An intelligent tea blowing and cooling sorting machine and its usage method
The tea leaf blow-cooling machine addresses dust adherence issues by using a filtration and spiral airflow design, enhancing tea quality and marketability.
Patent Information
- Application Number
- CN202210030017.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-12
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2042-01-12
AI Technical Summary
The existing tea-blowing and cooling machine is easily blown onto the tea when it is blown directly by a fan, which can affect the taste and quality of the tea and lead to the inability to sell normally.
An intelligent tea cool air selection machine is designed, including a ventilation mechanism, ventilation mechanism, air filter mechanism, water filter mechanism and air wall mechanism. Through a multi-layer filtration and guidance structure, dust enters the tea and improves cooling uniformity and cleanliness.
It effectively reduces the possibility of dust adhering to tea, improves the taste and quality of tea, enables tea to be sold normally, and reduces the losses of users.
Smart Images

Figure CN114322603B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of tea blowing and air - selecting machines, and particularly relates to an intelligent tea blowing and air - selecting machine and its usage method. Background Art
[0002] Tea is mainly processed through steps such as picking, de - enzyming, cooling, rolling, and drying and dispersing. After the tea is de - enzymed, it usually needs to be cooled to facilitate subsequent rolling. The transportation of tea after de - enzyming mainly uses the method of heat dissipation by a cooling fan for cooling. The tea - frying machine includes various devices, such as: a tea de - enzyming and feeding machine, a tea blowing and air - selecting machine, a tea blowing and air - selecting machine, and a tea feeding machine.
[0003] Currently, after the tea - frying machine finishes de - enzyming the tea, it needs to be transported and cooled by a tea blowing and air - selecting machine. However, at present, the tea blowing and air - selecting machine usually uses a direct blowing fan for cooling. This cooling method easily blows dust onto the freshly fried tea, which not only affects the taste of the tea but also reduces the quality of the tea. If there is too much dust on the tea, it cannot even be sold, causing losses to the users.
[0004] Therefore, in view of the above - mentioned technical problems, it is necessary to provide an intelligent tea blowing and air - selecting machine and its usage method. Summary of the Invention
[0005] The purpose of the present invention is to provide an intelligent tea blowing and air - selecting machine and its usage method to solve the problem that the tea - frying machine usually uses a direct blowing fan for cooling, which easily causes the tea to adhere to dust, not only affecting the taste of the tea but also reducing the quality of the tea.
[0006] To achieve the above purpose, the technical solution provided by an embodiment of the present invention is as follows:
[0007] An intelligent tea blowing and air - selecting machine includes: a tea blowing and air - selecting machine body, an air - equalizing mechanism, a ventilation mechanism, a wind - filtering mechanism, a water - filtering mechanism, and a wind - wall mechanism;
[0008] The air - equalizing mechanism is provided on the tea blowing and air - selecting machine body. The air - equalizing mechanism includes a main pipeline. A main filter screen is connected inside the main pipeline. An air - equalizing chamber is connected to the main pipeline. The air - equalizing chamber is connected to the tea blowing and air - selecting machine body, and a number of air - equalizing holes are drilled on the air - equalizing chamber;
[0009] The ventilation mechanism is provided inside the main pipeline for extracting external air;
[0010] The wind - filtering mechanism is provided inside the main pipeline for filtering external dust;
[0011] A water filtration mechanism is connected to the main pipeline to improve the filtration effect of dust;
[0012] A wind wall mechanism is provided in the main pipeline to reduce the adhesion of external dust to the tea leaves.
[0013] Further, the ventilation mechanism includes a ventilation shaft, which facilitates the installation of the ventilation fan and can drive the ventilation fan to rotate;
[0014] On both sides of the ventilation shaft, a ventilation filter screen and a ventilation support are respectively connected. The ventilation filter screen can reduce the dust entering the main pipeline, and at the same time can cooperate with the ventilation support to improve the stability and balance of the ventilation shaft;
[0015] Both the ventilation filter screen and the ventilation support are connected to the main pipeline, improving the stability of the ventilation filter screen and the ventilation support.
[0016] Further, a pair of ventilation fans are connected to the ventilation shaft, which can be driven by the ventilation shaft to rotate, and can draw external air into the main pipeline. The ventilation shaft passes through the ventilation filter screen, the ventilation support and the ventilation fan;
[0017] A limiting block is connected to one end of the ventilation shaft close to the ventilation filter screen, which can better fix the ventilation shaft and improve the stability of the ventilation shaft.
