FLEXIBLE IMPELLER PUMP FOR FLOWABLE FOOD PRODUCT
A flexible impeller pump designed for use in dispensing a flowable food product is disclosed. The flexible impeller pump includes a cover, impeller assembly and a pump body that are assembled to create the pump without other separate components. The components can be permanently connected to each other to create a disposable pump or can be disassembled for cleaning and reuse. The impeller assembly includes an impeller shaft and a flexible impeller molded over the impeller shaft to prevent separation. The impeller assembly is received within the pump body and the cover is secured to the pump body. The cover includes a seal that is molded over the pump body to prevent separation of the seal from the cover. The impeller shaft extends through the pump body and is coupled to a drive shaft of an electric motor that is operable to drive the impeller pump.
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The present application is based on and claims priority to U.S. Provisional Patent Application Ser. No. 63/112,423 filed on Nov. 11, 2020, the disclosure of which is incorporated herein by reference.
BACKGROUNDThe present disclosure generally relates to a flexible impeller pump for use in pumping flowable food products, such as condiments, from a storage container or bag. More specifically, the present disclosure relates to a flexible impeller pump that includes three separate components that can be easily disassembled for cleaning and reassembled for use or can be disposed of after use.
Flowable food products can include a wide variety of products, such as condiments (i.e. ketchup, mustard, mayonnaise, tartar sauce, etc.), syrups, dressings, cheeses, fudge, caramel or other similar food products that can flow and thus be pumped. Flowable food products can include a wide range of viscosities, non-Newtonian properties, include small particulates and can be dispensed in a wide range of temperatures from cold to hot. Flowable food products can also be heated food products such as liquid cheese or chilled food products.
One of the design objectives of the present disclosure was to develop a pump that was flexible enough in its inherent design to allow for either cleaning and reuse or disposal after use with minimal redesign of the pump. The pump of the present disclosure is designed to have a minimum number of parts to make it as simple as possible for cleaning. Such a design also lends itself to low-cost production if automation and material reduction methods are employed. Depending on material selections to reduce cost (and possibly product life), the pump of the present disclosure can be used as a non-cleanable disposable solution should that be desired for certain applications and food service locations. In such an exemplary embodiment for a disposable pump, it would be likely to mechanically secure the cover to the pump body, such as using ultrasonic welding, making it a permanent assembly.
The present disclosure utilizes a flexible impeller pump that is formed from a reduced number of components such that the pump can be easily assembled and disassembled for cleaning. Further, the components of the flexible impeller pump are molded in a way to prevent separation during assembly and disassembly.
SUMMARYThe present disclosure relates to a flexible impeller pump for use with a flowable food product dispenser. More specifically, the present disclosure is directed to a flexible impeller pump that can be used with a variety of food product dispensers and can be easily disassembled, cleaned and reassembled.
The flexible impeller pump includes three primary components: a pump body, an impeller assembly and a cover. The three components are assembled together and the entire pump assembly can be installed in a food product dispenser and driven by an electric motor to draw a flowable food product through the pump for dispensing as needed.
The pump body includes an inlet port and an outlet port extending from a main body portion. The inlet and outlet ports include barbs for connection to a flexible line for receiving food products or dispensing the food product through an outlet conduit. The barbs on the inlet and outlet ports can also be used to connect the pump body to one of several different fittings. The pump body is molded from a plastic material that can be cleaned and reused.
The impeller assembly of the flexible impeller pump includes an impeller shaft and an over molded flexible impeller portion having a series of impeller vanes. The impeller vanes contact the inner wall of the main body to create suction to draw the flowable food products through the pump body.
The cover of the pump assembly includes a cover member and a seal over molded into the cover member. The seal cannot separate from the cover member such that the seal remains a part of the cover member. The cover is removably attached to the body in an embodiment in which the pump can be cleaned. In a disposable embodiment, the cover would be mechanically secured to the pump body. Such a mechanical connection could be carried out by ultrasonic welding in one exemplary embodiment, although other mechanical connections, such as an FDA approved adhesive, are contemplated.
The pump assembly is designed to be used with a plurality of different fittings. The fittings allow the pump assembly to be used with different supplies of food products, such as food packaging from different food manufacturers. One example of a common food package is a 1.5 gallon Cryovac Pouch with a fitment. In another possible use, the fitment would allow for a direct supply of food product through a tube or line. Another type of fitting can include a valve to prevent dripping of the food product during disconnection of the supply from the pump assembly.
