Production collecting device
By using an automatic continuous feeding system with a feeding pipe and spiral blades, and a multi-motor driven crushing roller and lever device, the problems of low raw material input efficiency and material loss in the fresh bamboo sap production equipment have been solved, achieving efficient crushing and automatic classification, and improving the practicality of the equipment and product quality.
Patent Information
- Application Number
- CN202520748379.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-04-18
AI Technical Summary
Existing fresh bamboo sap production equipment suffers from problems such as low working efficiency, material flying and leakage, reduced throughput due to particle accumulation, and high cleaning costs during the raw material input process.
An automatic continuous feeding system using a feeding pipe and spiral blades, equipped with multiple motor-driven crushing rollers and lever devices, achieves automatic sorting and sealed conveying, and combines multiple crushing teeth and separators for efficient crushing and collection.
It achieves automatic continuous feeding, prevents material from flying and leaking, improves crushing efficiency and quality, reduces material loss and environmental pollution, and enhances the practicality of the equipment and product quality.
Smart Images

Figure CN223935814U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fresh bamboo sap production technology, specifically a production and collection device. Background Technology
[0002] Fresh bamboo sap is a liquid extracted from fresh bamboo stalks, which is naturally extracted after heating. Its main components include phenolic acids, amino acids, sugars, alcohols, ketones, and flavonoids. Fresh bamboo sap has the effect of clearing heat and resolving phlegm, and is often used to treat symptoms such as cough with excessive phlegm due to lung heat, asthma, and chest tightness. During the extraction process, in order to more easily extract the effective components from the bamboo, it is usually necessary to crush the bamboo to increase its surface area, thereby improving the efficiency and yield of the dry distillation process. To ensure more uniform extraction of the crushed bamboo and avoid incomplete extraction due to uneven bamboo particle size, this invention proposes a production and collection device.
[0003] According to a search, Chinese patent document CN215139363U discloses a mixing device for producing fresh bamboo sap. The device involves feeding medicinal materials into a grinding chamber through an inlet, activating a motor and a stirring motor via a control device, and pulverizing the medicinal materials under the action of an active and driven crushing roller. The pulverized materials are then filtered through a filter screen, with those conforming to the specified particle size falling into the mixing chamber. However, in actual use, manually feeding the materials into the grinding chamber not only results in low efficiency but also causes some material scattering and leakage, leading to unnecessary material loss and environmental pollution. Furthermore, after prolonged use, larger particles accumulate on the top of the filter screen, resulting in a decreasing material throughput and requiring additional manpower and costs for cleaning, thus reducing overall practicality. Utility Model Content
[0004] (a) Technical problems to be solved
[0005] To address the shortcomings of existing technologies, this utility model provides a production collection device that features automatic continuous feeding, automatic raw material sorting, and improved product quality, thus solving the aforementioned technical problems.
[0006] (II) Technical Solution
[0007] To achieve the above objectives, this utility model provides the following technical solution: a production collection device, comprising a feeding pipe, a first motor fixedly installed on the left side of the feeding pipe, an inlet and an outlet fixedly installed on the outer side of the feeding pipe, a first rotating shaft installed inside the feeding pipe, spiral blades fixedly installed on the outer side of the first rotating shaft, a crushing box fixedly connected to the bottom end of the outlet, a base fixedly installed on the outer side of the crushing box, a second motor fixedly installed on the right side of the base, a second rotating shaft installed inside the base, a crushing roller fixedly installed on the outer side of the second rotating shaft, a funnel box fixedly installed inside the crushing box, a leakage hole opened on the top surface of the funnel box, a protective box fixedly installed on the inner top surface of the funnel box, a third motor installed inside the protective box, a lever fixedly connected to the output shaft of the third motor, and a first collection box and a second collection box installed at the bottom of the funnel box.
[0008] Preferably, the output shaft of the first motor is fixedly connected to the left end of the first rotating shaft.
[0009] The above technical solution connects the feed inlet to the material bin, and then the first motor is started. The output shaft of the first motor can drive the first rotating shaft and the spiral blades to rotate together. The spiral blades can then effectively push the raw material to the right continuously. The raw material can then be sent into the crushing box through the discharge port. Therefore, it can not only realize automatic continuous conveying, but also effectively seal the material to prevent it from flying and leaking, thus reducing material loss and environmental pollution.
