Cooling device for porous carbon production
By combining cold water immersion and air blowing for cooling, the problem of slow cooling speed in porous carbon production is solved, achieving efficient and water-saving cooling effect for porous carbon.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-03-27
AI Technical Summary
Existing cooling devices for porous carbon production suffer from a single cooling method and insufficient contact, resulting in slow cooling speed and low efficiency.
The cooling mechanism combines cold water immersion and air blowing. Through components such as mounting columns, air blowers, lifting guide rails, horizontal guide rails, motors, screws, and sliders, it combines cold water circulation and air blowing to ensure that the porous carbon is immersed in cold water and dissipated by air blowing from above.
Rapid cooling of porous carbon was achieved, improving cooling efficiency. Water waste was avoided through cold water circulation, ensuring the efficiency and convenience of the cooling process.
Smart Images

Figure CN224050795U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to porous carbon production cooling technical field, especially in a kind of cooling device for porous carbon production. BACKGROUND
[0002] The cooling device for porous carbon production of prior art uses cooling mode more single, and contact is not enough, it can cause the speed of cooling slower.China patent discloses a kind of "nanoporous carbon material reaction device", its application number is "CN202321089649.6", but the cooling device in the device mainly uses water cooling jacket, water cooling jacket is arranged at material outlet pipeline, for the cooling of material.But water cooling jacket and the material needed to be cooled cannot be contacted fully, and simply using water cooling jacket to cool can make the cooling mode of device single, it can cause the speed of cooling slower, cooling efficiency is not high. SUMMARY
[0003] The utility model aims at at least one of the technical problems existing in prior art, provide a kind of cooling device for porous carbon production, by installation column, hair dryer, lifting guide rail, horizontal guide rail, two-way motor, vertical screw rod, horizontal screw rod, lifting sliding block, horizontal sliding block, horizontal fixed link, installation vertical board, carbonization jar, fixed frame and cold water jar composition cold water soak and hair dryer combination cooling mechanism, device can put carbonization jar into the cold water in cold water jar, and simultaneously blow heat dissipation from above, cooling is more fully efficient, cooling speed is fast, improve cooling efficiency;When using cold water to cool, it will simultaneously carry out the circulation of cold water supply, and cooperate with the blowing of hair dryer, it can make water always have cooling condition, without the supplement of cold water, avoid the waste of water.
[0004] The utility model also provides with above-mentioned a kind of cooling device for porous carbon production, it include: fixed bottom plate, the upper surface of the fixed bottom plate is fixedly connected with installation column and lifting guide rail, the number of the installation column is four, the installation column is symmetrically distributed in the left and right ends of fixed bottom plate, the installation column is fixedly connected with hair dryer, the lower end of the lifting guide rail is fixedly connected with first two-way motor, the output of the first two-way motor is fixedly connected with vertical screw rod, the vertical screw rod is threadedly connected with lifting sliding block, the lifting sliding block is fixedly connected with fixed frame, the fixed frame is fixedly connected with cold water jar in;Horizontal guide rail, the horizontal guide rail is fixedly connected with installation column, the horizontal guide rail is symmetrically distributed in the above of left and right ends of fixed bottom plate, one end of the horizontal guide rail is fixedly connected with second two-way motor, the output of the second two-way motor is fixedly connected with horizontal screw rod, the horizontal screw rod is threadedly connected with horizontal sliding block, the horizontal sliding block is fixedly connected with installation vertical board by horizontal fixed link, the lower end of the installation vertical board is fixedly connected with carbonization jar, the carbonization jar is located below hair dryer, the carbonization jar is located just above cold water jar.
[0005] The utility model relates to a cooling device for porous carbon production, the lower surface of fixed bottom plate is fixedly connected with the truckle, the truckle is located four corner places of fixed bottom plate, the movement of device is convenient, and the convenience of using is improved.
[0006] The utility model relates to a cooling device for porous carbon production, the rear surface of lift rail is fixedly connected with the front surface of mounting column, makes the structure stable firm, the left and right side inner wall of lift rail is provided with vertical slide groove, and the limiting installation of lift sliding block is convenient.
[0007] The utility model relates to a cooling device for porous carbon production, the left and right side surface of lift sliding block all is fixedly connected with vertical slide rod, and vertical slide rod slides in vertical slide groove, is favorable to the stable lifting of lift sliding block.
