A food processor provided with a shredding bowl feed-out assembly

By using a planar coordinate moving component and a linkage structure design, the automatic descent and delivery of the grinding bucket is achieved, solving the problems of overflow and cumbersome operation when removing the grinding bucket in existing food processors, and improving the ease of operation.

CN116746816BActive Publication Date: 2025-11-18GUANGDONG INVITOP TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202310640665.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-31
Publication Date
2025-11-18
Estimated Expiration
2043-05-31

AI Technical Summary

Technical Problem

Existing food processors often have spillage when removing and inspecting ingredients, and the operation is cumbersome. There is a need to improve the automatic lowering and feeding mechanism of the food processor to reduce obstruction.

Method used

By employing a planar coordinate movement component, a cam guide structure, and an upward linkage component, the automatic descent of the crushing barrel and the upward tilting of the crushing components during the feeding process are achieved, and the operation steps are reduced through the linkage structure design.

Benefits of technology

It achieves automatic lowering and delivery of the crushing bucket, avoiding operational obstacles, simplifying the operation process, reducing cumbersome steps, and improving ease of use.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116746816B_ABST
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Abstract

The application discloses a chef machine provided with a smashing barrel sending-out assembly, which comprises a base, a turnover chef machine assembly arranged on the base, and a smashing barrel, a plane coordinate moving assembly is arranged between the smashing barrel and the base, a cam guide structure capable of driving the plane coordinate moving assembly to control the smashing barrel to descend and then send out is arranged on the base, an upward turning linkage assembly is arranged between the cam guide structure and the turnover chef machine assembly, and the upward turning linkage assembly drives the turnover chef machine assembly to turn upward when the smashing barrel sends out outward, the smashing barrel can be lowered to be far away from a smashing knife, and the smashing barrel can be automatically sent out after being lowered for a period of time, so that a chef can operate food materials, the upward turning smashing mechanism is turned backward during the sending-out process, operation obstruction is avoided, the linkage structure is adopted, the use of a drive is reduced, the operation steps are simplified, and the chef machine is more convenient to operate.
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Description

[0001] The present application relates to a chef machine, in particular to a chef machine provided with a crushing barrel sending assembly.

[0002] The chef machine is a multifunctional household food processing equipment. The chef machine on the market generally has functions of kneading, stirring, beating egg white, mincing meat and pressing dough. Since the chef machine has rich functions and can assist users in making various foods, it is deeply loved by people. The crushing part of the crusher is usually designed to be upward. When the crushing barrel is taken out and the food is observed or assisted to be stirred, it needs to be tilted to be taken out, which can easily cause the food to overflow. For this situation, how to design a better automatic descending and sending structure of the crushing barrel becomes a problem to be solved. At the same time, how to realize the automatic upward turning of the crushing assembly during the sending process of the crushing barrel also becomes a problem to be solved.

[0003] Therefore, the existing chef machine needs to be further improved.

[0004] The purpose of the present application is to provide a chef machine provided with a crushing barrel sending assembly, which can control the automatic descending of the crushing barrel, separate from the crushing knife, and then realize the forward sending. During the sending process, the crushing part is automatically turned upward, which avoids the obstruction when the crushing barrel is operated and reduces the operation steps.

[0005] In order to achieve the above purpose, the present application adopts the following scheme:

[0006] A chef machine provided with a crushing barrel sending assembly, comprising a base, a turnover chef machine assembly is arranged on the base, a crushing barrel, a planar coordinate moving assembly is arranged between the crushing barrel and the base, a cam guide structure capable of driving the planar coordinate moving assembly to control the crushing barrel to descend and then send out is arranged on the base, and an upward turning linkage assembly is arranged between the cam guide structure and the turnover chef machine assembly, which drives the turnover chef machine assembly to turn upward when the crushing barrel is sent out.

[0007] Further, the turnover chef machine assembly comprises a turnover hinge seat arranged on the base, a hinge arm is arranged on the turnover hinge seat, and a crushing assembly is arranged on the hinge arm.

