Decoction piece pressing, feeding and distributing equipment
By designing a feeding and distribution device for pressing medicinal slices, the problems of high cost and low space utilization of multi-machine feeding systems were solved, achieving cost reduction and space optimization, and simplifying the monitoring and inspection of the production process.
Patent Information
- Application Number
- CN202423009878.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-06
AI Technical Summary
In the existing technology, the feeding system of the Chinese herbal medicine slice pressing equipment requires each machine to be equipped with a material lifting device and a feeding control device, which results in high production costs, low space utilization, difficulty in layout, and difficulty in rapid monitoring or inspection.
A feeding and distributing device for pressing medicinal slices is adopted. Through the combination of track components, the main body of the device and the material transport box, the feeding control of multiple devices can be realized, reducing the number of devices and space occupation. The design of moving wheels and sealing plates simplifies the feeding process.
It reduces production and maintenance costs, improves space utilization, and facilitates monitoring and inspection of the production process.
Smart Images

Figure CN223547029U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of herbal medicine pressing and feeding distribution technology, specifically to a herbal medicine pressing and feeding distribution device. Background Technology
[0002] Prepared medicinal herbs are Chinese medicinal materials that have undergone processing according to traditional Chinese medicine theories and methods, and can be directly used in clinical practice. Prepared medicinal herbs are one of the three pillars of China's traditional Chinese medicine industry, an essential traditional tool for diagnosis and treatment in clinical practice, and an important raw material for prepared Chinese medicines. Their unique processing theories and methods embody the profound wisdom of ancient Chinese medicine. With the continuous improvement and maturation of their processing theories, they have become an important means of disease prevention and treatment in clinical practice.
[0003] To improve the manufacturing efficiency of Chinese herbal medicine slices, multiple slice pressing machines are typically used simultaneously for processing. However, to meet the feeding needs of these multiple machines, each machine is usually equipped with its own feeding device. For example, in existing technologies, each machine is typically fed using both a material lifting device and a feeding control device (specifically, the material lifting device elevates the raw materials to a certain height, such as a conveyor belt or material hoist, and then the feeding control device receives the lifted material and inputs it into the corresponding slice pressing machine). This presents the following problems:
[0004] First, the production cost is high. A herbal medicine pressing workshop often has multiple herbal medicine pressing machines, and each machine needs to be equipped with its own material lifting equipment and feeding control equipment. This results in a relatively high cost for the entire production process.
[0005] Secondly, the spatial layout is challenging and the production workshop is cramped, resulting in low space utilization and hindering monitoring and inspection of the production process. Each herbal slice pressing machine is equipped with its own material lifting and feeding control equipment, all of which have a certain volume and require installation and production space. This leads to a complex spatial layout, making it difficult to fully utilize production space and resulting in low space utilization. Furthermore, these devices may obstruct each other, hindering quick and convenient monitoring and inspection of the production process. Utility Model Content
[0006] To address the technical problems in related technologies, this application provides a feeding and dispensing device for pressing medicinal slices. This feeding and dispensing device not only effectively reduces production costs but also significantly improves space utilization and facilitates monitoring and inspection of the production process.
[0007] To achieve the above objectives, the technical solution adopted in this application is as follows:
[0008] A feeding and distributing device for pressing medicinal slices, applied to the feeding control of multiple pressing machines arranged in a straight line, includes:
[0009] A track component is provided above the feed inlet of multiple herbal slice pressing machines, and the track component is configured to extend in a straight line along the arrangement of the multiple herbal slice pressing machines.
[0010] The main body of the equipment includes a control box, a control unit, a first drive component, and a moving wheel. The control unit and the first drive component are respectively disposed in the control box. The output end of the first drive component is connected to the moving wheel to drive the moving wheel to move on the track component.
[0011] A material handling box includes a box body, a sealing plate, and a second driving component. The top of the box body is recessed inward to form a receiving cavity for receiving raw materials. The bottom of the box body has a discharge port that communicates with the receiving cavity. The sealing plate is rotatably or movably disposed in the discharge port to block the discharge port. The second driving component is connected to the sealing plate to drive the sealing plate to rotate or move so that the discharge port is blocked or opened.
[0012] The control unit is electrically connected to both the first driving element and the second driving element.
