This application claims priority to Chinese Patent Application No. 202210054112.X, filed on Jan. 18, 2022.
The disclosure relates to a food processing apparatus, more particularly to a food grinder capable of grinding and cutting food ingredients.
In order to produce cheese shreds from a block of cheese for convenience of use, an electric cheese grinder (or grater) has been developed, and generally includes a handle, a pressing plate pivoted to the handle, and a cylindrical cutter set disposed in the handle. After the block of cheese to be cut is placed into an inlet of the handle, the pressing plate is pivoted to move toward the handle, so that the block of cheese in the inlet is pressed against the cylindrical cutter set. When the electric cheese grinder is activated, the cylindrical cutter set is driven to rotate to cut and grind the block of cheese.
Although the electric cheese grinder is quite convenient to use, there are safety concerns with such electric cheese grinder. Since the cylindrical cutter set is driven to rotate after the power switch is turned on, if the pressing plate is pivoted to move away from the inlet, the block of cheese remaining in the inlet will be thrown out of the cylindrical cutter set and stain the surrounding environment or hurt someone, and the rotating cylindrical cutter set exposed through the inlet will also easily injure the user when the user accidentally touches it.
Therefore, an object of the disclosure is to provide a food grinder that can alleviate at least one of the drawbacks of the prior art.
According to the disclosure, a food grinder is adapted for grinding and cutting a food ingredient, and includes a grip mechanism, a cylindrical cutter set, and a driving mechanism.
The grip mechanism includes a handle body that is formed with an inlet for receiving the food ingredient therein, and a flip cover body that is pivotally connected to the handle body in a manner that the flip cover body is pivotable relative to the handle body between a closing position and an open position. The flip cover body moving toward the closing position is capable of pushing the food ingredient into the inlet opening.
The cylindrical cutter set is detachably mounted in the handle body, and includes a cylindrical cutter that is rotatable to cut and grind the food ingredient in the inlet opening.
The driving mechanism is mounted in the grip mechanism, and includes a driving unit that is configured to drive rotation of the cylindrical cutter, a power supply unit, and first and second switch units that are electrically connected in series between the driving unit and the power supply unit and that are exposed outwardly of the handle body of the grip mechanism. The second switch unit is actuated to turn on by the flip cover body as the flip cover body pivots from the open position toward the closing position. The driving unit operates with electric power supplied from the power supply unit when the first and second switch units are turned on.
Other features and advantages of the disclosure will become apparent in the following detailed description of an embodiment with reference to the accompanying drawings. It is noted that various features may not be drawn to scale.
Before the disclosure is described in greater detail, it should be noted that where considered appropriate, reference numerals or terminal portions of reference numerals have been repeated among the figures to indicate corresponding or analogous elements, which may optionally have similar characteristics.
Referring to
Referring to
The handle body 31 has a mounting seat portion 311, and an elongate handle portion 315 extending rearwardly from the mounting seat portion 311. The mounting seat portion 311 is formed with an interior mounting space 312 for receiving the cylindrical cutter set 4 therein, an inlet 313 in the top thereof (i.e., an upper opening), and a mounting opening 314 in the lateral (e.g., left) side thereof. The interior mounting space 312, the inlet 313 and the mounting opening 314 are communicated with each other. The inlet 313 allows the block of cheese 900 to be fed into the interior mounting space 312. A pivot shaft 30, which is provided on a rear end of the handle portion 315 (see
The lateral cover body 33 has an opening 331 communicated with the mounting opening 314 in the mounting seat portion 311.
The flip cover body 32 is pivotally connected to the handle portion 315 of the handle body 31 in a manner that the flip cover body 32 is pivotable relative to the handle portion 315 of the handle body 31 between a closing position (see
Referring to
The cutter mounting seat 41 is detachably mounted in the interior mounting space 312 in the mounting seat portion 311. Specifically, the cutter mounting seat 41 is mounted into the interior mounting space 312 through the mounting opening 314 in the mounting seat portion 311, and can be removed from the interior mounting space 312 through the mounting opening 314. In this embodiment, the cutter mounting seat 41 includes a laterally extending mounting tube portion 411, and a feeding tube portion 412 upwardly extending from the mounting tube portion 411 and communicated with the mounting tube portion 411 and the inlet 313. It is noted that the feeding tube portion 412 is downwardly tapered such that the block of cheese 900 in the inlet 313 can be guided by the feeding tube portion 412 into the mounting tube portion 411.
The cylindrical cutter 42 is detachably mounted in the mounting tube portion 411 of the cutter mounting seat 41, and is detachably connected to and driven by a transmission module 511 of a driving unit 51 of the driving mechanism 5 disposed in the mounting space 312 (see
The cutter cap 43 openably closes the outlet 422 of the hollow cylindrical body 421, and can be removed through the opening 331 in the lateral cover body 33 when the lateral cover body 33 is mounted to the handle body 31, the cutter mounting seat 41 is mounted in the interior mounting space 312 in the mounting seat portion 311 and the cylindrical cutter 42 is mounted in the mounting tube portion 411 of the cutter mounting seat 41.
