Chopping and shredding all-in-one machine

By designing a chopping and gratering machine, the chopping and gratering are integrated into the same equipment, which solves the problems of equipment land occupation and manual demand in fruit and vegetable processing, and realizes centralized processing and efficient processing of materials.

CN223199114UActive Publication Date: 2025-08-08SHUANGFENG XIANGDONG MASCH MFG CO LTD
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Patent Information

Application Number
CN202421822193.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-08-08
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

In the prior art, the chopping and gratering of fruits and vegetables requires the use of two equipment respectively, resulting in a large area, high cost of use and requires multiple people to operate.

Method used

A chopping and gratering machine is designed, and the chopping device and vertical gratering device are integrated on the same frame, and the chopping knife assembly and cone grater assembly are driven by the drive device to realize the simultaneous chopping and gratering of materials.

Benefits of technology

The centralized processing of materials is realized, which avoids the large area of multiple equipment and manual demands, prevents material splashing, improves processing efficiency and facilitates collection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of vegetable and fruit processing equipment, in particular to a chopping and shredding all-in-one machine which comprises a machine frame. A chopping device is installed on the machine frame and comprises a material cutting cavity and a chopping knife assembly rotationally arranged in the material cutting cavity so that material cutting work can be conducted in the material cutting cavity. A vertical shredding device is further installed on the machine frame and comprises a vertical cylinder and a conical cylinder shredding cutter assembly rotationally arranged in the vertical cylinder, and an annular discharging gap exists between the outer end of the conical cylinder shredding cutter assembly and the inner wall of the vertical cylinder. The supplied materials are shredded through the conical barrel shredding cutter assembly, and the supplied materials fall from the discharging gap after being shredded into shreds; a driving device is further installed on the machine frame so as to be in driving connection with the chopping knife assembly and the conical barrel shredding knife assembly.
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Description

Technical Field

[0001] The utility model relates to the technical field of vegetable and fruit processing equipment, in particular to an integrated chopping and shredding machine. Background Art

[0002] In the further processing of fruits and vegetables, chopping and shredding are usually completed by different equipment. However, chopping and shredding of fruits and vegetables often need to be used simultaneously, and separate equipment will require two workers to operate or one worker to move back and forth between the two equipment; and two independent equipment will result in a large footprint and high cost of use, so there is an urgent need to design a chopping and shredding machine. Utility Model Content

[0003] In order to solve the problem that it is difficult to complete chopping and shredding at the same time, the utility model provides an all-in-one chopping and shredding machine.

[0004] The technical solution of the utility model is:

[0005] In one aspect, the present invention provides an integrated chopping and shredding machine, which is characterized by comprising a frame;

[0006] A chopping device is mounted on the frame and includes a chopping chamber and a chopping knife assembly rotatably disposed in the chopping chamber;

[0007] A vertical grating device is mounted on the frame and includes a vertical cylinder and a conical cylinder grating cutter assembly rotatably disposed in the vertical cylinder, wherein an annular discharge gap is formed between the outer end of the conical cylinder grating cutter assembly and the inner wall of the vertical cylinder;

[0008] A driving device drives and connects the chopping knife assembly and the conical grating knife assembly.

[0009] Furthermore, the driving device includes a driving motor and a power transmission assembly; the chopping knife assembly includes mutually connected chopping knives and a chopping power shaft; the conical grating knife assembly includes mutually connected conical grating knives and a grating power shaft; the power output end of the power transmission assembly is connected to the driving motor; the power output end of the power transmission assembly is simultaneously connected to the chopping power shaft and the grating power shaft.

[0010] Furthermore, the chopping knife has a blade portion and a pushing portion, and the chopping knife performs rotational cutting in a horizontal plane.

[0011] Furthermore, a feed hopper is installed on and connected to the cutting chamber, and at least one discharge through hole is provided at the bottom of the cutting chamber.

[0012] Furthermore, an openable cover is provided on the cutting chamber.