[0013] Optionally, the track component includes two running tracks spaced apart from each other, the main body of the device is disposed between the two running tracks, and four moving wheels are provided. Two of the four moving wheels are disposed on one side of the control box and are used to adapt to one running track, while the other two of the four moving wheels are disposed on the other side of the control box and are used to adapt to the other running track.
[0014] Optionally, the running track includes a track body and a ridge bar. The track body is formed into a square strip shape, and the ridge bar is arranged above the track body along the axial direction of the track body and located in the middle of the top surface of the track body.
[0015] The main body of the equipment also includes at least two limiting blocks, which are respectively disposed on both sides of the control box. One end of each of the two limiting blocks is connected to the control box, and the other end of each of the two limiting blocks is formed with a notch corresponding to the two protrusions.
[0016] The movable wheel is configured to move on the track body and is located between the convex strip and the control box.
[0017] Optionally, four limiting blocks are provided, and the four limiting blocks are respectively provided for the four moving wheels;
[0018] The limiting block includes a first block and a second block that are connected to each other. The end of the first block away from the second block is connected to the control box and the first block is located above the moving wheel. The second block away from the second block has a notch corresponding to the protrusion.
[0019] The limiting block is located within the space formed by the first block and the second block.
[0020] Optionally, the protrusion is formed as a semi-cylindrical structure, and the side of the semi-cylindrical structure is connected to the track body.
[0021] Optionally, the receiving cavity is formed into an inverted right-angled trapezoidal shape. The box body includes a first side wall and a second side wall disposed opposite to each other, a third side wall connected between the first side wall and the second side wall, and an inclined bottom wall. The two sides of the bottom wall are respectively connected to the first side wall and the second side wall. The first side wall, the second side wall, the third side wall and the bottom wall together enclose the receiving cavity formed into an inverted right-angled trapezoidal shape, and the bottom of the first side wall, the second side wall, the third side wall and the bottom wall together enclose the discharge port.
[0022] The bottom wall is mounted on the control box, the sealing plate is rotatably or movably mounted on the bottom wall, and the second driving member is mounted on the third side wall and located outside the accommodating cavity.
[0023] Optionally, the sealing plate is rotatably mounted on the bottom of the bottom wall, and the second driving member includes a driving body and a connecting rope. The output end of the driving body is connected to one end of the connecting rope, and the other end of the connecting rope is connected to the end of the sealing plate away from the bottom wall.
[0024] Optionally, the material handling box further includes a receiving housing, which is disposed on the side of the third sidewall away from the receiving cavity, and a receiving cavity for receiving the second driving member is formed within the receiving housing.
[0025] Optionally, the sealing plate includes a plate body, a connecting block, and two hinge blocks. The two hinge blocks are spaced apart, and the plate body is hinged to the bottom wall through the two hinge blocks. The connecting block is located on the side of the plate body away from the bottom wall, and the connecting block is located directly below the receiving cavity.
[0026] The connecting block is configured on the axis of symmetry of the two hinge blocks and is connected to the connecting rope.
[0027] Optionally, the control unit is electrically connected to the second drive unit via an electrical connection line. The herbal slice pressing and feeding distribution device further includes a fabric line, in which a wiring cavity is formed for the electrical connection line to pass through. The fabric line includes a first part and a second part that are connected to each other. The first part is disposed on the side of the third sidewall away from the receiving cavity, and the second part is disposed on the side of the first sidewall away from the receiving cavity.
[0028] Beneficial effects:
[0029] 1. Through the above technical solution, on the one hand, multiple herbal slice pressing equipment only need one herbal slice pressing feeding and distribution equipment of this application to meet the feeding requirements, without the need to set up matching material lifting equipment and feeding control equipment for each herbal slice pressing equipment. In this way, not only can the equipment investment cost before production be effectively reduced, but also the maintenance cost during the production process can be effectively reduced, thus effectively reducing the production cost.
[0030] On the other hand, the herbal slice pressing and feeding distribution equipment set in this application is located above multiple herbal slice pressing equipment. At the same time, it can consist only of track components, equipment body and material transport box. Not only is the required installation space and reserved production space small, which can effectively reduce the difficulty of production workshop layout and improve space utilization, but it can also realize monitoring or inspection in the production process very conveniently and quickly.
