APPARATUS FOR PROVIDING A FOOD GRINDER SYSTEM USING ALTERNATIVE POWER SOURCES MOUNTED ON A SINGLE BASE
20220008929 · 2022-01-13
Inventors
Cpc classification
B02C2002/002
PERFORMING OPERATIONS; TRANSPORTING
B02C18/26
PERFORMING OPERATIONS; TRANSPORTING
B02C2201/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B02C1/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A food grinding system with alternative power sources, including a food grinder, an electrical power source, and a manual power source mounted to or otherwise carried by a common base.
Claims
1. An apparatus for a food grinding system having alternative power sources, comprising: a food grinder mounted on a base; a first power source being disposed on the base in a manner to connect to a drive shaft of the food grinder to power the food grinder; and a second power source being disposed on the base in a manner to alternately connect to the drive shaft of the food grinder to power the food grinder.
2. The apparatus of claim 1, wherein the first power source is an electric motor.
3. The apparatus of claim 1, wherein the second power source is a manual power source.
4. The apparatus of claim 1, wherein the first power source is connected to the food grinder by sprockets and a chain.
5. The apparatus of claim 1, wherein the second power source is connected to the food grinder by sprockets and a chain.
6. The apparatus of claim 1, wherein a position of the food grinder on the base is adjustable to change a distance between the food grinder and the electric motor.
7. The apparatus of claim 1, wherein a position of the food grinder on the base is adjustable to change a distance between the food grinder and the manual power source.
8. The apparatus of claim 1, wherein the manual power source comprises one or more pedals connected to the manual sprocket wheel.
9. The apparatus of claim 1, wherein the grinder has a grinder pulley wheel on its drive shaft, and the electric motor has a motor pulley wheel on an output shaft of the electric motor, to accommodate a belt connected between the grinder pulley wheel and the motor pulley wheel.
10. The apparatus of claim 1, wherein the grinder has a grinder pulley wheel on its drive shaft, and the manual power source has a manual pulley wheel on the output shaft of the manual power source to accommodate a belt connected between the grinder pulley wheel and the manual pulley wheel.
11. A food grinding system with alternative power sources, comprising: a food grinder mounted on a common base, the food grinder having a grinder drive shaft; an electrically operated power source being disposed on the common base in a manner to connect by chain or belt to the grinder drive shaft of the food grinder to provide power to the food grinder; and a manually operated power source being disposed on the common base in a manner to alternately connect by chain or belt to the grinder drive shaft of the food grinder to provide power to the food grinder.
12. The apparatus of claim 11, wherein a chain or belt guard is positioned to protect against user contact with the chain or belt.
13. The apparatus of claim 11, wherein the electrically operated power source is an electric motor having a motor drive shaft.
14. The apparatus of claim 13, wherein the electric motor has a motor sprocket wheel mounted on the motor drive shaft, and the food grinder has a grinder sprocket wheel mounted on the grinder drive shaft.
15. The apparatus of claim 14, wherein the motor sprocket wheel is connected to the grinder sprocket wheel by a chain including a plurality of links and forming a closed loop to provide power to the food grinder.
16. The apparatus of claim 13 wherein the manually operated power source comprises a manually operated pedal system including a drive shaft.
17. The apparatus of claim 16, wherein the pedal system includes a drive sprocket wheel coupled to the drive shaft and the food grinder has a grinder sprocket wheel coupled to grinder drive shaft.
18. The apparatus of claim 17, wherein the drive sprocket wheel the pedal system is connected to the grinder sprocket wheel by a chain.
19. A food grinding system having alternative power sources, comprising: a food grinder mounted on a base; an electric motor disposed on the base, the motor having a motor sprocket wheel being adapted to selectively connect to a drive shaft sprocket wheel on the food grinder by a multiple-linked chain to provide power to the food grinder; and a manual rotary system disposed on the base, the manual system having a manually operated sprocket wheel being adapted to selectively connect to the draft shaft sprocket wheel on the food grinder by a multiple-link chain to provide power to the food grinder when the electric motor is not connected to the food grinder.
