Ginseng preparation back sealing packaging machine
By designing inclined slip pipes, buffer structures and serrated anti-blocking rods in the ginseng preparation back sealing and packaging machine, the problems of slow material discharge and easy blockage are solved, and efficient and stable material transportation and anti-blocking effect are achieved.
Patent Information
- Application Number
- CN202421671269.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-07-16
AI Technical Summary
During the use of the ginseng preparation back sealing and packaging machine, there is a problem of slow material discharge and easy to blockage, mainly due to the barrel design, material separation assembly structure and material characteristics.
A packaging machine including inclined slip pipe, buffer structure and serrated anti-blocking rod is designed. The material can quickly slide to the material distribution assembly through the inclined slip pipe. The buffer structure absorbs impact force, and the serrated anti-blocking rod prevents blockage.
It significantly improves material conveying efficiency, avoids blockage, protects machine parts, extends service life, and improves the stability and reliability of the packaging machine.
Smart Images

Figure CN222905910U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of preparation back-sealing packaging machines, in particular to a back-sealing packaging machine for ginseng preparations. Background Art
[0002] The ginseng preparation back-seal packaging machine, as an automated packaging equipment specially designed for the pharmaceutical, health care products and other industries, is mainly used for back-seal packaging of ginseng preparation products. It integrates advanced mechanical, electrical and computer technologies, realizes an efficient, accurate and stable packaging process, significantly improves production efficiency, and effectively reduces labor costs.
[0003] However, the ginseng preparation back-seal packaging machine currently has the problem of slow material discharge and easy blockage during use, which is mainly due to the following deficiencies:
[0004] First of all, the design of the barrel has an important influence on the material flow rate. If the barrel diameter is too small or the length is too long, the flow resistance of the material in it will increase, resulting in a decrease in the discharge speed. At the same time, if the inside of the barrel is not smooth enough, the material is easy to adhere to the barrel wall, further affecting the discharge efficiency.
[0005] Secondly, the structural design of the material distribution component is also a key factor affecting the discharge speed. If the material distribution port is too small or unevenly distributed, the material will be blocked during the distribution process, thereby slowing down the discharge speed.
[0006] In addition, the material characteristics of ginseng preparations are also an important reason for the blockage. Since the material contains a certain amount of moisture, is sticky, and has uneven particle size, these characteristics make it easier for the material to form blockages during the flow process. Especially at the connection between the barrel and the material distribution component, the blockage phenomenon is more serious due to the change in material flow direction and flow rate. Utility Model Content
[0007] The main purpose of the utility model is to provide a back-sealing packaging machine for ginseng preparations, which can effectively solve the problems raised in the background technology.
[0008] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0009] A back-sealed packaging machine for ginseng preparations, comprising a frame, a material tray, a back-sealed packaging assembly, a discharging conveyor belt, a barrel, a material dividing assembly and a discharging pipe, wherein the back-sealed packaging assembly is installed in the frame, the material tray and the barrel are respectively installed on the side wall and the top of the frame, the material tray is connected to the back-sealed packaging assembly and supplies packaging bags to the back-sealed packaging assembly, the discharging conveyor belt and the material dividing assembly are respectively installed at the lower end and the upper end of the frame, the material dividing assembly is connected to the back-sealed packaging assembly through the discharging pipe to realize material transportation, the material dividing assembly is located at the lower end of the barrel, and the barrel supplies materials to the material dividing assembly;
[0010] An inclined slide pipe is provided between the material distributing component and the barrel. The barrel is mounted on the frame through multiple limiting rods, and the material quickly slides down into the material distributing component through the inclined slide pipe.
[0011] Fixed seats are installed on the multiple limiting rods. The upper end of the fixed seat is connected with a mounting frame through a buffer member. The mounting frame is connected with the inclined slide pipe. The buffer of the inclined slide pipe is realized through the buffer member, reducing the impact force of the falling material.
[0012] In a preferred embodiment of the present application, a serrated notch is opened at the top end of the inclined slide pipe, and a serrated anti-blocking rod is embedded in the serrated notch. A connecting rod connected with the serrated anti-blocking rod is arranged at the edge of the fixed seat. The connecting rod keeps the relative position of the serrated anti-blocking rod and the inclined slide pipe unchanged, preventing blockage at the barrel and the inclined slide pipe.