[0031] 2. Other beneficial effects or advantages of this application will be described in detail in conjunction with specific structures in the specific embodiments. Attached Figure Description
[0032] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. In addition, it should be understood that the proportional relationship of each component in the drawings of this specification does not represent the proportional relationship in the actual material selection and design, but is only a schematic diagram of the structure or position, wherein:
[0033] Figure 1 This is a three-dimensional structural diagram of a herbal slice pressing and feeding distribution device provided in an exemplary embodiment of this application;
[0034] Figure 2 yes Figure 1Enlarged schematic diagram of the local structure at point A;
[0035] Figure 3 This is a schematic diagram of the assembly structure of the equipment body, material box and fabric line provided in an exemplary embodiment of this application, wherein the housing is partially cut to show the second drive member disposed therein;
[0036] Figure 4 yes Figure 3 Enlarged schematic diagram of the local structure at point B;
[0037] Figure 5 This is a schematic diagram of the assembly structure of the equipment body, the material transport box, and the fabric strip provided in an exemplary embodiment of this application, wherein the material transport box is in the unloading state;
[0038] Figure 6 This is a three-dimensional structural diagram of a sealing plate provided in an exemplary embodiment of this application, in which part of the connecting rope is also shown.
[0039] Explanation of the labels in the attached drawings:
[0040] 100-Medicinal herbal slice pressing and feeding distribution equipment; 1-Railway component; 11-Running track; 111-Railway body; 112-Protruding strip; 2-Equipment body; 21-Control box; 23-Moving wheel; 24-Limiting block; 241-Notch; 242-First block; 243-Second block; 3-Feeding box; 31-Box body; 311-Accommodation cavity; 312-Discharge port; 313-First side wall; 314-Second side wall; 315-Third side wall; 316-Bottom wall; 32-Sealing plate; 321-Plate body; 322-Connecting block; 323-Hinge block; 33-Second driving component; 331-Driving body; 332-Connecting rope; 34-Accommodation shell; 4-Fabric line; 41-First part; 42-Second part. Detailed Implementation
[0041] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0042] Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments of the application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0043] In the description of this application, it should be noted that the terms used, such as "first" and "second," are only for distinguishing expressions and do not indicate or imply a difference in importance or order; the terms used, such as "inner" and "outer," refer to the inner and outer parts of a specific outline. The use of the above terms is only for the purpose of clearly and simply describing the technical solution of this application and should not be construed as a limitation of this application.
[0044] To facilitate a clearer and more accurate understanding of the technical solutions of this application by relevant technical personnel, the following section provides a more detailed explanation of the existing related technologies and their related problems.
[0045] Currently, in the production process of Chinese herbal medicine slices, in order to improve production efficiency, multiple slice pressing machines are usually arranged in the same production workshop. At the same time, each slice pressing machine is equipped with a corresponding material lifting device and a feeding control device. The material lifting device is used to lift the material to a certain height so as to fit the feeding port of the slice pressing machine (the feeding port is usually set at the top or upper part of the slice pressing machine). The lifted material enters the feeding control device through the material lifting device. The feeding control device controls the amount of material fed into the corresponding slice pressing machine each time to match the amount of material required for a single pressing process of the slice pressing machine.
[0046] However, this presents the following problems:
[0047] First, production costs are high. Each herbal slice pressing machine needs to be equipped with corresponding material lifting equipment and feeding control equipment. Not only are the initial equipment investment costs high, but the maintenance costs during the production process are also high. In other words, the existing related technologies will lead to high production costs.
[0048] Secondly, the spatial layout is challenging and the production workshop is cramped, resulting in low space utilization and hindering monitoring and inspection of the production process. Since the herbal slice pressing equipment, material lifting equipment, and feeding control equipment all have a certain volume and require specific installation and production space (for example, space needs to be reserved for transporting materials to the material lifting equipment; for feeding control equipment, space needs to be reserved for feeding and discharging), the spatial layout of these devices is difficult, making it hard to fully utilize production space and resulting in low space utilization. Furthermore, these devices may obstruct each other (for example, the material lifting equipment of one herbal slice pressing machine may obstruct another herbal slice pressing machine or its associated material lifting equipment), making it difficult to quickly and conveniently monitor or inspect the production process.
[0049] In view of this, this application provides a novel solution, namely the herbal slice pressing and feeding distribution equipment of this application, which can not only effectively reduce production costs, but also effectively improve space utilization and facilitate monitoring or inspection of the production process.
[0050] The technical solution of this application will be described in detail below with reference to the accompanying drawings.
