Flower washing device for rose tea processing
Through the design of linked soaking, sprinkling and mixing components, the problems of low flushing efficiency and waste of water resources in the existing rose tea processing equipment are solved, and an efficient and water-saving rose tea processing process is achieved, which improves processing efficiency and quality.
Patent Information
- Application Number
- CN202510698364.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-28
- Publication Date
- 2025-08-01
AI Technical Summary
The existing rose tea processing device has problems such as low efficiency in a single flushing method, large water consumption, waste of water resources and discontinuous operational links during the flushing process. It cannot effectively remove impurities on the surface of the flower and requires frequent manual intervention.
A device including a flushing tank and a flushing plate is designed. By lifting the components, the soaking and sprinkling components are linked, and the water in the flushing tank is soaked first to remove impurities. The soaking water can be reused. The sprinkling components are rinsed in a targeted manner, and automated operations are combined with the stirring components to achieve an orderly connection between soaking, stirring, rinsing and water control.
It improves the flushing efficiency and quality, reduces water consumption, reduces water resource consumption, simplifies the operation process, improves the processing efficiency and quality of rose tea, and reduces the intensity of manual labor.
Smart Images

Figure CN120394429A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of rose tea processing, in particular to a flower washing device for rose tea processing. Background Art
[0002] During the rose tea production process, rinsing the rose flowers with a flower rinsing device is an essential step. This is because rose flowers may be contaminated by dust, dirt, and other impurities during their growth. If these impurities are not effectively removed, they will affect the quality and taste of the tea and may even pose a potential threat to human health.
[0003] However, existing flower washing devices have certain drawbacks during use. Most existing flower washing devices use a single washing method, failing to combine immersion and showering. This single method either simply rinses the flower surface, failing to effectively remove impurities, or results in excessive water consumption and low washing efficiency. Furthermore, the soaking water cannot be recycled, resulting in a waste of water resources. Existing flower washing devices also lack close coordination between the various washing steps, requiring frequent manual intervention to complete different operations. For example, the soaking, stirring, rinsing, and water control steps cannot be performed automatically and continuously. Summary of the Invention
[0004] In view of the problems in the prior art, the present invention provides a flower washing device for processing rose tea.
[0005] The technical solution adopted by the present invention to solve its technical problems is: a flower washing device for processing rose tea, including a washing pool and a washing table. The washing pool is a square pool structure, and the washing table is horizontally lifted and matched in the washing pool. Support platforms are fixed at both ends of the top of the washing pool, and the top centers of the two support platforms are equipped with lifting components that drive the washing table to rise and fall. The rose flowers are poured into the washing table in the washing pool. Through the action of the lifting component, the washing table can be moved downward so that it is immersed in the clean water prepared in the washing pool, allowing the rose flowers to soak. After the soaking is completed, the washing table is lifted by the lifting component to separate the rose flowers from the water surface. The water of the rose flowers can be controlled through the water-permeable holes on the washing table. The tops of the two support platforms are hinged with flaps, and the ends of the two flaps away from the rinsing pool are equipped with shower assemblies. The rinsing pool and the shower assemblies cooperate to first use the water in the rinsing pool to soak and remove a large amount of impurities. The water used for soaking can be reused, and the shower assemblies are used for targeted rinsing after soaking. Compared with the traditional single rinsing method, less water is used and the rinsing is cleaner.
[0006] Among them, the sprinkling assembly includes a spray pipe and spray nozzles. The spray pipe is fixed at the end of the flap, and a number of spray nozzles are arranged on the spray pipe at equal intervals. Arranging a plurality of spray nozzles on the spray pipe at equal intervals can evenly spray the clear water for flushing on the flowers of the roses on the flushing table board. When the flap is turned outwards as the flushing table board is lifted, the spray pipe moves from the middle of the flushing pool towards the edge of the end, and a plurality of spray nozzles can cover the entire surface of the flushing table board.
[0007] Preferably, the cross-section of the flushing table board is the same as and sized to fit the internal cross-section of the flushing pool, and water-permeable holes are provided on the flushing table board.
[0008] Preferably, the lifting assembly includes a support frame, a lifting plate and a lifting rod. The support frame is vertically fixed at the end of the support table, the lifting plate is vertically and slidably engaged with the support frame, the lifting rod is hingedly engaged with the lifting plate, and a connecting block fixed to one end of the top of the flushing table board is hinged to the bottom of the lifting rod. The lifting rod lifts the flushing table board through the connecting block.
