Tea set air drying system
By designing a tea set air drying system, the shunt plate and flow stop plate are used to generate turbulence, combined with an electric turntable and air replenishing pipe, the problem of uneven drying and cracking of the bamboo tea set paint layer is solved, and uniform drying and efficient air drying are achieved.
Patent Information
- Application Number
- CN202510721996.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-07-22
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing bamboo tea sets are prone to cracking during the paint layer drying process or the paint layer is uneven, resulting in an increase in the waste rate and unable to effectively accelerate drying.
A tea set air-drying system is designed, including an air-drying box and an air-drying assembly, which uses a splitter plate and a flow stop plate to generate turbulence, combines an electric turntable to control the rotation of the tea set, generate uniform turbulence through the airflow channel and negative pressure for drying, and optimizes the airflow through the air replenishing pipe and heater to ensure uniform drying of the paint layer.
The uniform and gentle drying of the bamboo tea set paint layer is achieved, which avoids cracking, improves the drying efficiency and ensures the molding effect of the paint layer.
Smart Images

Figure CN120346955A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air-drying, and particularly to a tea set air-drying system. Background Art
[0002] Gongfu tea is inseparable from tea sets. Tea sets refer to special utensils for brewing and drinking tea, including pots, bowls, cups, plates, trays, etc. A set of delicate tea sets paired with famous teas with excellent color, aroma, and taste can complement each other. With the prosperity of the tea culture, the variety of tea sets is increasing and their quality is becoming more exquisite. Gongfu tea pays the most attention to tea sets. Most of the existing tea sets are made of ceramics or purple sand, which are very fragile. Therefore, bamboo tea sets are a good choice. However, during the processing of bamboo tea sets, a paint layer needs to be applied to isolate the taste of the bamboo itself and avoid the conflict between the taste of the tea leaves and the bamboo, which may affect the quality of the tea. Natural air-drying after painting takes a long time. If the air-drying process of bamboo tea sets needs to be accelerated, it can only be achieved by heating or blowing. However, due to the characteristics of bamboo, heating and drying are likely to cause cracking, resulting in an increase in the rejection rate. Blowing, on the other hand, causes the paint layer to have uneven thickness because the air flow always blows on one place and the wind force is large, which also leads to an increase in the rejection rate. Therefore, a tea set air-drying system that can ensure the accelerated drying of the paint layer on bamboo tea sets and avoid cracking is needed. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide a tea set air-drying system that can ensure the accelerated drying of the paint layer on bamboo tea sets and avoid cracking.
[0004] To solve the above technical problem, the technical solution adopted by the present invention is as follows:
[0005] A tea set air-drying system includes an air-drying box and an air-drying component;
[0006] The air-drying box includes a box body and a cover body. An air-drying groove is formed on the box body, and the cover body is covered on the air-drying groove to form a sealed space. The air-drying groove includes an end portion and a tail portion. Air outlets are respectively provided on two side walls close to the tail portion;
[0007] The air-drying component includes a fan, an air inlet duct, a circulation duct, air nozzles, and multiple groups of air flow modules arranged in an array. There is an air flow channel between each row of the air flow modules, and there are air flow channels between the air flow modules and the two side walls of the air-drying groove respectively. The width of the air flow channel between the air flow module and the side wall is half of the air flow channel between the air flow modules. The fan, the air inlet duct, and the air nozzles are connected in sequence. The number of air nozzles is equal to the number of rows of the air flow modules. The air nozzles are inserted into the air-drying groove from the end portion. One end of the circulation duct is connected to the air inlet duct, and the other end is respectively communicated with the air outlets;
[0008] The air flow module includes a flow splitting plate, a flow blocking plate and an electric rotating table. The cross-section of the flow splitting plate is < -shaped, and the cross-section of the flow blocking plate is > -shaped. The flow splitting plate and the flow blocking plate are mirror-symmetrically arranged on both sides of the electric rotating table and are vertically arranged. The bent part of the flow splitting plate faces the end part to divide the air flow blown out by the air nozzle into two parts. When the air flow passes through the air flow channel at high speed, a negative pressure is generated between the flow splitting plate and the flow blocking plate, and then a turbulent flow is generated to dry the surface of the tea set. The electric rotating table is used to place the tea set and can control the rotation of the tea set during air drying. The working time of the tea set air drying system is equal to the time used for the electric rotating table to rotate 180° for an odd number of times.