[0051] Example 1
[0052] like Figures 1 to 6 As shown, this embodiment provides a herbal slice pressing and feeding distribution device 100, applied to the feeding control of multiple herbal slice pressing devices (not shown) arranged in a straight line, including a track component 1, a device body 2, and a conveying box 3. The track component 1 is used to be set above the feeding port of the multiple herbal slice pressing devices, and the track component 1 is configured to extend in a straight line along the arrangement of the multiple herbal slice pressing devices. The device body 2 includes a control box 21, a control unit (not shown), a first drive component (not shown), and a moving wheel 23. The control unit and the first drive component are respectively set in the control box 21. The output end of the first drive component is connected to the moving wheel 23 to drive the moving wheel 23 to move on the track component 1. The material handling box 3 includes a box body 31, a sealing plate 32, and a second driving member 33. The top of the box body 31 is recessed inward to form a receiving cavity 311 for receiving raw materials. The bottom of the box body 31 has a discharge port 312 that communicates with the receiving cavity 311. The sealing plate 32 is rotatably or movablely disposed in the discharge port 312 to block the discharge port 312. The second driving member 33 is connected to the sealing plate 32 to drive the sealing plate 32 to rotate or move so that the discharge port 312 is blocked or opened.
[0053] The control unit is electrically connected to the first drive unit and the second drive unit 33, respectively.
[0054] Through the above technical solution, on the one hand, multiple herbal slice pressing equipment only need one herbal slice pressing feeding and distribution equipment 100 of this application to meet the feeding requirements, without the need to set up matching material lifting equipment and feeding control equipment for each herbal slice pressing equipment. In this way, not only can the equipment investment cost before production be effectively reduced, but also the maintenance cost during the production process can be effectively reduced, thus effectively reducing the production cost.
[0055] On the other hand, the herbal slice pressing and feeding distribution equipment 100 provided in this application is located above multiple herbal slice pressing equipment. At the same time, it can consist only of the track component 1, the main body of the equipment 2, and the material transport box 3. Not only is the required installation space and reserved production space small, which can effectively reduce the difficulty of the layout of the production workshop and improve the space utilization rate, but it can also realize the monitoring or inspection of the production process very conveniently and quickly.
[0056] To facilitate understanding by relevant technical personnel, the working process / working principle of the herbal slice pressing and feeding distribution equipment 100 of this application is explained below.
[0057] When a certain herbal medicine pressing device needs to be fed, the control unit sends a control signal to the first drive component. The first drive component starts and moves the moving wheel 23 to the corresponding position on the track component 1. Then, the control unit sends a control signal to the second drive component 33. The second drive component 33 starts and controls the sealing plate 32 to rotate or move so that the discharge port 312 is opened. The material stored in the conveying box 3 will be fed into the corresponding herbal medicine pressing device through the discharge port 312. After a certain amount of material is fed, the second drive component 33 controls the sealing plate 32 to rotate or move so that the discharge port 312 is blocked.
[0058] In one embodiment of this application, such as Figure 1 As shown, the track component 1 of this application may include two running tracks 11 spaced apart from each other, the main body 2 of the equipment is disposed between the two running tracks 11, and four moving wheels 23 are provided. Two of the four moving wheels 23 are disposed on one side of the control box 21 and are used to be adapted to one running track 11, and the other two of the four moving wheels 23 are disposed on the other side of the control box 21 and are used to be adapted to the other running track 11.
[0059] In this way, the four moving wheels 23 and two running tracks 11 can effectively ensure the stability of the material box 3 and the main body of the equipment 2 during the movement process, so as to avoid the material from tipping over or spilling.
[0060] In one embodiment of this application, such as Figure 1 and Figure 2 As shown, the running track 11 of this application may include a track body 111 and a protrusion 112. The track body 111 is formed into a square strip, and the protrusion 112 is arranged above the track body 111 along the axial direction of the track body 111 and located in the middle of the top surface of the track body 111. The equipment body 2 also includes at least two limiting blocks 24, which are respectively arranged on both sides of the control box 21. One end of the two limiting blocks 24 is connected to the control box 21, and the other end of the two limiting blocks 24 is formed with a notch 241 corresponding to the two protrusions 112. The moving wheel 23 is configured to move on the track body 111 and is located between the protrusion 112 and the control box 21.
