Enzymolysis device for preparing collagen peptide from deer skin

By introducing an automated tank lid lifting mechanism and stirring system into the enzymatic hydrolysis device, the problem of low manual operation efficiency is solved, rapid sealing and efficient stirring of the tank lid and tank body are achieved, and operating costs and time consumption are reduced.

CN223316693UActive Publication Date: 2025-09-09JILIN ACAD OF AGRI SCI
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Patent Information

Application Number
CN202422516052.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-09-09
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

The existing enzymatic hydrolysis device for preparing collagen peptides from deerskin requires manual operation during the closing process of the tank body and the cover body, which wastes manpower, is inefficient, and increases costs.

Method used

An enzymatic hydrolysis device was designed. A movable mechanism was added to the tank body, and the automatic movement and closing of the tank cover was achieved through the sliding connection of the lifting frame and the guide rail. Combined with the design of the limit pin and limit slot, the tank cover and the tank body were quickly aligned and sealed, and the stirring blade was driven by a servo motor for stirring.

Benefits of technology

The automatic closing of the tank cover and the tank body is realized, which saves manpower and time, reduces operating costs, and improves the efficiency and convenience of the enzymatic hydrolysis reaction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an enzymolysis device for preparing collagen peptide from deerskin, and relates to the field of collagen peptide preparation, the enzymolysis device comprises a tank body used for containing deerskin and carrying out enzymolysis reaction, the tank body is detachably connected with a tank cover, the outer wall of the tank body is provided and connected with a fixed table, and the fixed table is connected with the ground through a support frame; the top end of the tank cover is connected with a movable mechanism used for driving the tank cover to ascend and descend, the movable mechanism is movably connected with a lifting frame in a lifting mode, and the lifting frame and the ground are arranged in a sliding mode through a guide rail. The movable mechanism comprises a movable connecting base, the movable connecting base is connected with the tank cover through bolts, the end, away from the tank cover, of the movable connecting base is movably connected with the lifting structure, and the lifting structure is movably connected with the lifting frame in a lifting mode. The enzymolysis device can replace manpower to move and carry the tank cover for the enzymolysis reaction, so that the manpower and the time are saved, the device is convenient to clean and maintain in the later period, and the cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the field of collagen peptide preparation, in particular to an enzymatic hydrolysis device for preparing collagen peptide from deerskin. Background Art

[0002] Deerskin is rich in essential amino acids and has medicinal properties such as tonifying qi and blood, treating anemia, and combating fatigue, making it an excellent raw material for producing collagen peptides. The method for producing collagen peptides from sika deer hide involves taking sika deer hide, processing and purifying it to produce collagen, and then converting it into collagen peptides through a specialized process. This not only enhances its biological activity but also potentially offers anti-aging and antioxidant benefits. Current methods for producing collagen peptides from deerskin primarily include acid, enzymatic, ultrasound-assisted, and dual-enzymatic methods. Selected deerskin is placed in a preparation tank and undergoes a series of enzymatic hydrolysis reactions to produce crude collagen peptides. One type of enzymatic hydrolysis device currently used for producing collagen peptides from deerskin, the preparation tank, requires a sealed tank body and lid to ensure the smooth progress of the enzymatic hydrolysis reaction. In the process of closing the tank body and the cover body, the cover body is generally lifted to the top of the tank body manually, which not only wastes manpower, but also takes a lot of time to align the tank body and the cover body, is inefficient, and increases costs. Utility Model Content

[0003] The purpose of this utility model is achieved through the following technical solutions:

[0004] An enzymatic hydrolysis device for preparing collagen peptides from deerskin, comprising a tank body for containing deerskin and performing enzymatic hydrolysis reaction, the tank body being detachably connected to a tank cover, the outer wall of the tank body being mounted and connected to a fixing platform, the fixing platform being connected to the ground via a support frame;

[0005] The top of the tank cover is connected to a movable mechanism for driving the tank cover to move up and down. The movable mechanism is connected to a lifting frame for lifting and lowering. The lifting frame is slidably arranged on the ground via a guide rail.

[0006] The movable mechanism includes a movable connecting seat, which is connected to the tank cover through bolts. One end of the movable connecting seat away from the tank cover is movably connected to the lifting structure, and the lifting structure is movably connected to the lifting frame.

[0007] Preferably, the lifting structure includes a movable connecting frame, and the movable connecting frame is hinged to an end of the movable connecting frame away from the tank cover through a hinge seat;

[0008] The two sides of one end of the movable connecting frame away from the movable connecting seat are respectively connected with connecting columns, and the connecting columns are movably connected to the lifting frame.