[0008] Further, the crushing assembly comprises a crushing drive box arranged on the hinge arm, a revolution drive motor assembly is arranged in the crushing drive box, a revolution swing arm is arranged at the output end of the revolution drive motor assembly, a rotation drive motor is arranged on the revolution swing arm, and a crushing knife assembly is arranged at the output end of the rotation drive motor.

[0009] ​​​Furthermore, the planar coordinate movement component includes a front and rear drive component that can drive the crushing barrel to move back and forth, and the front and rear drive component is provided with a lifting component that can drive the crushing barrel to move up and down.

[0010] Furthermore, the front and rear drive assembly includes a guide rail disposed on the base, a transverse slider disposed on the guide rail, a push rod motor disposed on the base, and the output end of the push rod motor being fixedly connected to the transverse slider.

[0011] Furthermore, the lifting assembly includes a vertical guide sleeve disposed on the horizontal sliding block, a vertical guide shaft being movably disposed inside the vertical guide sleeve, and the bottom of the crushing barrel being fixedly disposed on the vertical guide shaft.

[0012] Furthermore, the cam guide structure includes a drive support rod disposed on the crushing barrel, a drive cam disposed on the side wall of the drive support rod, drive panels disposed on both sides of the base, drive guide grooves disposed on the drive panels, and the drive cam being movably installed in the drive guide grooves.

[0013] Furthermore, the drive guide groove includes a horizontal straight groove disposed on the left side of the drive panel, a lifting inclined groove disposed at intervals on the right side of the horizontal straight groove, and an inclined straight groove connecting the right end of the horizontal straight groove and the lower end of the lifting inclined groove.

[0014] Furthermore, the transverse straight groove is located at the lower left of the lifting inclined groove.

[0015] Furthermore, the upward linkage component includes a swing arm disposed at the rotation axis of the flipper assembly, the swing arm being provided with a drive slot, the drive panel being provided with a transverse guide groove, the transverse guide groove being provided with a transverse slider, the transverse slider being provided with a drive vertical rod, the drive vertical rod being provided with a vertical groove, the vertical groove being movably sleeved outside the drive cam, and the transverse slider being provided with a linkage shaft, the linkage shaft being movably inserted into the drive slot.

[0016] In summary, the advantages of this invention over the prior art are:

[0017] This invention addresses the shortcomings of existing food processors. Through its structural design, it offers the following advantages: the grinding bowl descends away from the grinding blades and is automatically ejected after a certain period, facilitating the chef's handling of ingredients. During ejection, the upward-flipping grinding mechanism is simultaneously rotated backward, preventing obstruction during operation. The linked structure design reduces the need for a drive, simplifies operation, and makes the food processor easier to operate. The structural design is ingenious and reasonable. [Attached Image Description]

[0018] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a perspective view of the present invention;

[0020] Figure 2 This is the front view of the present invention;

[0021] Figure 3 This is the left view of the present invention;

[0022] Figure 4 for Figure 3 Sectional view along line AA;

[0023] Figure 5 for Figure 2 A schematic diagram of the second state;

[0024] Figure 6 for Figure 4 The second state diagram.

Detailed Implementation Methods

[0025] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0026] Please see Figures 1-6 The present invention provides a food processor equipped with a grinding bucket delivery component, including a base 1, a tilting food processor component 2 disposed on the base 1, and a grinding bucket 3. A planar coordinate movement component 4 is disposed between the grinding bucket 3 and the base 1. A cam guide structure 5 is disposed on the base 1, which can drive the planar coordinate movement component 4 to control the grinding bucket 3 to descend and then be delivered. An upward linkage component 6 is disposed between the cam guide structure 5 and the tilting food processor component 2, which drives the tilting food processor component 2 to tilt upward when the grinding bucket 3 is delivered outward.

[0027] Working principle: The flipper assembly 2 flips down to cooperate with the grinding bucket 3 to grind the ingredients, with the grinding blade inside the grinding bucket 3;

[0028] When it is necessary to control the grinding bucket 3 away from the flipper assembly 2, the planar coordinate movement component 4 is controlled to send the grinding bucket 3 forward. During this process, the cam guide structure 5 further controls the grinding bucket 3 to move diagonally downward and gradually tilt it out. During the diagonal downward movement, the upward linkage component 6 works accordingly, driving the flipper assembly 2 to flip backward, providing space for the grinding bucket 3 to be sent out, and keeping the flipper assembly 2 away from the grinding bucket 3, preventing obstruction or accidental injury when the chef operates the grinding bucket 3.

