Automatic dehumidification device for getter production
By using cloth pads to block powder in the automatic dehumidifier for getter production and controlling the flow of hot air, the problems of scattering and loss of powder in existing dehumidifiers are solved, and a more efficient dehumidification and drying effect is achieved.
Patent Information
- Application Number
- CN202421910545.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-08-07
AI Technical Summary
During the dehumidification process of existing dehumidifiers, hot air carries powder and discharges upwards, resulting in the scattering and loss of getter powder.
An automatic dehumidification device for the production of getters was designed, using cloth pads to block powder, and through the design of air inlet and exhaust holes, the flow of hot air is controlled to avoid air wrapping with powder.
It effectively reduces the loss of getter powder and improves the efficiency and effect of dehumidification and drying.
Smart Images

Figure CN222881628U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of getter dehumidification equipment, and more specifically to an automatic dehumidification device for getter production. Background Art
[0002] Getter is a reagent used to maintain the vacuum of electronic devices. Getter can irreversibly adsorb the gas in the electronic device to keep the electronic device working under vacuum conditions. During the getter processing, the processing materials need to be fully mixed before subsequent processing. The mixed materials need to be dehumidified and dried.
[0003] The existing announcement number is CN204255030U, and the name is an anti-sedimentation powder dehumidifier, which includes a drying cylinder, multiple sieve plates and an anti-sedimentation rotating component. The drying cylinder includes a cylinder with openings at both ends, a top cover fixedly connected to the upper end surface of the cylinder, and a cylinder bottom fixedly connected to the lower end surface of the cylinder. The anti-sedimentation rotating component is arranged to facilitate the breaking up of agglomerated materials and drive them to rotate to the vicinity of the feed inlet to be dried by hot air and move upward with the airflow. The sieve plates are arranged to form multiple relatively independent drying unit chambers. In each unit chamber, the material is Driven by the hot air flow and the air flow of the induced draft fan, the material continuously moves upward through the sieve holes. Since the apertures on each sieve plate gradually decrease from bottom to top, the dispersion of the material is gradually improved during the upward movement. At the same time, the conical sieve plate can reduce the accumulation of the material on the sieve plate. In this way, the contact area between the material and the dry air is increased, which is conducive to the complete drying of the material. The airflow impact force of the material moving upward can also be enhanced under the action of the hot air gathered in the sieve holes. The utility model has the advantages of good drying performance, strong reliability, small size and low cost.
[0004] However, the above-mentioned dehumidifier guides the hot air into the drying cylinder, and the hot air flows upward in the drying cylinder, contacts the powder to dehumidify and dry it, which causes the flowing air to carry the powder upward and discharge it, resulting in the scattering of the getter powder. Utility Model Content
[0005] 1. Technical issues to be solved
[0006] In view of the problems existing in the prior art, the purpose of the utility model is to provide an automatic dehumidification device for getter production, which overcomes the above-mentioned technical defects.
[0007] 2. Technical solution
[0008] To solve the above problems, the utility model adopts the following technical solutions.
[0009] An automatic dehumidification device for adsorbent production includes a support member, a drying member and an air intake member, the support member includes a hole frame and a slide rod frame, the hole frame is vertically fixed, and the slide rod frame is vertically slidably assembled on the hole frame, the drying member includes a drying cylinder, the drying cylinder is horizontally arranged on one side of the slide rod frame, and a plurality of air intake holes are vertically penetrated at the bottom of the outer circumferential surface of the drying cylinder, a plurality of exhaust holes are vertically penetrated at the top of the outer circumferential surface of the drying cylinder, and a cloth pad is fixed on the inner circumferential surface of the drying cylinder, the air intake member includes an air intake shell, the air intake shell is horizontally fixed to the bottom of the outer circumferential surface of the drying cylinder, and an air separator box is horizontally fixed to the bottom surface of the air intake shell, the air separator box is through-fixed on the bottom surface of the air intake shell, and a heating cylinder is vertically connected and assembled at the bottom of the air separator box.
[0010] Furthermore, a fixing screw is vertically assembled at the bottom end of the hole frame, and a supporting spring is vertically fixed on the top surface of the hole frame, and the top surface of the supporting spring is fixed on the bottom surface of the slide rod frame.
[0011] Furthermore, a vibration motor is vertically fixed on the slide bar frame, and a turning rod is horizontally rotatably connected to the slide bar frame.
[0012] Furthermore, the turning rod is inserted into the interior of the drying cylinder, a turning motor is horizontally fixed on the upper part of the sliding rod frame, and the output end of the turning motor is fixed to the end of the turning rod.
[0013] Furthermore, one end of the drying cylinder away from the support is horizontally connected and fixed with a threaded ring, and a sealing cover is threadedly assembled in the threaded ring.
[0014] Furthermore, an air intake pipe is vertically connected and fixed on the bottom surface of the air distribution box, and an air intake pump is connected and assembled on the air intake pipe of the air distribution box.
