Saccharifying tank with lifting and feeding mechanism

By introducing electric push rod-driven conveying pipelines and lifting feeding structures into the saccharification tank, the problems of large space occupied by the saccharification tank and syrup splashing are solved, and space utilization efficiency and cleaning convenience are improved.

CN223292521UActive Publication Date: 2025-09-02ANHUI GUOJI FOOD CO LTD
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Patent Information

Application Number
CN202422510227.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-09-02
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

The lifting and feeding mechanism of the existing saccharification tank takes up a large space and the syrup is prone to splashing when discharged, resulting in difficulty in cleaning.

Method used

A saccharification tank with a lifting feeding mechanism is designed, including a conveying pipeline and a lifting feeding structure driven by an electric push rod. The shrinkage of the conveying pipeline and the rapid docking of the bearing barrel are achieved through the controller, which solves the problems of space occupation and syrup splash respectively.

Benefits of technology

The conveying pipeline shrinks when not in use, reduces space occupation, and prevents syrup splashing through rapid docking, improving cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The saccharifying tank comprises a supporting frame, the end face of the supporting frame is connected with a saccharifying tank body through a connecting plate, a feeding port of the saccharifying tank body is connected with the lifting and feeding mechanism, an electromagnetic valve is arranged at the bottom of the saccharifying tank body, and the lifting and feeding mechanism is arranged on the bottom of the saccharifying tank body. According to the saccharifying tank with the lifting and feeding mechanism, the lifting and feeding mechanism is arranged in the saccharifying tank with the lifting and feeding mechanism, so that an electric push rod in the lifting and feeding mechanism enables a conveying pipeline to be retractable through a transmission structure, and when feeding is needed, the conveying pipeline is connected with the lifting and feeding mechanism. The conveying pipeline can be quickly pushed up, a certain angle is formed between the conveying pipeline and the ground, and when the conveying pipeline is not used, the electric push rod can be started to fold the conveying pipeline, so that the conveying pipeline can be conveniently contracted, the placing space of the device is not occupied, and the problems that the conveying pipeline cannot be contracted and occupies the placing space of the device are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of syrup production, in particular to a saccharification tank with a lifting and feeding mechanism. Background Art

[0002] Saccharification, the process of breaking down starch into sweet products by adding water, is a key process in the manufacture of starch sugars and the primary process for generating many intermediate products during food fermentation. Today, saccharification tanks are commonly used for protein breakdown or starch saccharification.

[0003] The current saccharification tank lifting and feeding mechanisms are mostly fixed on the saccharification tank and occupy a large space. At the same time, when the saccharification tank is discharged, the syrup will splash everywhere, making it more troublesome to clean. Utility Model Content

[0004] The utility model provides a saccharification tank with a lifting and feeding mechanism to solve the above problems.

[0005] To achieve the above purpose, the present invention provides the following technical solutions:

[0006] A saccharification tank with a lifting and feeding mechanism includes a support frame, a saccharification tank body is connected to the end surface of the support frame via a connecting plate, a lifting and feeding structure is connected to the feed port of the saccharification tank body, a solenoid valve is provided at the bottom of the saccharification tank body, a lifting and feeding structure is connected to the support frame and located at the bottom of the solenoid valve, and a controller is connected to the side wall of the saccharification tank body.

[0007] As an optimal solution of the present invention, the lifting and feeding structure includes an electric push rod, which is connected to the cross beam of the support frame, and the driving end of the electric push rod is connected to a connecting slider, and a limiting slide rod is symmetrically connected to the side wall of the connecting slider, and a limiting slide rod is connected to the limiting slide rod, and a limiting slide groove is provided on the side wall of the limiting slide corresponding to the limiting slide rod, and the side wall of the limiting slide is connected to a conveying pipe, and the bottom of the conveying pipe is connected to a conveying motor, and the driving end of the conveying motor is connected to a conveying auger through a coupling and located in the inner cavity of the conveying pipe, and a feeding funnel is provided on the side wall of the conveying pipe, and a feeding pipe is connected to the side wall of the conveying pipe, and the other end of the feeding pipe is connected to a spherical connector, and the other end of the spherical connector is connected to the feed port of the saccharification tank body through a connecting pipe.