[0018] Further, a motor is connected to the main pipeline, which can provide corresponding power for the rotation of the driving pulley, making the rotation of the driving pulley more controllable;
[0019] A driving pulley is connected to the motor, which can drive the rotation of the driven pulley through a transmission belt, thereby driving the ventilation shaft to rotate. One end of the ventilation shaft is connected to the driven pulley;
[0020] A transmission belt is connected between the driving pulley and the driven pulley, which plays a role in transmission, enabling the driving pulley and the driven pulley to rotate synchronously.
[0021] Further, the air filtration mechanism includes a pair of air filtration screens, which can filter dust, reduce the possibility of dust entering the air distribution bin, and improve the cleanliness of the air distribution bin;
[0022] Both of the pair of air filtration screens penetrate the main pipeline, facilitating the replacement of the air filtration screens and improving the convenience of maintenance of the air filtration screens;
[0023] On the sides of the pair of air filtration screens away from each other, force-receiving blocks are provided, which can support the air filtration airbag, enabling the air filtration airbag to have support after being impacted. The force-receiving blocks are connected to the main pipeline.
[0024] Further, an air filter airbag is connected between the force-bearing block and the air filter screen. After the air filter screen is impacted, the air filter airbag provides a buffer space for the air filter screen, reducing the possibility of damage to the air filter screen and extending its service life.
[0025] An air filter fan is provided between a pair of the air filter screens. It can be driven by the airflow to rotate and can drive the marbles to brush.
[0026] A pair of marbles are connected to the air filter fan, which can impact the air filter screen and reduce the possibility of the air filter screen being blocked by dust.
[0027] A pair of support blocks are connected inside the main pipe, which can support the pull-out plate and improve the stability of the pull-out plate.
[0028] A pull-out plate is provided on a pair of the support blocks. The dust on the pull-out plate can fall by pulling. The pull-out plate penetrates through the main pipe.
[0029] Further, the water filter mechanism includes a water pump, which can extract the water in the main pipe and inject it into the water storage bin.
[0030] A water storage bin is provided on one side of the water pump, which can temporarily hold water and reduce the possibility of the water storage bin being driven by the air filter fan. Both the air filter fan and the water pump penetrate through the water storage bin.
[0031] A connecting water pipe is connected between the water pump and the main pipe, facilitating the water pump to extract water from the main pipe. The connecting water pipe penetrates through the main pipe.
[0032] Further, a pair of atomizing nozzles are connected to the air filter fan, which can atomize the water flow and increase the area of filtering dust.
[0033] A water passing groove is drilled inside the air filter fan to facilitate the passage of water flow. Both the water storage bin and the atomizing nozzles are communicated with the water passing groove.
[0034] A number of water dropping holes are drilled on the pull-out plate, enabling the water flow to pass through the pull-out plate and avoiding the possibility of dust raising in the cavity formed by the pull-out plate and the main pipe.
[0035] A water blocking plate is connected inside the main pipe, which can avoid the possibility of water entering the air distribution bin and improve the cleanliness inside the air distribution bin.
[0036] Further, the air wall mechanism includes a guiding cone, which can guide the airflow so that the airflow can better contact the guiding pages.
[0037] A number of guiding pages are connected between the guiding cone and the main pipeline, which can guide the airflow to form a spiral airflow. After entering the air distribution bin, the airflow can be more disordered, better fill the air distribution bin, and make the air discharged from the air distribution bin more uniform.
[0038] A pair of air wall clamps are connected to both sides of the air distribution bin. The airflow can be discharged through the air wall slots, and a air wall can be formed through the guidance of the air wall clamps, which can reduce the adhesion of dust to the tea leaves. The air distribution bin is provided with air wall slots matching the air wall clamps.
[0039] A method for using an intelligent tea blowing and cooling and sorting machine includes the following steps:
[0040] S1. Start the motor to drive the ventilation fan to rotate through the ventilation shaft, so that the outside air can enter the main pipeline.
[0041] S2. After the dust enters the main pipeline along with the air, it is blocked by a pair of air filter meshes, and the filtered air continues to enter the air distribution bin along the main pipeline.
[0042] S3. The flow of air blows the air filter fan to rotate, driving the marbles to continuously knock on the air filter meshes to prevent the air filter meshes from being blocked by dust.
[0043] S4. The dust falls on the draw plate. By pulling out the draw plate, the dust can fall into the cavity formed by the draw plate and the tea blowing and cooling and sorting machine body.