[0010] Preferably, there are two of each of the base, the second motor, the second rotating shaft, and the crushing roller, and the output shaft of the second motor is fixedly connected to the right end of the second rotating shaft.
[0011] With the above technical solution, when the two second motors are started, the output shaft of the second motor can drive the second rotating shaft and the crushing roller to rotate. Therefore, the input material can be effectively crushed by impact, which facilitates subsequent extraction and processing operations. It is also beneficial for the treatment and utilization of bamboo residue.
[0012] Preferably, the outer surfaces of both crushing rollers are provided with a plurality of crushing teeth, and the plurality of crushing teeth are meshed and connected to each other.
[0013] With the above technical solution, when the two crushing rollers crush the material, multiple crushing teeth can bite into the material. If the material is not crushed, the crushing teeth will forcefully slide over the surface of the material and flip it over, waiting for the next pair of crushing teeth to continuously crush it until the crushed material can be bitten into the toothed rollers. The bitten material is directly crushed and discharged after being squeezed and sheared by the lower edge of the current pair of crushing teeth and the upper edge of the previous pair of crushing teeth, which effectively improves the overall crushing efficiency and quality of the device.
[0014] Preferably, the number of the leakage holes is set to multiple, and the number of the levers is set to four.
[0015] With the above technical solution, starting the third motor allows the output shaft of the third motor to drive the four levers to rotate. Therefore, when the crushed material falls to the top of the funnel box, the levers can push the material continuously through the holes, thus collecting it into the interior of the first collection box. In addition, when larger particles fall to the top of the funnel box, they will gradually move outward under the continuous pushing of the levers and the action of their own centrifugal force. When they reach the edge of the funnel box, the material can fall into the interior of the second collection box through the gap between the funnel box and the crushing box, thus completing the collection and reprocessing, improving the overall practicality of the device.
[0016] Preferably, the outer side of the funnel box is provided with a partition plate, which is fixedly installed inside the crushing box.
[0017] Through the above technical solution, the separator can effectively separate the path of large particles to prevent them from falling into the first collection box, thus ensuring the quality of material classification.
[0018] Compared with the prior art, the present invention provides a production collection device, which has the following beneficial effects:
[0019] 1. This utility model connects the feed inlet to the material bin, then starts the first motor. The output shaft of the first motor drives the first rotating shaft and the spiral blades to rotate together. The spiral blades can then effectively push the raw material to the right continuously. The raw material is then fed into the crushing box through the discharge port. Therefore, it can not only realize automatic continuous conveying, but also effectively seal the material to prevent material flying and leakage, reducing material loss and environmental pollution. By starting two second motors, the output shafts of the second motors can drive the second rotating shaft and the crushing roller to rotate. Therefore, the input material can be effectively crushed by impact. Multiple crushing teeth can bite into the material. If the material is not crushed, the crushing teeth will force it to slide along the surface of the material, turning the material over, waiting for the next pair of crushing teeth to continuously crush it until the crushed material can be bitten into the toothed roller. The bitten material is directly crushed and discharged after being squeezed and sheared by the lower edge of the current pair of crushing teeth and the upper edge of the previous pair of crushing teeth. This effectively improves the overall crushing efficiency and quality of the device.
[0020] 2. This utility model utilizes a third motor. The output shaft of the third motor drives four levers to rotate. Therefore, when the crushed material falls to the top of the funnel box, the levers push the material continuously through the holes, thus collecting it into the first collection box. In addition, when larger particles fall to the top of the funnel box, they gradually move outward under the continuous pushing of the levers and their own centrifugal force. When they reach the edge of the funnel box, the material can fall into the second collection box through the gap between the funnel box and the crushing box, thus completing collection and reprocessing and improving the overall practicality of the device. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural schematic diagram of the present utility model;
[0022] Figure 2 This is a three-dimensional cross-sectional view of the feeding tube and other parts of the present invention.
[0023] Figure 3 This is a front sectional view of the crushing box and other parts of the present invention.