Referring to
The driving unit 51 is configured to drive rotation of the cylindrical cutter 42 with the transmission module 511, and is in the form of a motor and transmission assembly. Since the driving unit 51 is well-known and comes in a variety of modular types and structures, details thereof are not further described.
The power supply unit 52 is electrically connected to the driving unit 51, and is configured to supply electric power for operation of the driving unit 51, and includes a power source 522, such as a rechargeable or non-rechargeable battery module, that supplies the electric power, and a power switch 521 that is electrically connected to the power source 522 and exposed from the bottom of the handle portion 315. When the power switch 521 is turned on, the power supply unit 52 outputs the electric power supplied from the power source 522. However, in other embodiments, the power source 522 may be an external power source, such as a commercial power source, that can be used with an adapter to supply the electric power for the driving unit 51.
The first and second switch units 53, 54 are electrically connected in series between the power supply unit 52 and the driving unit 51 (see
In this embodiment, the first switch unit 53 includes a first switch member 531, a first actuating member 532, and a first biasing member 533, such as a coil spring. The first switch member 531, such as a micro switch, is disposed in the handle body 31 and is electrically connected between the driving unit 51 and the second switch unit 54 (see
In this embodiment, the second switch unit 54 includes a second switch member 541, a second actuating member 542 and a second biasing member 543. The second switch member 541, such as a micro switch, is disposed in the rear end of the handle portion 315 of the handle body 31, and is electrically connected between the first switch member 531 and the power switch 521 of the power supply unit 52 (see
It is noted that, when the flip cover body 32 is being pivoted toward the closing position, the operating handle portion 321 moves toward said handle body 31 such that the pushing portion 323 of the flip cover body 32 moves toward the rear end of the handle portion 315 and pushes the second actuating member 542 to actuate the second switch member 541 to the ON-state (see
In use, after the flip cover body 32 is first pivoted to the open position to expose the inlet 313 (
During operation of the driving unit 51, cheese shreds/crumbs 901 cut/grinded from the block of cheese 900 by the blade parts 425 of the cylindrical cutter 42 would fall into the hollow cylindrical body 421 through the through holes 423. It is noted that, during operation of the driving unit 51, once the user's hand releases the first actuating member 532 of the first switch unit 53, the first biasing member 533 would bias the first actuating member 532 to move away from the first switch member 531, and the first switch member 531 would thus be turned off, i.e., be in an OFF-state, so that operation of the driving unit 51 would stop due to lack of electric power from the power supply unit 52 to thereby terminate driving of the cylindrical cutter 42. As the operating handle portion 321 of the flip cover body 32 continues to be moved downwardly, it will eventually come into abutment against the mounting seat portion 311 of the handle body 31, and at this time, the flip cover body 32 is in the closing position, where the block of cheese 900 would have been fully processed (cut/grinded into cheese shreds or crumbs 901). At this time, the user's hand may release the first actuating member 532 of the first switch unit 53 so as to turn the first switch member 531 to the OFF-state, such that operation of the driving unit 51 would stop. Then, after the cutter cap 43 is opened, the cheese shreds/crumbs 901 received in the hollow cylindrical body 421 can be poured out through the outlet 422.
When processing of the block of cheese 900 is finished, the lateral cover body 33, the cutter mounting seat 41 and the cylindrical cutter 42 can be easily detached from the handle body 31 for cleaning.
In this embodiment, the second switch unit 54 and the first switch unit 53 are designed to be micro switch modules, but in other embodiments of the present disclosure, the second switch unit 54 may alternatively have a photo-electric switch module design, a mechanical tact switch module design, or a magnetic sensor switch module design, in which case the second switch unit 54 would be actuated by the flip cover body 32 to switch to the ON state when the angle between the flip cover body 32 and the handle body 31 is less than a predetermined angle.
In summary, in view of the presence of the first and second switch units 53, 54 that are electrically connected in series between the driving unit 51 and the power supply unit 52, the driving unit 51 operates with the electric power from the power supply unit 52 only when the first and second switch units 53, 54 are turned on. In other words, when any one of the first and second switch units 53, 54 is turned off, operation of the driving unit 51 stops. Therefore, safety during use of the food grinder 200 is enhanced. Furthermore, the structure of the cylindrical cutter set 4 is designed to be easily detachable from the handle body 31, making cleaning the cutter mounting seat 41, the cylindrical cutter 42 and the cutter cap 43 convenient. Therefore, the object of this disclosure can indeed be achieved.
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiment. It will be apparent, however, to one skilled in the art, that one or more other embodiments may be practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects; such does not mean that every one of these features needs to be practiced with the presence of all the other features. In other words, in any described embodiment, when implementation of one or more features or specific details does not affect implementation of another one or more features or specific details, said one or more features may be singled out and practiced alone without said another one or more features or specific details. It should be further noted that one or more features or specific details from one embodiment may be practiced together with one or more features or specific details from another embodiment, where appropriate, in the practice of the disclosure.
While the disclosure has been described in connection with what is considered the exemplary embodiment, it is understood that this disclosure is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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202210054112.X | Jan 2022 | CN | national |