[0044] S5. The flowing air is guided by the guiding pages to form a spiral airflow. After entering the air distribution bin, it is more disordered and can be discharged from the air distribution bin more evenly, improving the evenness of tea cooling.
[0045] S6. Start the water pump to extract the water in the main pipeline and inject it into the water storage bin. The water is discharged through the atomizing nozzles to form a water mist, further improving the dust filtration degree. After the water mist is discharged, it will be blocked by the water blocking plate and return to the cavity formed by the draw plate and the tea blowing and cooling and sorting machine body again through the water dropping holes.
[0046] Compared with the prior art, the present invention has the following advantages:
[0047] Through the setting of corresponding mechanisms on the tea blowing and cooling and sorting machine, the present invention reduces the possibility of dust being blown onto the tea leaves, not only improves the taste of the tea, but also improves the quality of the tea, enables the tea to be sold normally, and reduces the losses of users. Description of the Drawings
[0048] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the accompanying drawings required in the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments recorded in the present invention. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can also be obtained based on these drawings.
[0049] Figure 1 It is a front elevation sectional view of an intelligent tea blowing and air - separating machine in an embodiment of the present invention;
[0050] Figure 2 For Figure 1 The structural schematic diagram at position A in;
[0051] Figure 3 For Figure 1 The structural schematic diagram at position B in;
[0052] Figure 4 For Figure 1 The structural schematic diagram at position C in;
[0053] Figure 5 For Figure 1 The structural schematic diagram at position D in;
[0054] Figure 6 For Figure 1 The structural schematic diagram at position E in;
[0055] Figure 7 For Figure 1 The structural schematic diagram at position F in;
[0056] Figure 8 It is a three - dimensional view of an intelligent tea blowing and air - separating machine in an embodiment of the present invention.
[0057] In the figure: 1. Tea blowing and air - separating machine body, 2. Air - equalizing mechanism, 201. Main pipeline, 202. Main filter screen, 203. Air - equalizing bin, 3. Ventilation mechanism, 301. Ventilation shaft, 302. Ventilation filter screen, 303. Ventilation bracket, 304. Ventilation fan, 305. Limiting block, 306. Motor, 307. Driving pulley, 308. Driven pulley, 309. Transmission belt, 4. Air - filtering mechanism, 401. Air - filtering filter screen, 402. Force - receiving block, 403. Air - filtering airbag, 404. Air - filtering fan, 405. Elastic ball, 406. Support block, 407. Drawer plate, 5. Water - filtering mechanism, 501. Water pump, 502. Water storage bin, 503. Connecting water pipeline, 504. Atomizing nozzle, 505. Water - blocking plate, 6. Air - wall mechanism, 601. Guide cone, 602. Guide vane, 603. Air - wall clamp. Detailed implementation manners
[0058] The present invention will be described in detail below in conjunction with the embodiments shown in the accompanying drawings. However, these embodiments do not limit the present invention, and any structural, methodical, or functional transformations made by those of ordinary skill in the art based on these embodiments are included within the protection scope of the present invention.
[0059] The present invention discloses an intelligent tea blowing and cool air separating machine. Referring to Figures 1-8 as shown, it includes: a tea blowing and cool air separating machine body 1, an air equalizing mechanism 2, a ventilation mechanism 3, an air filtering mechanism 4, a water filtering mechanism 5, and a wind wall mechanism 6.
[0060] Referring to Figure 1 as shown, an air equalizing mechanism 2 is provided on the tea blowing and cool air separating machine body 1. The air equalizing mechanism 2 includes a main pipeline 201, which can provide a corresponding passage for the air flow.
[0061] Among them, a main filter screen 202 is connected inside the main pipeline 201, which can further reduce the possibility of dust entering the air equalizing bin 203.
[0062] In addition, an air equalizing bin 203 is connected to the main pipeline 201, which can increase the blowing area of the air flow on the tea leaves and improve the cooling speed of the tea leaves.
[0063] Optionally, the air equalizing bin 203 is connected to the tea blowing and cool air separating machine body 1, which improves the stability of the air equalizing bin 203 and ensures the stability of the air equalizing mechanism 2. A number of air equalizing holes are drilled on the air equalizing bin 203 to facilitate the passage of the air flow, so that the air flow can cool the tea leaves.
[0064] Referring to Figures 2-5 as shown, a ventilation mechanism 3 is provided inside the main pipeline 201 for extracting external air. The ventilation mechanism 3 includes a ventilation shaft 301, which facilitates the installation of the ventilation fan 304 and can drive the ventilation fan 304 to rotate.