[0008] The top of the movable lifting device is connected with the fixed sliding rail, and the top of the movable lifting device is connected with the movable lifting device.

[0009] As a preferred solution of the present invention, the electric push rod is connected to the controller via a wire and the connection method is electrical connection, and the connection method between the limiting slide rod and the limiting slide groove is sliding connection.

[0010] As a preferred solution of the present invention, the conveying motor is connected to the controller through a wire and the connection method is electrical connection, and the conveying auger is connected to the end face of the conveying pipe through a bearing seat, wherein the connection method between the conveying auger and the bearing seat is rotational connection.

[0011] As a preferred solution of the present invention, the driving motor is connected to the controller through a wire and the connection method is electrical connection, and the rotating rod is connected to the end face of the fixed connecting plate through a bearing seat, wherein the connection method between the rotating rod and the bearing seat is rotational connection.

[0012] As a preferred solution of the present invention, the rotating screw is connected to the end face of the fixed connecting plate through a bearing seat, wherein the connection between the rotating screw and the bearing seat is a rotating connection, the rotating screw is composed of a left-handed screw and a right-handed screw, and the connection between the rotating screw and the movable slider is a threaded connection.

[0013] As a preferred solution of the present invention, a slide groove is provided on the fixed slide rail and corresponds to the scissor lift frame, wherein the scissor lift frame is connected to the slide groove by sliding connection, and a slide groove is provided on the movable slide rail and corresponds to the scissor lift frame, wherein the scissor lift frame is connected to the slide groove by sliding connection.

[0014] The utility model is provided with a lifting and feeding structure, so that the electric push rod in the lifting and feeding structure is used to make the conveying pipe retractable through the transmission structure. When feeding is needed, the conveying pipe can be quickly pushed up and at a certain angle to the ground. When not in use, the electric push rod can be started to retract the conveying pipe, thereby facilitating the retraction of the conveying pipe and not occupying the space for placing the device, thereby solving the problem that the conveying pipe cannot be retracted and occupies the space for placing the device.

[0015] The utility model is provided with a lifting material receiving structure, so that the driving motor in the lifting material receiving structure is used to quickly connect the receiving barrel with the bottom of the electromagnetic valve through the transmission structure. When it is necessary to unload the material, the receiving barrel can be quickly connected with the bottom of the electromagnetic valve, thereby preventing the syrup from splashing when unloading, thereby solving the problem of syrup splashing when unloading. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the positive and equal side structure of the utility model;

[0017] Figure 2 This is a structural diagram of the lifting and feeding structure of the utility model;

[0018] Figure 3 For this utility model Figure 2 Schematic diagram of the cross-sectional structure;

[0019] Figure 4 This is a structural diagram of the lifting material connection structure of the utility model;

[0020] Figure 5 For this utility model Figure 4 Schematic diagram of part of the structure.

[0021] In the figure: 1. Support frame; 2. Saccharification tank body; 3. Lifting and feeding structure; 4. Solenoid valve; 5. Lifting and receiving structure; 6. Controller; 301. Electric push rod; 302. Connecting slider; 303. Limiting slide bar; 304. Limiting slide plate; 305. Limiting slide chute; 306. Conveying pipeline; 307. Conveying motor; 308. Conveying auger; 309. Feeding funnel; 310. Feeding pipe; 311. Ball connector; 501. Fixed connecting plate; 502. Driving motor; 503. Rotating rod; 504. Driving bevel gear; 505. Driven bevel gear; 506. Rotating screw; 507. Moving slider; 508. Scissor-type lifting frame; 509. Fixed slide rail; 510. Moving slide rail; 511. Moving connecting plate; 512. Arc baffle; 513. Receiving barrel. DETAILED DESCRIPTION

[0022] The following will combine the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0023] For example, please refer to Figure 1-5 , the utility model provides a technical solution:

[0024] A saccharification tank with a lifting and feeding mechanism includes a support frame 1, a saccharification tank body 2 is connected to the end surface of the support frame 1 via a connecting plate, a lifting and feeding structure 3 is connected to the feed port of the saccharification tank body 2, a solenoid valve 4 is provided at the bottom of the saccharification tank body 2, a lifting and feeding structure 5 is connected to the support frame 1 and located at the bottom of the solenoid valve 4, and a controller 6 is connected to the side wall of the saccharification tank body 2.