The flexible pump assembly of the present disclosure allows for use with a wide range of dispensers and over a wide range of operating speeds. The elastomeric properties of the impeller vanes allow for a wider variation in tolerances, which allows for the use of molding of the components.
Various other features, objects and advantages of the invention will be made apparent from the following description taken together with the drawings.
The drawings illustrate the best mode presently contemplated of carrying out the disclosure. In the drawings:
In the embodiment shown in
The operation of the drive motor 6 is controlled by a controller 7 positioned within the outer housing 8 of the food product dispenser. The controller 7 is operable to control the direction of operation of the drive motor 6, the duration of operation, the speed of operation and any other parameters needed to dispense the desired quantity of food product. In the embodiment shown, the controller 7 is connected to a user input device 9 that allows a user to initiate and control the dispensing of the food product. It is contemplated that the input device 9 could be various different devices. In one exemplary embodiment, the input device 9 can be a touch-free proximity sensor that can detect the presence of a hand of the user. Upon detection, the user input device provides a signal to the controller 7, which can then control the operation of the pump 10. The user input device 9 could also be a touch pad, switch, or any other device that allows a user to indicate that the food product need to be dispensed. The use of a touch-free sensor allows food product to be dispensed without physical contact between the user and any portion of the outer housing 8.
In the embodiment shown, the port 12 is designated as the inlet port while the port 14 is designated as the outlet port. The impeller pump 10 includes a pump body 16 that is sized to receive an internal impeller assembly and is enclosed by a cover 18. The impeller pump 10 can be constructed in an embodiment in which the cover 18 can be removed for cleaning or in another embodiment in which the cover 18 is mechanically secured to the pump body 16, such as by ultrasonic welding or adhesives, and the entire pump would be disposable after use.
The impeller is designed to rotate within the pump body 16 to draw food product into the pump body 16 through the inlet port 12 and push the food product out through the outlet port 14.
In one exemplary embodiment, the impeller assembly 20 is formed from an FDA approved thermoplastic vulcanizate (TPV) that is formed in an over molding process that creates a chemical bond between the vanes 26 of the impeller and an internal impeller shaft. The two components that form the impeller assembly 20 are chemically and mechanically bonded together to create a single component that will not separate during use and cleaning.
The cover 18 is also formed from an FDA approved plastic with a seal member that is over molded or two-shot molded in place with the main body of the cover 18. Since the seal is permanently attached to the cover, there is no possibility of losing the seal or having the seal being misplaced during cleaning. The seal interacts with the pump body 16 during use to prevent leakage as the rotating impeller assembly 20 moves food product through the pump 10.
As illustrated in
As further illustrated in
As can be seen in
The outer edge 45 of the cover member includes a series of locking tabs 47 that are spaced equally around the outer circumference of the cover member 18. The outer surface 48 includes a protruding engagement fin 49 that extends from the otherwise flat face surface 51. The engagement fin 49 allows a point of contact for a user to rotate the entire cover member 18 in either a counterclockwise locking direction or a clockwise unlocking direction as show by the indicators 53 molded into the face surface 51.
When the cover member 18 is installed onto the pump body 16, the locking tabs 47 are received beneath locking projections 55 formed along the inner wall of the pump body 16, as best understood in
As can be understood in
The associated geometry in all of the fittings is designed to be fully encapsulating to reduce creep and to enhance strength. The compression on the conical nose 69 of the pump body is controlled by accurately locating the surface in the shutoff.
The shutoff fitting 72 is designed such that food product lines can be connected and disconnected from the pump 10 without food product leaking. In the embodiment shown in
As can be understood by the above description, the flexible impeller pump of the present disclosure creates a flexible impeller that is inherently easier to seal due to the elastomeric properties of the impeller. By comparison to other types of pumps, such as a gear pump or a vane pump, the flexible impeller pump of the present disclosure creates sealing that can be accomplished with interference fits that are within the process capabilities of injection molding. Further, the injection molding process can bond the flexible impeller to the rigid drive shaft to accomplish a reduction in the number of separate parts to be handled during cleaning. The flexible impeller pump of the present disclosure can operate over a wide variety of speeds and, due to the inherent elastomeric properties, generally exhibits less pump slip at low speeds compared to gear or vane pumps.