[0065] Among them, a ventilation filter screen 302 and a ventilation support 303 are respectively connected to both sides of the ventilation shaft 301. The ventilation filter screen 302 can reduce the dust entering the main pipeline 201, and at the same time can cooperate with the ventilation support 303 to improve the stability and balance of the ventilation shaft 301.
[0066] In addition, both the ventilation filter screen 302 and the ventilation support 303 are connected to the main pipeline 201, which improves the stability of the ventilation filter screen 302 and the ventilation support 303.
[0067] Referring to Figures 2-6 as shown, a pair of ventilation fans 304 are connected to the ventilation shaft 301, which can be driven by the ventilation shaft 301 to rotate and can draw external air into the main pipeline 201. The ventilation shaft 301 passes through the ventilation filter screen 302, the ventilation support 303, and the ventilation fan 304.
[0068] Among them, a limiting block 305 is connected to one end of the ventilation shaft 301 close to the ventilation filter screen 302, which can better fix the ventilation shaft 301 and improve the stability of the ventilation shaft 301.
[0069] Reference Figures 2-6 As shown, a motor 306 is connected to the main pipeline 201, which can provide corresponding power for the rotation of the driving pulley 307, making the rotation of the driving pulley 307 more controllable.
[0070] Among them, a driving pulley 307 is connected to the motor 306, which can drive the rotation of the driven pulley 308 through the transmission belt 309, thereby driving the ventilation shaft 301 to rotate. One end of the ventilation shaft 301 is connected to the driven pulley 308.
[0071] Preferably, a transmission belt 309 is connected between the driving pulley 307 and the driven pulley 308, which plays a role in transmission, enabling the driving pulley 307 and the driven pulley 308 to rotate synchronously.
[0072] Reference Figures 1-7 As shown, a wind filter mechanism 4 is provided in the main pipeline 201 for filtering external dust. The wind filter mechanism 4 includes a pair of wind filter meshes 401, which can filter dust, reduce the possibility of dust entering the equalizing air chamber 203, and improve the cleanliness of the equalizing air chamber 203.
[0073] Among them, a pair of wind filter meshes 401 both penetrate through the main pipeline 201, facilitating the replacement of the wind filter meshes 401 and improving the convenience of overhauling the wind filter meshes 401.
[0074] In addition, force - receiving blocks 402 are provided on the sides of a pair of wind filter meshes 401 away from each other, which can support the wind filter air bags 403, enabling the wind filter air bags 403 to have support after being impacted. The force - receiving blocks 402 are connected to the main pipeline 201.
[0075] Reference Figures 1-7 As shown, a wind filter air bag 403 is connected between the force - receiving block 402 and the wind filter mesh 401. After the wind filter mesh 401 is impacted, the wind filter air bag 403 provides a buffering space for the wind filter mesh 401, reducing the possibility of damage to the wind filter mesh 401 and improving the service life of the wind filter mesh 401.
[0076] Among them, a wind filter fan 404 is provided between a pair of wind filter meshes 401, which can be driven by the air flow to rotate and can drive the marbles 405 to brush.
[0077] Optionally, a pair of marbles 405 are connected to the wind filter fan 404, which can impact the wind filter meshes 401, reducing the possibility of the wind filter meshes 401 being blocked by dust.
[0078] In addition, a pair of support blocks 406 are connected inside the main pipeline 201, which can support the pull-out plate 407 and improve the stability of the pull-out plate 407.
[0079] Preferably, the pull-out plate 407 is provided on a pair of support blocks 406. The dust on the pull-out plate 407 can fall by pulling, and the pull-out plate 407 is arranged through the main pipeline 201.
[0080] Reference Figures 1-8 As shown, a water filtration mechanism 5 is connected to the main pipeline 201 for improving the filtration effect of dust. The water filtration mechanism 5 includes a water pump 501, which can extract the water in the main pipeline 201 and inject it into the water storage bin 502.
[0081] Among them, a water storage bin 502 is provided on one side of the water pump 501, which can temporarily hold water and reduce the possibility of the water storage bin 502 being driven by the air filtration fan 404. Both the air filtration fan 404 and the water pump 501 are arranged through the water storage bin 502.
[0082] In addition, a water connection pipeline 503 is connected between the water pump 501 and the main pipeline 201, which facilitates the water pump 501 to extract water from the main pipeline 201. The water connection pipeline 503 is arranged through the main pipeline 201.