[0013] Furthermore, the conical grater is configured to be in the shape of a conical cylinder with a small upper end and a large lower end, and the conical grater is concentrically arranged with the vertical cylinder.

[0014] Furthermore, at least one blocking member is installed on the inner wall of the vertical cylinder to block the object to be processed on the conical cylinder grater.

[0015] Furthermore, the bottom surface of the blocking member is arranged parallel to the outer conical surface of the conical grater with a gap therebetween.

[0016] Furthermore, the width of the gap between the bottom surface of the blocking member and the conical grater is less than or equal to the width of the discharge gap.

[0017] Furthermore, a cylindrical material storage cavity is provided at the lower side of the discharge gap; the shaving power shaft extends into the material storage cavity, and at least one material shifting plate is installed at the outer side of the shaving power shaft.

[0018] The beneficial effects achieved by the utility model are:

[0019] The shredder and shredder of the utility model comprises a frame; a shredder device is installed on the frame, the shredder device comprises a cutting chamber and a shredder knife assembly rotatably arranged in the cutting chamber to perform the cutting work in the cutting chamber; a vertical shredder device is also installed on the frame, the vertical shredder device comprises a vertical cylinder and a conical cylinder shredder knife assembly rotatably arranged in the vertical cylinder, and an annular discharge gap is provided between the outer end of the conical cylinder shredder knife assembly and the inner wall of the vertical cylinder; the incoming material is shredded by the conical cylinder shredder knife assembly, and the incoming material falls out from the discharge gap after being shredded; a driving device is also installed on the frame to drive the connection between the shredder knife assembly and the conical cylinder shredder knife assembly; by The device and the vertical shredder device are installed on the same frame, and the shredder knife assembly and the conical drum shredder knife assembly are connected by a driving device; the shredder device and the vertical shredder device are integrated together to simultaneously realize shredding and shredding of materials through the same device, avoiding the situation that multiple devices occupy a large area and require more manpower when used; at the same time, the shredder knife assembly is arranged in the cutting chamber to perform cutting work, and the conical drum shredder knife assembly is arranged in the vertical drum to perform shredding work, which can prevent material splashing during the shredding and shredding processes, and effectively concentrate the shredded and shredded materials for easy collection and further processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0021] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0022] One or more embodiments are exemplarily illustrated by pictures in the corresponding drawings. These exemplifications do not constitute limitations on the embodiments. Elements with the same reference numerals in the drawings are represented as similar elements. Unless otherwise stated, the figures in the drawings do not constitute proportional limitations.

[0023] Figure 1 is a schematic diagram of a first three-dimensional structure of an embodiment of the present application;

[0024] Figure 2 is a schematic diagram of a second three-dimensional structure of an embodiment of the present application;

[0025] Figure 3 This is a top view of the embodiment of the present application after removing the feed hopper;

[0026] Figure 4 This is a schematic diagram of a first connection structure of the driving device and the chopping power shaft and the shredding power shaft according to an embodiment of the present application;

[0027] Figure 5 It is a schematic diagram of the second connection structure between the driving device of the embodiment of the present application and the chopping power shaft and the shredding power shaft.

[0028] In the figure,

[0029] 1. Frame; 100. Chopping device; 200. Vertical grating device; 300. Driving device; 110. Cutting chamber; 111. Cover; 120. Chopping knife assembly; 121. Chopping knife; 1211. Blade portion; 1212. Pushing portion; 122. Chopping power shaft; 130. Feed hopper; 140. Discharge through hole; 210. Vertical cylinder; 211. Blocking member; 220. Conical grating knife assembly; 221. Conical grating knife; 222. Shredder power shaft; 230. Discharge gap; 240. Storage chamber; 250. Diverter plate; 260. Discharge guide; 310. Driving motor; 320. Power transmission assembly. DETAILED DESCRIPTION

[0030] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0031] The disclosure below provides many different embodiments or examples for implementing different structures of the present application. In order to simplify the disclosure of the present application, the components and settings of specific examples are described below. Of course, these are merely examples and are not intended to limit the present application. In addition, the present application may repeat reference numbers and / or letters in different examples. Such repetition is for the purpose of simplicity and clarity and does not in itself indicate the relationship between the various embodiments and / or settings discussed.

