The present invention relates generally to a pump employed in a beverage system including an adapter plate with an alignment feature that engages a corresponding alignment feature on a pump head to maintain proper alignment between the adapter plate and the pump head.
Beverages systems are employed to make beverages. A flavored concentrate and water are mixed to form the beverage. Typically, the flavored concentrate is stored in a concentrate container. A piston of a pump nutates within a pump head to draw a set amount of the flavored concentrate into a mixing chamber. Water is mixed with the flavored concentrate in the mixing chamber to form the beverage with a desired concentration.
The beverage system includes a locking ring that secures an adapter plate to the pump head. The adapter plates aligns the piston and a housing of a motor. The adapter plate includes a piston opening and a water opening. A drawback to prior adapter plates is that if the adapter plates moves during use, the adapter plate can be misaligned with the pump head. Movement or loosening of the adapter plate can cause the beverage system to leak.
Hence, there is a need in the art for a pump employed in a beverage system including an adapter plate with an alignment feature that engages a corresponding alignment feature on a pump head to maintain proper alignment between the adapter plate and the pump head and that overcomes the drawbacks and shortcomings of the prior art.
A beverage system makes beverages, soft drinks, milkshakes, dairy products, other frozen desserts or any mixed product. A pump draws a set amount of a flavored concentrate into a mixing chamber. The flavored concentrate and water combine in the mixing chamber to form the beverage.
A piston of a pump nutates within a pump head to draw the set amount of the flavored concentrate into the mixing chamber. The pump includes an adapter plate that aligns the piston and a housing of a motor.
The pump head includes a piston opening that receives a portion of the piston and a water port that defines a water flow path. The pump head includes a protrusion that extends from the piston port and another protrusion that extends from the water opening.
The adapter plate includes a piston opening that receives a portion of the piston and a water opening that receives the water port of the pump head. The adapter plate includes a depression that extends from the piston opening and another depression that extends from the water opening.
When the adapter plate is installed in the pump, the piston opening of the adapter plate and the piston opening of the pump head align, and the water port of the pump head is received in the water opening of the adapter plate. The protrusions of the pump head are received in the depressions of the adapter plate, aligning the pump head and the adapter plate. A locking ring attaches the adapter plate to the pump head, creating a geometric lock between the pump head and the adapter plate.
These and other features of the present invention will be best understood from the following specification and drawings.
The various features and advantages of the invention will become apparent to those skilled in the art from the following detailed description of the currently preferred embodiment. The drawings that accompany the detailed description can be briefly described as follows:
A pump 26 draws a set amount of the flavored concentrate 24 from the concentrate container 22 and into a mixing chamber 28. The flavored concentrate 24 from the concentrate container 22 flows along a conduit 30 and into a concentrate inlet 32 of the pump 26. The pump 26 controls the flow and the amount of the flavored concentrate 24 that is dispensed by the pump 26 through a concentrate outlet 34 and into the mixing chamber 28. Chilled water from a water source 36 cooled by a refrigeration system (not shown) flows along a conduit 38 and enters the pump 26 through a water port 40. In one example, the conduit 38 is made of copper. The pump 26 controls the flow of water through a water outlet 42 and into the mixing chamber 28. All the conduits 30 and 38 to the inlets 32 and 40, respectively, of the mixing chamber 28 are insulated.
The flavored concentrate 24 and the water are thoroughly mixed in the mixing chamber 28 to create the beverage having a desired concentration. The mixing chamber 28 is insulated to keep the mixed beverage cold. In one example, the concentration of water to flavored concentrate 24 is approximately 10:1 through 2:1. The beverage is then dispensed from the mixing chamber 28 into a cup 44 for serving.
The pump 26 includes a motor 52 that drives a motor shaft 54. The motor 52 moves the piston 48 to draw the flavored concentrate 24 into the cavity through the concentrate inlet 32 and to release the flavored concentrate 24 from the cavity through the concentrate outlet 34. The concentrate outlet 34 functions as a top portion of the mixing chamber 28. The motor shaft 54 includes a hub assembly 56. The hub assembly 56 is a plastic molded part that holds brass components that allow for free rotation within the degrees of the pump 26 operation. As the motor shaft 54 rotates, the hub assembly 56 also rotates. Engagement of the hub assembly 56 with the piston 48 causes the piston 48 to both move linearly and to rotate. That is, the piston 48 nutates.