[0015] Furthermore, the bottom end of the air inlet pipe of the air distribution box is connected and fixed with a spiral shell, and the top end of the heating tube is threadedly connected and assembled in the spiral shell.
[0016] 3. Beneficial effects
[0017] Compared with the prior art, the advantages of the present invention are:
[0018] During use, the getter is added into the drying cylinder, and the external air is introduced into the heating cylinder for heating. The hot air is then guided into the air inlet shell through the air separator box, and then the hot air is guided into the drying cylinder through the air inlet holes on the bottom of the drying cylinder. The hot air enters the drying cylinder through the cloth pad, and the hot air contacts the getter for dehumidification and drying. The air is then discharged through multiple exhaust holes carrying water vapor. As a result, the getter powder is blocked by the cloth pad during dehumidification, preventing the discharged air from entraining the powder and effectively reducing the loss of the powder. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0020] Figure 2 It is a schematic diagram of the structure of the utility model as a whole in a disassembled state;
[0021] Figure 3 It is a schematic diagram of the structure of the drying element in the decomposed state in the implementation of the utility model;
[0022] Figure 4 It is a schematic diagram of the structure of the support member in the decomposed state in the implementation of the utility model;
[0023] Figure 5 It is a schematic structural diagram of the air intake component in a disassembled state in the implementation of the utility model.
[0024] Description of the numbers in the figure:
[0025] 1. Support part; 11. Hole frame; 111. Fixing screw; 12. Sliding rod frame; 13. Support spring; 14. Vibration motor; 15. Turning motor; 16. Turning rod; 2. Drying part; 21. Drying cylinder; 211. Air inlet hole; 22. Exhaust hole; 23. Cloth pad; 24. Threaded ring; 25. Cover; 3. Air intake part; 31. Air intake shell; 32. Air distribution box; 33. Screw shell; 34. Air intake pump; 35. Heating cylinder. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model; it is obvious that the described embodiments are only part of the embodiments of the utility model, rather than all of the embodiments, and all other embodiments obtained by ordinary technicians in this field based on the embodiments of the utility model without making creative work are within the scope of protection of the utility model.
[0027] See also Figure 1-5, an automatic dehumidification device for the production of getter, comprising a support member 1, a drying member 2 and an air inlet member 3, the support member 1 comprising a hole frame 11 and a slide frame 12, the hole frame 11 is vertically fixed, and the slide frame 12 is vertically slidably assembled on the hole frame 11, the drying member 2 comprises a drying cylinder 21, the drying cylinder 21 is horizontally arranged on one side of the slide frame 12, and a plurality of air inlet holes 211 are vertically penetrated at the bottom of the outer circumference of the drying cylinder 21, a plurality of air exhaust holes 22 are vertically penetrated at the top of the outer circumference of the drying cylinder 21, and a cloth pad 23 is fixed on the inner circumference of the drying cylinder 21, the air inlet member 3 comprises an air inlet shell 31, the air inlet shell 31 is horizontally fixed on the bottom of the outer circumference of the drying cylinder 21, and a cloth pad 23 is fixed on the bottom of the air inlet shell 31 There is a gas separation box 32, which is fixed on the bottom surface of the air inlet shell 31, and the bottom of the gas separation box 32 is vertically connected and assembled with a heating cylinder 35. During use, the getter is added into the drying cylinder 21, and the external air is introduced into the heating cylinder 35 for heating, and then the hot air is guided into the air inlet shell 31 through the gas separation box 32, and the hot air is guided into the drying cylinder 21 through the air inlet hole 211 on the bottom surface of the drying cylinder 21, and the hot air enters the drying cylinder 21 through the cloth pad 23. The hot air contacts the getter for dehumidification and drying, and then the air is discharged through multiple exhaust holes 22 with water vapor, so that the getter powder is blocked by the cloth pad 23 during dehumidification, so as to avoid the exhaust air from entraining the powder and effectively reduce the loss of the powder.
[0028] See also Figure 3 and Figure 4 The bottom end of the hole frame 11 is vertically assembled with a fixing screw 111, and a supporting spring 13 is vertically fixed on the top surface of the hole frame 11, and the top surface of the supporting spring 13 is fixed to the bottom surface of the slide bar frame 12, a vibration motor 14 is vertically fixed on the slide bar frame 12, and a turning rod 16 is horizontally rotatably connected to the slide bar frame 12, and the turning rod 16 is inserted into the interior of the drying cylinder 21, and a flipping motor 15 is horizontally fixed on the upper part of the slide bar frame 12, and the output end of the flipping motor 15 is fixed to the end of the turning rod 16. During use, the vibration motor 14 is started to drive the slide bar frame 12 to vibrate vertically on the hole frame 11, squeezing the supporting spring 13 to vibrate, accelerating the vibration and turning of the powder in the drying cylinder 21, and improving the dehumidification and drying effect, starting the flipping motor 15 to drive the turning rod 16 to rotate, stir the powder and flip it, increase the powder to fully contact with hot air, and improve the dehumidification and drying effect.