[0061] Thus, with the convex strip 112 and limiting block 24 configured in this way, the assembly of the running track 11 and the main body 2 can be achieved quickly and accurately during the assembly process. During production, the convex strip 112 and limiting block 24 can provide guidance for the movement of the material box 3. At the same time, the moving wheel 23 is set between the convex strip 112 and the control box 21, which not only limits the movement of the moving wheel 23 to effectively ensure the stability and directional reliability of the moving wheel 23 on the track body 111, but also helps to prevent the moving wheel 23 from disengaging from the track body 111, thereby effectively ensuring the reliability of the movement of the moving wheel 23.
[0062] In one embodiment of this application, such as Figure 2 , Figure 3 and Figure 5 As shown, the limiting block 24 of this application can be set to four, and the four limiting blocks 24 are respectively set to the four moving wheels 23. The limiting block 24 may include a first block 242 and a second block 243 connected to each other. The end of the first block 242 away from the second block 243 is connected to the control box 21 and the first block 242 is located above the moving wheel 23. The second block 243 has a notch 241 corresponding to the protrusion 112 formed on the side away from the second block 243. The limiting block 24 is located in the space formed by the first block 242 and the second block 243.
[0063] In this way, the four limiting blocks 24 can each limit the movement of the four moving wheels 23 to avoid the moving wheels 23 from deflecting or shifting, which can help improve the movement stability of the main body 2 and the material box 3.
[0064] In one embodiment of this application, such as Figure 2 As shown, the protrusion 112 of this application can be formed into a semi-cylindrical structure, with its flat side connected to the track body 111. This design of the protrusion 112 not only facilitates quick and accurate docking between the protrusion 112 and the limiting block 24, but also helps reduce the possibility of the protrusion 112 and the limiting block 24 separating due to vibration during operation. (During operation, the equipment will generate certain vibrations, which may cause the equipment body 2 and the material box 3 to vibrate vertically. That is, the limiting block 24 may rise to a certain height and become misaligned to some extent. At this time, because the protrusion 112 is formed into a semi-cylindrical structure, when the limiting block 24 moves downward under the action of its own weight, the weight of the material box 3, and the weight of the equipment body 2, the limiting block 24 can automatically and accurately re-engage with the protrusion 112, effectively preventing the possibility of the protrusion 112 and the limiting block 24 separating due to vibration.)
[0065] In one embodiment of this application, such as Figure 3 and Figure 5 As shown, the accommodating cavity 311 of this application can be formed into an inverted right-angled trapezoidal structure. The box body 31 includes a first side wall 313 and a second side wall 314 arranged opposite to each other, a third side wall 315 connected between the first side wall 313 and the second side wall 314, and an inclined bottom wall 316. The two sides of the bottom wall 316 are respectively connected to the first side wall 313 and the second side wall 314. The first side wall 313, the second side wall 314, the third side wall 315 and the bottom wall 316 together enclose the accommodating cavity 311, which is formed into an inverted right-angled trapezoidal structure. The bottom of the first side wall 313, the second side wall 314, the third side wall 315 and the bottom wall 316 together enclose the discharge port 312. The bottom wall 316 is mounted on the control box 21, the sealing plate 32 is rotatably or movably mounted on the bottom wall 316, and the second driving member 33 is mounted on the third side wall 315 and located outside the accommodating cavity 311.
[0066] In this way, the inclined bottom wall 316 can guide the material in the receiving cavity 311 to the discharge port 312 for easy material outflow. Simultaneously, the sealing plate 32 is mounted on the bottom wall 316, and its rotation or movement allows the material to flow out quickly through the guiding effect of the bottom wall 316. Compared to the solution where the sealing plate 32 is mounted on the third side wall 315, this effectively reduces the possibility of material blockage at the discharge port 312 (for example, in one embodiment, the sealing plate 32 is rotatably mounted on the third side wall 315; when it is in the open state, the bottom wall 316 is inclined from left to right, while the sealing plate 32 is inclined from right to left, which may cause material blockage at the discharge port 312). Furthermore, the second driving member 33 is mounted on the third side wall 315 and located outside the receiving cavity 311, effectively ensuring the accommodating space of the receiving cavity 311 and effectively ensuring the normal and smooth operation of the second driving member 33.
[0067] In one embodiment of this application, such as Figures 3 to 5 As shown, the sealing plate 32 of this application can be rotatably installed on the bottom of the bottom wall 316. The second driving member 33 includes a driving body 331 and a connecting rope 332. The output end of the driving body 331 is connected to one end of the connecting rope 332, and the other end of the connecting rope 332 is connected to the end of the sealing plate 32 away from the bottom wall 316.