[0025] In this embodiment, reference Figure 1 、 Figure 2 and Figure 3 The lifting and feeding structure 3 includes an electric push rod 301, which is connected to the crossbeam of the support frame 1. The driving end of the electric push rod 301 is connected to a connecting slider 302. The side wall of the connecting slider 302 is symmetrically connected to a limiting slider 303. The limiting slider 303 is connected to a limiting slide 304. A limiting chute 305 is provided on the side wall of the limiting slide 304 corresponding to the limiting slider 303. The side wall of the limiting slide 304 is connected to a conveying pipe 306. A conveying motor 307 is connected to the bottom of the conveying pipe 306. The driving end of the conveying motor 307 is connected to a conveying auger 308 through a coupling and located in the inner cavity of the conveying pipe 306. A feeding funnel 309 is provided on the side wall of the conveying pipe 306. A feeding pipe 310 is connected to the side wall of the conveying pipe 306. The other end of the feeding pipe 310 is connected to a spherical connector 311. The other end of the spherical connector 311 is connected to the feeding port of the saccharification tank body 2 through a connecting pipe.

[0026] Based on the above structure and the connection relationship of the above structure, the controller 6 controls the electric push rod 301, and the driving end of the electric push rod 301 moves forward, so that the conveying pipe 306 is pushed up and forms a certain angle with the ground. Then, the conveying motor 307 is started to rotate the driving end of the conveying motor 307, thereby driving the conveying auger 308 to rotate, thereby conveying the material to the inner cavity of the saccharification tank body 2. When not in use, the electric push rod 301 is started in the same way as above to retract the lifting feeding structure 3.

[0027] The electric push rod 301 is connected to the controller 6 through a wire and the connection method is electrical connection. The conveying motor 307 is connected to the controller 6 through a wire and the connection method is electrical connection. The operation of the electric push rod 301 and the conveying motor 307 is controlled by the controller 6; the connection method between the limiting slide 303 and the limiting slide groove 305 is a sliding connection, and the conveying auger 308 is connected to the end face of the conveying pipe 306 through a bearing seat, and the connection method between the conveying auger 308 and the bearing seat is a rotating connection, which makes the device smoother when in use.

[0028] In this embodiment, reference Figure 1 、 Figure 4 and Figure 5 The lifting material connection structure 5 includes a fixed connecting plate 501, which is connected to the support frame 1. The end surface of the fixed connecting plate 501 is connected to a driving motor 502 through a connecting seat. The driving end of the driving motor 502 is connected to a rotating rod 503 through a coupling. The other end of the rotating rod 503 is meshed with a driven bevel gear 505 through a driving bevel gear 504. The center of the driven bevel gear 505 is connected to a rotating screw rod 506. The side wall of the rotating screw rod 506 is symmetrically connected to a moving slider 507. The moving slider A scissor-type lifting frame 508 is connected to the side wall of block 507, and a fixed slide rail 509 is symmetrically connected to the bottom of the scissor-type lifting frame 508. The fixed slide rail 509 is connected to the end face of the fixed connecting plate 501. The top of the scissor-type lifting frame 508 is symmetrically connected to the movable slide rail 510, and a movable connecting plate 511 is connected to the end face of the movable slide rail 510. An arc-shaped baffle 512 is connected to the end face of the movable connecting plate 511. A receiving barrel 513 is provided on the end face of the movable connecting plate 511 and corresponding to the bottom of the solenoid valve 4.

[0029] Based on the above structure and the connection relationship of the above structure, the driving motor 502 is controlled by the controller 6. When the driving end of the driving motor 502 rotates, it drives the rotating rod 503, the driving bevel gear 504, the driven bevel gear 505, and the rotating screw 506 to rotate in sequence. When the rotating screw 506 rotates, the end face receiving barrel 513 of the movable connecting plate 511 is quickly docked with the bottom of the upper solenoid valve 4.

