Vibrating discharging mechanism for improving activity of probiotics
By designing the cutting mechanism of four vibration discs and using technical means such as double-headed vibration and arc guide rails, the problem of large space occupied by existing equipment is solved, and more efficient vibration and a more compact equipment structure are achieved.
Patent Information
- Application Number
- CN202422348978.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-26
AI Technical Summary
The existing vibration discharge mechanism to improve the activity of probiotics occupies a large space and is inconvenient to use during transportation.
A feeding mechanism including four vibrating disks is designed, wherein the four vibrating disks include three forward rotating disks and one reverse rotating disk. An arc guide rail is provided at the outlet of the vibrating disk. A linear rail is connected to the end of the arc guide rail. A material-free detection device and a pneumatic stop valve are provided on the linear rail. The end of the linear rail is connected to a molded tube through a locking block. The outer part of the molded tube is covered with a lapel, and a multi-row sheet of tablet guide rail is provided at the bottom of the molded tube.
Through the double-head vibration design, the vibration efficiency is significantly improved, the space occupied by the entire mechanism is reduced, making the equipment more compact and the transportation process more convenient.
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Figure CN223032031U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of vibrating bowls, in particular to a vibrating feeding mechanism for improving the activity of probiotics. Background Art
[0002] The vibrating feeding mechanism for improving the activity of probiotics is a mechanism that uses vibration technology to achieve material feeding. The vibrating feeding mechanism for improving the activity of probiotics is usually used in combination with a silo. Its core components include a bracket, a table, a vibrating mechanism, and a shock-absorbing mechanism. The vibrating mechanism is mainly composed of several vibrating motors and a transmission plate. The number of motors is generally an even number, such as 4, 6, 8, 10, etc. The model of the motor determines the main technical parameters of the three-dimensional vibrating platform. The shock-absorbing mechanism is mainly composed of shock-absorbing springs, including several types such as rubber springs, composite springs, and air springs. This mechanism is widely used in industries such as metallurgy, mold / food, chemical industry, and building materials to transform granular and powdery materials from bulk to block and shape forms during the production process.
[0003] For example, the original vibrating feeding mechanism for improving the activity of probiotics generally has a single guide rail on one side of the vibrating bowl. In order to improve work efficiency, multiple vibrating bowls are generally set, and this design will cause the equipment to occupy a large amount of space and is not convenient during transportation. Summary of the Utility Model
[0004] In view of the large space occupied by the current vibrating feeding mechanism for improving the activity of probiotics, this application provides a vibrating feeding mechanism for improving the activity of probiotics to solve the above problems.
[0005] To achieve the above object, the utility model is realized through the following technical solutions:
[0006] An embodiment of this application discloses a vibrating feeding mechanism for improving the activity of probiotics, which includes four vibrating bowls. The four vibrating bowls include three forward-rotating bowls and one reverse-rotating bowl. There are two circular arc guide rails at the outlets of the four vibrating bowls. The end of the circular arc guide rail is connected to a linear rail. A material shortage and no-material detection device and two pneumatic baffle valves are arranged on the linear rail. The end of the linear rail is connected to a forming tube through a locking block. A turning collar is coated outside the forming tube, and multiple rows of tablet guide rails are arranged at the bottom of the forming tube.
[0007] Optionally, a liquid forming plate is arranged at the bottom of the forming tube, a longitudinal heat sealer is arranged on the front side of the liquid forming plate, and a heating tube is fixed above the longitudinal heat sealer.
[0008] Optionally, a longitudinal sealing opening and closing plate is provided on the front side of the longitudinal heat sealer. A longitudinal sealing front mask is provided on the front side of the longitudinal sealing opening and closing plate. A positioning insert plate is provided on one side of the longitudinal sealing opening and closing plate. A handle is fixed to the front side wall of the positioning insert plate.
[0009] Optionally, one side of the longitudinal sealing opening and closing plate is detachably clamped with an opening and closing fixing plate through a rotary lock. A handle is provided on the rotary lock.
[0010] Optionally, one end of the longitudinal sealing opening and closing plate is fixed with a first longitudinal sealing guide post seat. The other end of the longitudinal sealing opening and closing plate is rotatably connected with a second longitudinal sealing guide post seat through a positive pressure angle link plate.
[0011] Optionally, an installation push plate is provided on the outer side of the forming tube. A blade assembly is provided on the installation push plate. The blade assembly includes an easy tear opening knife seat. An easy tear opening knife is provided on the front side of the easy tear opening knife seat. The upper surface of the tear opening knife is pressed by a knife clamping block and a knife pressing plate.
[0012] Optionally, the ends of the first longitudinal sealing guide post seat and the second longitudinal sealing guide post seat are jointly connected with a longitudinal sealing rear push plate. The longitudinal sealing rear push plate is driven by a cylinder.
