Fish gelatin protein extraction device
By designing a stable connection mechanism and a clamping and fixing mechanism that adjusts the force in the fish gel protein extraction device, the problem of overloading of the motor when dealing with a large amount of raw materials is solved, and the stability and safety of the equipment are improved.
Patent Information
- Application Number
- CN202421981036.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-15
AI Technical Summary
When the existing fish gel protein extraction device processes a large amount of raw materials, the motor load increases sharply, which can easily lead to overload and damage to the motor, which will affect production efficiency and safety.
A fish gel protein extraction device is designed, and a connecting mechanism is used to stably connect the motor to the mixer. Through the cooperation of the transmission rod and the external sleeve, the motor rotation can be successfully transmitted to the mixer blades. At the same time, the design of the clamping mechanism and the fixing mechanism allows the rotation and fixing force of the mixer to be adjusted according to actual needs to avoid motor overload.
The device improves the stirring efficiency and the stability of the equipment, avoids equipment damage and production interruptions caused by unstable connections, and enhances the safety and reliability of the device.
Smart Images

Figure CN222984243U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fish collagen extraction, and more specifically, it relates to a fish collagen extraction device. Background Art
[0002] In the existing technology, the extraction of fish collagen is an important link in the food industry, which involves effectively extracting fish collagen from raw materials such as fish meat. This process usually needs to be completed by mechanical devices, including a key step: crushing the raw materials. The existing fish collagen extraction devices generally use mixers to achieve this step. The mixer crushes the meat blocks through the blades rotating at high speed to facilitate the subsequent extraction process.
[0003] However, the existing mixers have certain limitations in design. These devices usually adopt a motor drive system, that is, the rotation of the motor drives the rotation of the blades. This rigid connection method may encounter problems when processing a large amount of raw materials. When the amount of raw materials exceeds a certain limit, the load on the motor will increase sharply, which may cause the motor to be overloaded or even damaged. The damage of the motor will not only cause the equipment to stop running, affecting production efficiency, but also may lead to safety accidents such as electrical fires. In addition, the damage of the motor also means high maintenance costs and replacement costs, increasing the operating costs of the enterprise. Content of the Utility Model
[0004] (1) Technical Problems to be Solved
[0005] In view of the problems existing in the prior art, the utility model provides a fish collagen extraction device to solve the technical problems mentioned in the background art.
[0006] (2) Technical Solutions
[0007] To achieve the above object, the utility model provides the following technical solution: a fish collagen extraction device, including a support frame, the support frame is installed on an external device, a connection mechanism is arranged on the support frame, the connection mechanism includes a mixer, a transmission rod, an outer sleeve, a limiting strip, an inner rod, an external rod, a clamping mechanism, an intermediate sleeve and a fixing mechanism, the mixer is installed on the support frame, the transmission rod is connected to the mixer in a matching manner, the outer sleeve is installed on the transmission rod, a plurality of limiting strips are installed on the side wall of the intermediate sleeve, a limiting groove is opened in the outer sleeve, and the limiting strips are slidably connected in the limiting groove, the clamping mechanism is connected to the inner rod and the external rod in a matching manner, and the fixing mechanism is installed on the outer sleeve.
[0008] The utility model is further arranged such that the clamping mechanism includes a shrinkage sleeve and a slider, the shrinkage sleeve is installed in the intermediate sleeve, and a plurality of the sliders are slidably connected in the shrinkage sleeve. The design of the clamping mechanism ensures the continuity of clamping.
[0009] The utility model is further configured such that a spring is provided on each of the sliders, and a pressing plate is provided on the spring. The design of the spring ensures the elastic force supply for clamping.
[0010] The utility model is further configured such that follower sleeves are respectively provided on the inner rod and the outer connecting rod, and a plurality of the pressing plates respectively abut against the follower sleeves. The design of the follower sleeves ensures the continuity of transmission.
[0011] The utility model is further configured such that synchronous grooves are formed in both of the follower sleeves, and a synchronous rod is slidably provided in the synchronous grooves. The design of the synchronous rod ensures that the two follower sleeves can generate power synchronously.