[0068] In this way, the connecting rope 332 has a certain degree of extensibility and deformability, which not only allows the sealing plate 32 to rotate smoothly around the bottom wall 316, but also allows the sealing plate 32 to vibrate to a certain extent during the unloading process, thereby further effectively avoiding possible material blockage problems.
[0069] In one embodiment of this application, such as Figure 1 , Figures 3 to 5As shown, the material handling box 3 of this application may further include a receiving shell 34, which is disposed on the side of the third side wall 315 away from the receiving cavity 311, and a receiving cavity for receiving the second driving member 33 is formed in the receiving shell 34.
[0070] In this way, the housing 34 not only does not affect the material holding capacity of the accommodating cavity 311, but also provides a surrounding protection for the second driving member 33.
[0071] In one embodiment of this application, such as Figure 5 and Figure 6 As shown, the sealing plate 32 of this application may include a plate body 321, a connecting block 322 and two hinge blocks 323. The two hinge blocks 323 are spaced apart and the plate body 321 is hinged to the bottom wall 316 through the two hinge blocks 323. The connecting block 322 is located on the side of the plate body 321 away from the bottom wall 316 and is located directly below the receiving cavity. The connecting block 322 is configured on the axis of symmetry of the two hinge blocks 323 and is connected to the connecting rope 332.
[0072] In this way, during sealing, the connecting block 322 and the two hinge blocks 323 can form a three-point support, which can effectively ensure the positional stability of the sealing plate 32 during sealing. At the same time, during the tilting process, the connecting block 322 and the two hinge blocks 323, in this configuration, can also enable the sealing plate 32 to rotate stably and reliably around the bottom wall 316, thus effectively ensuring the accuracy and stability of material feeding.
[0073] In one embodiment of this application, such as Figure 1 , Figure 3 and Figure 5 As shown, the control unit of this application can be electrically connected to the second drive unit 33 via an electrical connection wire (not shown). The herbal medicine pressing and feeding distribution device 100 may also include a fabric line 4, in which a wiring cavity for the power supply connection wire is formed. The fabric line 4 includes a first part 41 and a second part 42 that are connected to each other. The first part 41 is located on the side of the third side wall 315 away from the receiving cavity 311, and the second part 42 is located on the side of the first side wall 313 away from the receiving cavity 311.
[0074] In this way, the arrangement of the wiring 4 can not only effectively ensure the stable and reliable arrangement of the electrical connection wires, but also effectively reduce the possibility of the electrical connection wires getting tangled or interfering with other equipment or devices during the movement of the main body 2 and the material box 3 in this application.
[0075] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A feeding and dispensing device for pressing medicinal slices, characterized in that, Feed control applied to multiple linearly arranged herbal medicine pressing machines, including: Track component (1), the track component (1) is used to be disposed above the feed inlet of multiple herbal slice pressing equipment, and the track component (1) is configured to extend in a straight line along the arrangement of multiple herbal slice pressing equipment; The main body of the equipment (2) includes a control box (21), a control unit, a first drive unit and a moving wheel (23). The control unit and the first drive unit are respectively disposed in the control box (21). The output end of the first drive unit is connected to the moving wheel (23) to drive the moving wheel (23) to move on the track (1). The material handling box (3) includes a box body (31), a sealing plate (32), and a second driving member (33). The top of the box body (31) is recessed inward to form a receiving cavity (311) for receiving raw materials. The bottom of the box body (31) is provided with a discharge port (312) that communicates with the receiving cavity (311). The sealing plate (32) is rotatably or movablely disposed in the discharge port (312) to block the discharge port (312). The second driving member (33) is connected to the sealing plate (32) to drive the sealing plate (32) to rotate or move so that the discharge port (312) is blocked or opened. The control unit is electrically connected to the first drive unit and the second drive unit (33) respectively.
2. The herbal slice pressing and feeding distribution equipment according to claim 1, characterized in that, The track component (1) includes two running tracks (11) spaced apart from each other. The main body of the equipment (2) is located between the two running tracks (11). There are four moving wheels (23). Two of the four moving wheels (23) are located on one side of the control box (21) and are used to adapt to one running track (11). The other two of the four moving wheels (23) are located on the other side of the control box (21) and are used to adapt to another running track (11).