[0009] Preferably, the lifting assembly further includes a hydraulic cylinder. The hydraulic cylinder is vertically fixed in the support table, a hydraulic rod is provided at the top of the hydraulic cylinder, a push plate is connected to the top of the hydraulic rod, and the push plate is connected to the lifting plate.
[0010] Preferably, a slide rail is vertically fixed on one side of the support frame close to the lifting plate, and a slider is fixed on one side of the lifting plate close to the support frame. The slider is slidably engaged with the slide rail.
[0011] Preferably, push-pull rods are hinged at both ends of the top of the washing table, and the two push-pull rods are hinged to the two flaps at one end away from the washing table. When the lifting assembly drives the washing table to move upward, the washing table drives the flaps to flip outward through the push-pull rods. At this time, the shower assembly is turned on, and the clean water used for washing is sprayed on the rose flowers on the washing table through the nozzles on the spray pipes. The spray pipes slowly move from the middle of the washing pool to the edge of the end of the washing pool as the flaps rotate. The two spray pipes cooperate to fully rinse the rose flowers on the entire washing table. The lifting assembly of the device includes a support frame, a lifting plate and a lifting rod. The support frame is vertically fixed to the end of the support platform. The lifting plate is lifted and matched on the support frame and is ensured to be lifted and lowered smoothly by a slide rail and a slider. The hydraulic cylinder is vertically fixed in the support platform. The hydraulic rod at its top is connected to the push plate, which in turn drives the lifting plate to move, and then drives the washing table to lift and lower through the lifting rod. At the same time, push-pull rods hinged at each end of the top of the rinsing platform are respectively connected to two flaps, each equipped with a stirring assembly. The rotation of the flaps in turn affects the position and rinsing range of the shower assembly. During use, these components work together in a coordinated manner. The lifting assembly not only controls the elevation of the rinsing platform but also drives the flaps through the rinsing platform, ensuring the orderly operation of the stirring and shower assemblies. The entire rinsing process, from soaking and stirring to rinsing and water control, is seamlessly integrated, with each operational link seamlessly connected. Furthermore, the rinsing platform and the flaps are hinged via push-pull rods, forming a coordinated relationship. When the roses need to be introduced into the rinsing tank, the lifting assembly moves the rinsing platform downward, which, via the push-pull rods, rotates the flaps toward the tank. The stirring assembly's rotating rod then enters the water, stirring and washing. When the rinsing platform removes the roses from the tank, the flaps simultaneously flip outward, driving the shower assembly. This opens the shower assembly, allowing the roses on the rinsing platform to be rinsed. This integrated design of the flap and rinsing plate enables efficient operation, eliminating the need to individually control the position and movement of the stirring and showering components. During the soaking process, the stirring component is automatically lowered into the water for agitation, and after the soaking period, the showering component is automatically moved to the appropriate position for rinsing. The entire process is coordinated and orderly, reducing equipment idle time.
[0012] Preferably, a plurality of stirring components are installed on the two flaps, and the plurality of stirring components are all located in the middle of the flaps. Through the arrangement of the stirring components, during the soaking process of the rose flowers, the water can fully contact with the rose flowers, accelerating the separation of impurities and enhancing the cleaning effect of the soaking.
[0013] Preferably, the stirring assembly includes a rotating rod and a stirring drive motor. The rotating rod is rotatably engaged with the side of the flap close to the washing table, and the stirring drive motor is installed on the side of the flap away from the washing table, and the stirring drive motor is connected to the rotating rod through a rotating shaft. A stirring paddle is provided on the end of the rotating rod away from the flap. When the washing table moves downward and is immersed in the clean water in the washing pool, the washing table drives the flap to rotate toward the washing pool through the push-pull rod, so that the rotating rod with the stirring paddle of the stirring assembly is inserted into the water body of the washing pool. At this time, the stirring drive motor is used to drive the rotating rod to rotate, and the stirring paddle will stir the water in the washing pool where the roses are soaked.