[0013] Technical effects:
[0014] Two arc guide rails are connected to the vibrating bowl of this device, which can achieve double-head vibration, greatly improve the vibration efficiency, and reduce the occupied space of the entire mechanism. Description of the drawings
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0016] Figure 1 It is a schematic diagram of the overall structure of the vibration feeding mechanism for improving the activity of probiotics of this application;
[0017] Figure 2 It is a schematic diagram of the overall internal structure of the vibration feeding mechanism for improving the activity of probiotics of this application;
[0018] Figure 3 For this application Figure 2 Schematic diagram of the structure at A;
[0019] Figure 4 It is a schematic diagram of the blade assembly structure of this application.
[0020] In the figure:
[0021] 1. Forward rotation disc; 2. Reverse rotation disc; 3. Arc guide rail; 4. Linear rail; 5. Material shortage and no material detection device; 6. Pneumatic material blocking valve; 7. Locking block; 8. Forming tube; 9. Turn-up collar; 10. Tablet guide rail; 11. Liquid forming plate; 12. Longitudinal heat sealer; 13. Heating tube; 14. Longitudinal seal opening and closing plate; 15. Front mask of longitudinal seal; 16. Positioning panel; 17. Handle; 18. Rotating lock; 19. Opening and closing fixed plate; 20. Handle; 21. First longitudinal seal guide post seat; 22. Positive pressure angle link plate; 23. Second longitudinal seal guide post seat; 24. Installation push plate; 25. Blade assembly; 26. Easy tear opening knife seat; 27. Easy tear opening knife; 28. Knife clamping block; 29. Knife pressing plate; 30. Rear push plate of longitudinal seal. Detailed implementation manners
[0022] In the following description, specific details such as specific system structures and technologies are presented for the purpose of illustration rather than limitation, so as to thoroughly understand the embodiments of the present application. However, those skilled in the art should clearly understand that the present application can also be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid unnecessary details from interfering with the description of the present application.
[0023] It should be understood that when used in the specification of the present application and the appended claims, the term "comprising" indicates the presence of the described features, wholes, steps, operations, elements, and / or components, but does not exclude the presence or addition of one or more other features, wholes, steps, operations, elements, components, and / or their combinations.
[0024] Please refer to Figures 1 to 4, like the original vibrating blanking mechanism for improving the activity of probiotics, the vibrating plate is set as a single-head vibrating plate. This method has a low vibration efficiency. Generally, multiple vibrating plates are set for vibration. This design will cause the mechanism system to be too large and occupy a large space. Based on the above problems, the embodiment of the present application discloses a vibrating blanking mechanism for improving the activity of probiotics, including four vibrating plates. The four vibrating plates include three forward-rotating plates 1 and one reverse-rotating plate 2. As shown in the figure, it includes two forward 500 vibrating plates, one reverse 500 vibrating plate and one forward 300 vibrating plate. The four vibrating plates are provided with seven outlets, and the angle of the outlets is 5°. An arc guide rail 3 is provided at the outlets of the four vibrating plates. The arc guide rail 3 has two paths and a total of seven guide rails are provided. The end of the arc guide rail 3 is connected to a straight rail 4. A material shortage and no-material detection device 5 and two pneumatic stop valves 6 are provided on the straight rail 4. The end of the straight rail 4 is connected to a forming tube 8 through a locking block 7. The former is a three-side seal former. A collar former 9 is wrapped outside the forming tube 8. Multiple columns of tablet guide rails 10 are provided at the bottom of the forming tube 8; the packaging film comes from the two rear rollers to the three-side seal former. There is a forming tube 8 in the middle of the hole of the three-side seal former. The packaging film passes through the gap between the inner hole of the three-side seal former and the outer wall of the forming tube 8, so that the packaging film is folded over.
[0025] A liquid forming plate 11 is provided at the bottom of the forming tube 8. A longitudinal heat sealer 12 is provided on the front side of the liquid forming plate 11. A heating tube 13 is fixed above the longitudinal heat sealer 12; the longitudinal heat sealer is sealed with the forming plate, so that one side of the folded packaging film is sealed together. The power for longitudinal sealing is that there is a cylinder on each of the left and right sides.
[0026] A longitudinal seal opening and closing plate 14 is provided on the front side of the longitudinal heat sealer 12. A longitudinal seal front mask 15 is provided on the front side of the longitudinal seal opening and closing plate 14. A positioning insert plate 16 is provided on one side of the longitudinal seal opening and closing plate 14. A handle 17 is fixed on the front side wall of the positioning insert plate 16.
