Claims
- 1-43. (canceled)
- 44. A dispenser pressurization assembly, comprising:
a piston; a spindle configured with said piston; and a collar configured with said spindle to provide linear travel of said piston upon rotation of said spindle.
- 45. A dispenser pressurization assembly as described in claim 44 wherein said collar comprises at least one groove element.
- 46. A dispenser pressurization assembly as described in claim 44, further comprising a housing wherein said piston is configured for linear travel within said housing.
- 47. A dispenser pressurization assembly as described in claim 44, further comprising an actuator wherein said piston is configured for linear travel upon a rotation of said actuator.
- 48 (cancelled).
- 49. A dispenser pressurization assembly as described in claim 46a, wherein said first direction is a first direction corresponding to said housing and said second direction is a second direction corresponding to said housing.
- 50. A dispenser pressurization assembly as described in claim 46, wherein said piston is configured to draw product from a product source into said housing corresponding to linear travel of said piston in a first direction.
- 51. A dispenser pressurization assembly as described in claims 46 or 50, further comprising a reservoir in fluid communication with said housing and wherein said piston is configured to direct product from said first assembly housing into said reservoir corresponding to linear travel of said piston in in a second direction.
- 52. A dispenser pressurization assembly as described in claim 51, wherein said reservoir is in fluid communication with an actuator assembly and wherein said pressurization assembly is configured to allow product to be drawn from said reservoir to said actuator assembly.
- 53 (cancelled).
- 54. A dispenser pressurization assembly as described in claim 44, wherein said collar is configured with a cap element of said dispenser.
- 55. A dispenser pressurization assembly as described in claim 54, wherein said collar is integral with said cap element.
- 56. A dispenser pressurization assembly as described in claim 44, wherein said spindle is integral with said piston.
- 57. A dispenser pressurization assembly as described in claim 45a, wherein said threads of said spindle and said at least one groove element of said collar define a first helix.
- 58. A dispenser pressurization assembly as described in claim 57, wherein said first helix defines a single helical configuration and wherein said piston is configured for linear travel corresponding to said single helical configuration.
- 59. A dispenser pressurization assembly as described in claim 57, further comprising an actuator assembly having a plurality of threads, wherein said first helix defines a double helical configuration with said plurality of threads of said actuator assembly defining a second helix.
- 60 (cancelled).
- 61. A dispenser pressurization assembly as described in claim 59, wherein said piston is configured for linear travel corresponding to said double helical configuration.
- 62. A dispenser pressurization assembly as described in claims 58 or 61, further comprising an actuator wherein said piston is configured for linear travel upon a rotation of said actuator.
- 63. A dispenser pressurization assembly as described in claim 62, wherein said piston is configured for linear travel upon a rotation of said spindle.
- 64. A dispenser pressurization assembly, comprising:
a piston; a spindle configured with said piston wherein rotation of said spindle corresponds to linear travel of said piston.
- 65. A method of pressurizing a dispenser, comprising the steps of:
rotating an actuator; rotating a spindle in response to said step of rotating said actuator; linearly traveling a piston in response to said step of rotating said spindle; and pressurizing said dispenser.
- 66. A method of pressurizing a dispenser as described in claim 65, wherein said step of linearly traveling said piston comprises linearly traveling said piston in a first direction and in a second direction.
- 67. A method of pressurizing a dispenser as described in claim 66, wherein said step of rotating said actuator comprises rotating said actuator in a rotation corresponding to said first direction.
- 68. A method of pressurizing a dispenser as described in claim 66, wherein said step of rotating said actuator comprises rotating said actuator in a counter-rotation corresponding to said second direction.
- 69. A method of pressurizing system a dispenser as described in claim 66, wherein said step of linearly traveling said piston in said first direction and in said second direction comprises linearly traveling said piston in a first direction corresponding to said housing and a second direction corresponding to said housing.