[0032] For ease of description, spatially relative terms may be used herein to describe the relative position or movement of an element or feature relative to another element or feature as shown in the figures, such as "inside", "outside", "inside", "outside", "below", "beneath", "above", "above", "front", "back", etc. Such spatially relative terms are intended to include different orientations of the device in use or operation other than the orientation depicted in the figures. For example, if the device in the figures undergoes a position flip or a change in posture or a change in motion state, then these directional indications will also change accordingly. For example, an element described as "below" or "below" another element or feature will then be oriented as "above" or "above" another element or feature. Thus, the example term "below" can include both above and below orientations. The device can be oriented otherwise (rotated 90 degrees or in other orientations) and the spatially relative descriptors used herein will be interpreted accordingly.

[0033] The embodiment of the present application shows a shredder and shredder, comprising a frame 1; a shredder device 100 is installed on the frame 1, the shredder device 100 comprises a cutting chamber 110 and a shredder knife assembly 120 rotatably arranged in the cutting chamber 110 to perform cutting work in the cutting chamber 110; a vertical shredder device 200 is also installed on the frame 1, the vertical shredder device 200 comprises a vertical cylinder 210 and a conical cylinder shredder knife assembly 220 rotatably arranged in the vertical cylinder 210, and an annular discharge gap 230 is provided between the outer end of the conical cylinder shredder knife assembly 220 and the inner wall of the vertical cylinder 210; the incoming material is shredded by the conical cylinder shredder knife assembly 220, and the incoming material falls out of the discharge gap 230 after being shredded; a driving device 300 is also installed on the frame 1 to drive the connected shredder knife assembly 120 and the conical cylinder shredder knife assembly 220.

[0034] In this embodiment, the shredder device 100 and the vertical shredder device 200 are installed on the same frame 1, and the shredder knife assembly 120 and the conical shredder knife assembly 220 are connected by the driving device 300; the shredder device 100 and the vertical shredder device 200 are integrated together, so that the shredding and shredding of the material can be achieved simultaneously through the same device, avoiding the situation where multiple devices occupy a large area and require more manpower when used; at the same time, the shredder knife assembly 120 is set in the cutting chamber 110 for cutting, and the conical shredder knife assembly 220 is set in the vertical cylinder 210 for shredding, which can prevent the material from splashing during the shredding and shredding processes, and effectively concentrate the shredded and shredded materials for easy collection and further processing.

[0035] In an optional embodiment, the driving device 300 includes a driving motor 310 and a power transmission assembly 320; the chopping knife assembly 120 includes interconnected chopping knives 121 and a chopping power shaft 122; the conical grating knife assembly 220 includes interconnected conical grating knives 221 and a grating power shaft 222; the power output end of the power transmission assembly 320 is connected to the driving motor 310; the power output end of the power transmission assembly 320 is simultaneously connected to the chopping power shaft 122 and the grating power shaft 222.

[0036] In this embodiment, the driving device 300 includes a driving motor 310. Of course, the driving part can also be a motor, etc.; when chopping and shredding operations are required, the driving motor 310 provides power and drives the chopping power shaft 122 and the shredding power shaft 222 to work simultaneously through the power transmission component 320, so that chopping and shredding can be performed at the same time, saving power sources and making the overall structure more compact.

[0037] In an optional embodiment, the power transmission assembly 320 is a pulley transmission assembly; the power output end of the drive motor 310, the chopping power shaft 122 and the shredding power shaft 222 are simultaneously connected through the pulley transmission assembly, so that the power of the drive motor 310 is accurately transmitted to the chopping power shaft 122 and the shredding power shaft 222, and the transmission through the belt has the technical advantages of smooth and reliable transmission; at the same time, a belt tension adjustment structure can also be provided in conjunction with the pulley transmission assembly to adjust the tightness of the belt connection.