[0029] See also Figure 5The end of the drying cylinder 21 away from the support member 1 is horizontally connected and fixed with a threaded ring 24, and a sealing cover 25 is threadedly assembled in the threaded ring 24, an air inlet pipe is vertically connected and fixed on the bottom surface of the gas separation box 32, and an air intake pump 34 is connected and assembled on the air inlet pipe of the gas separation box 32, and a spiral shell 33 is fixed to the bottom end of the air inlet pipe of the gas separation box 32, and the top end of the heating cylinder 35 is threadedly connected and assembled in the spiral shell 33. During use, the sealing cover 25 assembled in the threaded ring 24 at the open end of the drying cylinder 21 is used to add and discharge powder. At the same time, a plurality of heating rods are arranged in the heating cylinder 35, and the heating rods are heated by contact with the air. The heating cylinder 35 is threadedly assembled with the spiral shell 33, which is convenient for disassembly, connection and assembly.
[0030] During use, the getter is added into the drying cylinder 21, and the external air is introduced into the heating cylinder 35 for heating. The hot air is then guided into the air inlet shell 31 through the air separator box 32, and the hot air is guided into the drying cylinder 21 through the air inlet hole 211 on the bottom surface of the drying cylinder 21. The hot air enters the drying cylinder 21 through the cloth pad 23, and the hot air contacts the getter for dehumidification and drying. The air is then discharged through a plurality of exhaust holes 22 carrying water vapor, so that the getter powder is blocked by the cloth pad 23 during dehumidification to prevent the discharged air from entraining the powder and discharging it.
[0031] The above is only a preferred specific implementation of the utility model; however, the protection scope of the utility model is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solution and improved ideas of the utility model within the technical scope disclosed by the utility model, which should be included in the protection scope of the utility model.
Claims
1. An automatic dehumidification device for getter production, characterized in that: The invention comprises a support member (1), a drying member (2) and an air inlet member (3), wherein the support member (1) comprises a hole frame (11) and a slide bar frame (12), wherein the hole frame (11) is vertically fixedly arranged, and the slide bar frame (12) is vertically slidably assembled on the hole frame (11), and the drying member (2) comprises a drying cylinder (21), wherein the drying cylinder (21) is horizontally arranged on one side of the slide bar frame (12), and a plurality of air inlet holes (211) are vertically penetrated at the bottom of the outer circumferential surface of the drying cylinder (21), and the drying cylinder (21) A plurality of exhaust holes (22) are vertically penetrated on the top of the outer circumferential surface of the drying cylinder (21), and a cloth pad (23) is fixed on the inner circumferential surface of the drying cylinder (21). The air intake member (3) comprises an air intake shell (31), the air intake shell (31) is horizontally fixed on the bottom of the outer circumferential surface of the drying cylinder (21), and an air separation box (32) is horizontally fixed on the bottom surface of the air intake shell (31), the air separation box (32) is fixed through the bottom surface of the air intake shell (31), and the bottom of the air separation box (32) is vertically connected and assembled with a heating cylinder (35).
2. The automatic dehumidification device for getter production according to claim 1, characterized in that: A fixing screw (111) is vertically assembled at the bottom end of the hole frame (11), and a supporting spring (13) is vertically fixed on the top surface of the hole frame (11), and the top surface of the supporting spring (13) is fixed on the bottom surface of the slide rod frame (12).
3. The automatic dehumidification device for getter production according to claim 2, characterized in that: A vibration motor (14) is vertically fixed on the slide bar frame (12), and a material turning rod (16) is horizontally rotatably connected to the slide bar frame (12).
4. The automatic dehumidification device for getter production according to claim 3, characterized in that: The turning rod (16) is inserted into the interior of the drying cylinder (21), and a turning motor (15) is horizontally fixed on the upper part of the sliding rod frame (12), and the output end of the turning motor (15) is fixed to the end of the turning rod (16).
5. The automatic dehumidification device for getter production according to claim 4, characterized in that: One end of the drying cylinder (21) away from the support member (1) is horizontally connected and fixed with a threaded ring (24), and a sealing cover (25) is threadedly assembled in the threaded ring (24).
6. The automatic dehumidification device for getter production according to claim 5, characterized in that: An air intake pipe is vertically connected and fixed on the bottom surface of the air distribution box (32), and an air intake pump (34) is connected and assembled on the air intake pipe of the air distribution box (32).
7. The automatic dehumidification device for getter production according to claim 6, characterized in that: The bottom end of the air inlet pipe of the gas distribution box (32) is connected and fixed with a spiral shell (33), and the top end of the heating cylinder (35) is threadedly connected and assembled in the spiral shell (33).
Citation Information
Patent Citations
Dehumidifier preventing powder deposition
CN204255030U