- 70. A method of pressurizing a dispenser as described in claim 66, further comprising the step of drawing product from a product source into said housing.
- 71. A method of pressurizing a dispenser as described in claim 70, wherein said step of drawing is provided by linear travel of said piston in said first direction.
- 72. A method of pressurizing a dispenser as described in claim 70, further comprising the step of directing product from said housing into a reservoir in fluid communication with said housing.
- 73. A method of pressurizing a dispenser as described in claim 72, wherein said step of directing is provided by linear travel of said piston in said second direction.
- 74. A method of pressurizing a dispenser as described in claim 72, further comprising the step of drawing product from said reservoir to an actuator assembly.
- 75. A method of pressurizing a dispenser as described in claim 74, further comprising the step of dispensing product from said actuator assembly.
- 76. A method of pressurizing a dispenser as described in claim 65, wherein said step of linearly traveling said piston comprises linearly traveling said piston corresponding to a single helical configuration.
- 77. A method of pressurizing a dispenser as described in claim 65, wherein said step of linearly traveling said piston comprises linearly traveling said piston corresponding to a double helical configuration.
- 78. A method of pressurizing dispenser, comprising the steps of:
rotating an actuator; rotating a spindle responsive to said step of rotating an actuator; linearly traveling a piston responsive to said step of rotating a spindle; and pressurizing said dispensing system.
- 79. A dispenser pressurization assembly as described in claim 45, wherein said spindle comprises a plurality of threads.
- 80. A dispenser pressurization assembly as described in claim 79, wherein said plurality of threads are configured to engage said at least one groove element.
- 81. A dispenser pressurization assembly as described in claim 80, wherein said plurality of threads are configured to engage said at least one groove element to provide linear travel of said piston upon rotation of said spindle.
- 82. A dispenser pressurization assembly as described in claim 46, wherein said piston is configured for linear travel in a first and a second direction within said housing.
- 83. A dispenser pressurization assembly as described in claim 47, wherein said piston is configured for linear travel upon a rotation of said actuator corresponding to rotation of said spindle.
- 84. A dispenser pressurization assembly as described in claim 83, wherein said piston is configured for linear travel in a first direction upon a rotation of said actuator corresponding to rotation of said spindle.
- 85. A dispenser pressurization assembly as described in claim 84, wherein said piston is configured for linear travel upon a counter-rotation of said actuator corresponding to rotation of said spindle.
- 86. A dispenser pressurization assembly as described in claim 85, wherein said piston is configured for linear travel in a second direction upon a counter-rotation of said actuator corresponding to rotation of said spindle.
- 87. A dispenser pressurization assembly as described in claim 82, wherein said piston is configured for linear travel upon a counter-rotation of said actuator.
- 88. A dispenser pressurization assembly as described in claim 87, wherein said piston is configured for linear travel in a first direction upon a rotation of said actuator corresponding to rotation of said spindle and configured for linear travel in a second direction upon counter-rotation of said actuator corresponding to rotation of said spindle.
- 89. A dispenser pressurization assembly as described in claim 44, further comprising at least one helical vent.
- 90. A dispenser pressurization assembly as described in claim 89, wherein said at least one helical vent comprises a first helix chamber and a second helix chamber.
- 91. A dispenser pressurization assembly as described in claim 89, further comprising a container, wherein said at least one helical vent provides pressure equilibrium of said container.
- 92. A dispenser pressurization assembly as described in claim 89 or 91, wherein said at least one helical vent provides pressure equilibrium corresponding to linear travel of said piston.
- 93. A dispenser pressurization assembly as described in claim 89 or 91, wherein said at least one helical vent provides pressure equilibrium corresponding to a rotation of said spindle.
- 94. A method of pressurizing a dispenser as described in claim 76, wherein said step of linearly traveling said piston comprises linearly traveling said piston corresponding to a single helical configuration corresponding to a helix defined by a plurality of threads of said spindle and at least one groove element.