[0009] Preferably, the lifting frame comprises two vertically parallel sliding guide beams;

[0010] A sliding groove is provided on the sliding guide beam, and a sliding block is connected to one end of the connecting column close to the sliding guide beam, and the sliding block is slidably adapted to the sliding groove.

[0011] Preferably, the movable connecting frame is connected to a hydraulic telescopic rod via a hinge seat, and the other end of the hydraulic telescopic rod is hinged to the movable connecting seat via a hinge seat.

[0012] Preferably, the tank cover is provided with a rotating shaft which rotates through a bearing, one end of the rotating shaft is used to extend and be placed in the hollow cavity of the tank body, and the rotating shaft placed in the hollow cavity of the tank body is connected to a stirring blade for stirring the deerskin mixture in the tank body, and the other end of the rotating shaft is connected to the output end of the servo motor, and the servo motor is connected and fixed to the tank cover through a fixed bracket.

[0013] Preferably, a plurality of limiting pins are connected to one end of the tank cover close to the tank body, and a limiting groove corresponding to and movably fitting with the limiting pins is formed on one end of the tank body close to the tank cover.

[0014] Preferably, a plurality of connecting blocks are connected around the outer wall of one end of the tank cover close to the tank body, and limiting bolts are movably provided on the connecting blocks;

[0015] The outer wall of one end of the tank body close to the tank cover is connected with a limiting block corresponding to the connecting block. The connecting block and the limiting block are detachably connected by limiting bolts.

[0016] The beneficial effects of the utility model are as follows: the purpose of the utility model is to provide an enzymatic hydrolysis device for preparing collagen peptides from deerskin, the enzymatic hydrolysis device is used to perform enzymatic hydrolysis on deerskin and other raw materials, and finally obtain the raw materials for preparing collagen peptides; the enzymatic hydrolysis device is provided with a movable mechanism for conveniently moving the can cover to the top of the can body and closing it with the can body on the original can cover for containing and performing enzymatic hydrolysis reaction; thereby, the additional movable mechanism can replace manual labor in moving and transporting the can cover for the enzymatic hydrolysis reaction, thereby saving manpower and time, and facilitating the subsequent cleaning and maintenance of the device, thereby reducing costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the overall connection structure of an enzymatic hydrolysis device for preparing collagen peptides from deerskin in the utility model;

[0018] Figure 2 This is an exploded schematic diagram of the connection structure of an enzymatic hydrolysis device for preparing collagen peptides from deerskin according to the utility model;

[0019] Figure 3This is a schematic diagram of the connection structure between the tank body and the tank cover of an enzymatic hydrolysis device for preparing collagen peptides from deerskin in the utility model;

[0020] Figure 4 This is an exploded schematic diagram of the connection structure between the tank body and the tank cover of an enzymatic hydrolysis device for preparing collagen peptides from deerskin in the utility model;

[0021] Figure 5 This is a schematic diagram of the active mechanism of an enzymatic hydrolysis device for preparing collagen peptides from deerskin according to the present invention;

[0022] Figure 6 This is an exploded schematic diagram of the active mechanism of an enzymatic hydrolysis device for preparing collagen peptides from deerskin according to the present invention;

[0023] In the figure, 1-tank body, 2-tank cover, 3-fixed platform, 4-lifting frame, 5-movable connecting seat, 21-rotating shaft, 22-servo motor, 51-movable connecting frame, 52-connecting column, 53-hydraulic telescopic rod. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical solutions and advantages of the present invention more clear, the present invention is further described in detail below with reference to the accompanying drawings and embodiments.

[0025] Example 1

[0026] like Figures 1 to 6 As shown, an enzymatic hydrolysis device for preparing collagen peptides from deerskin is used to enzymatically hydrolyze deerskin and other raw materials to ultimately obtain the raw materials for preparing collagen peptides. The enzymatic hydrolysis device structurally includes a tank body 1 for containing the deerskin and performing the enzymatic hydrolysis reaction. The tank body 1 is detachably connected to a tank lid 2. A fixed platform 3 is mounted on the outer wall of the tank body 1 and connected to the ground via a support frame. The top of the tank lid 2 is connected to a movable mechanism for driving the tank lid 2 to move upward and downward. The movable mechanism is movably connected to a lifting frame 4, which is slidably connected to the ground via guide rails. The tank body 1 for the enzymatic hydrolysis reaction is installed on a fixed platform 3, and the fixed platform 3 is fixed to the ground by a support frame, so that the tank body 1 of the enzymatic hydrolysis device is installed and fixed at a specified position; at the same time, since the lifting frame 4 is slidingly arranged with the ground through a guide rail, the lifting frame 4 is adjusted to move through the guide rail and the lifting frame 4 is moved to a certain position away from the tank body 1, and the tank cover 2 is connected to the movable mechanism of the lifting and lowering connection of the lifting frame 4 by bolts. The movable mechanism is used to control the movement of the tank cover 2 and to seal it with the tank body 1, thereby replacing manual transportation and closing of the tank cover 2 and the tank body 1, thereby saving manpower, time and cost.

