Earthworm processing device and Qilong capsule production line
By installing a transparent observation window and a through-beam laser sensor on the mixing tank, the height and foaming degree of the earthworm solution are automatically monitored, solving the problem of inconsistent mixing time and effect, and realizing the automated control of the earthworm solution mixing process.
Patent Information
- Application Number
- CN202423166705.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-20
AI Technical Summary
In the existing technology, the stirring time and foaming effect of earthworm solution depend on the operator's experience and judgment, making it difficult to guarantee the consistency of stirring effect between different batches.
Two transparent observation windows are installed on the side wall of the mixing tank, and two sets of through-beam laser sensors are provided. The sensors monitor the height and foaming degree of the earthworm solution and automatically control the start and end of the mixing.
The system enables automated monitoring of the earthworm solution stirring process, reducing the uncertainty of human experience judgment and ensuring the consistency of stirring effect.
Smart Images

Figure CN223669113U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to stirring processing technical field especially a ground dragon processing device and astragalus root and ground dragon capsule production line. BACKGROUND
[0002] In the production process of astragalus root and ground dragon capsule (Chinese patent medicine mainly using astragalus root and ground dragon as raw materials), ground dragon solution needs to be slowly stirred in a stirring barrel. Generally, the stirring temperature is about 40 degrees, and the stirring time is about 50 minutes. The ground dragon solution after stirring can make ground dragon evenly distributed in the whole solution, and the ground dragon solution is fully foamed and contains enough air. The ground dragon solution after foaming is beneficial to subsequent drying and dewatering.
[0003] In the related technical scheme, an observation window is arranged on the side wall or barrel cover of the stirring barrel. For ground dragon from different suppliers, in order to achieve the same foaming effect, the stirring time is different. At this time, the operator needs to visually observe the observation window, and stops stirring when observing that the color and foaming degree of the solution in the stirring barrel basically meet the requirements. The above operation mode depends on the experience judgment of the operator, and it is difficult to ensure that the stirring effects of different batches of ground dragon are at the same level. UTILITY MODEL CONTENT
[0004] The utility model provides a kind of ground dragon processing device and astragalus root and ground dragon capsule production line, can at least solve one of the above technical problems.
[0005] To solve the above technical problems, one or more embodiments of the utility model provide a kind of ground dragon processing device, including stirring barrel, the upper end of stirring barrel is detachably installed with barrel cover, the side wall and / or bottom wall of stirring barrel is equipped with heating piece, stirring barrel is equipped with stirring shaft, the outer circle of stirring shaft is fixed with stirring paddle, the lower end of stirring shaft passes out stirring barrel and is connected with rotary drive component. The side wall of stirring barrel is provided with two transparent observation windows, two observation windows are oppositely arranged, and two pairs of laser sensors are arranged on the stirring barrel, and the transmitter and receiver of the laser sensor are respectively installed on two observation windows.
[0006] One or more embodiments of the utility model also provide a kind of astragalus root and ground dragon capsule production line, including the above ground dragon processing device.
[0007] The above one or more technical solutions have the beneficial effects that:
[0008] The two transparent observation windows and the two sets of opposite radiation type laser sensors are used in the scheme to facilitate automatic monitoring of the foaming degree of the earthworm solution after stirring, and reduce the uncertainty caused by manual experience judgment.
[0009] The two transparent observation windows and the two sets of opposite radiation type laser sensors are used in the scheme to facilitate automatic monitoring of the foaming degree of the earthworm solution after stirring, and reduce the uncertainty caused by manual experience judgment. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 It is a structure schematic view of the overall structure in the main view direction of the embodiment of the utility model;
[0011] Figure 2 It is a structure schematic view of the overall structure in the side view direction of the embodiment of the utility model.
[0012] In the figure, 1, support leg; 2, base; 3, stirring barrel; 4, barrel cover; 5, guide rod; 6, handle; 7, mounting seat; 8, pressure relief valve; 9, reinforcing rib; 10, first opposite radiation type laser sensor; 11, discharge port; 12, observation window; 13, electric push rod; 14, driving motor; 1001, first transmitter; 1002, second transmitter; 1003, first receiver; 1004, second receiver; 121, first observation window; 122, second observation window. DETAILED DESCRIPTION
[0013] To clearly illustrate the technical features of the scheme, the utility model is described in detail below through specific implementation manners and in combination with its drawings.
