COVER AND MOTOR MOUNT FOR FOOD BLENDER SOUND ENCLOSURE
20240285128 ยท 2024-08-29
Assignee
Inventors
Cpc classification
A47J43/0772
HUMAN NECESSITIES
International classification
Abstract
A food processing system includes a processing container having a motor-driven processing blade positioned at a bottom of the processing container, a lid receivable atop the processing container, a motor-driven dasher assembly connected to the lid and being configured to scrape interior sidewalls of the processing container, the motor-driven dasher assembly having a hub, and a motor having an output shaft. The output shaft is moveable between a raised position where the output shaft is vertically spaced from the hub of the motor-driven dasher assembly, and a lowered position where the output shaft is engaged with the hub.
Claims
1. A food processing system, comprising: a processing container having a motor-driven processing blade positioned at a bottom of the processing container; a lid receivable atop the processing container; a motor-driven dasher assembly connected to the lid and being configured to scrape interior sidewalls of the processing container, the motor-driven dasher assembly having a hub; and a motor having an output shaft, at least the output shaft being moveable between a raised position where the output shaft is vertically spaced from the hub of the motor-driven dasher assembly, and a lowered position where the output shaft is engaged with the hub.
2. The food processing system of claim 1, wherein: the output shaft is moveable in a vertical direction along a rotational axis of the motor-driven dasher assembly.
3. The food processing system of claim 1, further comprising: a base configured to support the processing container; and a support member extending from the base; wherein the motor is operatively connected to the support member for linear movement along the support member.
4. The food processing system of claim 1, further comprising: a sound enclosure, the sound enclosure being moveable between a closed position and an open position; wherein movement of the sound enclosure from the closed position to the open position causes a corresponding movement of the output shaft from the lowered position to the raised position.
5. The food processing system of claim 4, wherein: movement of the sound enclosure from the open position to the closed position causes a corresponding movement of the output shaft from the raised position to the lowered position.
6. The food processing system of claim 4, wherein: the sound enclosure includes a rear cover member and a front cover member pivotally connected to the rear cover member at a pivot axis.
7. The food processing system of claim 6, further comprising: at least one lift driver connected to the front cover member and extending inwardly therefrom, the at least one lift driver and the front cover member being configured for rotation about the pivot axis; wherein the lift driver includes a pin offset from the pivot axis, the pin being received in a corresponding slot in a bracket that supports the motor.
8. The food processing device of claim 7, wherein: the pin is a roller bearing.
9. The food processing system of claim 7, wherein: when the front cover member is pivoted about the pivot axis to move the sound enclosure to the open position, the pin revolves around the pivot axis and exerts an upward biasing force on the bracket which effects a corresponding upward movement of the motor to the raised position.
10. The food processing system of claim 9, further comprising: a base configured to support the processing container; and a support member extending from the base; wherein the motor is operatively connected to the support member for linear movement along the support member.
11. The food processing system of claim 1, wherein: the output shaft includes a taper configured to facilitate engagement of the output shaft with the hub when the motor is moved to the lowered position.
12. The food processing system of claim 4, wherein: the motor is configured to rotate the dasher assembly automatically when the sound enclosure is in the closed position.
13. A method for food processing, comprising the steps of: coupling a dasher assembly to a processing container such that a scraper blade of the dasher assembly is disposed within the processing container; positioning the processing container on a base of a food processor so as to engage a blade hub of the processing container with a rotatable output shaft of a motor housed in the base; lowering a dasher motor to drivingly connect an output shaft of the dasher motor with a drive hub of the dasher assembly; and actuating the dasher motor to rotate the scraper blade within the processing container.
14. The method according to claim 13, wherein: the step of lowering the dasher motor is carried out automatically by closing a front cover member of a sound enclosure to enclose the processing container.
15. The method according to claim 14, wherein: the step of actuating the dasher motor to rotate the scraper blade is carried out automatically by a control unit upon closing the front cover member.
16. The method according to claim 15, further comprising the step of: opening the front cover member to access the processing container; wherein opening the front cover member effects raising of the dasher motor and decoupling of the output shaft of the dasher motor from the drive hub of the dasher assembly.
17. A food processing system, comprising: a base having a motor; a processing container having a motor-driven processing blade positioned at a bottom of the processing container and engageable with an output shaft of the motor in the base; a lid receivable atop the processing container; a dasher assembly connected to the lid and having at least one scraper blade disposed in the processing container and being configured to scrape interior sidewalls of the processing container; and a dasher motor positioned above the processing container, the dasher motor having an output shaft that is selectively engageable with the dasher assembly, the dasher motor being configured to rotate the at least one scraper blade upon actuation of the dasher motor; wherein the output shaft of the dasher motor is moveable between a raised position where the output shaft is vertically spaced from the dasher assembly, and a lowered position where the output shaft is engaged with the dasher assembly.
18. The food processing system of claim 17, further comprising: a support member extending from the base; wherein the dasher motor is operatively connected to the support member for linear movement along the support member.
19. The food processing system of claim 18, further comprising: a sound enclosure, the sound enclosure being moveable between a closed position and an open position; wherein movement of the sound enclosure from the closed position to the open position causes a corresponding movement of the output shaft from the lowered position to the raised position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The present invention will be better understood from reading the following description of non-limiting embodiments, with reference to the attached drawings, wherein below:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0032] With reference to
[0033] Base 12 includes a control interface 24 on one of its surfaces allowing for user control of processing operations. In particular, the control interface 24 can be utilized to turn on and off the food processing device 10, to adjust the speed of rotation of the motor, as well as control other operations of the food processing device 10 via a controller (not shown) contained within the base 12. Base 12 also includes a raised pedestal 26 on a top surface thereof, which is configured to be received in a lower portion of the processing container 16 when the processing container is placed atop the base and engaged with the output shaft of the motor. Pedestal 26 may include one or more pads which, when received by the base portion of the container 16, prevent the container 16 from rotating when the motor within base 12 is actuated. In addition, pedestal 26 also receives the splined end of the rotating motor shaft therethrough.