[0038] In an optional embodiment, the chopping knife 121 has a blade portion 1211 and a pushing portion 1212, and the chopping knife 121 performs rotational cutting in a horizontal plane; when the material enters the cutting chamber 110, the material is chopped by the rotating blade portion 1211; at the same time, the pushing portion 1212 is also continuously rotating to push the chopped material to a designated area.

[0039] In an optional embodiment, a feed hopper 130 is installed on and connected to the cutting chamber 110, and at least one discharge hole 140 is opened at the bottom of the cutting chamber 110; the material is guided to move toward the chopping knife 121 through the feed hopper 130, and the feed hopper 130 can also place more materials for chopping at one time, so that the user does not need to take materials frequently.

[0040] In an optional embodiment, the cutting chamber 110 is provided with an openable lid 111. Since the chopping blades 121 may leave debris on the cutting blades 121 when chopping the material in the cutting chamber 110, and there is also a possibility that the chopped material is not completely discharged, the openable lid 111 is provided so that the lid 111 can be opened to clean the chopped material when needed. For example, after processing a full round of material, when the device is to be put away, the lid 111 can be opened first to clean the material, and then the lid 111 can be locked after cleaning.

[0041] In an optional embodiment, the conical grater 221 is configured to be a conical shape with a small upper end and a large lower end, and the conical grater 221 is concentrically configured with the vertical cylinder 210; Figure 3 As shown, there is an annular discharge gap 230 between the conical grater 221 and the vertical cylinder 210. The material is placed on the conical grater 221. Due to the centrifugal force and the influence of the inclined surface of the conical grater 221 itself, the grated material will move toward the discharge gap 230 to achieve automatic discharge.

[0042] In an optional embodiment, at least one blocking member 211 is installed on the inner wall of the vertical cylinder 210 to block the material to be processed on the conical cylinder grater 221; the blocking member 211 is installed on the side wall of the vertical cylinder 210, and the material will move to the annular discharge gap 230 under the action of the inclination angle of the conical cylinder grater 221 itself and the centrifugal force generated by the rotation, and thus be blocked by the blocking member 210; at this time, the conical cylinder grater 221 continues to rotate, thereby grating the material, and the grated material is discharged from the discharge gap 230.

[0043] In an optional embodiment, the bottom surface of the blocking member 211 is arranged parallel to the outer conical surface of the conical grater 221 with a gap therebetween; this ensures that the distances between the blocking member 211 and the conical grater 221 are substantially equal at all locations, thereby ensuring that the material can be completely grated.

[0044] In an optional embodiment, the gap between the bottom surface of the blocking member 211 and the conical grater 221 is less than or equal to the discharge gap 230; so that the material stays at the blocking member 211 and is completely grated before being discharged from the discharge gap 230; it can be understood that if the gap here is too large, the material will not be completely grated and will continue to move on the conical grater 221, and at this time the size of the material cannot pass through the discharge gap 230, resulting in poor grating effect and low efficiency.

[0045] In an optional embodiment, a cylindrical storage chamber 240 is provided below the discharge gap 230; a shaving power shaft 222 extends into the storage chamber 240, and at least one stripper plate 250 is mounted on the outside of the shaving power shaft 222; the shredded material falls from the discharge gap 230 into the storage chamber 240, and the shaving power shaft 222 drives the conical shaving blade 221 to rotate and shave while also driving the stripper plate 250 to rotate, thereby pushing the shredded material in the storage chamber 240 toward a designated area. Multiple functions are achieved through a single power source, resulting in a compact structural design and reliable operation.

[0046] In an optional embodiment, the storage chamber 240 is connected to and communicates with a discharge guide portion 260, and the material pushed by the material diverter plate 250 is guided to a designated area for collection through the discharge guide portion 260.

