Purification apparatus for peptide powder production
Patent Information
- Application Number
- CN202522279029.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-28
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-10-28
AI Technical Summary
[0004]上述申请多组过滤架位置是固定的,过滤孔容易被堵塞,导致过滤效果差的同时,细小的灰尘等杂质由于原料的堆积,难以被吸尘结构吸出
1、该肽粉制造用纯化设备,通过支撑杆与多组过滤网架内定位套的套设,在螺栓的作用下,便于过滤网架安装和固定的同时,配合气缸的伸展,可以带动支撑杆和多组过滤网架快速升降和震动,有利于防止滤孔堵塞,并将原料反复扬起,使其中夹杂的灰尘等细小杂质更易被吸尘结构吸出。
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Figure CN224778589U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of peptide powder manufacturing technology, specifically to a purification device for peptide powder manufacturing. Background Technology
[0002] The manufacturing process of protein peptide powder mainly includes raw material pretreatment, enzymatic extraction, separation and purification, concentration and blending, spray drying and sterilization packaging. The processes for different types of protein peptides vary. During the production process, the raw materials of protein peptides contain a large number of impurities, which need to be purified.
[0003] Application No. 202121140964.8 discloses a purification device for producing protein peptide powder. The device uses a sliding groove inside the purification chamber to facilitate the installation and disassembly of the first and third filter frames. The first, second, and third filter frames are used to perform multi-layer filtration of the protein peptide raw materials, thereby reducing impurities in the raw materials.
[0004] The aforementioned application has multiple filter frames in fixed positions, which makes the filter holes prone to clogging. This results in poor filtration performance, and fine dust and other impurities are difficult to be sucked out by the dust collection structure due to the accumulation of raw materials. Utility Model Content
[0005] To address the shortcomings of existing technologies, this invention provides a purification device for peptide powder manufacturing, which solves the problems mentioned in the background section.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a purification device for peptide powder manufacturing, comprising a purification chamber, a filter chamber inside the purification chamber, a cylinder mounted on the top of the purification chamber, a support frame fixedly connected to the output end of the cylinder inside the filter chamber, a support rod mounted on the bottom of the support frame, multiple positioning sleeves fitted on the outer side of the support rod, filter screen frames mounted on the outer side of each of the multiple positioning sleeves, multiple positioning holes inside the support rod, bolts threadedly connected to one side of each of the multiple positioning sleeves, one end of the bolts inserted into one of the positioning holes, an air duct inside the purification chamber on one side of the filter chamber, a screen installed inside the air duct, a fan mounted on one side of the purification chamber, an air inlet pipe fixedly connected to the input end of the fan, and one end of the air inlet pipe fixedly connected to the screen.
[0007] Preferably, a water tank is provided inside the purification chamber and at the bottom of the filtration chamber.
[0008] Preferably, the output end of the fan is fixedly connected to an exhaust pipe, one end of the exhaust pipe is fixedly connected to a water tank, one side of the water tank is connected to an air outlet pipe, a filter element is installed inside the air outlet pipe, and the liquid level in the water tank is lower than the height of the air outlet pipe.
[0009] Preferably, a slag discharge port is provided inside the purification box and on one side of the filtration chamber and multiple filter frames, and a discharge port is provided inside the purification box and on one side of the filtration chamber and at the bottom of the slag discharge port. A first rotating shaft and a second rotating shaft are rotatably connected inside the slag discharge port and the discharge port, respectively. A first baffle and a second baffle are respectively installed on the outer sides of the first rotating shaft and the second rotating shaft. The first baffle is in contact with the slag discharge port and the multiple filter frames, and the second baffle is in contact with the discharge port.
[0010] Preferably, two motors are installed on the outer wall of the purification chamber, and the output ends of the two motors are fixedly connected to the first rotating shaft and the second rotating shaft respectively through couplings.
[0011] Preferably, the purification chamber has limit rods on the top and on both sides corresponding to the cylinder, and the limit rods have slidably connected to limit grooves inside, with one end of the limit grooves being fixedly connected to the support frame.