[0083] Reference Figures 1-8 As shown, a pair of atomizing nozzles 504 are connected to the air filtration fan 404, which can atomize the water flow and increase the area of filtering dust.
[0084] Among them, a water through groove is dug in the air filtration fan 404 to facilitate the passage of water flow. Both the water storage bin 502 and the atomizing nozzle 504 are communicated with the water through groove.
[0085] Preferably, a number of water falling holes are dug on the pull-out plate 407, so that the water flow can pass through the pull-out plate 407, and at the same time, the possibility of dust flying in the cavity formed by the pull-out plate 407 and the main pipeline 201 is avoided.
[0086] Optionally, a water blocking plate 505 is connected inside the main pipeline 201, which can avoid the possibility of water entering the air distribution bin 203 and improve the cleanliness inside the air distribution bin 203.
[0087] Reference Figures 1-8 As shown, a wind wall mechanism 6 is arranged inside the main pipeline 201 for reducing the adhesion of external dust to the tea leaves. The wind wall mechanism 6 includes a guiding cone 601, which can guide the air flow so that the air flow can better contact the guiding blades 602.
[0088] Among them, a number of guiding vanes 602 are connected between the guiding cone 601 and the main pipeline 201, which can guide the air flow to form a spiral air flow. After entering the air distribution bin 203, the air flow can be more disordered, better fill the air distribution bin 203, and make the air discharged from the air distribution bin 203 more uniform.
[0089] Preferably, a pair of air wall clamps 603 are connected to both sides of the air distribution bin 203. The air flow can be discharged through the air wall slots. Through the guidance of the air wall clamps 603, an air wall can be formed, which can reduce the adhesion of dust to the tea leaves. Air wall slots matching the air wall clamps 603 are drilled on the air distribution bin 203.
[0090] A usage method of an intelligent tea blowing and cooling and sorting machine includes the following steps:
[0091] S1. Start the motor 306 to drive the ventilation fan 304 to rotate by the ventilation shaft 301, so that the outside air can enter the main pipeline 201.
[0092] S2. After the dust enters the main pipeline 201 along with the air, it is blocked by a pair of air filter meshes 401, and the filtered air continues to enter the air distribution bin 203 along the main pipeline 201.
[0093] S3. The flow of air blows the air filter fan 404 to rotate, driving the marbles 405 to continuously knock on the air filter meshes 401 to prevent the air filter meshes 401 from being blocked by dust.
[0094] S4. The dust falls on the draw-out plate 407. By pulling out the draw-out plate 407, the dust can fall into the cavity formed by the draw-out plate 407 and the tea blowing and cooling and sorting machine body 1.
[0095] S5. The flowing air can be guided by the guiding vanes 602 to form a spiral air flow. After entering the air distribution bin 203, it becomes more disordered and can be discharged from the air distribution bin 203 more evenly, improving the uniformity of tea cooling.
[0096] S6. Start the water pump 501 to extract the water in the main pipeline 201 and inject it into the water storage bin 502. The water is discharged through the atomizing nozzle 504 to form a water mist, further improving the dust filtration degree. After the water mist is discharged, it will be blocked by the water blocking plate 505 and return to the cavity formed by the draw-out plate 407 and the tea blowing and cooling and sorting machine body 1 through the water falling holes again.
[0097] It is obvious to those skilled in the art that the present invention is not limited to the details of the above-described exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Accordingly, all changes that fall within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.
[0098] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An intelligent tea blowing and cooling selection machine, characterized in that, Comprising: The tea leaf cold air blowing and sorting machine body (1); An air distribution mechanism (2) is arranged on the tea leaf cold air blowing and sorting machine body (1). The air distribution mechanism (2) includes a main pipeline (201), a main filter screen (202) is connected inside the main pipeline (201), an air distribution bin (203) is connected to the main pipeline (201), the air distribution bin (203) is connected to the tea leaf cold air blowing and sorting machine body (1), and a number of air distribution holes are drilled in the air distribution bin (203); A ventilation mechanism (3) is arranged inside the main pipeline (201) for extracting external air; An air filter mechanism (4) is arranged inside the main pipeline (201) for filtering external dust; A water filter mechanism (5) is connected to the main pipeline (201) for improving the filtering effect of dust; A wind wall mechanism (6) is arranged inside the main pipeline (201) for reducing the adhesion of external dust to the tea leaves. The wind wall mechanism (6) includes a guiding cone (601), a number of guiding pages (602) are connected between the guiding cone (601) and the main pipeline (201), a pair of wind wall clamps (603) are connected to both sides of the air distribution bin (203), and a wind wall groove matching the wind wall clamp (603) is drilled in the air distribution bin (203).