[0047] It should be understood that the terms used herein are for the purpose of describing specific example embodiments only and are not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms "one", "an" and "said" as used herein may also be meant to include plural forms. The terms "comprise", "include", "contain" and "have" are inclusive and therefore specify the presence of stated features, steps, operations, elements and / or parts, but do not exclude the presence or addition of one or more other features, steps, operations, elements, parts, and / or combinations thereof. The method steps, processes, and operations described herein are not to be construed as necessarily requiring them to be performed in the specific order described or illustrated, unless the order of execution is clearly indicated. It should also be understood that additional or alternative steps may be used.

[0048] Although the terms first, second, third, etc. can be used in the text to describe multiple elements, components, regions, layers and / or sections, these elements, components, regions, layers and / or sections should not be limited by these terms. These terms can only be used to distinguish an element, component, region, layer or section from another region, layer or section. Unless the context clearly indicates otherwise, terms such as "first", "second" and other numerical terms do not imply order or sequence when used in the text. Therefore, the first element, component, region, layer or section discussed below can be referred to as the second element, component, region, layer or section without departing from the teaching of the example embodiments.

[0049] The foregoing is merely a list of specific embodiments of the present application, intended to enable those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application is not limited to the embodiments shown herein, but is intended to conform to the broadest scope consistent with the principles and novel features of the present application.

Claims

1. Chopping and shredding machine, characterized by: include Rack (1); A chopping device (100) is mounted on the frame (1) and comprises a chopping chamber (110) and a chopping knife assembly (120) rotatably disposed in the chopping chamber (110); A vertical shredder device (200) is mounted on the frame (1) and comprises a vertical cylinder (210) and a conical cylinder shredder cutter assembly (220) rotatably disposed in the vertical cylinder (210), wherein an annular discharge gap (230) exists between the outer end of the conical cylinder shredder cutter assembly (220) and the inner wall of the vertical cylinder (210); A driving device (300) for driving and connecting the chopping knife assembly (120) and the conical grating knife assembly (220); The driving device (300) comprises a driving motor (310) and a power transmission assembly (320); the chopping knife assembly (120) comprises mutually connected chopping knives (121) and a chopping power shaft (122); the conical grating knife assembly (220) comprises mutually connected conical grating knives (221) and a grating power shaft (222); the power output end of the power transmission assembly (320) is connected to the driving motor (310); and the power output end of the power transmission assembly (320) is simultaneously connected to the chopping power shaft (122) and the grating power shaft (222).

2. The integrated chopping and shredding machine according to claim 1, characterized in that: The chopping knife (121) has a blade portion (1211) and a material pushing portion (1212), and the chopping knife (121) performs rotational cutting in a horizontal plane.

3. The integrated chopping and shredding machine according to claim 1, characterized in that: A feed hopper (130) is installed on and communicated with the cutting chamber (110), and at least one discharge through hole (140) is provided at the bottom of the cutting chamber (110).

4. The integrated chopping and shredding machine according to claim 3, characterized in that: An openable cover (111) is provided on the cutting chamber (110).

5. The integrated chopping and shredding machine according to any one of claims 1 to 4, characterized in that: The conical grater (221) is configured to be in the shape of a conical cylinder with a small upper end and a large lower end, and the conical grater (221) is concentrically disposed with the vertical cylinder (210).

6. The integrated chopping and shredding machine according to claim 5, characterized in that: At least one blocking member (211) is installed on the inner wall of the vertical cylinder (210) to block the object to be processed on the conical cylinder grater (221).

7. The integrated chopping and shredding machine according to claim 6, characterized in that: The bottom surface of the blocking member (211) is arranged parallel to the outer conical surface of the conical grater (221), with a gap between them.

8. The integrated chopping and shredding machine according to claim 7, characterized in that: The width of the gap between the bottom surface of the blocking member (211) and the conical grater (221) is less than or equal to the width of the discharge gap (230).

9. The integrated chopping and shredding machine according to any one of claims 1 to 4, characterized in that: A cylindrical material storage cavity (240) is provided on the lower side of the discharge gap (230); the shaving power shaft (222) extends into the material storage cavity (240), and at least one material shifting plate (250) is installed on the outer side of the shaving power shaft (222).