[0012] Preferably, the purification chamber is fixedly installed with a feed pipe at the top of the filtration chamber, the purification chamber is fixedly connected with a drain pipe at the bottom of the exhaust pipe and located on one side of the water tank, a valve is installed on one side of the drain pipe, and a controller is installed at the top of the purification chamber and on the side of the feed pipe.
[0013] This invention provides a purification device for peptide powder manufacturing, which has the following beneficial effects: 1. This purification equipment for peptide powder manufacturing, through the fitting of support rods and positioning sleeves inside multiple sets of filter screen frames, facilitates the installation and fixation of the filter screen frames under the action of bolts. At the same time, in conjunction with the extension of the cylinder, it can drive the support rods and multiple sets of filter screen frames to quickly rise, fall and vibrate, which helps to prevent filter hole clogging and repeatedly lifts the raw materials, making it easier for the dust and other fine impurities mixed in to be sucked out by the dust collection structure.
[0014] 2. The purification equipment for peptide powder manufacturing uses a water tank inside the purification chamber and a connection between the water tank and the exhaust pipe to facilitate the flow of air to send fine impurities such as dust in the raw materials into the water tank for washing. This is beneficial for effective dust removal and does not require the raw materials to come into contact with water, thus keeping the raw materials dry and facilitating subsequent processing. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This utility model Figure 1 Enlarged view of point A in the middle; Figure 3 This is a partial structural diagram of the present invention; Figure 4 This is a side view of the present invention.
[0016] In the diagram: 1. Purification chamber; 2. Filtration chamber; 3. Cylinder; 4. Support rod; 5. Positioning sleeve; 6. Filter screen frame; 7. Positioning hole; 8. Bolt; 9. Slag discharge port; 10. Material discharge port; 11. First rotating shaft; 12. Second rotating shaft; 13. First baffle; 14. Second baffle; 15. Support frame; 16. Water tank; 17. Air duct; 18. Screen; 19. Fan; 20. Air inlet pipe; 21. Exhaust pipe; 22. Air outlet pipe; 23. Filter element; 24. Drain pipe; 25. Controller; 26. Motor; 27. Limiting groove; 28. Limiting rod; 29. Feed pipe. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0018] Please see Figures 1 to 4 This utility model provides a technical solution: a purification device for peptide powder manufacturing, including a purification chamber 1, a filter chamber 2 inside the purification chamber 1, a cylinder 3 installed on the top of the purification chamber 1, a support frame 15 fixedly connected to the output end of the cylinder 3 inside the filter chamber 2, a support rod 4 installed at the bottom of the support frame 15, and multiple positioning sleeves 5 sleeved on the outside of the support rod 4. Each of the multiple positioning sleeves 5 is fitted with a filter screen frame 6, facilitating multi-layer sieving of the raw materials. In conjunction with the operation of the cylinder 3, the support rod 4 drives the multiple filter screen frames 6 to rapidly and significantly rise and fall, which helps to accelerate sieving and repeatedly lift the raw materials and impurities. Limiting rods 28 are provided on the top of the purification chamber 1 and on both sides corresponding to the cylinder 3. Limiting rods 28 have slidingly connected limiting grooves 27 inside. One end of the limiting groove 27 is fixedly connected to the support frame 15, which helps to support the support frame 15 and the support rod 4, making their lifting and lowering more stable. The support rod 4 has multiple positioning holes 7 inside. Bolts 8 are threaded to one side of multiple positioning sleeves 5. One end of the bolt 8 is inserted into one of the positioning holes 7, so that the bolt 8 can be inserted into or pulled out of the positioning hole 7 by rotation. With the positioning sleeve 5 and the support rod 4, it is convenient to fix the positioning sleeve 5 and the filter frame 6. The purification chamber 1 has a slag discharge port 9 located inside the filtration chamber 2 and on one side of the multiple filter screens 6. A discharge port 10 is located inside the purification chamber 1, on one side of the filtration chamber 2 and at the bottom of the slag discharge port 9, facilitating the separate discharge of impurities from the multiple filter screens 6 and raw materials from the filtration chamber 2. A first rotating shaft 11 and a second rotating shaft 12 are rotatably connected inside the slag