3. The herbal slice pressing and feeding distribution equipment according to claim 2, characterized in that, The running track (11) includes a track body (111) and a ridge (112). The track body (111) is formed into a square strip. The ridge (112) is arranged above the track body (111) along the axial direction of the track body (111) and is located in the middle of the top surface of the track body (111). The main body of the equipment (2) also includes at least two limiting blocks (24), the at least two limiting blocks (24) are respectively disposed on both sides of the control box (21), one end of the two limiting blocks (24) is connected to the control box (21), and the other end of the two limiting blocks (24) is respectively formed with notches (241) corresponding to the two protrusions (112). The movable wheel (23) is configured to move on the track body (111) and the movable wheel (23) is located between the ridge (112) and the control box (21).
4. The herbal slice pressing and feeding distribution equipment according to claim 3, characterized in that, The limiting block (24) is set to four, and the four limiting blocks (24) are respectively set to the four moving wheels (23); The limiting block (24) includes a first block (242) and a second block (243) connected to each other. The end of the first block (242) away from the second block (243) is connected to the control box (21) and the first block (242) is located above the moving wheel (23). The second block (243) has a notch (241) corresponding to the protrusion (112) formed on the side away from the second block (243). The limiting block (24) is located in the space formed by the first block (242) and the second block (243).
5. The herbal slice pressing and feeding distribution equipment according to claim 3, characterized in that, The protrusion (112) is formed as a semi-cylindrical structure, and the side of the semi-cylindrical structure is connected to the track body (111).
6. The herbal slice pressing and feeding distribution equipment according to claim 1, characterized in that, The receiving cavity (311) is formed into an inverted right-angled trapezoidal structure. The box body (31) includes a first side wall (313) and a second side wall (314) arranged opposite to each other, a third side wall (315) connected between the first side wall (313) and the second side wall (314), and an inclined bottom wall (316). The two sides of the bottom wall (316) are respectively connected to the first side wall (313) and the second side wall (314). The first side wall (313), the second side wall (314), the third side wall (315) and the bottom wall (316) together enclose the receiving cavity (311) which is formed into an inverted right-angled trapezoidal structure. The bottom of the first side wall (313), the second side wall (314), the third side wall (315) and the bottom wall (316) together enclose the discharge port (312). The bottom wall (316) is mounted on the control box (21), the sealing plate (32) is rotatably or movably mounted on the bottom wall (316), and the second drive member (33) is mounted on the third side wall (315) and located outside the accommodating cavity (311).
7. The herbal slice pressing and feeding distribution equipment according to claim 6, characterized in that, The sealing plate (32) is rotatably mounted on the bottom of the bottom wall (316). The second driving member (33) includes a driving body (331) and a connecting rope (332). The output end of the driving body (331) is connected to one end of the connecting rope (332), and the other end of the connecting rope (332) is connected to the end of the sealing plate (32) away from the bottom wall (316).
8. The herbal slice pressing and feeding distribution equipment according to claim 7, characterized in that, The material handling box (3) also includes a receiving shell (34) body, which is disposed on the side of the third side wall (315) away from the receiving cavity (311), and a receiving cavity for receiving the second driving member (33) is formed in the receiving shell (34) body.
9. The herbal slice pressing and feeding distribution equipment according to claim 8, characterized in that, The sealing plate (32) includes a plate body (321), a connecting block (322) and two hinge blocks (323). The two hinge blocks (323) are spaced apart and the plate body (321) is hinged to the bottom wall (316) through the two hinge blocks (323). The connecting block (322) is located on the side of the plate body (321) away from the bottom wall (316) and the connecting block (322) is located directly below the receiving cavity. The connecting block (322) is configured on the axis of symmetry of the two hinge blocks (323) and the connecting block (322) is connected to the connecting rope (332).
10. The herbal slice pressing and feeding distribution equipment according to claim 6, characterized in that, The control unit is electrically connected to the second drive unit (33) via an electrical connection line. The herbal medicine pressing and feeding distribution device also includes a fabric line (4). A wiring cavity for the electrical connection line to pass through is formed in the fabric line (4). The fabric line (4) includes a first part (41) and a second part (42) that are connected to each other. The first part (41) is located on the side of the third sidewall (315) away from the receiving cavity (311), and the second part (42) is located on the side of the first sidewall (313) away from the receiving cavity (311).