[0008] The utility model relates to a cooling device for porous carbon production, fixed frame is fixedly connected with circulating water jar, and the circulation of water is convenient.
[0009] The utility model relates to a cooling device for porous carbon production, first water pump and second water pump are fixedly connected in fixed frame, the input end of first water pump is linked with circulating water jar, the output end of first water pump is linked with cold water jar, the input end of second water pump is linked with cold water jar, and the output end of second water jar is linked with circulating water jar, and the rapid circulation of water is favorable.
[0010] The utility model relates to a cooling device for porous carbon production, one end of horizontal guide rail is fixedly connected with the upper surface of fixed bottom plate through support rod, makes the structure stable firm, and the upper end of horizontal guide rail and lift rail is fixedly connected, makes the structure stable firm, the upper and lower inner wall of horizontal guide rail all is provided with horizontal slide groove, and the limiting installation of horizontal sliding block is convenient.
[0011] The utility model relates to a cooling device for porous carbon production, the upper and lower surface of horizontal sliding block all is provided with horizontal slide rod, and horizontal slide rod slides in horizontal slide groove, is favorable to the stable movement of horizontal sliding block.
[0012] Beneficial effects:
[0013] 1. Compared with the prior art, the cooling device for porous carbon production has a cold water soaking and air blowing combined cooling mechanism composed of mounting columns, air blowers, lifting guide rails, horizontal guide rails, bidirectional motors, vertical screws, horizontal screws, lifting sliding blocks, horizontal sliding blocks, horizontal fixing rods, mounting vertical plates, carbonization cylinders, fixing frames and cold water cylinders, the device can put the carbonization cylinders into the cold water in the cold water cylinders and blow air from above at the same time, cooling is more sufficient and efficient, cooling speed is fast, and cooling efficiency is improved.
[0014] 2. Compared with the prior art, when cold water is used for cooling, the device circulates and supplies the cold water at the same time, and blows air with the air blower, so that the water always has cooling conditions and does not need to be supplemented, thereby avoiding water waste. BRIEF DESCRIPTION OF DRAWINGS
[0015] The utility model will be further explained in connection with the drawings and embodiments;
[0016] Figure 1 It is whole structure schematic diagram of the utility model for porous carbon production's cooling device;
[0017] Figure 2 It is inside structure schematic diagram of the utility model for porous carbon production's cooling device's fixed frame;
[0018] Figure 3 It is longitudinal stereoscopic section structure schematic diagram of the utility model for porous carbon production's cooling device;
[0019] Figure 4 It is transverse stereoscopic section structure schematic diagram of the utility model for porous carbon production's cooling device.
[0020] LEGEND:
[0021] 1, fixed bottom plate, 2, support rod, 3, second bidirectional motor, 4, horizontal guide rail, 5, cold water cylinder, 6, lifting guide rail, 7, mounting column, 8, air blower, 9, trundle, 10, fixed frame, 11, carbonization cylinder, 12, second water pump, 13, first water pump, 14, circulating water cylinder, 15, first bidirectional motor, 16, vertical screw, 17, lifting sliding block, 18, vertical sliding rod, 19, vertical sliding groove, 20, horizontal screw, 21, horizontal sliding block, 22, horizontal sliding rod, 23, horizontal sliding groove, 24, horizontal fixing rod, 25, mounting vertical plate. DETAILED DESCRIPTION
[0022] The specific embodiments of the utility model will be described in detail in this part, the preferred embodiment of the utility model is shown in the drawings, the role of the drawings is to supplement the description of the written part with graphics, so that people can intuitively and visually understand each technical feature and the overall technical scheme of the utility model, but it cannot be understood as a limitation on the protection scope of the utility model.