- 95. A method of pressurizing a dispenser as described in claim 77, wherein said step of linearly traveling said piston comprises linearly traveling said piston corresponding to a double helical configuration corresponding to a helix defined by a plurality of threads of said spindle and a helix defined by a plurality of threads of an actuator assembly.
- 96. A method of pressurizing a dispenser as described in claim 65, further comprising the step of helically venting said dispenser.
- 97. A method of pressurizing a dispenser as described in claim 96, wherein said step of helically venting comprises helically venting through a first helix chamber.
- 98. A method of pressurizing a dispenser as described in claim 97, wherein said step of helically venting comprises helically venting through a second helix chamber.
- 99. A method of pressurizing a dispenser as described in claim 96, wherein said step of helically venting comprises providing pressure equilibrium to a container of said dispenser.
- 100. A method of pressurizing a dispenser as described in claims 96 or 99, wherein said step of helically venting comprises providing pressure equilibrium corresponding to said step of linearly traveling said piston.
- 101. A method of pressurizing a dispenser as described in claim 96 or 99, wherein said step of helically venting comprises providing pressure equilibrium corresponding to said step of rotating said spindle.
- 102. A method of pressurizing a dispenser, comprising the steps of:
rotationally actuating a piston pressurization assembly; and linear piston traveling said piston pressurization assembly corresponding to said step of rotationally actuating said piston pressurization assembly.
- 103. A mechanically pressurized dispenser, comprising:
a pressurization volume; and a rotationally actuated piston pressurization assembly configurable with said pressurization volume wherein a rotational actuation of said piston pressurization assembly corresponds to linear piston travel of said piston pressurization assembly.
- 104. A mechanically pressurized dispenser as described in claim 103, wherein said rotationally actuated piston pressurization assembly comprises:
a piston configured to pressurize said pressurization volume; and a spindle configured with said piston to provide linear travel of said piston.
- 105. A mechanically pressurized dispenser as described in claim 104, wherein said spindle is configured with said piston wherein rotation of said spindle corresponds to linear travel of said piston.
- 106. A mechanically pressurized dispenser as described in claim 104, wherein said spindle comprises a plurality of threads configured to engage said piston.
- 107. A mechanically pressurized dispenser as described in claim 104, wherein said spindle is integral with said piston.
- 108. A mechanically pressurized dispenser as described in claim 103, further comprising a housing defining said pressurization volume, wherein said linear piston travel of said piston pressurization assembly comprises linear piston travel within said housing.
- 109. A mechanically pressurized dispenser as described in claim 108, wherein said piston pressurization assembly is configured for linear travel in a first and second direction within said housing.
- 110. A mechanically pressurized dispenser as described in claim 103, further comprising an actuator wherein a rotational actuation of said actuator corresponds to linear piston travel of said piston pressurization assembly.
- 111. A mechanically pressurized dispenser as described in claim 110, wherein a rotational actuation of said actuator corresponds to linear piston travel of said piston pressurization assembly in a first direction.
- 112. A mechanically pressurized dispenser as described in claim 111, further comprising a housing defining said pressurization volume, wherein said first direction is a first direction corresponding to said housing.
- 113. A mechanically pressurized dispenser as described in claim 111, wherein a counter rotational actuation of said actuator corresponds to linear piston travel of said piston pressurization assembly in a second direction.
- 114. A mechanically pressurized dispenser as described in claim 113, further comprising a housing defining said pressurization volume, wherein said second direction is a second direction corresponding to said housing.
- 115. A mechanically pressurized dispenser as described in claim 108, wherein said piston pressurization assembly is configured to draw product from a product source into said housing corresponding to linear piston travel of said piston pressurization assembly in a first direction.
- 116. A mechanically pressurized dispenser as described in claims 108 or 115, further comprising a reservoir in fluid communication with said housing and wherein said piston pressurization assembly is configured to direct product from said housing into said reservoir corresponding to linear piston travel of said piston pressurization assembly in a second direction.