[0012] The utility model is further configured such that the fixing mechanism includes a push tube, a synchronous spring, a push spring and a thrust bearing. There are two push tubes, and the two push tubes are respectively slidably connected in the middle sleeve, and the inner rod and the outer connecting rod are respectively rotatably connected in the push tubes. A synchronous spring is respectively installed on each of the push tubes, and the synchronous spring abuts against the middle sleeve. A push spring is installed on each of the sliders, and the thrust bearing is sleeved in the middle sleeve, and the push spring abuts against the thrust bearing. The design of the fixing mechanism ensures the adjustment of the clamping force.
[0013] The utility model is further configured such that a threaded sleeve is provided on the outer sleeve in a threaded manner, and anti-slip strips are provided on the outer wall of the threaded sleeve. The threaded sleeve abuts against the push tube. The design of the threaded sleeve ensures the adjustment of the position of the slider.
[0014] The utility model is further configured such that a motor is provided on the support frame, and the motor is cooperatively connected to the outer connecting rod. The design of the motor ensures the continuity of crushing.
[0015] (III) Beneficial effects
[0016] Compared with the prior art, the utility model provides a fish collagen extraction device, which has the following
[0017] beneficial effects:
[0018] 1. The design of the connecting mechanism enables the fish collagen extraction device to effectively connect the motor with the blender, realizing the crushing process of raw materials. Through the cooperative connection of the transmission rod and the outer sleeve, the rotation of the motor can be smoothly transmitted to the blades of the blender, thereby completing the stirring and crushing of raw materials. This connecting mechanism not only improves the stirring efficiency but also ensures the stable connection between the motor and the blender, avoiding equipment damage or production interruption caused by unstable connection.
[0019] 2. The design of the clamping mechanism enables the fish collagen extraction device to adjust the rotation of the blender according to actual needs. Through the sliding connection of the shrinkage sleeve and the slider, and the action of the spring and the pressure plate, the clamping mechanism can automatically unlock when the torque exceeds a certain value, avoiding motor overload and damage, and improving the safety and reliability of equipment use.
[0020] 3. The design of the fixing mechanism enables the fish collagen extraction device to adjust the fixing force of the blender according to actual needs. Through the combined connection of the push tube, the synchronous spring, the push spring and the thrust bearing, the fixing mechanism can adjust the position of the slider and the elastic force of the spring as needed, so as to realize the fixation of the blender rotation. This design not only improves the stirring efficiency, but also enhances the adaptability and flexibility of the device. Brief Description of the Drawings
[0021] Figure 1 It is a schematic diagram of the overall structure of a fish collagen extraction device in the present utility model;
[0022] Figure 2 It is an exploded sectional view structure diagram of the connecting mechanism in the present utility model;
[0023] Figure 3 It is a sectional view structure diagram of the middle sleeve in the present utility model;
[0024] Figure 4 It is a structure diagram of the slider in the present utility model;
[0025] Figure 5 It is a structure diagram of the synchronous rod in the present utility model.
[0026] In the figure: 1, support frame; 2, blender; 3, transmission rod; 4, outer sleeve; 5, limiting strip; 6, inner rod; 7, external connecting rod; 8, middle sleeve; 9, limiting groove; 10, shrinkage sleeve; 11, slider; 12, spring; 13, pressure plate; 14, follower sleeve; 15, synchronous groove; 16, synchronous rod; 17, push tube; 18, synchronous spring; 19, push spring; 20, thrust bearing; 21, threaded sleeve; 22, anti-slip strip; 23, motor. Detailed Description of the Embodiment
[0027] It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The present utility model will be described in detail below with reference to the drawings and in combination with the embodiments.
[0028] It should be pointed out that unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs.
[0029] In the present utility model, unless otherwise specified, the directions such as "upper" and "lower" usually refer to the directions shown in the drawings, or to the vertical, perpendicular or gravitational directions; similarly, for the convenience of understanding and description, "left" and "right" usually refer to the left and right shown in the drawings; "inner" and "outer" refer to the inner and outer of the contour of each component itself, but the above direction terms are not used to limit the present utility model.