[0029] The flipper assembly 2 of the present invention includes a flipping hinge seat 201 disposed on the base 1, a hinge arm 202 disposed on the flipping hinge seat 201, and a crushing component 203 disposed on the hinge arm 202.

[0030] The crushing component 203 of the present invention includes a crushing drive box 2031 disposed on the hinge arm 202, a rotary drive motor assembly 2032 disposed inside the crushing drive box 2031, a rotary swing arm 2033 disposed at the output end of the rotary drive motor assembly 2032, a self-rotation drive motor 2034 disposed on the rotary swing arm 2033, and a crushing blade assembly 2035 disposed at the output end of the self-rotation drive motor 2034.

[0031] The planar coordinate movement component 4 of the present invention includes a front and rear drive component 401 that can drive the crushing barrel 3 to move back and forth, and a lifting component 402 that can drive the crushing barrel 3 to move up and down is provided on the front and rear drive component 401.

[0032] The front and rear drive assembly 401 of the present invention includes a guide rail 4011 disposed on the base 1, a transverse slider 4012 disposed on the guide rail 4011, a push rod motor 4013 disposed on the base 1, and the output end of the push rod motor 4013 is fixedly connected to the transverse slider 4012.

[0033] The lifting assembly 402 of the present invention includes a vertical guide sleeve 4021 disposed on the horizontal sliding block 4012, a vertical guide shaft 4022 movably disposed inside the vertical guide sleeve 4021, and the bottom of the crushing barrel 3 is fixedly disposed on the vertical guide shaft 4022.

[0034] The cam guide structure 5 of the present invention includes a drive support rod 501 disposed on the crushing barrel 3, a drive cam 502 disposed on the side wall of the drive support rod 501, drive panels 503 disposed on both sides of the base 1, drive guide grooves 504 disposed on the drive panels 503, and the drive cam 502 being movably installed in the drive guide grooves 504.

[0035] The push rod motor 4013 pushes outward, and the crushing barrel 3 is then sent out. During this process, the cam guide structure 5 controls the lifting assembly 402 to gradually descend, sending it out as it descends.

[0036] The drive guide groove 504 of the present invention includes a horizontal straight groove 5041 disposed on the left side of the drive panel 503, a lifting inclined groove 5042 disposed at intervals on the right side of the horizontal straight groove 5041, and an inclined straight groove 5043 connecting the right end of the horizontal straight groove 5041 and the lower end of the lifting inclined groove 5042.

[0037] The transverse straight groove 5041 of the present invention is disposed at the lower left of the lifting inclined groove 5042.

[0038] The upward linkage component 6 of the present invention includes a swing rod 601 disposed at the rotation axis of the flipping food processor component 2, a drive slot 602 disposed on the swing rod 601, a horizontal guide groove 603 disposed on the drive panel 503, a horizontal slider 604 disposed on the horizontal guide groove 603, a drive vertical rod 605 disposed on the horizontal slider 604, a vertical groove 606 disposed on the drive vertical rod 605, the vertical groove 606 being movably sleeved outside the drive cam 502, and a linkage shaft 607 disposed on the horizontal slider 604, the linkage shaft 607 being movably inserted into the drive slot 602;

[0039] The horizontal slider 604 moves laterally following the drive cam 502. During this process, it pulls the drive slot 602 on the swing rod 601 to tilt to one side. At this time, the swing rod 601 pulls the crushing drive box 2031 to flip backward.