20. The food grinding system of claim 19, wherein the manual rotary system includes pedals and cranks.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In the drawings:
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[0025] In the following description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the disclosed apparatuses, systems, and methods. It will be apparent to one of ordinary skill in the art that the disclosed embodiments may be practiced without these specific details.
DETAILED DESCRIPTION
[0026] Reference in the specification to “an example” or similar language means that a particular feature, structure, or characteristic described in connection with the example is included in at least that one example, but not necessarily in other examples.
[0027] The following description provides examples or embodiments of new and useful apparatuses and processes for alternately connecting a food grinder to a manual power source and an electrical power source, both of which are mounted on or otherwise carried by the same base as the food grinder.
[0028] Referring to
[0029] The food grinder 12 may include a top receptacle 11 for receiving any type of grain or other food to be processed. A grinder unit 13 may be located below an opening of the top receptacle 11 and may contain suitable grinding equipment (not shown) for processing the food. The grinder unit 13 may include a grinder shaft assembly 13a protruding from the front and the back of the grinder unit 13. A front outlet 13b is also shown which may provide the resulting product of the grinding process.
[0030] The manual power source 16 may comprise a drive sprocket wheel 40 with an outer sprocket piece 42 connected to a grinder sprocket wheel 26 on the food grinder 12 via a chain 44. An inner sprocket piece 41 (e.g., a smaller sprocket, as depicted; a larger sprocket; etc.) may also be included on the wheel of the manual power source 16 to change the rotational ratio between the wheel of the manual power source 16 and the grinder sprocket wheel 26.
[0031] The electric motor 14 and food grinder 12 may be mounted on the vertical plate 21, which is situated on the raised horizontal platform 20 of the base 18, abutting the front side 21a of the vertical plate 21. The manual power source 16 may be mounted on a vertical post 22, which may be part of the vertical plate 21 or positioned adjacent to the vertical plate 21. A gear head reducer 15 may be mounted on the electric motor 14 for adapting the speed of the motor rotation to the speed needed for the motor shaft (not shown here) to rotate the grinder shaft (not shown here).
[0032]
[0033] The drive sprocket wheel 40 may be connected to the food grinder 12 by chain 44 to supply power to operate the food grinder 12. The drive sprocket wheel 40 may include an outer sprocket piece 42 (shown in
[0034] The first pedal 46 and second pedal 47 may be manually rotated by hands or feet, as desired. If rotated by feet, a conventional seat or stool (not shown) may be provided for the convenience of the person providing the manual rotation. It should be understood that the pedal system described in
[0035] Looking next at
[0036] The diameters of the motor sprocket wheel 24 and the grinder sprocket wheel 26 may be sized to a desired ratio that may enable the proper translation of rotation from the motor sprocket wheel 24 to the grinder sprocket wheel 26. In one embodiment of the description the ratio of the motor sprocket wheel 24 to the grinder sprocket wheel 26 may about 1 to 2, that is, by way of example, twenty (20) teeth on the motor sprocket wheel 24 and forty (40) teeth on the grinder sprocket wheel 29. However, any other useful ratio may be used.
[0037] A chain 30 may be connected between the motor sprocket wheel 26 and the grinder sprocket wheel 28. The chain 30 may comprise a plurality of links 32 that may include openings (not shown). The openings may be large enough to accommodate the teeth 25 of the motor sprocket wheel 24 and the teeth (not shown) of the grinder sprocket wheel 26.
[0038] It should be understood that the electric motor 14 may be of the type that can be connected to any available power source, such as a 110 V alternating current (AC) power supply, a 240 V AC power supply, or one or more batteries, including using a transformer, as needed. Moreover, the power source may be from a capacitor or other power storage device that may derive its power from a natural energy source, such as solar panels, wind, or fluid powered devices.
[0039] The motor sprocket wheel 24, the grinder sprocket wheel 26, and the drive sprocket wheel 40 may be any type of rotatable unit having conventional apparatuses thereon adapted to move a chain, belt, or other linkage having conventional apparatus thereon to accept the conventional apparatus of the rotatable unit.