[0030] Please refer to Figures 1-5 , a fish collagen extraction device, comprising a support frame 1, the support frame 1 is installed on an external device, a connection mechanism is arranged on the support frame 1, the connection mechanism includes a mixer 2, a transmission rod 3, an outer sleeve 4, a limiting strip 5, an inner rod 6, an external connecting rod 7, a clamping mechanism, an intermediate sleeve 8 and a fixing mechanism, the mixer 2 is installed on the support frame 1, the transmission rod 3 is connected to the mixer 2 in a matching manner, the outer sleeve 4 is installed on the transmission rod 3, a plurality of limiting strips 5 are installed on the side wall of the intermediate sleeve 8, a limiting groove 9 is formed in the outer sleeve 4, and the limiting strips 5 are slidably connected in the limiting groove 9, the clamping mechanism is connected to the inner rod 6 and the external connecting rod 7 in a matching manner, the fixing mechanism is installed on the outer sleeve 4, the clamping mechanism includes a shrinkage sleeve 10 and a slider 11, the shrinkage sleeve 10 is installed in the intermediate sleeve 8, a plurality of sliders 11 are slidably connected in the shrinkage sleeve 10, a spring 12 is arranged on each slider 11, a pressing plate 13 is arranged on the spring 12, follower sleeves 14 are respectively arranged on the inner rod 6 and the external connecting rod 7, and a plurality of pressing plates 13 respectively abut against the follower sleeves 14, synchronous grooves 15 are formed in both follower sleeves 14, and a synchronous rod 16 is slidably arranged in the synchronous grooves 15, the fixing mechanism includes a push tube 17, a synchronous spring 18, a push spring 19 and a thrust bearing 20, there are two push tubes 17, and the two push tubes 17 are respectively slidably connected in the intermediate sleeve 8, and the inner rod 6 and the external connecting rod 7 are respectively rotatably connected in the push tubes 17, a synchronous spring 18 is respectively installed on each push tube 17, the synchronous spring 18 abuts against the intermediate sleeve 8, a push spring 19 is installed on each slider 11, the thrust bearing 20 is sleeved in the intermediate sleeve 8, the push spring 19 abuts against the thrust bearing 20, a threaded sleeve 21 is provided on the outer sleeve 4 in a threaded manner, an anti-slip strip 22 is arranged on the outer wall of the threaded sleeve 21, and the threaded sleeve 21 abuts against the push tube 17, a motor 23 is arranged on the support frame 1, and the motor 23 is connected to the external connecting rod 7 in a matching manner.
[0031] In this embodiment, before extracting fish gelatin protein from the raw materials, the raw materials are first stirred and crushed. First, the raw materials are put into the blender 2, and then the rotation of the transmission rod 3 is driven by the motor 23, thus completing the crushing process. When too much raw material is put in and the torque exceeds the elastic force of the spring 12, the multiple pressing plates 13 on both sides are respectively disengaged from the clamping connection with the two follower sleeves 14. Due to the action of the synchronizing rod 16, the two follower sleeves 14 will rotate synchronously, thus ensuring the transmission of rotation. When the torque of rotation exceeds the elastic force of the multiple springs 12, the follower sleeve 14 will be disengaged from the fixation with the intermediate sleeve 8, thus avoiding the damage of the motor 23.
[0032] More specifically, when it is necessary to adjust the fixing force, first slide the multiple limiting strips 5 in the limiting grooves 9, and then rotate the threaded sleeve 21 so that the threaded sleeve 21 presses on one end of the push tube 17, and the push tube 17 at the other end abuts against the intermediate sleeve 8. Then, under the action of the multiple push springs 19 at both ends, it is ensured that the two sliders 11 slide along the shrinkage sleeve 10. When the slider 11 is closer to the middle position of the intermediate sleeve 8, the elastic force of the spring 12 is greater. Therefore, the clamping force can be adjusted, thus completing the adjustment process.
[0033] In summary, when the overall equipment is in use or operation: before extracting fish gelatin protein from the raw materials, the raw materials are first stirred and crushed. First, the raw materials are put into the blender 2, and then the rotation of the transmission rod 3 is driven by the motor 23, thus completing the crushing process. When too much raw material is put in and the torque exceeds the elastic force of the spring 12, the multiple pressing plates 13 on both sides are respectively disengaged from the clamping connection with the two follower sleeves 14. Due to the action of the synchronizing rod 16, the two follower sleeves 14 will rotate synchronously, thus ensuring the transmission of rotation. When the torque of rotation exceeds the elastic force of the multiple springs 12, the follower sleeve 14 will be disengaged from the fixation with the intermediate sleeve 8, thus avoiding the damage of the motor 23.