[0027] In this embodiment, the movable mechanism includes a movable connection seat 5, which is connected to the tank cover 2 via bolts. The end of the movable connection seat 5 away from the tank cover 2 is movably connected to the lifting structure, and the lifting structure is movably connected to the lifting frame 4. The tank cover 2 is fixed to the movable connection seat 5 of the movable mechanism via bolts; and the movable mechanism moves up and down along the lifting frame 4, thereby driving the tank cover 2 to move up and down. Then, by coordinating the distance between the lifting frame 4 and the tank body 1, the tank cover 2 can be aligned with the tank body 1, facilitating airtight closure.

[0028] Example 2

[0029] Before the lid 2 is closed with the tank body 1, a structure for stirring the deerskin and other raw materials in the tank body 1 and the mixed liquid for preparing collagen peptides is connected to the lid 2. This structure includes a rotating shaft 21. Its specific implementation can be: the lid 2 is rotatably provided with the rotating shaft 21 through a bearing. One end of the rotating shaft 21 is used to extend into the hollow cavity of the tank body 1. The rotating shaft 21 placed in the hollow cavity of the tank body 1 is connected to a stirring blade for stirring the deerskin mixed liquid in the tank body. The other end of the rotating shaft 21 is connected to the output end of the servo motor 22, and the servo motor 22 is fixed to the lid 2 via a fixed bracket. In this way, after these structures are installed and connected to the designed position on the lid 2, the position of the lifting frame 4 and the tank body 1 and the movable mechanism are controlled to drive the movable connection seat 5 to move toward the tank body 1 below, and the rotating shaft 21 and the stirring blade on the rotating shaft 21 are placed in the tank body 1. Finally, the tank body 1 and the lid 2 are connected and closed by bolts.

[0030] Example 3

[0031] In this embodiment, the lifting structure connecting the lifting frame 4 and the movable connecting base 5 includes a movable connecting frame 51, which is hinged to the end of the movable connecting base 51 away from the tank cover 2 via an articulated base. Connecting posts 52 are connected to both sides of the end of the movable connecting frame 51 away from the movable connecting base 5, and the connecting posts 52 are connected to the lifting frame 4 for vertical movement. To achieve vertical movement of the lifting frame 4 and the movable connecting frame 51, the lifting frame 4 includes two vertically parallel sliding guide beams. The sliding guide beams are defined with sliding grooves, and the connecting posts 52 are connected to the ends of the sliding guide beams near the sliding guide beams, which slide into the sliding grooves. When it is necessary to close the tank cover 2 and the tank body 1 to ensure that the "enzymatic hydrolysis reaction" in the entire device proceeds smoothly, the movable connecting frame 51 is driven downward by controlling the slider (electric slider) to move toward the tank body 1 which is now installed and stably in the specified position, and the rotating shaft 21 connected to the tank cover 2 and the stirring blade on the rotating shaft 21 are placed in the tank body 1 until the tank cover 2 contacts the tank body 1, and then the tank cover 2 and the tank body 1 are "sealed".

[0032] At the same time, in order to ensure that the tank cover 2 and the tank body 1 are quickly connected and aligned, the tank cover 2 is connected to a plurality of limit pins 21 at the end close to the tank body 1, and the tank body 1 is provided with a limit groove corresponding to the limit pin 21 and movably adapted at the end close to the tank cover 2; by aligning and adapting the set limit pins 21 with the limit grooves corresponding to the tank cover 2, the tank cover 2 and the tank body 1 can be quickly aligned, saving alignment time. In addition, a plurality of connecting blocks are connected around the outer wall of the end close to the tank body 1, and the connecting blocks are movably penetrated with limit bolts; the outer wall of the end close to the tank cover 2 is connected to a limit block corresponding to the connecting block, and the connecting block and the limit block are detachably connected by the limit bolts. When the tank cover 2 contacts the tank body 1, the connecting block and the limit block are connected by bolts, thereby achieving the connection between the tank cover 2 and the tank body 1, ensuring the connection between the two. During the "enzymatic hydrolysis reaction" process of the tank body 1 of the device, in order to ensure sufficient reaction between the deerskin raw material and the mixed liquid in the tank body 1, during the reaction process, the servo motor 22 is controlled to drive the rotating shaft 21 to rotate, thereby driving the stirring blades connected to the rotating shaft 21 placed in the tank body 1 to stir and mix the deerskin raw material and the mixed liquid in the tank body 1, so as to facilitate sufficient contact and sufficient reaction, thereby obtaining as much collagen peptide crude material as possible.