[0024] Figure 4 This is a three-dimensional cross-sectional view of the funnel box and other parts of the present invention.
[0025] The components are as follows: 1. Feeding pipe; 2. First motor; 3. Inlet; 4. Outlet; 5. First rotating shaft; 6. Spiral blades; 7. Crushing box; 8. Base; 9. Second motor; 10. Second rotating shaft; 11. Crushing roller; 12. Funnel box; 13. Leakage hole; 14. Protective box; 15. Third motor; 16. Lever; 17. First collection box; 18. Second collection box; 19. Crushing teeth; 20. Divider plate. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figure 1-4 A production collection device includes a feeding pipe 1, a first motor 2 fixedly installed on the left side of the feeding pipe 1, an inlet 3 and an outlet 4 fixedly installed on the outer side of the feeding pipe 1, a first rotating shaft 5 installed inside the feeding pipe 1, a spiral blade 6 fixedly installed on the outer side of the first rotating shaft 5, a crushing box 7 fixedly connected to the bottom end of the outlet 4, a base 8 fixedly installed on the outer side of the crushing box 7, a second motor 9 fixedly installed on the right side of the base 8, a second rotating shaft 10 installed inside the base 8, a crushing roller 11 fixedly installed on the outer side of the second rotating shaft 10, a funnel box 12 fixedly installed inside the crushing box 7, a leakage hole 13 opened on the top surface of the funnel box 12, a protective box 14 fixedly installed on the inner top surface of the funnel box 12, a third motor 15 installed inside the protective box 14, a lever 16 fixedly connected to the output shaft of the third motor 15, and a first collection box 17 and a second collection box 18 installed at the bottom of the funnel box 12.
[0028] Specifically, the output shaft of the first motor 2 is fixedly connected to the left end of the first rotating shaft 5. The advantage is that this structure connects the feed inlet 3 to the material bin. When the first motor 2 is started, its output shaft drives the first rotating shaft 5 and the spiral blades 6 to rotate together. The spiral blades 6 effectively push the raw material continuously to the right, and then the material is fed into the crushing chamber 7 through the discharge port 4. Therefore, it not only achieves automatic continuous conveying but also effectively seals the material, preventing it from flying and leaking, thus reducing material loss and environmental pollution.
[0029] Specifically, there are two of each of the following components: base 8, second motor 9, second rotating shaft 10, and crushing roller 11. The output shaft of the second motor 9 is fixedly connected to the right end of the second rotating shaft 10. The advantage is that, with this structure, when both second motors 9 are started, their output shafts can drive the second rotating shaft 10 and crushing roller 11 to rotate. Therefore, the input material can be effectively crushed by impact, facilitating subsequent extraction and processing operations. It also benefits the processing and utilization of bamboo residue and other materials.
[0030] Specifically, each of the two crushing rollers 11 has multiple crushing teeth 19 on its outer surface, and these teeth 19 are interconnected and mesh with each other. The advantage is that, with this structure, when the two crushing rollers 11 crush the material, the multiple crushing teeth 19 can bite into the material. If the material is not crushed, the crushing teeth 19 forcefully slide along the surface of the material, turning it over, waiting for the next pair of crushing teeth 19 to continuously crush it until the crushed material can be bitten into the toothed rollers. The bitten material is then directly crushed and discharged after being squeezed and sheared by the lower edge of the current pair of crushing teeth 19 and the upper edge of the previous pair of crushing teeth 19, effectively improving the overall crushing efficiency and quality of the device.
[0031] Specifically, there are multiple holes 13 and four levers 16. The advantage is that this structure activates the third motor 15, whose output shaft drives the four levers 16 to rotate. Therefore, when the crushed material falls onto the top surface of the funnel box 12, the levers 16 push the material continuously through the holes 13, thus collecting it into the first collection box 17. Furthermore, when larger particles fall onto the top surface of the funnel box 12, they gradually move outwards under the continuous pushing of the levers 16 and their own centrifugal force. When they reach the edge of the funnel box 12, they can fall through the gap between the funnel box 12 and the crushing box 7 into the second collection box 18, thus completing collection and reprocessing, improving the overall practicality of the device.