[0027] One side of the longitudinal seal opening and closing plate 14 is detachably clamped with an opening and closing fixing plate 19 through a rotary lock 18. A handle 20 is provided on the rotary lock 18.
[0028] One end of the longitudinal seal opening and closing plate 14 is fixed with a first longitudinal seal guide post seat 21. The other end of the longitudinal seal opening and closing plate 14 is rotatably connected to a second longitudinal seal guide post seat 23 through a positive pressure angle link plate 22.
[0029] An installation push plate 24 is arranged on the outer side of the forming pipe 8, a blade assembly 25 is arranged on the installation push plate 24, the blade assembly 25 includes a tear-open notch tool holder 26, a tear-open notch tool 27 is arranged on the front side of the tear-open notch tool holder 26, and the upper surface of the tear-open notch tool is pressed by a clamping tool block 28 and a pressure tool plate 29. Seven small knives are installed on the installation push plate 24. The small knives are installed on the tear-open notch tool holder 26. The packaging film passes through the groove of the tear-open notch tool holder 26. The small knives move as a whole to cut seven tear-open notches simultaneously.
[0030] A longitudinal seal rear push plate 30 is jointly connected to the ends of the first longitudinal seal guide post seat 21 and the second longitudinal seal guide post seat 23, and the longitudinal seal rear push plate 30 is driven by a cylinder.
[0031] In the above embodiments, the equipment components involved are all conventional equipment components without special instructions, and the connection methods and control methods involved are all conventional connection methods and control methods without special instructions.
[0032] The above has described the present utility model in detail in conjunction with the embodiments. However, those skilled in the art can understand that without departing from the purpose of the present utility model, various specific parameters in the above embodiments can be changed to form multiple specific embodiments, which are all within the common change range of the present utility model and will not be elaborated one by one here.
Claims
1. A vibration feeding mechanism for improving the activity of probiotics, characterized in that: The invention comprises four vibration disks, wherein the four vibration disks comprise three forward rotating disks (1) and one reverse rotating disk (2); arc guide rails (3) are arranged at the outlets of the four vibration disks; the arc guide rails (3) are provided with two paths; the ends of the arc guide rails (3) are connected to linear rails (4); the linear rails (4) are provided with a material shortage or material absence detection device (5) and two pneumatic material blocking valves (6); the ends of the linear rails (4) are connected to a forming tube (8) via a locking block (7); the outside of the forming tube (8) is covered with a collar turner (9); and the bottom of the forming tube (8) is provided with a plurality of rows of tablet guide rails (10).
2. A vibration feeding mechanism for improving the activity of probiotics according to claim 1, characterized in that: A liquid forming plate (11) is arranged at the bottom of the forming tube (8), a longitudinal heat sealer (12) is arranged at the front side of the liquid forming plate (11), and a heating tube (13) is fixed above the longitudinal heat sealer (12).
3. A vibration feeding mechanism for improving the activity of probiotics according to claim 2, characterized in that: A longitudinal sealing opening and closing plate (14) is arranged on the front side of the longitudinal heat sealer (12), a longitudinal sealing front mask (15) is arranged on the front side of the longitudinal sealing opening and closing plate (14), a positioning panel (16) is arranged on one side of the longitudinal sealing opening and closing plate (14), and a handle (17) is fixed to the front side wall of the positioning panel (16).
4. A vibration feeding mechanism for improving the activity of probiotics according to claim 3, characterized in that: An opening and closing fixing plate (19) is detachably engaged with one side of the longitudinal sealing opening and closing plate (14) via a rotating lock buckle (18), and a handle (20) is provided on the rotating lock buckle (18).
5. A vibrating feeding mechanism for improving the activity of probiotics according to claim 3, characterized in that: A first longitudinal sealing guide column seat (21) is fixed to one end of the longitudinal sealing opening and closing plate (14), and the other end of the longitudinal sealing opening and closing plate (14) is rotatably connected to a second longitudinal sealing guide column seat (23) via a positive pressure angle chain plate (22).
6. A vibration feeding mechanism for improving the activity of probiotics according to claim 1, characterized in that: The outer side of the forming tube (8) is provided with a mounting push plate (24), and a blade assembly (25) is provided on the mounting push plate (24). The blade assembly (25) comprises an easy-tear blade holder (26), and an easy-tear blade (27) is provided on the front side of the easy-tear blade holder (26). The upper surface of the tearing blade is pressed by a blade clamping block (28) and a blade pressing plate (29).
7. A vibrating feeding mechanism for improving the activity of probiotics according to claim 5, characterized in that: The ends of the first longitudinal sealing guide column seat (21) and the second longitudinal sealing guide column seat (23) are commonly connected to a longitudinal sealing rear push plate (30), and the longitudinal sealing rear push plate (30) is driven by a cylinder.