[0009] Preferably, the air drying component further includes a supplementary air pipe, which is arranged between horizontally adjacent air flow modules and is communicated with the air inlet duct.
[0010] Preferably, the supplementary air pipe is arranged on the surface of the air drying tank, and the bottom of the supplementary air pipe passes through the bottom of the air drying tank and is communicated with the air inlet duct.
[0011] Preferably, the supplementary air pipe is provided with an air supplement port, and the orientation of the air supplement port is the same as that of the air nozzle.
[0012] Preferably, the edge of the supplementary air pipe is rounded.
[0013] Preferably, a heater is further arranged in the air inlet duct.
[0014] Preferably, the material of the cover body is a transparent material.
[0015] Preferably, a filtering module is arranged in the circulating air duct, and a filter element is provided in the filtering module.
[0016] Preferably, a drying module is further arranged in the circulating air duct, and a desiccant is provided in the drying module.
[0017] Preferably, the filtering module is arranged close to the air outlet.
[0018] The beneficial effects of the present invention are as follows: Through the cooperation of the air flow channel and the flow splitting plate, the air flow can be divided into two parts. When the air flow passes through the air flow channel at high speed, a negative pressure is generated between the flow splitting plate and the flow blocking plate. Coupled with the flow blocking plate, the tea set can form <o>The structure causes various turbulences flowing towards the air flow channel to be generated at the corners of the shunt plate and the baffle plate due to the existence of negative pressure. Since the flow directions of the turbulences are inconsistent and chaotic with only a general direction, the turbulences interfere with each other, resulting in a chaotic and slow wind direction. This enables the paint layer on the surface of the tea set to be evenly and gently dried, avoiding the paint layer being blown thin by the directional air flow and ensuring the forming effect of the paint layer. And combined with the fact that the working time of the air drying system is equal to the time taken for the electric turntable to rotate 180° an odd number of times, the rotation of the electric turntable can make the turbulences received on the surface of the tea set more uniform, that is <o>The turbulence at each position in the structure is probably a relatively fixed blowing method. For example, the turbulence directions on the left and right sides are different. By rotating an odd multiple of 180°, the same point on the surface of the entire tea set can be affected by the airflows in the upper and lower air channels of the airflow module, ensuring a uniform air-drying effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 FIG. 6 is a schematic top view of the top structure of a tea set air-drying system according to a specific embodiment of the present invention;
[0020] Figure 2 FIG. 10 is a schematic bottom view of the bottom structure of a tea set air-drying system according to a specific embodiment of the present invention;
[0021] Figure 3 FIG. 14 is a schematic partial disassembled view of a tea set air-drying system according to a specific embodiment of the present invention;
[0022] Figure 4 FIG. 18 is a schematic diagram of air flow in a tea set air-drying system according to a specific embodiment of the present invention;
[0023] Figure 5 FIG. 22 is a schematic diagram of air flow in an airflow module of a tea set air-drying system according to a specific embodiment of the present invention;
[0024] Reference Numerals: 1, air-drying box; 11, cover body; 12, box body; 13, air-drying tank; 131, end portion; 132, tail portion; 2, air-drying assembly; 21, fan; 22, air inlet duct; 23, circulation duct; 24, air nozzle; 25, airflow module; 251, flow splitter plate; 252, baffle plate; 253, electric turntable; 26, air channel; 27, air supply pipe; 271, air supply port; 28, filtration module; 29, drying module; 3, turbulence. SPECIFIC EMBODIMENTS
[0025] To describe in detail the technical content, achieved objectives, and effects of the present invention, the following is described in conjunction with the embodiments and with reference to the accompanying drawings.