[0040] Referring to
[0041] As an alternative embodiment,
[0042] Looking next at
[0043] Referring to
[0044] The food grinders 12 (
[0045] The electric motors 14 (
[0046] The drive sprocket wheels 40 (
[0047] A conventional rubber base (not shown) may be placed beneath the horizontal platforms 19 (
[0048] Another embodiment of food grinding system 90 is shown in
[0049] Specifically, referring to
[0050] The food grinder 96 may be mounted to a raised platform 102, which may in turn be mounted to a horizontal platform 103. The v-belt drive wheel 98 may be mounted on a vertical pole 104, the vertical pole 104 being also mounted to the raised platform 102 or extend from the horizontal platform 103 and through the raised platform 102.
[0051] In this embodiment, power may be supplied from the pedals 99 and 100 to the v-belt drive wheel 98 and through the v-belt 92, which may rotate the v-belt grinder wheel 94. The v-belt 92 may have conventional cogged wedges 93, such as an XPA cogged wedge v-belt, for added traction in the v-belt grinder wheel 94 and the v-belt drive wheel 98. The v-belt grinder wheel 94, the v-belt drive wheel 98, and the v-belt 92 are all conventional and may be obtained on the open market.
[0052] It should be understood that the scope of the present disclosure is meant to include any type of conventional belt, rope, cable, or other connector that may be used to connect the drive wheels or pulleys of the electric motor 14 (
[0053] Referring now to
[0054] As seen in
[0055] Looking at
[0056] Referring now to
[0057] The guard 140 may similarly be used with the electrically-driven portion of the embodiment of the food grinding system 10 shown in
[0058] The guard 140 may similarly be used with the v-belt embodiment of the food grinding system 10 depicted by
[0059] Although not shown here, the same v-belt pulleys connected by a common v-belt may be used to transmit power from an electric motor having a v-belt pulley output to a v-belt pulley mounted on a food grinder, in a manner similar to the sprocket embodiment.
[0060] Although various embodiments are shown having capability of transmitting manual or electrical power to a food grinder, it should be understood that other types of power transmission devices may be use for the same purpose. For example, other sprocket and chain driven devices may be used with sprocket connectors to transmit power from electric or manual power sources to a food grinder. Likewise other types and shapes of pulleys and belts may be used instead of v-belt pulleys and v-belts or sprocket wheels and sprocket chains.
[0061] One advantage of the present embodiments is that all components of the food grinding system may be mounted to or otherwise carried by the same base and are thereby readily available in case of an emergency. This is particularly advantageous when the normal house power supply goes out and manual operation is essential. In such case, it is likely that lighting may be very limited, so having all the components of the food grind system mounted on one platform eliminates the possibility of having to search in the dark for missing components.
[0062] Another advantage for one of the present embodiments is the use of sprockets and interlocking chains to eliminate slippage in the connections between the food grinder and the power supplies.
[0063] Another advantage for one of the present embodiments is that the use of chains having interlocking links instead of the use of belts, thereby reducing belt wear, twisting and breakage.
[0064] Yet another advantage of the present embodiments is the option of adjusting the distance from the food grinder to the electric or manual power supplies, to thereby adjust tension on the connecting chains as desired.
[0065] Still another advantage of the present embodiments is the option of applying either hand enabled power or foot enabled power to the manual power source.
[0066] Yet another advantage is to provide a belt and pulleys to provide manual and electrical power to the grinder.
[0067] Yet another advantage is to provide a cogged v-belt for added traction in v-belt pulleys.
[0068] Yet another advantage of the present embodiments is the use of conventional components that can easily be replaced as needed.
[0069] Another advantage of the present embodiments is the use of a chain or belt guard to protect against inadvertent harm to a user caused by contact with the chain or belt.
[0070] Although the preceding disclosure provides many specifics, these are merely examples and should not be construed as limiting the scope of any of the ensuing claims. Other embodiments may be devised which do not depart from the scopes of the claims. Features from different embodiments may be employed in combination. The scope of each claim is, therefore, indicated and limited only by its plain language and the full scope of available legal equivalents to its elements.