[0032] Specifically, a partition plate 20 is provided on the outer side of the funnel box 12, and the partition plate 20 is fixedly installed inside the crushing box 7. The advantage is that this structure of the partition plate 20 can effectively separate the path of large particles falling, preventing them from falling into the first collection box 17, thus ensuring the quality of material classification.
[0033] In operation, the feed inlet 3 is connected to the material hopper, and then the first motor 2 is started. The output shaft of the first motor 2 drives the first rotating shaft 5 and the spiral blades 6 to rotate together. The spiral blades 6 effectively push the raw material to the right, and then the raw material is fed into the crushing box 7 through the discharge port 4. Therefore, it can not only achieve automatic continuous conveying, but also effectively seal the material to prevent material from flying and leaking, reducing material loss and environmental pollution. By starting the two second motors 9, the output shafts of the second motors 9 drive the second rotating shaft 10 and the crushing roller 11 to rotate. Therefore, the input material can be effectively crushed by impact. Multiple crushing teeth 19 can bite into the material. If the material is not crushed, the crushing teeth 19 forcefully slide along the surface of the material, turning the material over, waiting for the next pair of crushing teeth 19 to continuously crush it until the crushed material can be crushed by the toothed roller. Until the material is bitten in, it is directly crushed and discharged after being squeezed and sheared by the lower edge of the current pair of crushing teeth 19 and the upper edge of the previous pair of crushing teeth 19, which effectively improves the overall crushing efficiency and quality of the device. When the third motor 15 is started, the output shaft of the third motor 15 can drive the four levers 16 to rotate. Therefore, when the crushed material falls to the top surface of the funnel box 12, the levers 16 can push the material to continuously pass through the holes 13, and thus be collected into the interior of the first collection box 17. In addition, when larger particles fall to the top surface of the funnel box 12, they will gradually move outward under the continuous pushing of the levers 16 and the action of their own centrifugal force. When they reach the edge of the funnel box 12, the material can fall into the interior of the second collection box 18 through the gap between the funnel box 12 and the crushing box 7, thus completing the collection and reprocessing, improving the overall practicality of the device.
[0034] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A production collection device, comprising a feeding pipe (1), characterized in that: A first motor (2) is fixedly installed on the left side of the feeding pipe (1). An inlet (3) and an outlet (4) are fixedly installed on the outer side of the feeding pipe (1). A first rotating shaft (5) is installed inside the feeding pipe (1). A spiral blade (6) is fixedly installed on the outer side of the first rotating shaft (5). A crushing box (7) is fixedly connected to the bottom end of the outlet (4). A base (8) is fixedly installed on the outer side of the crushing box (7). A second motor (9) is fixedly installed on the right side of the base (8). A second rotating shaft (9) is installed inside the base (8). Shaft (10), crushing roller (11) is fixedly installed on the outer side of the second rotating shaft (10), a funnel box (12) is fixedly installed inside the crushing box (7), a hole (13) is opened on the top surface of the funnel box (12), a protective box (14) is fixedly installed on the inner top surface of the funnel box (12), a third motor (15) is installed inside the protective box (14), a lever (16) is fixedly connected to the output shaft of the third motor (15), and a first collection box (17) and a second collection box (18) are installed at the bottom of the funnel box (12).
2. The production collection device according to claim 1, characterized in that: The output shaft of the first motor (2) is fixedly connected to the left end of the first rotating shaft (5).
3. The production collection device according to claim 1, characterized in that: The base (8), the second motor (9), the second rotating shaft (10) and the crushing roller (11) are all provided in two quantities, and the output shaft of the second motor (9) is fixedly connected to the right end of the second rotating shaft (10).
4. A production collection device according to claim 1, characterized in that: Both of the crushing rollers (11) have multiple crushing teeth (19) on their outer surfaces, and the multiple crushing teeth (19) are meshed with each other.
5. A production collection device according to claim 1, characterized in that: The number of the leakage holes (13) is set to multiple, and the number of the levers (16) is set to four.
6. A production collection device according to claim 1, characterized in that: The funnel box (12) is provided with a partition plate (20) on its outer side, and the partition plate (20) is fixedly installed inside the crushing box (7).
Citation Information
Patent Citations
Fresh bamboo juice production material mixing device
CN215139363U