is pre-heated.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/387,366, filed Jun. 10, 2002, U.S. Provisional Application No. 60/387,337, filed Jun. 10, 2002, U.S. Provisional Application No. 60/387,527, filed Jun. 10, 2002, and U.S. Provisional Application No. 60/387,339, filed Jun. 10, 2002, each of which is incorporated herein by reference in its entirety.
Provisional Applications (4)
|
Number |
Date |
Country |
|
60387366 |
Jun 2002 |
US |
|
60387337 |
Jun 2002 |
US |
|
60387527 |
Jun 2002 |
US |
|
60387339 |
Jun 2002 |
US |