[0013] In a preferred embodiment of the present application, the multiple limiting rods are parallelly distributed on the frame. The limiting rods are fixed on the frame through bolts. The limiting rods are screw rods, and the fixed seat is fixed on the limiting rod through a nut.
[0014] In a preferred embodiment of the present application, the inclination angle range of the inclined slide pipe is from 15 degrees to 30 degrees.
[0015] In a preferred embodiment of the present application, the mounting frame is divided into a base and a support frame. Multiple support frames are installed on the base. The support frames are connected with the inclined slide pipe through bolts. Convex columns are arranged at the four corners of the lower end of the base. Convex tubes adapted to the convex columns are arranged at the upper end of the fixed seat. The convex tubes are restricted in the convex columns.
[0016] In a preferred embodiment of the present application, the buffer member is a buffer spring. The buffer spring is sleeved in the convex tube and the convex column. Rings are arranged at the upper and lower ends of the buffer spring. The rings are sleeved on the convex tube and the convex column.
[0017] Compared with the prior art, the present utility model has the following beneficial effects:
[0018] In the present utility model, the design of the inclined slide pipe makes full use of its inclination angle, enabling the material to quickly and smoothly slide down into the material distributing component, thus significantly improving the efficiency of material transportation. This design not only ensures the smooth sliding of the material, but also avoids problems such as material blockage or too fast sliding caused by improper angles through fine adjustment of the inclination angle. In addition, the built-in serrated anti-blocking structure in the slide pipe effectively prevents material blockage during transportation, ensuring the continuity and stability of material flow.
[0019] During the process of material sliding, the buffer structure plays a crucial role. By using buffer components, it successfully absorbs the impact force generated when the material drops, reduces the impact of the material on machine components, thereby protecting the integrity of machine components and extending the service life of the machine. In addition, components such as the inclined chute pipe, buffer structure, and anti-blocking structure are firmly connected through components such as fixed seats, mounting brackets, and connecting rods, ensuring the stability and reliability of the entire system and further enhancing the operating stability of the packaging machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0021] Figure 2 is a rear view of the overall structure of the present utility model;
[0022] Figure 3 is a display diagram of the hopper, material distribution component, and inclined discharge pipe of the present utility model;
[0023] Figure 4 is a display diagram of the inclined discharge pipe, buffer component, and serrated anti-blocking rod of the present utility model.
[0024] In the figure: 1, frame; 2, tray; 3, back-sealing packaging component; 4, discharge conveyor belt; 5, hopper; 6, material distribution component; 7, discharge pipe; 8, inclined chute pipe; 9, serrated notch; 10, serrated anti-blocking rod; 11, mounting bracket; 12, fixed seat; 13, buffer component; 14, connecting rod; 15, limiting rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] In order to make the technical means, creative features, achieved purposes, and functions of the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments. Embodiment
[0026] As Figures 1 to 4 shown, this embodiment provides a back-sealing packaging machine for ginseng preparations, the structure of which includes a frame 1, a tray 2, a back-sealing packaging component 3, a discharge conveyor belt 4, a hopper 5, a material distribution component 6, and a discharge pipe 7. The back-sealing packaging component 3 is ingeniously installed inside the frame 1, while the tray 2 and the hopper 5 are respectively firmly installed on the side wall and the top of the frame 1. The tray 2 is closely connected to the back-sealing packaging component 3 and is responsible for stably supplying packaging bags to the back-sealing packaging component 3. The discharge conveyor belt 4 and the material distribution component 6 are respectively installed at the lower end and the upper end of the frame 1, forming a complete material processing process. The material distribution component 6 is closely connected to the back-sealing packaging component 3 through the discharge pipe 7, ensuring the smooth transportation of materials. It is particularly worth mentioning that the material distribution component 6 is located at the lower end of the hopper 5, enabling the hopper 5 to directly supply materials to the material distribution component 6, greatly improving the work efficiency.
[0027] Between the material distribution component 6 and the barrel 5, an inclined slide pipe 8 is ingeniously arranged in this embodiment. The barrel 5 is stably mounted on the machine frame 1 through multiple limiting rods 15, and the inclined slide pipe 8 utilizes its own inclination angle to quickly and smoothly slide the material into the material distribution component 6, effectively preventing the blockage and retention of the material during transportation.