As shown in
In one example, the pump head 46 includes a protrusion 118 that extends from the piston opening 114 and towards the circumferential flange 94 and another protrusion 120 that extends from the water port 116 and towards the circumferential flange 94. In one example, the protrusions 118 and 120 have a substantially rectangular cross-section The protrusions 118 and 120 are aligned in a straight line.
A piston seal 60 provides a seal between the piston 48 and the pump head 46 and provides a wiping action as the piston 48 moves in the pump head 46. The piston seal 60 is made from an elastomeric material and overmolded onto a steel backing ring. A backing seal 66 provides a barrier between a wetted portion of the pump head 46 and the water port 40 of the housing 62 to prevent accidental spillage or splashing of the flavored concentrate 24 or a cleaning solution from entering the hub assembly 56.
As shown in
In one example, the adapter plate 64 includes a depression 110 that extends from the piston opening 67 and towards the circumferential flange 100 and another depression 113 that extends from the water opening 68 and towards the circumferential flange 100. In one example, the depressions 110 and 113 have a substantially rectangular cross-section. The depressions 110 and 113 are aligned in a straight line.
When the adapter plate 64 is installed in the pump 26, the piston opening 67 of the adapter plate 64 and the piston opening 114 of the pump head 46 align, and the water port 116 of the pump head 46 is received in the water opening 68 of the adapter plate 64. The protrusion 118 of the pump head 46 is received in the depression 110 of the adapter plate 64, and the protrusion 120 of the pump head 46 is received in the depression 113 of the adapter plate 64. The depressions 110 and 113 and the protrusions 118 and 120 provide a positive locking and locating feature that ensure proper alignment, engagement and installation of the adapter plate 64 relative to the pump head 46 to ensure proper operation and accuracy of the pump 26. The depressions 110 and 113 and the protrusions 118 and 120 can also be integrated into the pump head 46 and the adapter plate 64. Although the pump head 46 is illustrated and described as including the protrusions and the adapter plate 64 is illustrated and described as including the depressions, it is to be understood that the pump head 46 can include depressions and the adapter plate 64 can include the protrusions.
As shown in
The locking ring 72 and the pump head 46 are provided as a subassembly. The locking ring 72 is forced onto the pump head 46 such that the circumferential flange 94 of the pump head 46 is received in the gap 92 of the locking ring 72. The locking ring 72 freely rotates relative to the pump head 46.
When the components are installed, the circumferential flange 100 of the adapter plate 64 is positioned to be received in the gap 92 of the locking ring 72. That is, both the circumferential flange 100 of the adapter plate 64 and the circumferential flange 94 of the pump head 46 are received in the gap 92. The first inward tabs 76 of the locking ring 72 engage the adapter plate 64, and the second inward tabs 80 of the locking ring 72 engage the pump head 46. The locking ring 72 is rotated relative to the pump head 46 in a first direction until each of the first inward tabs 76 engage one of the raised upper parts 106 of the adapter plate 64 to wedge the locking ring 72 in the locked position and to attach the adapter plate 64 to the pump head 46, as shown in
Although a beverage system 20 is illustrated and described, it is to be understood that the pump 26 of the present invention can be used in other systems. For example, the pump 26 can be used in a soft drink system. In this example, the pump 26 pumps flavored syrup which is mixed with carbonated water to make a soft drink. Alternately, the pump 26 pumps flavored syrup which is mixed with a frozen substance to create a frozen dessert.
The foregoing description is only exemplary of the principles of the invention. Many modifications and variations are possible in light of the above teachings. It is, therefore, to be understood that within the scope of the appended claims, the invention may be practiced otherwise than using the example embodiments which have been specifically described. For that reason the following claims should be studied to determine the true scope and content of this invention.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US2005/045127 | 12/12/2005 | WO | 00 | 5/20/2008 |