2. The intelligent tea blowing and cool air selecting machine according to claim 1, wherein The ventilation mechanism (3) includes a ventilation shaft (301), a ventilation filter screen (302) and a ventilation support (303) are respectively connected to both sides of the ventilation shaft (301), and both the ventilation filter screen (302) and the ventilation support (303) are connected to the main pipeline (201).
3. The intelligent tea blowing and cooling selection machine according to claim 2, wherein A pair of ventilation fans (304) are connected to the ventilation shaft (301). The ventilation shaft (301) passes through the ventilation filter screen (302), the ventilation support (303) and the ventilation fan (304). A limiting block (305) is connected to one end of the ventilation shaft (301) close to the ventilation filter screen (302).
4. The intelligent tea blowing and cool air selecting machine according to claim 3, characterized in that, A motor (306) is connected to the main pipeline (201), a driving pulley (307) is connected to the motor (306), a driven pulley (308) is connected to one end of the ventilation shaft (301), and a transmission belt (309) is connected between the driving pulley (307) and the driven pulley (308).
5. An intelligent tea blowing and cooling and sorting machine according to claim 4, characterized in that, The air filter mechanism (4) includes a pair of air filter screens (401). Both the pair of air filter screens (401) pass through the main pipeline (201). Force receiving blocks (402) are arranged on the sides of the pair of air filter screens (401) away from each other, and the force receiving blocks (402) are connected to the main pipeline (201).
6. The intelligent tea cooler and sorter according to claim 5, wherein An air filter air bag (403) is connected between the force receiving block (402) and the air filter screen (401). An air filter fan (404) is arranged between the pair of air filter screens (401). A pair of elastic balls (405) are connected to the air filter fan (404). A pair of support blocks (406) are connected inside the main pipeline (201). A draw plate (407) is arranged on the pair of support blocks (406), and the draw plate (407) passes through the main pipeline (201).
7. An intelligent tea blowing and cool air selecting machine according to claim 6, characterized in that, The water filtration mechanism (5) includes a water pump (501). A water storage bin (502) is provided on one side of the water pump (501). The air filtration fan (404) and the water pump (501) both penetrate through the water storage bin (502). A connecting water pipe (503) is connected between the water pump (501) and the main pipe (201), and the connecting water pipe (503) penetrates through the main pipe (201).
8. An intelligent tea blowing and cooling selection machine according to claim 7, characterized in that, A pair of atomizing nozzles (504) are connected to the air filtration fan (404). A water passing groove is dug in the air filtration fan (404). The water storage bin (502) and the atomizing nozzles (504) are both communicated with the water passing groove. A number of water falling holes are dug in the draw-out plate (407). A water blocking plate (505) is connected in the main pipe (201).
9. A method for using the intelligent tea blowing and cool air selecting machine according to claim 8, characterized in that, It includes the following steps: S1. Start the motor (306) to drive the ventilation shaft (301) to drive the ventilation fan (304) to rotate, so that the outside air can enter the main pipe (201). S2. After the dust enters the main pipe (201) along with the air, it is blocked by a pair of air filtration meshes (401). The filtered air continues to enter the air equalizing bin (203) along the main pipe (201). S3. The flow of the air blows the air filtration fan (404) to rotate, driving the marbles (405) to continuously knock on the air filtration meshes (401) to prevent the air filtration meshes (401) from being blocked by dust. S4. The dust falls on the draw-out plate (407). By pulling out the draw-out plate (407), the dust can fall into the cavity formed by the draw-out plate (407) and the tea cool air separation machine body (1). S5. The flowing air is guided by the guide vanes (602) to form a spiral air flow. After entering the air equalizing bin (203), it becomes more disordered and can be discharged from the air equalizing bin (203) more evenly, improving the evenness of tea cooling. S6. Start the water pump (501) to extract the water in the main pipe (201) and inject it into the water storage bin (502). The water is discharged through the atomizing nozzles (504) to form water mist, further improving the dust filtration degree. After the water mist is discharged, it will be blocked by the water blocking plate (505) and return to the cavity formed by the draw-out plate (407) and the tea cool air separation machine body (1) again through the water falling holes.
Citation Information
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