[0028] To ensure the stability and buffering effect of the inclined slide pipe 8, fixing seats 12 are installed on multiple limiting rods 15. The upper end of the fixing seat 12 is tightly connected to the mounting frame 11 through a buffer member 13. This design not only enhances the structural strength of the inclined slide pipe 8 but also effectively reduces the impact force when the material drops through the buffering action of the buffer member 13, thereby protecting the various components inside the packaging machine and extending the service life of the machine.
[0029] Multiple limiting rods 15 are parallelly distributed on the machine frame 1 and are firmly fixed to the machine frame 1 through bolts. The limiting rods 15 are in the form of screw rods, enabling the fixing seat 12 to be conveniently fixed on the limiting rods 15 through nuts, facilitating installation and disassembly.
[0030] The inclination angle of the inclined slide pipe 8 is carefully designed to be between fifteen degrees and thirty degrees, ensuring that the material can slide smoothly while avoiding problems such as material blockage or too fast sliding speed caused by too large or too small an angle.
[0031] The design of the mounting frame 11 also reflects the ingenuity of this embodiment. It is divided into a base and a support frame. Multiple support frames are stably installed on the base and are tightly connected to the inclined slide pipe 8 through bolts. Convex columns are provided at the four corners of the lower end of the base, which perfectly match the convex pipes at the upper end of the fixing seat 12, enabling the mounting frame 11 to be stably installed on the fixing seat 12.
[0032] The buffer member 13 adopts the form of a buffer spring in this embodiment. The buffer spring is sleeved in the convex pipe and the convex column, and circular rings are provided at its upper and lower ends, which are sleeved on the convex pipe and the convex column, ensuring the stability and effectiveness of the buffer spring. When the material slides through the inclined slide pipe 8, the buffer spring can effectively absorb the impact force and protect the machine components from damage. Embodiment
[0033] The structure of this embodiment is basically the same as that of Embodiment 1. As Figures 1 to 4 shown, it also includes core components such as the machine frame 1, the material tray 2, the back-sealing packaging component 3, the discharge conveyor belt 4, the barrel 5, the material distribution component 6, and the discharge pipe 7. The layout and functions of these components are the same as those of Embodiment 1, ensuring the efficient and stable operation of the ginseng preparation back-sealing packaging machine.
[0034] Slightly different from the first embodiment, this embodiment adds a sawtooth notch 9 at the top of the inclined sliding material pipe 8, and embeds a sawtooth anti-blocking rod 10 in the notch. This design can effectively prevent the material from being blocked at the top of the inclined sliding material pipe 8, ensuring that the material can slide smoothly into the material distribution component 6.
[0035] At the same time, a connecting rod 14 connected to the sawtooth anti-blocking rod 10 is provided at the edge of the fixing seat 12. The function of the connecting rod 14 is to keep the relative position of the sawtooth anti-blocking rod 10 and the inclined sliding material pipe 8 unchanged, so as to prevent the anti-blocking rod from shifting or falling off during the sliding of the material. This design not only enhances the anti-blocking effect, but also improves the stability and reliability of the entire packaging machine.
[0036] Through the design improvement of the second embodiment, the back-sealed packaging machine for ginseng preparations further improves the anti-blocking performance on the basis of maintaining the original efficient and stable operation, ensuring smooth material transportation, which is of great significance for improving production efficiency and reducing production costs.
[0037] During packaging, the barrel 5 is responsible for storing and supplying the raw materials of the ginseng preparation. These raw materials begin their journey of sliding down under the guidance of the inclined sliding tube 8. The ingenious design of the inclined sliding tube 8 allows the materials to slide down quickly and smoothly using its tilt angle. At the same time, the coordinated use of the mounting frame 11, the fixing seat 12, and the buffer 13 ensures the stability and buffering effect of the inclined sliding tube 8. When the material passes through the sliding tube, the buffer spring can effectively absorb the impact force and protect the machine parts from damage. At the same time, it also reduces the vibration and impact of the material during the sliding process, further ensuring the stability of the material flow.
[0038] When the material reaches the material distribution component 6, the material distribution component 6 will accurately distribute the material to each back-sealing packaging component 3 according to the preset packaging specifications. The back-sealing packaging component 3 quickly completes the packaging bag packaging work and safely packages the ginseng preparation raw materials in the packaging bag.
[0039] The anti-blocking mechanism plays a key role in the entire packaging process. The combined design of the serrated notch 9 and the serrated anti-blocking rod 10 effectively prevents the material from being blocked at the top of the inclined sliding tube 8. When the material encounters resistance during the sliding process, the serrated anti-blocking rod 10 can use its serrated structure to effectively disperse and guide the material to avoid blockage. At the same time, the function of the connecting rod 14 is to maintain the stability and position accuracy of the anti-blocking rod to prevent it from shifting or falling off during the sliding process of the material.