[0034] When it is necessary to adjust the fixing force, first slide the multiple limiting strips 5 in the limiting grooves 9, and then rotate the threaded sleeve 21 so that the threaded sleeve 21 presses on one end of the push tube 17, and the push tube 17 at the other end abuts against the intermediate sleeve 8. Then, under the action of the multiple push springs 19 at both ends, it is ensured that the two sliders 11 slide along the shrinkage sleeve 10. When the slider 11 is closer to the middle position of the intermediate sleeve 8, the elastic force of the spring 12 is greater. Therefore, the clamping force can be adjusted, thus completing the adjustment process.
[0035] Among all the solutions mentioned above, for the connection between two components, welding, connection with bolts and nuts, connection with bolts or screws, or other well-known connection methods can be selected according to the actual situation, which will not be elaborated here one by one. For those mentioned above that involve fixed connection, welding is preferably considered. Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A fish gelatin extraction device, comprising a support frame (1), characterized in that: The support frame (1) is mounted on an external device. The support frame (1) is provided with a connection mechanism, which comprises a mixer (2), a transmission rod (3), an external sleeve (4), a limit strip (5), an internal rod (6), an external connecting rod (7), a clamping mechanism, an intermediate sleeve (8) and a fixing mechanism. The mixer (2) is mounted on the support frame (1). The transmission rod (3) is connected to the mixer (2) in a coordinated manner. The external sleeve (4) is mounted on the transmission rod (3). A plurality of limit strips (5) are mounted on the side wall of the intermediate sleeve (8). A limit slot (9) is provided in the external sleeve (4). The limit strip (5) is slidably connected in the limit slot (9). The clamping mechanism is connected to the internal rod (6) and the external connecting rod (7). The fixing mechanism is mounted on the external sleeve (4).
2. A fish gelatin extraction device according to claim 1, characterized in that: The clamping mechanism comprises a shrink sleeve (10) and a slider (11); the shrink sleeve (10) is installed in the middle sleeve (8); and the shrink sleeve (10) is slidably connected to a plurality of the sliders (11).
3. A fish gelatin extraction device according to claim 2, characterized in that: Each of the slide blocks (11) is provided with a spring (12), and a pressure plate (13) is provided on the spring (12).
4. A fish gelatin extraction device according to claim 3, characterized in that: The inner rod (6) and the outer rod (7) are respectively provided with a follower sleeve (14), and the plurality of pressing plates (13) are respectively in contact with the follower sleeve (14).
5. The isin gelatin extraction device according to claim 4, characterized in that: The two follower sleeves (14) are both provided with a synchronization groove (15), and a synchronization rod (16) is slidably provided in the synchronization groove (15).
6. The isin gelatin extraction device according to claim 5, characterized in that: The fixing mechanism comprises a push tube (17), a synchronization spring (18), a push spring (19) and a thrust bearing (20). Two push tubes (17) are provided, and the two push tubes (17) are respectively slidably connected in the middle sleeve (8), and the internal rod (6) and the external rod (7) are respectively rotatably connected in the push tube (17). Each push tube (17) is respectively installed with a synchronization spring (18), and the synchronization spring (18) contacts the middle sleeve (8). Each slider (11) is installed with a push spring (19), and the thrust bearing (20) is sleeved in the middle sleeve (8), and the push spring (19) contacts the thrust bearing (20).
7. The isin gelatin extraction device according to claim 6, characterized in that: A threaded sleeve (21) is threadedly provided on the outer sleeve (4), an anti-slip strip (22) is provided on the outer wall of the threaded sleeve (21), and the threaded sleeve (21) is pressed against the push tube (17).
8. The isin gelatin extraction device according to claim 7, characterized in that: The support frame (1) is provided with a motor (23), and the motor (23) is cooperatively connected to the external connecting rod (7).