Titanium rod filter element cleaning and drying integrated device

CN224640596UActive Publication Date: 2026-08-18SHANDONG QIDU PHARMA
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Patent Information

Application Number
CN202520900424.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-08-18
Estimated Expiration
2035-05-08

AI Technical Summary

Technical Problem

[0004]烘干的方式较自然晾干明显缩短了干燥周期,但是该方式需要有单独的烘干设备,另外将钛棒滤芯由清洗设备搬运摆放至烘干设备的过程不仅费时费力而且容易造成二次污染

Benefits of technology

[0013]本实用新型所述的钛棒滤芯清洗干燥一体化装置,可在密闭条件下自动对钛棒进行超声清洗及热风干燥,无需人工将钛棒滤芯由清洗设备搬运摆放至烘干设备,不仅节约人力,而且能避免在搬运过程中钛棒滤芯发生二次污染;本实用新型结构简单、占地面积小,清洗过程无需人工干预,清洗及干燥效率高。

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Abstract

The utility model relates to a titanium rod filter core cleaning and drying integration device belongs to titanium rod filter core cleaning equipment technical field, including shell body and control cabinet, be equipped with inside support frame in shell body, and inside support frame is divided into several chambers, the top of shell body sets up the movable cover plate, and the cover plate below corresponds each chamber and sets up the nozzle, and the cover plate top sets up gas liquid import, and gas liquid import communicates with the nozzle, and the inside support frame periphery is uniformly distributed with several ultrasonic transducers, and sets up ultrasonic module and control module in control cabinet, and ultrasonic transducer and ultrasonic module electric connection, and ultrasonic module and control module electric connection, the utility model can carry out ultrasonic cleaning and hot -blast drying to titanium rod, need not manual work to carry and place titanium rod filter core from cleaning equipment to drying equipment, not only saves manpower, but also can avoid the secondary pollution of titanium rod filter core in the carrying process, the utility model structure is simple, and the floor area is little, and the cleaning process does not need manual intervention, and the cleaning and drying efficiency are high.
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Description

Technical Field

[0001] This utility model relates to an integrated device for cleaning and drying titanium rod filter elements, belonging to the technical field of titanium rod filter element cleaning equipment. Background Technology

[0002] In the production of active pharmaceutical ingredients (APIs), solid substances such as activated carbon need to be removed by filtration through titanium rod filters to improve the clarity of the liquid. Pharmaceutical production is strictly carried out in accordance with GMP standards, requiring regular and frequent cleaning of the titanium rod filters. The cleaning and drying of these filters requires significant manpower.

[0003] Traditional methods for drying titanium rod filter elements include natural air drying and oven drying. Natural air drying includes sun drying and shade drying. Natural air drying takes a long time, especially shade drying, which is greatly affected by the environment. During the drying process, prolonged exposure to air is not conducive to the control of microorganisms, which may result in the titanium rod filter element not meeting cleanliness standards. Therefore, this method is gradually being replaced.

[0004] Drying significantly shortens the drying cycle compared to natural air drying, but this method requires separate drying equipment. In addition, the process of moving the titanium rod filter element from the cleaning equipment to the drying equipment is not only time-consuming and labor-intensive, but also prone to secondary pollution. Utility Model Content

[0005] In view of the shortcomings of the prior art, the technical problem to be solved by this utility model is to provide an integrated cleaning and drying device for titanium rod filter elements, which can realize the automatic and sealed cleaning and drying of titanium rod filter elements, save time and labor costs, and avoid secondary pollution of titanium rod filter elements during the handling process.

[0006] The integrated cleaning and drying device for titanium rod filter elements described in this utility model includes an outer shell and a control cabinet. The outer shell is equipped with an inner support frame, which is divided into several chambers. Each chamber can accommodate one titanium rod filter element for supporting the filter element. The top of the outer shell is equipped with a cover plate that can move up and down. Below the cover plate, nozzles are arranged corresponding to each chamber. Above the cover plate, a gas-liquid inlet is arranged, which is connected to the nozzles. Several ultrasonic transducers are evenly distributed around the outer periphery of the inner support frame. The control cabinet is equipped with an ultrasonic module and a control module. The ultrasonic transducers are electrically connected to the ultrasonic module, and the ultrasonic module is electrically connected to the control module.