[0014] Preferably, the top of the support platform is flush with the top of the rinsing pool, and the flap is hingedly engaged on the side of the support platform away from the rinsing pool. The flap is hinged on the side of the support platform away from the rinsing pool, and the top of the support platform is flush with the rinsing pool. This ensures that the flap can only reach a position parallel to the rinsing pool when it flips toward the rinsing pool. When the rinsing platform descends to deliver the roses into the water of the rinsing pool, the rinsing platform drives the flap to flip via the push-pull rod. After the flap flips to be parallel to the rinsing pool, the rotating rod of the stirring assembly is completely inserted into the water. At this time, the flap will not flip further, ensuring the stable operation of the stirring assembly.
[0015] Beneficial effects of the present invention:
[0016] (1) In the present invention, the cross section of the washing table of the flower washing device for processing rose tea is the same as the cross section of the washing pool and is adapted in size. A water-permeable hole is provided on the washing table, and the washing table can be lifted and lowered horizontally to fit in the washing pool. The rose flowers are poured onto the washing table in the washing pool. The washing table can be moved downward by the action of the lifting component to immerse the rose flowers in the clean water prepared in the washing pool, so that the rose flowers can be soaked. After the soaking is completed, the washing table is lifted by the lifting component to separate the rose flowers from the water surface. The water can be controlled for the rose flowers through the water-permeable holes on the washing table. The coordinated design of the washing pool and the washing table allows the rose flowers to be soaked and cleaned in an orderly manner during the subsequent water control operation. On the one hand, soaking can effectively remove some impurities in the rose flowers, making the cleaning more complete; on the other hand, timely water control after soaking is beneficial to subsequent processing and avoids the rose flowers being soaked in water for a long time, which may cause damage or affect the quality.
[0017] (2) In the present invention, the flushing pool and the shower assembly of the flower flushing device for processing rose tea are coordinated. The water in the flushing pool is first used to soak and remove a large amount of impurities. The water used for soaking can be reused, and the shower assembly is rinsed in a targeted manner after soaking. Compared with the traditional single flushing method, less water is used and the flushing is cleaner, which can effectively improve the cleaning efficiency and quality, reduce the consumption of water resources, and also reduce the wastewater discharge in the processing process. It is more friendly to the environment and provides an efficient and water-saving cleaning solution for the production and processing of rose tea.
[0018] (3) In the present invention, the lifting assembly of the flower washing device for processing rose tea includes a support frame, a lifting plate, and a lifting rod. The support frame is vertically fixed to the end of the support platform. The lifting plate is lifted and lowered on the support frame and is ensured to be lifted and lowered smoothly by a slide rail and a slider. The hydraulic cylinder is vertically fixed in the support platform. The hydraulic rod at the top of the hydraulic cylinder is connected to the push plate, which in turn drives the lifting plate to move, and then drives the washing plate to rise and fall through the lifting rod. At the same time, the push-pull rods hinged at both ends of the top of the washing plate are respectively hinged to two flaps, which are provided with a stirring assembly. The rotation of the flap affects the position of the shower assembly and the washing range. During use, the various structures cooperate and interact with each other. The lifting component can not only control the lifting and lowering of the washing table, but also drive the rotation of the flip plate through the washing table to realize the orderly operation of the stirring component and the sprinkling component. The entire washing process from soaking, stirring to washing and water control is completed in one go. Each operation link is closely connected and no frequent manual intervention is required, which greatly improves the washing efficiency, reduces manual operation errors and labor intensity, and ensures the continuity and stability of rose tea processing. It is an ingeniously designed, practical and efficient washing device that can effectively improve the overall efficiency and quality of rose tea processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present invention will be further described below with reference to the accompanying drawings and examples.
[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0021] Figure 2 This is a schematic diagram of the lifting component structure of the present invention.
[0022] Figure 3 This is a schematic structural diagram of the stirring assembly of the present invention.
[0023] Figure 4 Schematic diagram of the structure of the shower assembly of the present invention.
[0024] In the figure: 1. Flushing pool; 2. Flushing table board; 201. Water permeable holes; 3. Lifting assembly; 4. Support frame; 401. Slide rail; 402. Hydraulic cylinder; 403. Hydraulic rod; 404. Pushing plate; 5. Lifting plate; 501. Slide block; 502. Pull rod; 6. Flap; 601. Push-pull rod; 7. Stirring assembly; 701. Rotating rod; 702. Stirring blade plate; 703. Stirring drive motor; 8. Sprinkling assembly; 801. Sprinkler pipe; 802. Sprinkler head; 9. Support table. Specific embodiments
[0025] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.