[0026] Please refer to Figures 1 to 5 , a tea set air-drying system, including an air-drying box 1 and an air-drying assembly 2;
[0027] The air-drying box 1 includes a box body 12 and a cover body 11. An air-drying tank 13 is formed on the box body 12, and the cover body 11 is covered on the air-drying tank 13 to form a sealed space; the air-drying tank 13 includes an end portion 131 and a tail portion 132, and air outlets are respectively arranged on two side walls close to the tail portion 132;
[0028] The air-drying assembly 2 includes a blower 21, an air inlet duct 22, a circulation duct 23, air nozzles 24, and multiple groups of air flow modules 25 arranged in an array. There is an air flow channel 26 between each row of the air flow modules 25. There are air flow channels 26 between the air flow modules 25 and the two side walls of the air-drying tank 13 respectively. The width of the air flow channel 26 between the air flow module 25 and the side wall is half of the air flow channel 26 between the air flow modules 25. The blower 21, the air inlet duct 22, and the air nozzles 24 are connected in sequence. The number of the air nozzles 24 is equal to the number of rows of the air flow modules 25. The air nozzles 24 are inserted into the air-drying tank 13 from the end portion 131. One end of the circulation duct 23 is connected to the air inlet duct 22, and the other end is communicated with the air outlet respectively.
[0029] The air flow module 25 includes a flow splitting plate 251, a flow baffle plate 252, and an electric turntable 253. The cross-section of the flow splitting plate 251 is < -shaped, and the cross-section of the flow baffle plate 252 is > -shaped. The flow splitting plate 251 and the flow baffle plate 252 are arranged on both sides of the electric turntable 253 in a mirror image and are vertically arranged. The bent portion of the flow splitting plate 251 faces the end portion 131 and divides the air flow blown out by the air nozzle 24 into two parts. When the air flow passes through the air flow channel 26 at a high speed, a negative pressure is generated between the flow splitting plate 251 and the flow baffle plate 252, and then a turbulent flow 3 is generated to dry the surface of the tea set. The electric turntable 253 is used to place the tea set and can control the rotation of the tea set during air-drying. The working time of the tea set air-drying system is equal to the time used for the electric turntable 253 to rotate 180° for an odd multiple.
[0030] As can be seen from the above description, through the cooperation of the air flow channel 26 and the flow splitting plate 251, the air flow can be divided into two parts. When the air flow passes through the air flow channel 26 at a high speed, a negative pressure is generated between the flow splitting plate 251 and the flow baffle plate 252. With the cooperation of the flow baffle plate 252, the tea set can form <o>Due to the existence of negative pressure, various turbulent flows 3 flowing towards the air flow channel 26 are generated at the corners of the flow splitter plate 251 and the baffle plate 252 in the structure. Since the flow directions of the turbulent flows 3 are inconsistent and chaotic with only a general direction, the mutual interference between the turbulent flows 3 results in a relatively chaotic and slow wind direction, enabling the paint layer on the surface of the tea set to be dried evenly and gently, avoiding the paint layer being blown thin by the directional air flow and ensuring the forming effect of the paint layer; and combined with the working time of the air drying system being equal to the time taken for the electric turntable 253 to rotate 180° by an odd multiple, the rotation of the electric turntable 253 can make the turbulent flows 3 received on the surface of the tea set more uniform, that is <o>In the structure, the turbulent flow 3 at each position is probably a relatively fixed blowing method. For example, the directions of the turbulent flow 3 on the left and right sides are different. By rotating an odd multiple of 180°, the same point on the surface of the entire tea set can be affected by the air flow from the upper and lower air flow channels 26 of the air flow module 25, ensuring a uniform air-drying effect.
[0031] Furthermore, the air-drying component 2 further includes a supplementary air pipe 27. The supplementary air pipe 27 is arranged between the horizontally adjacent air flow modules 25, and the supplementary air pipe 27 is communicated with the air inlet duct 22.
[0032] As can be seen from the above description, through the setting of the supplementary air pipe 27, air supply can be achieved, avoiding the decline of the air flow velocity before and after, which affects the synchronous drying effect.
[0033] Furthermore, the supplementary air pipe 27 is arranged on the surface of the air-drying tank 13, and the bottom of the supplementary air pipe 27 passes through the bottom of the air-drying tank 13 and is communicated with the air inlet duct 22.
[0034] As can be seen from the above description, by routing the supplementary air pipe 27 from the bottom of the air-drying tank 13, the layout of the pipeline is avoided from affecting the air flow direction and the layout difficulty.
[0035] Furthermore, an air supply port 271 is arranged on the supplementary air pipe 27, and the orientation of the air supply port 271 is the same as that of the air nozzle 24.