[0007] Preferably, a liquid level detection device is provided on the inner support frame, and the position of the liquid level detection device is higher than that of the ultrasonic transducer; the liquid level detection device is used to detect the liquid level height in the inner support frame, and when the set liquid level height is reached, the liquid inlet is stopped and the ultrasonic transducer starts the cleaning operation.

[0008] Preferably, the control cabinet is equipped with a heating module, which can control the heater to heat the cleaning water or cleaning liquid, or to heat the compressed air, so as to improve the drying speed.

[0009] Preferably, the cover plate is provided with a lifting rod and a handle. The bottom of the lifting rod is fixedly connected to the cover plate, and the lifting rod and the handle are connected by a threaded drive. A fixed frame is fixed on the outer shell, and a rotating frame is rotatably connected above the fixed frame. The lifting rod passes through the rotating frame, and the rotating frame supports the handle. Rotating the handle can realize the up and down movement of the cover plate. After the cover plate is separated from the outer shell, the rotating frame can be manually pushed to rotate the cover plate to one side of the outer shell, exposing the inner support frame, so as to facilitate the removal and placement of the titanium rod filter element.

[0010] Preferably, the outer shell, inner support frame, cover plate and nozzle are all made of stainless steel to prevent rust spots from forming and causing pollution after long-term use.

[0011] Preferably, the bottom of the outer casing is provided with a gas-liquid discharge port, through which cleaning water, cleaning fluid and compressed air are discharged from the outer casing.

[0012] The advantages of this utility model compared with the prior art are:

[0013] The integrated cleaning and drying device for titanium rod filter elements described in this utility model can automatically perform ultrasonic cleaning and hot air drying of titanium rods under sealed conditions. There is no need for manual handling of the titanium rod filter elements from the cleaning equipment to the drying equipment, which not only saves manpower but also avoids secondary contamination of the titanium rod filter elements during the handling process. This utility model has a simple structure, small footprint, and the cleaning process does not require manual intervention, resulting in high cleaning and drying efficiency. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of this utility model.

[0015] In the diagram: 1. Handle; 2. Lifting rod; 3. Rotating frame; 4. Cover plate; 5. Bearing seat; 6. Fixing frame; 7. Outer shell; 8. Inner support frame; 9. Ultrasonic transducer; 10. Titanium rod filter element; 11. Gas-liquid discharge port; 12. Support leg; 13. Liquid level detection device; 14. Nozzle; 15. Gas-liquid inlet; 16. Control cabinet; 17. Ultrasonic module; 18. Control module; 19. Heating module. Detailed Implementation

[0016] like Figure 1As shown, this embodiment is achieved through the following technical solution: it includes an outer shell 7 and a control cabinet 16. The bottom of the outer shell 7 is provided with support legs 12. The inner support frame 8 is provided inside the outer shell 7. The inner support frame 8 is divided into several chambers. Each chamber can accommodate a titanium rod filter element 10 for supporting the titanium rod filter element 10. The top of the outer shell 7 is provided with a cover plate 4 that can move up and down. The nozzles 14 are provided directly above each chamber below the cover plate 4. The gas-liquid inlet 15 is provided above the cover plate 4 and is connected to the nozzles 14. Several ultrasonic transducers 9 are evenly distributed on the outer periphery of the inner support frame 8. The control cabinet 16 is provided with an ultrasonic module 17 and a control module 18. The ultrasonic transducers 9 are electrically connected to the ultrasonic module 17, and the ultrasonic module 17 is electrically connected to the control module 18.

[0017] In this embodiment, a liquid level detection device 13 is installed on the inner support frame 8, and the position of the liquid level detection device 13 is higher than that of the ultrasonic transducer 9. The liquid level detection device 13 is used to detect the liquid level height in the inner support frame 8. When the set liquid level height is reached, the liquid inlet stops, and the ultrasonic transducer 9 begins the cleaning operation. A heating module 19 is installed inside the control cabinet 16. The heating module 19 is electrically connected to the heater on the outer shell 7. The heating module 19 can control the heater to heat the cleaning water or cleaning solution, and can also heat the compressed air to improve the drying speed.