[0023] Referring to Figure 1 , Figure 2 , Figure 3 and Figure 4 , the utility model discloses a kind of cooling device for porous carbon production, it includes fixed base plate 1, the lower surface of fixed base plate 1 is fixedly connected with trundle 9, trundle 9 is located at the four corners of fixed base plate 1, the upper surface of fixed base plate 1 is fixedly connected with mounting column 7 and lifting guide rail 6, the number of mounting column 7 is four, mounting column 7 is symmetrically distributed at the left and right ends of fixed base plate 1, the mounting column 7 is fixedly connected with hair dryer 8, the rear surface of lifting guide rail 6 is fixedly connected with the front surface of mounting column 7, the left and right side inner wall of lifting guide rail 6 is provided with vertical sliding slot 19, the lower end of lifting guide rail 6 is fixedly connected with first bidirectional motor 15, the output end of first bidirectional motor 15 is fixedly connected with vertical screw rod 16, vertical screw rod 16 is screw connected with lifting sliding block 17, the left and right side surfaces of lifting sliding block 17 are all fixedly connected with vertical sliding rod 18, vertical sliding rod 18 slides in vertical sliding slot 19, lifting sliding block 17 is fixedly connected with fixed frame 10, fixed frame 10 is fixedly connected with cold water jar 5, fixed frame 10 is fixedly connected with circulating water jar 14, fixed frame 10 is fixedly connected with first water pump 13 and second water pump 12, the input end of first water pump 13 is communicated with circulating water jar 14, the output end of first water pump 13 is communicated with cold water jar 5, the input end of second water pump 12 is communicated with cold water jar 5, the output end of second water pump 12 is communicated with circulating water jar 14;
[0024] Specifically, the carbon precursor of the porous carbon is processed by high-temperature carbonization in the carbonization cylinder 11 to form the porous carbon, which has a very high temperature, and the produced porous carbon needs to be cooled down. When the carbonization cylinder 11 is moved to the position directly above the cold water cylinder 5, the first bidirectional motor 15 of the lifting guide rail 6 drives the vertical screw rod 16 to rotate in the positive direction, the vertical screw rod 16 drives the lifting sliding block 17 to move upwards, the lifting sliding block 17 drives the fixed frame 10 to move upwards, and then drives the cold water cylinder 5 to move upwards. The cold water cylinder 5 contains sufficient cold water, and the carbonization cylinder 11 is immersed in the cold water of the cold water cylinder 5. The water level of the cold water in the cold water cylinder 5 is always lower than the uppermost end of the carbonization cylinder 11. The cold water absorbs a large amount of heat of the porous carbon in the carbonization cylinder 11, and at the same time, the air blower 8 blows air from above to cool the porous carbon in the carbonization cylinder 11, so that the porous carbon is rapidly cooled down. In addition, the first water pump 13 sends the cold water in the circulating water cylinder 14 to the cold water cylinder 5. When the cold water in the cold water cylinder 5 absorbs heat and warms up, the second water pump 12 sends the water in the cold water cylinder 5 to the circulating water cylinder 14 for cooling. The water is always in a cooling condition, and the air blower 8 above blows air to help the water cool down.
[0025] With reference to Figure 1 、 Figure 3 and Figure 4 , the horizontal guide rail 4 is fixedly connected with the mounting column 7, and is symmetrically arranged above the left and right ends of the fixed bottom plate 1. One end of the horizontal guide rail 4 is fixedly connected with the upper surface of the fixed bottom plate 1 through the support rod 2, and the upper end of the horizontal guide rail 4 is fixedly connected with the lifting guide rail 6. The upper and lower inner walls of the horizontal guide rail 4 are both provided with horizontal sliding grooves 23. One end of the horizontal guide rail 4 is fixedly connected with the second bidirectional motor 3. The output end of the second bidirectional motor 3 is fixedly connected with the horizontal screw rod 20. The horizontal screw rod 20 is threadedly connected with the horizontal sliding block 21. The upper and lower surfaces of the horizontal sliding block 21 are both provided with horizontal sliding rods 22 which slide in the horizontal sliding grooves 23. The horizontal sliding block 21 is fixedly connected with the mounting vertical plate 25 through the horizontal fixed rod 24. The lower end of the mounting vertical plate 25 is fixedly connected with the carbonization cylinder 11. The carbonization cylinder 11 is located below the air blower 8 and directly above the cold water cylinder 5.
[0026] Specifically, during the movement of the carbonization cylinder 11 to the position directly above the cold water cylinder 5, the second bidirectional motor 3 of the horizontal guide rail 4 drives the horizontal screw rod 20 to rotate in the positive direction. The horizontal screw rod 20 drives the horizontal sliding block 21 to move. The horizontal sliding block 21 drives the horizontal fixed rod 24 and the mounting vertical plate 25 to move, and then drives the carbonization cylinder 11 to move. When the carbonization cylinder 11 moves to the position directly above the cold water cylinder 5, the second bidirectional motor 3 is turned off.