[0030] The driving motor 502 is connected to the controller 6 through a wire and the connection is electrically connected, and the operation of the driving motor 502 is controlled by the controller 6; the rotating rod 503 is connected to the end face of the fixed connecting plate 501 through a bearing seat, wherein the rotating rod 503 is connected to the bearing seat in a rotating manner, and the rotating screw rod 506 is connected to the end face of the fixed connecting plate 501 through the bearing seat, wherein the rotating screw rod 506 is connected to the bearing seat in a rotating manner, and the rotating screw rod 506 is spliced ​​with a left-handed screw rod and a right-handed screw rod, and the rotating screw rod 506 is connected to the movable slider 507 in a threaded connection, and a sliding groove is provided on the fixed slide rail 509 corresponding to the scissor-type lifting frame 508, wherein the scissor-type lifting frame 508 is connected to the sliding groove in a sliding manner, and a sliding groove is provided on the movable slide rail 510 corresponding to the scissor-type lifting frame 508, wherein the scissor-type lifting frame 508 is connected to the sliding groove in a sliding manner, which makes the device more convenient when in use.

[0031] When using the saccharification tank of the present invention, the device is first powered on to put it into working condition. When loading is required, the electric push rod 301 is started under the condition that the electric push rod 301 is connected to the controller 6 through a wire and the connection mode is electrical connection, so that the driving end of the electric push rod 301 moves forward. Under the action of the sliding connection between the limiting slide bar 303 and the limiting slide groove 305 and the spherical connector 311, the conveying pipe 306 is pushed up and forms a certain angle with the ground. Then the material is poured from the feeding funnel 309. When the conveying motor 307 is connected to the controller 6 via a wire and the connection is electrical, the conveying motor 307 is started, so that the driving end of the conveying motor 307 rotates. When the conveying auger 308 is connected to the end surface of the conveying pipe 306 via a bearing seat, and the connection between the conveying auger 308 and the bearing seat is rotational, the conveying auger 308 is driven to rotate, thereby conveying the material into the inner cavity of the saccharification tank body 2. When not in use, the electric push rod 301 is started in the same manner as above to retract the lifting and feeding structure 3;

[0032] When it is necessary to cut the material, the driving motor 502 is started under the condition that the driving motor 502 is connected to the controller 6 through a wire and the connection mode is electrical connection, so that the driving end of the driving motor 502 rotates, and the rotating rod 503 is connected to the end face of the fixed connecting plate 501 through the bearing seat, wherein the connection mode of the rotating rod 503 and the bearing seat is a rotational connection, which drives the rotating rod 503 to rotate, and the other end of the rotating rod 503 is meshed with the driven bevel gear 505 through the driving bevel gear 504, which drives the driven bevel gear 505 to rotate, and the rotating screw rod 506 is connected to the end face of the fixed connecting plate 501 through the bearing seat, wherein the rotating screw rod 50 6 is connected to the bearing seat in a rotating manner, which drives the rotating screw rod 506 to rotate. The rotating screw rod 506 is spliced ​​by a section of left-handed screw rod and a section of right-handed screw rod. The rotating screw rod 506 is connected to the movable slider 507 in a threaded connection. A sliding groove is provided on the fixed slide rail 509 corresponding to the scissor-type lifting frame 508, wherein the connection mode of the scissor-type lifting frame 508 and the sliding groove is a sliding connection. A sliding groove is provided on the movable slide rail 510 corresponding to the scissor-type lifting frame 508, wherein the connection mode of the scissor-type lifting frame 508 and the sliding groove is a sliding connection, so that the end face receiving barrel 513 of the movable connecting plate 511 can be quickly docked with the bottom of the solenoid valve 4.

[0033] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A saccharification tank with a lifting and feeding mechanism, comprising a support frame (1), characterized in that: The end surface of the support frame (1) is connected to a saccharification tank body (2) via a connecting plate, a lifting and feeding structure (3) is connected to a feed port of the saccharification tank body (2), a solenoid valve (4) is provided at the bottom of the saccharification tank body (2), a lifting and feeding structure (5) is connected to the support frame (1) and located at the bottom of the solenoid valve (4), and a controller (6) is connected to the side wall of the saccharification tank body (2).