[0036] As can be seen from the above description, by having the same orientation of the air supply port 271 as that of the air nozzle 24, the original air flow can be enhanced.
[0037] Furthermore, the edge of the supplementary air pipe 27 is rounded.
[0038] As can be seen from the above description, through the rounding treatment, air friction can be reduced, and noise and energy loss can be lowered.
[0039] Furthermore, a heater is also arranged in the air inlet duct 22.
[0040] As can be seen from the above description, through the heater, the air flow can heat the flow dividing plate 251 and the flow baffle 252, and then heat the turbulent flow 3 generated by the heating of the flow dividing plate 251 and the flow baffle 252. The turbulent flow 3 is heated again, thereby achieving a slow temperature rise and avoiding cracking caused by too rapid a temperature rise.
[0041] Furthermore, the material of the cover body 11 is a transparent material.
[0042] As can be seen from the above description, through the transparent cover body 11, the internal situation can be observed in a timely manner.
[0043] Furthermore, a filtering module 28 is arranged in the circulating air duct 23, and the filtering module 28 is provided with a filter element.
[0044] As can be seen from the above description, through the setting of the filter element, some sundries can be filtered to prevent the sundries from adhering to the tea set along with the air flow.
[0045] Furthermore, a drying module 29 is also provided in the circulation air duct 23, and a desiccant is provided in the drying module 29.
[0046] As can be seen from the above description, through the desiccant, the drying speed can be increased to prevent the excessive humidity from affecting the air-drying effect.
[0047] Furthermore, the filtering module 28 is arranged close to the air outlet.
[0048] As can be seen from the above description, since the filtering module 28 is closer to the air outlet than the drying module 29, drying can be carried out after filtration, preventing the drying module 29 from being contaminated.
[0049] Embodiment 1
[0050] A tea set air-drying system includes an air-drying box 1 and an air-drying component 2;
[0051] The air-drying box 1 includes a box body 12 and a cover body 11. An air-drying groove 13 is formed on the box body 12, and the cover body 11 is covered on the air-drying groove 13 to form a sealed space; the air-drying groove 13 includes an end portion 131 and a tail portion 132, and air outlets are respectively arranged on two side walls close to the tail portion 132;
[0052] The air-drying component 2 includes a fan 21, an air inlet duct 22, a circulation air duct 23, air nozzles 24 and multiple groups of air flow modules 25 arranged in an array. An air flow channel 26 is provided between each row of the air flow modules 25. An air flow channel 26 is respectively provided between the air flow modules 25 and the two side walls of the air-drying groove 13. The width of the air flow channel 26 between the air flow modules 25 and the side wall is half of the air flow channel 26 between the air flow modules 25; the fan 21, the air inlet duct 22 and the air nozzles 24 are connected in sequence, and the number of the air nozzles 24 is equal to the number of rows of the air flow modules 25; the air nozzles 24 are inserted into the air-drying groove 13 from the end portion 131; one end of the circulation air duct 23 is connected to the air inlet duct 22, and the other end is respectively communicated with the air outlets;
[0053] The air flow module 25 includes a flow splitting plate 251, a flow blocking plate 252 and an electric turntable 253. The cross-section of the flow splitting plate 251 is < shaped, and the cross-section of the flow blocking plate 252 is > shaped. The flow splitting plate 251 and the flow blocking plate 252 are arranged mirror-symmetrically on both sides of the electric turntable 253 and are vertically arranged. The bent part of the flow splitting plate 251 faces the end 131 to divide the air flow blown out by the nozzle 24 into two parts. When the air flow passes through the air flow channel 26 at high speed, a negative pressure is generated between the flow splitting plate 251 and the flow blocking plate 252, and then a turbulent flow 3 is generated to dry the surface of the tea set. The electric turntable 253 is used to place the tea set and can control the rotation of the tea set during air drying. The working time of the tea set air drying system is equal to the time used for the electric turntable 253 to rotate an odd multiple of 180°.
[0054] The air drying component 2 further includes a supplementary air pipe 27. The supplementary air pipe 27 is arranged between horizontally adjacent air flow modules 25, and the supplementary air pipe 27 is communicated with the air inlet channel 22.