discharge port 9 and the discharge port 10, respectively. A first baffle 13 and a second baffle 14 are respectively installed on the outer sides of the first rotating shaft 11 and the second rotating shaft 12. The first baffle 13 is in contact with the slag discharge port 9 and the multiple filter screens 6, and the second baffle 14 is in contact with the discharge port 10. Two motors 26 are installed on the outer wall of the purification chamber 1. The output ends of the two motors 26 are fixedly connected to the first rotating shaft 11 and the second rotating shaft 12 respectively through couplings after fitting with the shaft seats. They drive the first rotating shaft 11 and the second rotating shaft 12 to rotate, causing the first baffle 13 and the second baffle 14 to flip, which facilitates the opening and closing of the slag discharge port 9 and the material discharge port 10. An air duct 17 is opened inside the purification chamber 1 and located on one side of the filter chamber 2. A screen 18 is installed inside the air duct 17. A fan 19 is installed on one side of the purification chamber 1. An air inlet pipe 20 is fixedly connected to the input end of the fan 19. One end of the air inlet pipe 20 is fixedly connected to the screen 18. With the help of multiple filter screen frames 6, the raw materials and impurities are lifted up. When the fan 19 is running, the air duct 17 generates suction, which draws the dust and other small impurities in the raw materials into the air duct 17 after they have been filtered by the screen 18. A water tank 16 is provided inside the purification chamber 1 and at the bottom of the filter chamber 2. An exhaust pipe 21 is fixedly connected to the output end of the blower 19. One end of the exhaust pipe 21 is fixedly connected to the water tank 16. An air outlet pipe 22 is connected to one side of the water tank 16. A filter element 23 is installed inside the air outlet pipe 22 to facilitate the sending of dust and other particles in the raw materials into the water tank 16 for washing. After washing, the airflow is discharged through the air outlet pipe 22, thereby achieving an effective dust removal effect. The liquid level in the water tank 16 is lower than the height of the air outlet pipe 22. A feed pipe 29 is fixedly installed on the top of the purification chamber 1 and at the bottom of the exhaust pipe 21. A drain pipe 24 is fixedly connected to one side of the purification chamber 1 and at the bottom of the exhaust pipe 21. A valve is installed on one side of the drain pipe 24 to facilitate the input of raw materials and the discharge of wastewater. A controller 25 is installed on the top of the purification chamber 1 and on one side of the feed pipe 29.
[0019] In summary, this purification equipment for peptide powder manufacturing operates by feeding raw materials into the filter chamber 2 inside the purification chamber 1 through the feed pipe 29. Multiple positioning sleeves 5 on the support rod 4 and the filter screen 6 on the outside of the filter screen 6 perform multi-layer sieving of the raw materials. Simultaneously, the cylinder 3 pushes the support frame 15 and support rod 4 to rapidly and significantly raise and lower, accelerating the sieving process and repeatedly lifting the raw materials and impurities. Meanwhile, the blower 19 operates, and through its input end connected to the screen 18, the air inlet pipe 20 generates suction, causing fine particles such as dust mixed in with the raw materials to be intercepted by the screen 18 and sent to the water tank 16 through the exhaust pipe 21. After washing, the particles are discharged through the air outlet pipe 22. After completion, one of the motors 26 can be started to drive the first rotating shaft 11 inside the slag discharge port 9 to rotate, causing the first... The baffle 13 flips and opens the slag discharge port 9, allowing impurities on multiple filter screen frames 6 to be discharged into the container. Similarly, another motor 26 can drive the second baffle 14 to rotate, opening the discharge port 10 to discharge the filtered and dust-removed raw materials. Since the support rod 4 is fitted with the positioning sleeve 5 inside the filter screen frame 6, and one end of the bolt 8 threaded on one side of the positioning sleeve 5 is inserted into the positioning hole 7 inside the support rod 4, the operator can reach into the filter chamber 2 through the slag discharge port 9 and rotate the bolt 8 on multiple positioning sleeves 5 to pull one end out of the positioning hole 7. After releasing the fixation of the positioning sleeves 5, multiple positioning sleeves 5 and filter screen frames 6 fall off, and multiple filter screen frames 6 can be taken out one by one through the discharge port 10.