[0026] As Figures 1 - 4 shown, a flower flushing device for processing rose tea according to the present invention includes a flushing pool 1 and a flushing table board 2. The flushing pool 1 is a square pool body structure, and the flushing table board 2 is horizontally lifted and lowered in cooperation within the flushing pool 1. At both ends of the top of the flushing pool 1, support tables 9 are fixedly installed. At the center of the top of the two support tables 9, a lifting assembly 3 for driving the flushing table board 2 to lift and lower is installed. Pour the rose flowers onto the flushing table board 2 in the flushing pool 1. Through the action of the lifting assembly 3, the flushing table board 2 can be moved downward to immerse it in the prepared clean water in the flushing pool 1, allowing the rose flowers to soak. After the soaking is over, the lifting assembly 3 is used to lift the flushing table board 2 again, so that the rose flowers are separated from the water surface. Through the water permeable holes 201 on the flushing table board 2, the rose flowers can be drained of water. This cooperative design of the flushing pool 1 and the flushing table board 2 enables the soaking and cleaning of the rose flowers and the subsequent water draining operation to proceed in an orderly manner. On the one hand, soaking can effectively remove some impurities in the rose flowers and make the cleaning more thorough; on the other hand, draining water in a timely manner after soaking is beneficial to subsequent processing, avoiding damage or affecting the quality of the rose flowers caused by long-term soaking in water, and at the same time facilitating the reuse of the soaked water, improving the utilization rate of water resources, reducing waste, and overall optimizing the flushing link in the processing of rose tea. At both ends of the top of the two support tables 9, flaps 6 are hinged. At one end of the two flaps 6 away from the flushing pool 1, sprinkling assemblies 8 are installed. The cooperation between the flushing pool 1 and the sprinkling assembly 8 first uses the water in the flushing pool 1 to soak and remove a large amount of impurities, and the soaking water can be reused. The sprinkling assembly 8 conducts targeted flushing after soaking. Compared with the traditional single flushing method, the water consumption is less, and the flushing is cleaner, which can effectively improve the cleaning efficiency and quality, reduce the consumption of water resources, and at the same time reduce the waste water discharge during the processing, being more friendly to the environment, and providing an efficient and water-saving cleaning solution for the production and processing of rose tea;
[0027] Among them, the sprinkling assembly 8 includes a spray pipe 801 and spray nozzles 802. The spray pipe 801 is fixed to the end of the flap 6, and a plurality of spray nozzles 802 are arranged at equal intervals on the spray pipe 801. The multiple spray nozzles 802 arranged at equal intervals on the spray pipe 801 can evenly spray the clear water for flushing on the flowers of the roses on the flushing table board 2. When the flap 6 is turned outwards as the flushing table board 2 is lifted, the spray pipe 801 moves from the middle of the flushing pool 1 towards the end edge, and the multiple spray nozzles 802 can cover the entire surface of the flushing table board 2. This uniform flushing method can ensure that each flower of the rose can be fully flushed by the water flow, effectively removing impurities, sediment, etc. that were not washed clean on the surface of the rose flower during the soaking process.
[0028] A further improvement of this embodiment lies in that the cross-section of the flushing table board 2 has the same shape and size as the internal cross-section of the flushing pool 1, and a water permeable hole 201 is provided on the flushing table board 2.
[0029] A further improvement of this embodiment lies in that the lifting assembly 3 includes a support frame 4, a lifting plate 5 and a lifting rod 502. The support frame 4 is vertically fixed to the end of the support table 9, the lifting plate 5 is vertically and slidably fitted on the support frame 4, the lifting rod 502 is hingedly fitted on the lifting plate 5, and a connecting block fixed to one end of the top of the flushing table board 2 is hinged to the bottom of the lifting rod 502. The lifting rod 502 lifts the flushing table board 2 through the connecting block.
[0030] A further improvement of this embodiment lies in that the lifting assembly 3 further includes a hydraulic cylinder 402. The hydraulic cylinder 402 is vertically fixed inside the support table 9, a hydraulic rod 403 is provided at the top of the hydraulic cylinder 402, a push plate 404 is connected to the top of the hydraulic rod 403, and the push plate 404 is connected to the lifting plate 5.