2. The saccharification tank with a lifting and feeding mechanism according to claim 1, characterized in that: The lifting feeding structure (3) includes an electric push rod (301), the electric push rod (301) is connected to the crossbeam of the support frame (1), the driving end of the electric push rod (301) is connected to a connecting slider (302), the side wall of the connecting slider (302) is symmetrically connected to a limiting slider (303), the limiting slider (303) is connected to a limiting slide plate (304), the side wall of the limiting slide plate (304) is provided with a limiting chute (305) corresponding to the limiting slider (303), and the side wall of the limiting slide plate (304) is connected to a conveying pipe (306). ), the bottom of the delivery pipe (306) is connected to a delivery motor (307), the driving end of the delivery motor (307) is connected to a delivery auger (308) through a coupling and is located in the inner cavity of the delivery pipe (306), a feeding funnel (309) is provided on the side wall of the delivery pipe (306), a feeding pipe (310) is connected to the side wall of the delivery pipe (306), the other end of the feeding pipe (310) is connected to a spherical connector (311), and the other end of the spherical connector (311) is connected to the feeding port of the saccharification tank body (2) through a connecting pipe.

3. The saccharification tank with a lifting and feeding mechanism according to claim 1, characterized in that: The lifting material connection structure (5) comprises a fixed connecting plate (501), the fixed connecting plate (501) is connected to the support frame (1), the end surface of the fixed connecting plate (501) is connected to a driving motor (502) via a connecting seat, the driving end of the driving motor (502) is connected to a rotating rod (503) via a coupling, the other end of the rotating rod (503) is meshedly connected to a driven bevel gear (505) via a driving bevel gear (504), the center of the driven bevel gear (505) is connected to a rotating screw (506), the side wall of the rotating screw (506) is symmetrically connected to a moving slider (507), and the moving slider (507) is symmetrically connected to the side wall of the rotating screw (506). A scissor-type lifting frame (508) is connected to the side wall of the movable slider (507), and a fixed slide rail (509) is symmetrically connected to the bottom of the scissor-type lifting frame (508), and the fixed slide rail (509) is connected to the end surface of the fixed connecting plate (501). The top of the scissor-type lifting frame (508) is symmetrically connected to a movable slide rail (510), and a movable connecting plate (511) is connected to the end surface of the movable slide rail (510). An arc-shaped baffle (512) is connected to the end surface of the movable connecting plate (511), and a receiving barrel (513) is provided on the end surface of the movable connecting plate (511) and corresponding to the bottom of the solenoid valve (4).

4. The saccharification tank with a lifting and feeding mechanism according to claim 2, characterized in that: The electric push rod (301) is connected to the controller (6) via a wire and the connection method is electrical connection, and the connection method between the limiting slide rod (303) and the limiting slide groove (305) is sliding connection.

5. The saccharification tank with a lifting and feeding mechanism according to claim 2, characterized in that: The conveying motor (307) is connected to the controller (6) via a wire and the connection method is electrical connection. The conveying auger (308) is connected to the end face of the conveying pipe (306) via a bearing seat, wherein the connection method of the conveying auger (308) and the bearing seat is rotational connection.

6. The saccharification tank with a lifting and feeding mechanism according to claim 3, characterized in that: The driving motor (502) is connected to the controller (6) via a wire and the connection method is electrical connection. The rotating rod (503) is connected to the end surface of the fixed connecting plate (501) via a bearing seat, wherein the connection method of the rotating rod (503) and the bearing seat is rotational connection.

7. The saccharification tank with a lifting and feeding mechanism according to claim 3, characterized in that: The rotating screw rod (506) is connected to the end face of the fixed connecting plate (501) through a bearing seat, wherein the rotating screw rod (506) and the bearing seat are connected in a rotating manner, the rotating screw rod (506) is composed of a section of left-handed screw rod and a section of right-handed screw rod, and the rotating screw rod (506) and the movable slider (507) are connected in a threaded manner.

8. The saccharification tank with a lifting and feeding mechanism according to claim 3, characterized in that: A slide groove is provided on the fixed slide rail (509) and corresponds to the scissor-type lifting frame (508), wherein the scissor-type lifting frame (508) is connected to the slide groove in a sliding manner; a slide groove is provided on the movable slide rail (510) and corresponds to the scissor-type lifting frame (508), wherein the scissor-type lifting frame (508) is connected to the slide groove in a sliding manner.