[0040] The foregoing has shown and described the basic principles and main features of the present invention, as well as its advantages. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the present invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A food processor equipped with a pulverizing bucket dispensing assembly, comprising a base (1), wherein a rotating food processor assembly (2) is disposed on the base (1), characterized in that: It also includes a grinding bucket (3), a planar coordinate moving component (4) is provided between the grinding bucket (3) and the base (1), a cam guide structure (5) is provided on the base (1) that can drive the planar coordinate moving component (4) to control the grinding bucket (3) to descend and then be sent out, and an upward linkage component (6) is provided between the cam guide structure (5) and the flipping food processor assembly (2) that drives the flipping food processor assembly (2) to flip upward when the grinding bucket (3) is sent out.

2. A food processor with a pulverizing bin dispensing assembly as described in claim 1, characterized in that: The flipper assembly (2) includes a flipping hinge seat (201) disposed on the base (1), a hinge arm (202) disposed on the flipping hinge seat (201), and a pulverizing component (203) disposed on the hinge arm (202).

3. A food processor with a pulverizing bin dispensing assembly according to claim 2, characterized in that: The crushing assembly (203) includes a crushing drive box (2031) disposed on the articulated arm (202), a rotary drive motor assembly (2032) disposed inside the crushing drive box (2031), a rotary swing arm (2033) disposed at the output end of the rotary drive motor assembly (2032), a self-rotation drive motor (2034) disposed on the rotary swing arm (2033), and a crushing blade assembly (2035) disposed at the output end of the self-rotation drive motor (2034).

4. A food processor with a pulverizing bin dispensing assembly according to claim 3, characterized in that: The planar coordinate moving component (4) includes a front and rear drive component (401) that can drive the crushing barrel (3) to move back and forth, and the front and rear drive component (401) is provided with a lifting component (402) that can drive the crushing barrel (3) to move up and down.

5. A food processor with a pulverizing bin dispensing assembly according to claim 4, characterized in that: The front and rear drive assembly (401) includes a guide rail (4011) disposed on the base (1), a transverse slider (4012) disposed on the guide rail (4011), and a push rod motor (4013) disposed on the base (1). The output end of the push rod motor (4013) is fixedly connected to the transverse slider (4012).

6. A food processor with a pulverizing bin dispensing assembly according to claim 5, characterized in that: The lifting assembly (402) includes a vertical guide sleeve (4021) disposed on the horizontal slider (4012), and a vertical guide shaft (4022) is movably disposed inside the vertical guide sleeve (4021). The bottom of the crushing barrel (3) is fixedly disposed on the vertical guide shaft (4022).

7. A food processor with a pulverizing bin dispensing assembly according to any one of claims 3-6, characterized in that: The cam guide structure (5) includes a drive support rod (501) disposed on the crushing barrel (3), a drive cam (502) disposed on the side wall of the drive support rod (501), a drive panel (503) disposed on both sides of the base (1), a drive guide groove (504) disposed on the drive panel (503), and the drive cam (502) is movably installed in the drive guide groove (504).

8. A food processor with a pulverizing bin dispensing assembly according to claim 7, characterized in that: The drive guide groove (504) includes a horizontal straight groove (5041) disposed on the left side of the drive panel (503), a lifting inclined groove (5042) is disposed at intervals on the right side of the horizontal straight groove (5041), and an inclined straight groove (5043) is disposed between the right end of the horizontal straight groove (5041) and the lower end of the lifting inclined groove (5042).

9. A food processor with a pulverizing bucket dispensing assembly according to claim 8, characterized in that: The transverse straight groove (5041) is located to the lower left of the lifting inclined groove (5042).

10. A food processor with a pulverizing bin dispensing assembly according to claim 9, characterized in that: The upward linkage assembly (6) includes a swing rod (601) disposed at the rotation axis of the flipper assembly (2). The swing rod (601) is provided with a drive slot (602). The drive panel (503) is provided with a horizontal guide groove (603). The horizontal guide groove (603) is provided with a horizontal slider (604). The horizontal slider (604) is provided with a drive vertical rod (605). The drive vertical rod (605) is provided with a vertical groove (606). The vertical groove (606) is movably sleeved outside the drive cam (502). The horizontal slider (604) is provided with a linkage shaft (607). The linkage shaft (607) is movably inserted into the drive slot (602).

Citation Information

Patent Citations

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    CN109124403A

  • Pouring device and feeder

    CN207428976U