[0031] A further improvement of this embodiment lies in that a slide rail 401 is vertically fixed on one side of the support frame 4 close to the lifting plate 5, and a slide block 501 is fixed on one side of the lifting plate 5 close to the support frame 4. The slide block 501 is slidably fitted on the slide rail 401.
[0032] A further improvement of this embodiment is that push-pull rods 601 are hinged at both ends of the top of the washing table 2, and the two push-pull rods 601 are hinged to the two flaps 6 at one end away from the washing table 2. When the lifting component 3 drives the washing table 2 to move upward, the washing table 2 drives the flaps 6 to flip outward through the push-pull rods 601. At this time, the shower component 8 is turned on, and the clean water for washing is sprayed on the roses on the washing table 2 through the nozzle 802 on the spray pipe 801. The spray pipe 801 slowly moves from the middle of the washing pool 1 to the end edge of the washing pool 1 as the flap 6 rotates. The two spray pipes 801 cooperate to fully wash the roses on the entire washing table 2. The lifting assembly 3 of the device includes a support frame 4, a lifting plate 5, and a lifting rod 502. The support frame 4 is vertically fixed to the end of the support platform 9. The lifting plate 5 is lifted and lowered on the support frame 4, and is ensured to be lifted and lowered smoothly by the slide rail 401 and the slider 501. The hydraulic cylinder 402 is vertically fixed in the support platform 9. The hydraulic rod 403 at its top is connected to the push plate 404, which in turn drives the lifting plate 5 to move, and then drives the washing table 2 to rise and fall through the lifting rod 502. At the same time, the push-pull rods 601 hinged at both ends of the top of the washing table 2 are respectively hinged to the two flaps 6. The flaps 6 are provided with a stirring assembly 7. The rotation of the flaps 6 affects the position and washing range of the shower assembly 8. During use, the various components cooperate and interact with each other. The lifting assembly 3 not only controls the raising and lowering of the rinsing plate 2 but also drives the rotation of the flap 6 through the rinsing plate 2, achieving the orderly operation of the stirring assembly 7 and the shower assembly 8. The entire rinsing process, from soaking and stirring to rinsing and water control, is completed in one go. Each operational link is closely linked, eliminating the need for frequent manual intervention. This greatly improves rinsing efficiency, reduces manual errors and labor intensity, and ensures the continuity and stability of rose tea processing. This is an ingeniously designed, practical, and efficient rinsing device that can effectively improve the overall efficiency and quality of rose tea processing. Furthermore, the rinsing plate 2 and the flap 6 are hingedly connected by a push-pull rod 601, forming a linkage relationship. When the roses need to be placed in the water of the rinsing tank 1, the lifting assembly 3 drives the rinsing plate 2 downward. The rinsing plate 2 drives the flap 6 to rotate toward the rinsing tank 1 via the push-pull rod 601. At this time, the rotating rod 701 of the stirring assembly 7 is inserted into the water to stir and clean the roses. When the rinsing plate 2 removes the roses from the water of the rinsing tank 1, the flap 6 simultaneously turns outward, driving the shower assembly 8 to move. At this time, the shower assembly 8 is turned on and the roses on the rinsing plate 2 can be rinsed. This linkage design of the flap 6 and the rinsing plate 2 realizes an efficient operation process. There is no need to separately control the position and movement of the stirring assembly 7 and the shower assembly 8. The corresponding operations can be automatically completed by raising and lowering the rinsing plate 2, which greatly simplifies the operation steps and improves work efficiency.During the soaking process, the stirring assembly 7 can be automatically sent into the water for stirring, and after the soaking is completed, the sprinkling assembly 8 can be automatically moved to a suitable position for rinsing. The whole process is coordinated and orderly, reducing the idle time of the equipment and improving the utilization rate of the equipment. It provides an efficient and convenient rinsing method for the processing of rose tea, which helps to improve the processing quality and production efficiency of rose tea.
[0033] A further improvement of this embodiment is that a number of stirring assemblies 7 are installed on the two flap plates 6, and a number of stirring assemblies 7 are all located in the middle of the flap plate 6. Through the setting of the stirring assembly 7, during the soaking process of the rose flowers, the water can be fully contacted with the rose flowers, accelerating the detachment of impurities, enhancing the cleaning effect of soaking, making the rose flowers cleaner, laying a good foundation for the subsequent processing procedures, improving the quality of rose tea, and this stirring method can avoid the problems of uneven and incomplete cleaning that may occur by relying solely on soaking, so that each rose flower can be effectively cleaned, improving the overall cleaning quality.