[0033] After the production of collagen peptides from deerskin is complete, the tank body 1 needs to be cleaned and inspected. The bolts connecting the lid 2 to the tank body 1 are loosened, and the movable connecting frame 51 is then moved upward by controlling the slider (electric slider), thereby "separating" the lid 2 from the tank body 1. To facilitate replacement and maintenance of the rotating shaft 21 and stirring blades on the lid 2 and reduce the required height, the movable connecting frame 51 is connected to a hydraulic telescopic rod 53 via a hinged seat. The other end of the hydraulic telescopic rod 53 is hinged to the movable connecting frame 5 via a hinged seat. By controlling the hydraulic telescopic rod 53 to retract, the movable connecting frame 5 rotates around the movable connecting frame 51, thereby driving the lid 2 to rotate horizontally. When the lid 2, with the rotating shaft 21 and stirring blades, is horizontal, the movable connecting frame 51 is then moved downward by controlling the slider (electric slider), facilitating cleaning, replacement, and maintenance of the rotating shaft 21 and stirring blades on the lid 2.

[0034] To this end, the enzymatic hydrolysis device adds a movable mechanism to the original can lid used for containing and performing enzymatic hydrolysis reactions, which is used to facilitate moving the can lid to the top of the can body and closing it with the can body; thus, the added movable mechanism can replace manual labor in moving and transporting the can lid used for the enzymatic hydrolysis reaction, thereby saving manpower and time, and facilitating the subsequent cleaning and maintenance of the device, thereby reducing costs.

Claims

1. An enzymatic hydrolysis device for preparing collagen peptides from deerskin, comprising a tank for containing deerskin and performing enzymatic hydrolysis, wherein the tank is detachably connected to a tank cover, characterized in that: The outer wall of the tank body is connected to a fixing platform, and the fixing platform is connected to the ground through a support frame; The top of the tank cover is connected to a movable mechanism for driving the tank cover to move up and down. The movable mechanism is connected to a lifting frame for lifting and lowering. The lifting frame is slidably arranged on the ground via a guide rail. The movable mechanism includes a movable connecting seat, which is connected to the tank cover through bolts. One end of the movable connecting seat away from the tank cover is movably connected to the lifting structure, and the lifting structure is movably connected to the lifting frame.

2. The enzymatic hydrolysis device for preparing collagen peptides from deerskin according to claim 1, characterized in that: The lifting structure includes a movable connecting frame, and the movable connecting frame is hinged to the end of the movable connecting base away from the tank cover through a hinge seat; The two sides of one end of the movable connecting frame away from the movable connecting seat are respectively connected with connecting columns, and the connecting columns are movably connected to the lifting frame.

3. The enzymatic hydrolysis device for preparing collagen peptides from deerskin according to claim 2, characterized in that: The lifting frame includes two vertically parallel sliding guide beams; A sliding groove is provided on the sliding guide beam, and a sliding block is connected to one end of the connecting column close to the sliding guide beam, and the sliding block is slidably adapted to the sliding groove.

4. The enzymatic hydrolysis device for preparing collagen peptides from deerskin according to claim 3, characterized in that: The movable connecting frame is connected to a hydraulic telescopic rod through a hinge seat, and the other end of the hydraulic telescopic rod is hinged to the movable connecting seat through a hinge seat.

5. The enzymatic hydrolysis device for preparing collagen peptides from deerskin according to claim 1, characterized in that: The tank cover is provided with a rotating shaft which rotates through a bearing, one end of the rotating shaft is used to extend and be placed in the hollow cavity of the tank body, and the rotating shaft placed in the hollow cavity of the tank body is connected to a stirring blade for stirring the deerskin mixture in the tank body, and the other end of the rotating shaft is connected to the output end of the servo motor, and the servo motor is connected and fixed to the tank cover through a fixed bracket.

6. The enzymatic hydrolysis device for preparing collagen peptides from deerskin according to claim 5, characterized in that: One end of the tank cover close to the tank body is connected with a plurality of limiting pins, and one end of the tank body close to the tank cover is provided with limiting grooves corresponding to and movably adapted to the limiting pins.

7. The enzymatic hydrolysis device for preparing collagen peptides from deerskin according to claim 6, characterized in that: The outer wall of one end of the tank cover close to the tank body is connected to a plurality of connecting blocks, and the connecting blocks are respectively movably provided with limit bolts; The outer wall of one end of the tank body close to the tank cover is connected with a limiting block corresponding to the connecting block. The connecting block and the limiting block are detachably connected by limiting bolts.