[0014] Referring to Figures 1-2 The embodiment provides an earthworm processing device, which comprises a stirring barrel 3, a barrel cover 4 is detachably installed at the upper end of the stirring barrel 3, a heating element is arranged on the side wall and / or bottom wall of the stirring barrel 3, a stirring shaft (not shown in the figure) is arranged in the stirring barrel 3, stirring paddles (not shown in the figure) are fixed to the outer circle of the stirring shaft, and the lower end of the stirring shaft penetrates out of the stirring barrel 3 and is connected with a rotary driving assembly. Two transparent observation windows 12 are arranged on the side wall of the stirring barrel 3, the two observation windows 12 are oppositely arranged, two sets of opposite radiation type laser sensors are arranged on the stirring barrel 3, and the transmitter and receiver of the opposite radiation type laser sensors are respectively installed on the two observation windows 12.
[0015] Specifically, the stirring barrel 3 is a circular barrel, and the barrel cover 4 is a circular cover. The stirring barrel 3 comprises a barrel body, the lower end of the barrel body is provided with a base 2, the base 2 is provided with supporting legs 1, and the supporting legs 1 enable the base 2 to be suspended.
[0016] Further, the stirring shaft in the stirring barrel 3 is coaxially arranged with the stirring barrel 3, and the lower end of the stirring shaft is coaxially fixed with the driving shaft of the rotary driving assembly after sequentially penetrating the barrel body and the base 2.
[0017] More specifically, the rotary driving assembly is a driving motor 14, the body of the driving motor 14 is fixed with the lower surface of the base 2, and the output shaft of the driving motor 14 is vertically upwardly arranged and forms the driving shaft.
[0018] More specifically, the upper surface of the barrel cover 4 is provided with a handle 6, so that the operator can use the handle 6 to manually open and close the stirring barrel 3. The barrel cover 4 is provided with a buckle structure for fixing the barrel cover 4 to the upper end opening of the stirring barrel 3. In addition, in order to realize the structural reinforcement of the stirring barrel 3, a plurality of reinforcing ribs 9 are arranged on the outer wall surface of the stirring barrel 3, and the reinforcing ribs 9 are vertically arranged and uniformly distributed along the circumferential direction of the stirring barrel 3.
[0019] In addition, the barrel cover 4 is also provided with a pressure relief valve 8, which can release the high-pressure gas in the stirring barrel 3. The side wall of the stirring barrel 3 is also provided with a discharge port 11 communicating with the inner cavity of the stirring barrel 3, and the discharge port 11 can be opened and closed to open or block itself.
[0020] In this embodiment, the outer wall of the stirring barrel 3 is provided with a lifting driving assembly, and the transmitter and the receiver are respectively driven by the lifting driving assembly.
[0021] In this embodiment, the driving assembly is an electric push rod 13. Specifically, the electric push rod 13 is vertically arranged, and the body of the electric push rod 13 is fixed with the outer wall surface of the stirring barrel 3.
[0022] In some other structural arrangements, a pneumatic cylinder or other linear driving mechanism can be used to replace the electric push rod 13, and the specific structural arrangement can be set by the person skilled in the art.
[0023] In this embodiment, two mounting seats 7 are arranged at the observation window 12, and the mounting seats 7 are provided with transmitters or receivers. The mounting seats 7 can be lifted under the driving of the lifting driving assembly. A guide assembly is arranged at each observation window 12, and the guide assembly is used to guide the lifting of the mounting seat 7.
[0024] The guide assembly comprises two guide rods 5 arranged on both sides of the observation barrel along the circumferential direction of the stirring barrel 3. The guide rods 5 are vertically arranged, the two ends of the guide rods 5 are respectively fixed with the outer wall of the stirring barrel 3, and the guide rods 5 penetrate the mounting seat 7.
[0025] Specifically, referring again to Figure 1 The side wall of the stirring barrel 3 is provided with a first observation window 121 and a second observation window 122. The two pairs of laser sensors are a first pair of laser sensors 10 and a second pair of laser sensors, which are arranged above the first pair of laser sensors 10 and include a first emitter 1001 and a first receiver 1003, and the second pair of laser sensors include a second emitter 1002 and a second receiver 1004. The first emitter 1001 and the second emitter 1002 are installed in the upper and lower mounting seats 7 at the first observation window 121, and the first receiver 1003 and the second receiver 1004 are installed in the upper and lower mounting seats 7 at the second observation window 122.