[0027] Working principle: the cooling device for producing porous carbon is used to cool the produced porous carbon, the produced porous carbon is in the carbonization cylinder 11, the horizontal guide rail 4 drives the carbonization cylinder 11 to move to the position directly above the cold water cylinder 5, the lifting guide rail 6 drives the cold water cylinder 5 to move upwards, the carbonization cylinder 11 is soaked in the cold water of the cold water cylinder 5, and the water level of the cold water in the cold water cylinder 5 is always lower than the uppermost end of the carbonization cylinder 11, the cold water absorbs a large amount of heat of the porous carbon in the carbonization cylinder 11, and at the same time, the air blower 8 blows air to the porous carbon in the carbonization cylinder 11 from above to dissipate heat, so that the porous carbon is rapidly cooled.
[0028] The embodiments of the utility model are explained in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range possessed by the ordinary skilled in the art without departing from the purpose of the utility model.
Claims
1. A cooling device for the production of porous carbon, characterized by, The utility model relates to a kind of carbonization device, including: Fixed bottom plate (1), the upper surface of the fixed bottom plate (1) is fixedly connected with mounting column (7) and lifting guide rail (6), the number of the mounting column (7) is four, the mounting column (7) is symmetrically distributed in the left and right ends of fixed bottom plate (1), the mounting column (7) is fixedly connected with hair dryer (8), the lower end of the lifting guide rail (6) is fixedly connected with first bidirectional motor (15), the output end of the first bidirectional motor (15) is fixedly connected with vertical screw rod (16), the vertical screw rod (16) is threadedly connected with lifting sliding block (17), the lifting sliding block (17) is fixedly connected with fixed frame (10), the fixed frame (10) is fixedly connected with cold water cylinder (5) in; Horizontal guide rail (4), the horizontal guide rail (4) is fixedly connected with mounting column (7), the horizontal guide rail (4) is symmetrically distributed in the upper of left and right ends of fixed bottom plate (1), one end of the horizontal guide rail (4) is fixedly connected with second bidirectional motor (3), the output end of the second bidirectional motor (3) is fixedly connected with horizontal screw rod (20), the horizontal screw rod (20) is threadedly connected with horizontal sliding block (21), the horizontal sliding block (21) is fixedly connected with mounting vertical plate (25) by horizontal fixed rod (24), the lower end of the mounting vertical plate (25) is fixedly connected with carbonization cylinder (11), the carbonization cylinder (11) is located below hair dryer (8), the carbonization cylinder (11) is located directly above cold water cylinder (5).
2. The temperature reduction device for producing porous carbon according to claim 1, wherein The lower surface of the fixed bottom plate (1) is fixedly connected with trundle (9), and the trundle (9) is located at the four corners of the fixed bottom plate (1).
3. The cooling device for producing porous carbon according to claim 1, wherein The rear surface of the lifting guide rail (6) is fixedly connected with the front surface of the mounting column (7), and the left and right side inner walls of the lifting guide rail (6) are provided with vertical sliding grooves (19).
4. The cooling device for producing porous carbon according to claim 1, wherein The left and right side surfaces of the lifting sliding block (17) are both fixedly connected with vertical sliding rods (18), and the vertical sliding rods (18) slide in the vertical sliding grooves (19).
5. The cooling device for producing porous carbon according to claim 1, wherein The fixed frame (10) is fixedly connected with circulating water cylinder (14) in.
6. The cooling device for producing porous carbon according to claim 1, wherein The fixed frame (10) is fixedly connected with first water pump (13) and second water pump (12), the input end of the first water pump (13) is communicated with circulating water cylinder (14), the output end of the first water pump (13) is communicated with cold water cylinder (5), the input end of the second water pump (12) is communicated with cold water cylinder (5), and the output end of the second water pump (12) is communicated with circulating water cylinder (14).
7. The cooling device for producing porous carbon according to claim 1, wherein One end of the horizontal guide rail (4) is fixedly connected with the upper surface of the fixed bottom plate (1) by support rod (2), the horizontal guide rail (4) is fixedly connected with the upper end of the lifting guide rail (6), and the upper and lower inner walls of the horizontal guide rail (4) are both provided with horizontal sliding grooves (23).
8. The cooling device for producing porous carbon according to claim 1, wherein The upper and lower surfaces of the horizontal sliding block (21) are both provided with horizontal sliding rods (22), and the horizontal sliding rods (22) slide in the horizontal sliding grooves (23).
Citation Information
Patent Citations
Nano porous carbon material reaction device
CN219631336U