- 117. A mechanically pressurized dispenser as described in claim 116, further comprising a dispenser assembly, wherein said reservoir is in fluid communication with said dispenser assembly and wherein said piston pressurization assembly is configured to allow product to be drawn from said reservoir to said dispenser assembly.
- 118. A mechanically pressurized dispenser as described in claim 103, wherein said rotationally actuated piston pressurization assembly comprises a single helical configuration.
- 120. A mechanically pressurized dispenser as described in claim 118, wherein a rotational actuation of said piston pressurization assembly corresponds to linear piston travel of said piston pressurization assembly corresponding to said single helical configuration.
- 121. A mechanically pressurized dispenser as described in claim 118, wherein said rotationally actuated piston pressurization assembly comprises:
a piston configured to pressurize said pressurization volume; and a spindle configured with said piston.
- 122. A mechanically pressurized dispenser as described in claim 121, wherein said piston comprises at least one groove element and said spindle comprises a plurality of threads, wherein said groove elements and said plurality threads define a first helix.
- 123. A mechanically pressurized dispenser as described in claim 103, wherein said rotationally actuated piston pressurization assembly comprises a double helical configuration.
- 124. A mechanically pressurized dispenser as described in claim 123, wherein a rotational actuation of said piston pressurization assembly corresponds to linear piston travel of said piston pressurization assembly corresponding to said double helical configuration.
- 125. A mechanically pressurized dispenser as described in claim 123, wherein said rotationally actuated piston pressurization assembly comprises:
a piston configured to pressurize said pressurization volume; and a spindle configured with said piston.
- 126. A mechanically pressurized dispenser as described in claim 125, further comprising a first plurality of threads, and wherein said piston comprises at least one groove element and said spindle comprises a second plurality of threads, wherein said groove elements and said plurality threads define a first helix and wherein said first plurality of threads define a second helix.
- 127. A mechanically pressurized dispenser, comprising:
a piston; a spindle configured with said piston wherein rotation of said spindle corresponds to linear travel of said piston.
- 128. A mechanically pressurized dispenser as described in claim 127, wherein said spindle is integral with said piston.
- 129. A mechanically pressurized dispenser as described in claim 127, wherein said piston and said spindle comprise a single helical configuration, said spindle configured with said piston wherein rotation of said spindle corresponds to linear travel of said piston corresponding to said single helical configuration.
- 130. A mechanically pressurized dispenser as described in claim 127, further comprising a first plurality of threads, wherein said spindle comprises a second plurality of threads, and wherein said piston, said spindle, and said first plurality of threads comprise a double helical configuration, said spindle configured with said piston wherein rotation of said spindle corresponds to linear travel of said piston corresponding to said double helical configuration.
- 131. A mechanically pressurized dispenser as described in claim 127, further comprising at least one helical vent.
- 132. A mechanically pressurized dispenser as described in claim 127, wherein said at least one helical vent comprises a first helix chamber and a second helix chamber.
- 133. A mechanically pressurized dispenser as described in claim 127, further comprising a container, wherein said at least one helical vent provides pressure equilibrium of said container.
- 134. A mechanically pressurized dispenser as described in claims 127 or 133, wherein said at least one helical vent provides pressure equilibrium corresponding to linear travel of said piston.
- 135. A mechanically pressurized dispenser as described in claims 127 or 133, wherein said at least one helical vent provides pressure equilibrium corresponding to a rotation of said spindle.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Non-Provisional application Ser. No. 09/933,574, filed Aug. 20, 2001, entitled “NON—CHEMICAL AEROSOL DISPENSER”, hereby incorporated by reference.
PCT Information
| Filing Document |
Filing Date |
Country |
Kind |
| PCT/US02/26547 |
8/20/2002 |
WO |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
09933574 |
Aug 2001 |
US |
| Child |
10487298 |
Feb 2004 |
US |