This written description uses examples to disclose the invention, including the best mode, and also to enable any person skilled in the art to make and use the invention. The patentable scope of the invention is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal languages of the claims.
Claims
1. A pump operable to pump a flowable food product, comprising:
- a pump body including an inlet port, an outlet port and an open impeller chamber;
- an impeller assembly configured to be received within the open impeller chamber, the impeller assembly including an impeller shaft and an impeller portion having a plurality of vanes; and
- a cover member having a body and a seal member, wherein the cover member is configured to be received and retained on the pump body such that the seal member is positioned between the cover member and the pump body.
2. The pump of claim 1 wherein the impeller portion is molded over an interface section of the impeller shaft.
3. The pump of claim 2 wherein the interface section includes a plurality of splines that frictionally engage the impeller portion.
4. The pump of claim 1 wherein the impeller shaft is formed from molded plastic and the impeller portion is formed from an elastomeric material.
5. The pump of claim 1 wherein the cover member is mechanically secured to the pump body to retain the impeller assembly within the impeller chamber.
6. The pump of claim 5 wherein the cover member is ultrasonically welded to the pump body.
7. The pump of claim 1 wherein the cover member includes a body having an annular receiving slot on an inner surface of the body, wherein the seal member is received and retained within the annular receiving slot.
8. The pump of claim 7 wherein the seal member is molded within the annular receiving slot.
9. The pump of claim 1 wherein the impeller shaft includes a drive shaft portion that extends from the pump body for engagement with a drive motor
10. The pump of claim 9 wherein the impeller portion includes a rear seal that surrounds the drive shaft portion and contacts the pump body when the impeller is received in the pump body.
11. A flowable food product dispenser for dispensing a flowable food product from a supply of food product, comprising:
- a pump operable to pump the supply of flowable food product out of the dispenser; and
- a drive motor coupled to the pump and operable to rotate the pump,
- wherein the pump comprises: a pump body including an inlet port, an outlet port and an open impeller chamber; an impeller assembly configured to be received within the open impeller chamber, the impeller assembly including an impeller shaft and an impeller portion having a plurality of vanes; and a cover member having a body and a seal member, wherein the cover member is configured to be received and retained on the pump body such that the seal member is positioned between the cover member and the pump body.
12. The food product dispenser of claim 11 wherein the impeller portion is molded over an interface section of the impeller shaft.
13. The food product dispenser of claim 12 wherein the interface section includes a plurality of splines that frictionally engage the impeller portion.
14. The food product dispenser of claim 11 wherein the impeller shaft is formed from molded plastic and the impeller portion is formed from an elastomeric material.
15. The food product dispenser of claim 11 wherein the cover member is mechanically secured to the pump body to retain the impeller assembly within the impeller chamber.
16. The food product dispenser of claim 11 wherein the cover member includes a body having an annular receiving slot on an inner surface of the body, wherein the seal member is received and retained within the annular receiving slot.
17. The food product dispenser claim 16 wherein the seal member is molded within the annular receiving slot.
18. The food product dispenser of claim 11 wherein the impeller shaft includes a drive shaft portion that extends from the pump body for engagement with a drive motor
19. The food product dispenser pump of claim 18 wherein the impeller portion includes a rear seal that surrounds the drive shaft portion and contacts the pump body when the impeller is received in the pump body.
20. A pump for use in a food product dispenser to pump a flowable food product, comprising:
- a pump body including an inlet port, an outlet port and an open impeller chamber;
- an impeller assembly configured to be received within the open impeller chamber, the impeller assembly including an impeller shaft and an impeller portion having a plurality of vanes, wherein the impeller portion is mold over an interface section of the impeller shaft; and
- a cover member having a body and a seal member molded into the body, wherein the cover member is configured to be received and retained on the pump body such that the seal member is positioned between the cover member and the pump body.
Type: Application
Filed: May 17, 2021
Publication Date: May 12, 2022
Applicant: Server Products, Inc. (Richfield, WI)
Inventor: Edward Raleigh (Lodi, WI)
Application Number: 17/321,900