[0040] In addition, the packaging machine also delivers the packaged ginseng preparation packaging bag through the discharging conveyor belt 4 for subsequent processing or storage. The continuous operation of the discharging conveyor belt 4 ensures the continuity and efficiency of the entire packaging process.
[0041] Through its ingenious material handling and anti-blocking design, the back-sealing packaging machine for ginseng preparations realizes a fast material sliding process and an effective anti-blocking process, thereby improving production efficiency, reducing production costs, and ensuring the packaging quality and safety of ginseng preparations.
[0042] The present utility model is not limited to the above embodiments. For those of ordinary skill in the art of this technology, without departing from the principle of the present utility model, several improvements and refinements can also be made, and these improvements and refinements are also regarded as within the protection scope of the present utility model. The content not described in detail in this specification belongs to the prior art well-known to those of ordinary skill in the art.
Claims
1. A back-sealed packaging machine for ginseng preparations, comprising a frame (1), a material tray (2), a back-sealed packaging assembly (3), a discharging conveyor belt (4), a barrel (5), a material distribution assembly (6) and a discharging pipe (7), wherein the back-sealed packaging assembly (3) is mounted in the frame (1), the material tray (2) and the barrel (5) are mounted on the side wall and the top of the frame (1) respectively, the material tray (2) is connected to the back-sealed packaging assembly (3) and supplies packaging bags to the back-sealed packaging assembly (3), the discharging conveyor belt (4) and the material distribution assembly (6) are mounted on the lower end and the upper end of the frame (1) respectively, the material distribution assembly (6) is connected to the back-sealed packaging assembly (3) through the discharging pipe (7) to realize material transportation, the material distribution assembly (6) is located at the lower end of the barrel (5), and the barrel (5) supplies materials to the material distribution assembly (6), characterized in that: An inclined sliding material pipe (8) is provided between the material distribution component (6) and the barrel (5); the barrel (5) is mounted on the frame (1) via a plurality of limit rods (15); and the material is quickly slid into the material distribution component (6) via the inclined sliding material pipe (8); A fixing seat (12) is mounted on the plurality of limit rods (15); the upper end of the fixing seat (12) is connected to a mounting frame (11) via a buffer member (13); the mounting frame (11) is connected to the inclined sliding material pipe (8); the buffer member (13) is used to buffer the inclined sliding material pipe (8), thereby reducing the impact force of falling materials.
2. The back-sealing packaging machine for ginseng preparations according to claim 1, characterized in that: The top of the inclined sliding material tube (8) is provided with a sawtooth notch (9), and a sawtooth anti-blocking rod (10) is embedded in the sawtooth notch (9). The edge of the fixed seat (12) is provided with a connecting rod (14) connected to the sawtooth anti-blocking rod (10). The connecting rod (14) keeps the relative position of the sawtooth anti-blocking rod (10) and the inclined sliding material tube (8) unchanged, so as to prevent blockage at the barrel (5) and the inclined sliding material tube (8).
3. A back-sealing packaging machine for ginseng preparations according to claim 1 or 2, characterized in that: A plurality of the limit rods (15) are distributed in parallel on the frame (1); the limit rods (15) are fixed to the frame (1) by means of bolts; the limit rods (15) are screw rods; and the fixing seat (12) is fixed to the limit rods (15) by means of nuts.
4. The back-sealing packaging machine for ginseng preparations according to claim 3, characterized in that: The inclination angle of the inclined sliding material pipe (8) ranges from fifteen degrees to thirty degrees.
5. The back-sealing packaging machine for ginseng preparations according to claim 4, characterized in that: The mounting frame (11) is divided into a base and a support frame. A plurality of support frames are mounted on the base. The support frames are connected to the inclined sliding material pipe (8) via bolts. Convex columns are provided at the four corners of the lower end of the base. A convex tube adapted to the convex column is provided at the upper end of the fixing seat (12). The convex tube is confined in the convex column.
6. The back-sealing packaging machine for ginseng preparations according to claim 5, characterized in that: The buffer member (13) is a buffer spring, which is sleeved in the convex tube and the convex column. The upper and lower ends of the buffer spring are provided with circular rings, which are sleeved on the convex tube and the convex column.