[0018] The cover plate 4 is equipped with a lifting rod 2 and a handle 1. The bottom of the lifting rod 2 is fixedly connected to the cover plate 4, and the lifting rod 2 and the handle 1 are connected by a threaded drive. A fixing frame 6 is fixed on the outer shell 7, and a bearing seat 5 is installed on the top of the fixing frame 6. The fixing frame 6 is rotatably connected to a rotating frame 3 through the bearing seat 5. The lifting rod 2 passes through the rotating frame 3. The rotating frame 3 is not connected to the handle 1 and only supports the handle 1. Rotating the handle 1 can move the lifting rod 2 up and down, thereby realizing the up and down movement of the cover plate 4. The outer shell 7, the inner support frame 8, the cover plate 4, and the nozzle 14 are all made of stainless steel to prevent rust spots and pollution from long-term use. A gas-liquid discharge port 11 is provided at the bottom of the outer shell 7, through which cleaning water, cleaning fluid, and compressed air are discharged from the outer shell 7.

[0019] The method of using this utility model is as follows:

[0020] 1. Rotate handle 1 to drive lifting rod 2 to rise, lift cover plate 4 through lifting rod 2, then rotate rotating frame 3 to move cover plate 4 to one side, then place titanium rod filter element 10 in each chamber of inner support frame 8, then reset cover plate 4, rotate handle 1 in the opposite direction to close cover plate 4; when rotating handle 1, you can hold cover plate 4 to prevent cover plate 4 from rotating with handle 1.

[0021] 2. Cleaning fluid is injected into the outer casing 7 through the gas-liquid inlet 15. After the liquid level reaches the set level, the ultrasonic module 17 controls the ultrasonic transducer 9 to work. The ultrasonic transducer 9 generates ultrasonic waves to start cleaning the titanium rod filter element 10.

[0022] 3. After cleaning, the cleaning solution is discharged from the gas-liquid discharge port 11. If the cleaning is not clean, add water and clean again.

[0023] 4. After cleaning, clean compressed gas is introduced into the inner support frame 8. The liquid is slowly discharged from the gas-liquid discharge port 11 along with the compressed gas until the titanium rod filter element 10 is dried.

Claims

1. A titanium rod filter element cleaning and drying integrated device, characterized in that, The utility model relates to a titanium rod filter device, including outer casing (7) and control cabinet (16), be equipped with inner support frame (8) in outer casing (7), and inner support frame (8) is divided into several chambers, and each chamber can accommodate a titanium rod filter core (10), the top of outer casing (7) is provided with the movable cover plate (4), and the cover plate (4) is provided with the nozzle (14) below corresponding each chamber, and the cover plate (4) is provided with gas liquid inlet (15) above, and gas liquid inlet (15) is communicated with nozzle (14), and the periphery of inner support frame (8) is evenly distributed with several ultrasonic transducer (9), and control cabinet (16) is provided with ultrasonic module (17) and control module (18), and ultrasonic transducer (9) is electrically connected with ultrasonic module (17), and ultrasonic module (17) is electrically connected with control module (18).

2. The titanium rod filter element washing and drying integrated device according to claim 1, characterized in that, The inner support frame (8) is provided with a liquid level detection device (13) positioned higher than the ultrasonic transducer (9).

3. The titanium rod filter element washing and drying integrated device according to claim 1, characterized in that, The control cabinet (16) is provided with a heating module (19).

4. The titanium rod filter element washing and drying integrated device according to claim 1, characterized in that, The cover plate (4) is provided with a lifting rod (2) and a handle (1), the bottom of the lifting rod (2) is fixedly connected with the cover plate (4), and the lifting rod (2) is in threaded transmission connection with the handle (1); the outer casing (7) is fixedly provided with a fixed frame (6), the top of the fixed frame (6) is rotatably connected with a rotating frame (3), and the lifting rod (2) penetrates through the rotating frame (3).

5. The titanium rod filter element washing and drying integrated device according to claim 4, characterized in that, The outer casing (7), the inner support frame (8), the cover plate (4) and the nozzle (14) are made of stainless steel.

6. The titanium rod filter element washing and drying integrated device according to claim 1, characterized in that, The bottom of the outer casing (7) is provided with a gas-liquid discharge port (11).