[0034] As best shown in
[0035] The front enclosure member 34 is pivotally connected to the rear enclosure member 32 at a pair of opposed pivot points 42, as discussed in more detail, below. The front enclosure member 34 also includes a handle 46 located adjacent to a bottom edge of the front enclosure member 34 for rotating the front enclosure member 34 between a closed position, shown in
[0036] It is contemplated that the enclosure 30 may be made of any material known in the art, however, it is preferred that the rear enclosure member 32 and front enclosure member 34 are may of a transparent or translucent material such as, for example, thermoplastic or polycarbonate, so that the container 16 can be viewed when positioned on the base 12 with the front enclosure member 34 in the closed position.
[0037] With further references
[0038] As indicated above, and with reference to
[0039] In an embodiment, the motor 108 is moveable between a raised position (shown in
[0040] To effect movement of the motor between the raised and lowered positions, the bracket 116 is slidably connected to the support member 114 and is moveable vertically along the support member 114 (e.g., along slots 124 in the support member 114). In an embodiment, the motor housing 112 (via the bracket 116) is operatively connected to the sound enclosure 30 in such a manner that rotating the front enclosure member 34 of the sound enclosure 30 to the closed position effects movement of the motor housing 112 to the lowered position where the output shaft 110 engages the hub 122 of the dasher 104, and moving the front enclosure member 34 of the sound enclosure 30 to the open position effects movement of the motor housing 112 to the raised position where the output shaft 110 is out of engagement with the hub 122 of the dasher 104 so that the processing container 16 can be removed from the enclosure 30 and the base 12 of the food processing device 10. In particular, the food processing device 10 is configured so that the dasher motor 108 moves up and down (and out of or into engagement with the drive hub 122 of the dasher 104) in response to opening and closing the sound enclosure 30.
[0041] To enable this functionality, the opposed arms 118, 120 of the bracket 116 each include a mounting bracket 126 connected thereto. The mounting brackets 126 each have an oblong slot 128, extending horizontally and extending generally perpendicularly to the vertical support member 114 (and parallel to arms 118, 120). While
[0042] As best shown in
[0043] With reference to
[0044] Turning now to
[0045] Similarly, rotation of the front enclosure member 34 to the closed position rotates the lift drivers 132 in the opposite direction, causing the pins 130 to move in the opposite circumferential direction whereby they exert a downward force on the lower surface of the slots 128 and move rearwardly within the slots 128. This movement and force causes the motor 108 and motor housing 112 to move downwardly along the vertical support member 114 to the position shown in
[0046] In an embodiment, the distal end of the output shaft 110 and/or the hub 122 may be configured with one or more self-aligning features to facilitate smooth and reliable connection between the output shaft 110 and the hub 122 when the motor 108 is in the lowered position. For example, in an embodiment, the distal end of the output shaft 110 may have a taper, as shown in
[0047] Moreover, it is contemplated that the motor 108 of the dasher assembly 100 may be operable using control panel 24 (via wired or wireless communication between the control panel 24 and the motor 108). In other embodiments, the food processing device 10 may be configured such that the motor 108 is automatically activated when the output shaft 110 is engaged with the hub 122 of the dasher 104. For example, the food processing device 10 may have a sensor for detecting when the front enclosure member 34 is in the closed position, as disclosed in U.S. Patent Application Publication No. 2022/0142410. Alternatively, the vertical support member 114 may have a sensor for detecting the position of the motor housing 112 and/or mounting bracket 116. Still further, while it is disclosed that the support member 114 is connected to base 12, in an embodiment, the support member 114 may be connected to the rear enclosure member 32 of the sound enclosure 30 (such that it may be removable from the base 12 along with the sound enclosure 30).
[0048] The present invention thus provides a means for easily, and automatically, engaging a drive hub 122 of a top-mounted dasher assembly 104 with the output shaft 110 of the dasher motor 108 when the sound enclosure 30 of the food processing system is moved to the closed position, and for easily, and automatically, disengaging output shaft 110 from the dasher drive hub 122 when the sound enclosure 30 of the food processing system is moved to the open position. Accordingly, engagement, and in some embodiment, even action actuation, of the dasher assembly can occur automatically upon moving the front enclosure member 34 to the closed position. Moreover, by automatically raising the dasher motor 108 and output shaft 110 above and out of engagement with the processing container 16 when the front enclosure member 34 is opened, the processing container 16 can be removed from the base 12 without any additional user operations or manipulation of the motor housing 112. As a result, and ease of use and level of user convenience heretofore not seen in the art may be realized.
[0049] While the present invention discloses a moveable motor housing that can be raised lowered so as bring the output shaft of the dasher motor into engagement with a drive hub 1 of a dasher assembly, the present invention is not intended to be so limited in this regard. In particular, it is contemplated that the motor housing 112, motor 108 and output shaft 110 may be in fixed position, and the processing container 16 may be raised or lifted to bring the drive hub 122 into engagement with the output shaft 110 of the dasher motor 108.
[0050] Although this invention has been shown and described with respect to the detailed embodiments thereof, it will be understood by those of skill in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiments disclosed in the above detailed description, but that the invention will include all embodiments falling within the scope of this disclosure.