[0020] All standard parts used in this application can be purchased from the market, and can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment all adopt conventional models in the prior art. The installation methods between equipment are also the same as conventional installation methods in the prior art. For example, the two ends of the shaft-shaped parts are connected by bearings, the connection position of the valve component is provided with anti-leakage rubber strips, the outside of the threaded rod or lead rod is provided with dust cover, and the equipment can be driven by either built-in battery or external power supply. The control method is automatic control by a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art and is common knowledge in the field. Since this utility model is mainly used to protect mechanical devices, this utility model will not explain the control method and circuit connection in detail. The external controller mentioned in the specification can play a control role for the electrical components mentioned in this article, and the external controller is a conventional known device.
Claims
1. A purification device for peptide powder manufacturing, comprising a purification chamber (1), characterized in that: The purification chamber (1) has a filter chamber (2) inside. A cylinder (3) is installed on the top of the purification chamber (1). A support frame (15) is fixedly connected to the output end of the cylinder (3) inside the filter chamber (2). A support rod (4) is installed at the bottom of the support frame (15). Multiple positioning sleeves (5) are fitted on the outside of the support rod (4). A filter screen frame (6) is installed on the outside of each of the multiple positioning sleeves (5). Multiple positioning holes (7) are opened inside the support rod (4). One side of the sleeve (5) is threaded with a bolt (8), one end of the bolt (8) is inserted into one of the positioning holes (7). The purification box (1) is provided with an air trough (17) on one side of the filter chamber (2). A screen (18) is installed inside the air trough (17). A fan (19) is installed on one side of the purification box (1). An air inlet pipe (20) is fixedly connected to the input end of the fan (19). One end of the air inlet pipe (20) is fixedly connected to the screen (18).
2. The purification equipment for peptide powder manufacturing according to claim 1, characterized in that: A water tank (16) is provided inside the purification chamber (1) and at the bottom of the filter chamber (2).
3. The purification equipment for peptide powder manufacturing according to claim 2, characterized in that: The output end of the fan (19) is fixedly connected to an exhaust pipe (21). One end of the exhaust pipe (21) is fixedly connected to a water tank (16). A gas outlet pipe (22) is connected to one side of the water tank (16). A filter element (23) is installed inside the gas outlet pipe (22). The liquid level in the water tank (16) is lower than the height of the gas outlet pipe (22).
4. The purification equipment for peptide powder manufacturing according to claim 1, characterized in that: The purification chamber (1) has a slag discharge port (9) located inside the filter chamber (2) and on one side of the multiple filter screens (6). The purification chamber (1) has a discharge port (10) located inside the filter chamber (2) and at the bottom of the slag discharge port (9). The slag discharge port (9) and the discharge port (10) are respectively rotatably connected to a first rotating shaft (11) and a second rotating shaft (12). The first rotating shaft (11) and the second rotating shaft (12) are respectively installed on the outer side of the first rotating shaft (11) and the second rotating shaft (12). The first baffle (13) is in contact with the slag discharge port (9) and the multiple filter screens (6), and the second baffle (14) is in contact with the discharge port (10).
5. The purification equipment for peptide powder manufacturing according to claim 4, characterized in that: Two motors (26) are installed on the outer wall of the purification box (1). The output ends of the two motors (26) are fixedly connected to the first rotating shaft (11) and the second rotating shaft (12) respectively through couplings.
6. The purification equipment for peptide powder manufacturing according to claim 1, characterized in that: Limiting rods (28) are provided on the top of the purification box (1) and on both sides corresponding to the cylinder (3). The limiting rods (28) are slidably connected to the limiting grooves (27). One end of the limiting grooves (27) is fixedly connected to the support frame (15).
7. The purification equipment for peptide powder manufacturing according to claim 3, characterized in that: The purification chamber (1) is fixedly installed with a feed pipe (29) at the top of the filter chamber (2). The purification chamber (1) is fixedly connected with a drain pipe (24) at the bottom of the exhaust pipe (21) on one side of the water tank (16). A valve is installed on one side of the drain pipe (24). A controller (25) is installed at the top of the purification chamber (1) on one side of the feed pipe (29).
Citation Information
Patent Citations
Purification device for protein peptide powder production
CN214766718U