[0026] In this embodiment, the length of the observation window 12 in the vertical direction is not less than one half of the height of the stirring barrel 3.
[0027] In order to avoid the stirring shaft and the stirring blade blocking the laser track of the first pair of laser sensors or the second pair of laser sensors, as one of the specific structural forms, the stirring shaft and the stirring blade are arranged below the observation window 12. At this time, the two observation windows 12 can be arranged symmetrically about the central axis of the stirring barrel 3, i.e., the stirring shaft.
[0028] In other structural forms, the two observation windows 12 are not symmetric about the central axis of the stirring barrel 3, and at this time, the laser route of the two pairs of laser sensors is spaced apart from the stirring shaft and parallel to the stirring shaft. At the same time, the stirring blade of the stirring shaft is arranged below the observation window 12.
[0029] In addition, a controller is arranged in this embodiment, which adopts an arm processor or a single-chip microcomputer, etc. When the controller receives a signal triggered by the second pair of laser sensors being blocked, the operator is reminded to stop adding the material. When the controller receives a signal triggered by the first pair of laser sensors 10 being blocked, the operator is reminded to stop stirring.
[0030] Working principle: when using the device, first, the height of the second pair of laser sensors below is adjusted according to the need, so that the height of the earthworm solution when triggered is equal to the volume of the earthworm solution to be added. Then, according to the desired foaming rate and the volume of the original earthworm solution to be added, the height of the earthworm solution after foaming is calculated, and the height of the first pair of laser sensors 10 is adjusted to match the calculated height after foaming.
[0031] Then, the earthworm solution can be added and stirred according to the first pair of laser sensors 10 and the second pair of laser sensors.
[0032] The embodiment also provides a production line for Qilong capsules, which includes the earthworm processing device.
[0033] The specific embodiments above cannot be used as a limitation to the protection scope of the utility model, and any alternative improvement or transformation made by the skilled in the art to the utility model embodiments falls within the protection scope of the utility model.
[0034] The utility model is not detailed, and is the known technology of the skilled in the art.
Claims
1. A earthworm processing device, characterized in that, The application relates to a stirring barrel, which is detachably provided with a barrel cover at the upper end, and is provided with a heating element on the side wall and / or bottom wall; a stirring shaft is arranged in the stirring barrel, and stirring blades are fixed to the outer circle of the stirring shaft; the lower end of the stirring shaft penetrates through the stirring barrel and is connected with a rotary driving assembly; Two transparent observation windows are arranged on the side wall of the stirring barrel, and the two observation windows are oppositely arranged; two pairs of opposite laser sensors are arranged on the stirring barrel, and the transmitter and receiver of the opposite laser sensors are respectively arranged on the two observation windows.
2. The earthworm processing device of claim 1, wherein, The outer wall of the stirring barrel is provided with a lifting driving assembly, and the transmitter and receiver are respectively driven by the lifting driving assembly.
3. The earthworm processing apparatus of claim 2, wherein, The driving assembly is an electric push rod or a cylinder.
4. The earthworm processing device of claim 2, wherein, Two mounting seats are arranged on the observation window, the transmitter or receiver is arranged on the mounting seat, and the mounting seat can be lifted under the action of the lifting driving assembly.
5. The earthworm processing apparatus of claim 4, wherein, A guide assembly is arranged at each observation window, and the guide assembly is used for guiding the lifting of the mounting seat.
6. The earthworm processing apparatus of claim 5, wherein, The guide assembly comprises two guide rods arranged on the two sides of the observation window along the circumferential direction of the stirring barrel, the guide rods are vertically arranged, the two ends of the guide rods are respectively fixed to the outer wall of the stirring barrel, and the guide rods penetrate through the mounting seat.
7. The earthworm processing device of claim 1, wherein, The vertical length of the observation window is not less than one half of the height of the stirring barrel.
8. A ginseng and dragon capsule production line, characterized by, The application further relates to a earthworm processing device.