[0055] The supplementary air pipe 27 is arranged on the surface of the air drying tank 13, and the bottom of the supplementary air pipe 27 passes through the bottom of the air drying tank 13 and is communicated with the air inlet channel 22.
[0056] The supplementary air pipe 27 is provided with a supplementary air port 271, and the orientation of the supplementary air port 271 is the same as that of the nozzle 24.
[0057] The edge of the supplementary air pipe 27 is rounded.
[0058] Embodiment 2
[0059] A tea set air drying system, the same parts as those in Embodiment 1 will not be described in detail again, and further includes:
[0060] A heater is further arranged in the air inlet channel 22.
[0061] The material of the cover body 11 is a transparent material.
[0062] A filtering module 28 is arranged in the circulating air channel 23, and a filter element is provided in the filtering module 28.
[0063] A drying module 29 is further arranged in the circulating air channel 23, and a desiccant is provided in the drying module 29.
[0064] The filtering module 28 is arranged close to the air outlet.
[0065] The above are only the embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent transformation made by using the content of the specification and drawings of the present invention, or directly or indirectly applied in the relevant technical fields, shall be equally included in the patent protection scope of the present invention.< / o> < / o> < / o> < / o>
Claims
1. A tea set air-drying system, characterized in that, It includes a drying box and a drying component; The drying box includes a box body and a cover body. An air drying groove is formed on the box body, and the cover body is covered on the air drying groove to form a sealed space. The air drying groove includes an end part and a tail part. Air outlets are respectively arranged on two side walls close to the tail part; The drying component includes a fan, an air inlet duct, a circulating air duct, air nozzles and multiple groups of air flow modules distributed in an array. There is an air flow channel between each row of the air flow modules. There are air flow channels respectively between the air flow modules and the two side walls of the air drying groove. The width of the air flow channel between the air flow module and the side wall is half of the air flow channel between the air flow modules. The fan, the air inlet duct and the air nozzles are connected in sequence. The number of the air nozzles is equal to the number of rows of the air flow modules. The air nozzles are inserted into the air drying groove from the end part. One end of the circulating air duct is connected to the air inlet duct, and the other end is respectively communicated with the air outlets; The air flow module includes a flow dividing plate, a flow blocking plate and an electric rotating disc. The cross-section of the flow dividing plate is < -shaped, and the cross-section of the flow blocking plate is > -shaped. The flow dividing plate and the flow blocking plate are mirror-symmetrically arranged on both sides of the electric rotating disc and are vertically arranged. The bent part of the flow dividing plate faces the end part to divide the air flow blown out by the air nozzle into two parts. When the air flow passes through the air flow channel at a high speed, a negative pressure is generated between the flow dividing plate and the flow blocking plate, and then a turbulent flow is generated to dry the surface of the tea set. The electric rotating disc is used for placing the tea set and can control the rotation of the tea set during drying. The working time of the tea set drying system is equal to the time used for the electric rotating disc to rotate 180° for an odd multiple of times.
2. The tea set air-drying system according to claim 1, wherein The drying component further includes a supplementary air pipe, and the supplementary air pipe is arranged between horizontally adjacent air flow modules and is communicated with the air inlet duct.
3. The tea set air-drying system according to claim 2, wherein The supplementary air pipe is arranged on the surface of the air drying groove, and the bottom of the supplementary air pipe passes through the bottom of the air drying groove and is communicated with the air inlet duct.
4. The tea set air-drying system according to claim 2, characterized in that, Air supplement openings are arranged on the supplementary air pipe, and the orientation of the air supplement openings is the same as that of the air nozzles.
5. The tea set air-drying system according to claim 2, wherein The edge of the supplementary air pipe is rounded.
6. The tea set air-drying system according to claim 1, characterized in that, A heater is further arranged in the air inlet duct.
7. The tea set air-drying system according to claim 1, characterized in that The cover body is made of a transparent material.
8. The tea set air-drying system according to claim 1, wherein A filtering module is arranged in the circulating air duct, and a filter element is arranged in the filtering module.
9. The tea set air-drying system according to claim 8, wherein, A drying module is further arranged in the circulating air duct, and a desiccant is arranged in the drying module.
10. The tea set air-drying system according to claim 9, wherein The filtering module is arranged close to the air outlet.