[0034] A further improvement of this embodiment is that the stirring assembly 7 includes a rotating rod 701 and a stirring drive motor 703. The rotating rod 701 is rotationally fitted on the side of the flap plate 6 close to the rinsing table plate 2, and the stirring drive motor 703 is installed on the side of the flap plate 6 away from the rinsing table plate 2, and the stirring drive motor 703 is connected to the rotating rod 701 through a rotating shaft. A stirring blade 702 is provided at one end of the rotating rod 701 away from the flap plate 6. When the rinsing table plate 2 moves downward and is immersed in the clear water in the rinsing pool 1, the rinsing table plate 2 drives the flap plate 6 to rotate towards the rinsing pool 1 through the push-pull rod 601, so that the rotating rod 701 of the stirring assembly 7 with the stirring blade 702 is inserted into the water body of the rinsing pool 1. At this time, the stirring drive motor 703 is used to drive the rotating rod 701 to rotate, and the stirring blade 702 will stir the water in the rinsing pool 1 in which the rose flowers are soaked.
[0035] A further improvement of this embodiment is that the top of the support platform 9 is flush with the top of the rinsing pool 1, and the flap plate 6 is hingedly fitted on the side of the top of the support platform 9 away from the rinsing pool 1. The flap plate 6 is hinged on the side of the top of the support platform 9 away from the rinsing pool 1, and the top of the support platform 9 is flush with the rinsing pool 1, which makes the flap plate 6 can only reach a position parallel to the rinsing pool 1 when it flips towards the rinsing pool 1. When the rinsing table plate 2 descends to send the rose flowers into the water body of the rinsing pool 1, the rinsing table plate 2 drives the flap plate 6 to flip through the push-pull rod 601. After the flap plate 6 flips to be parallel to the rinsing pool 1, the rotating rod 701 of the stirring assembly 7 just completely inserts into the water body. At this time, the flap plate 6 will not further flip, ensuring the stable operation of the stirring assembly 7.
[0036] During use, the rose petals are first poured onto the rinsing platform 2 in the rinsing tank 1. Next, the lifting assembly 3 is activated, driving the hydraulic cylinder 402 to raise and lower the hydraulic rod 403. The hydraulic rod 403, via the push plate 404, drives the lifting plate 5 to slide on the slide rail 401 of the support frame 4. The lifting rod 502 then raises or lowers the rinsing platform 2. As the rinsing platform 2 moves downward and submerges in the clean water in the rinsing tank 1, the rose petals begin to soak. At this point, the rinsing platform 2, via the push-pull rod 601, drives the flap 6 to rotate toward the rinsing tank 1. The rotating rod 701 of the stirring assembly 7 on the flap 6, which has stirring paddles 702, is inserted into the water of the rinsing tank 1. The stirring drive motor 703 drives the rotating rod 701 to rotate, stirring the stirring paddles 702 to stir and clean the soaked rose petals. After the soaking and cleaning is complete, the stirring assembly 7 is turned off, and the rinsing platform 2 is lifted again by the lifting assembly 3 to remove the rose petals from the water. During this process, the rinsing platen 2 is lifted upward, causing the flap 6 to flip outward, simultaneously opening the shower assembly 8. Rinse water flows through the nozzles 802 on the spray pipes 801, showering the roses on the rinsing platen 2 and rinsing the roses. As the flap 6 rotates, the spray pipes 801 slowly move from the center of the rinsing tank 1 toward the end edge of the tank 1. The two spray pipes 801 cooperate to rinse the roses on the entire rinsing platen 2. When the spray pipes 801 at the top of the flap 6 are no longer above the rinsing tank 1, the rinsing platen 2 completely removes the roses from the water surface of the rinsing tank 1. At this point, it remains stationary for a period of time, and the water flow from the soaked, cleaned, and rinsed roses is controlled using the permeable holes 201 on the rinsing platen 2.
[0037] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above-described embodiments. The above-described embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A flower rinsing device for processing rose tea, comprising a rinsing pool (1) and a rinsing table board (2), characterized in that: The flushing pool (1) is a square pool structure. The flushing table board (2) is horizontally lifted and lowered and fitted inside the flushing pool (1). At both ends of the top of the flushing pool (1), support platforms (9) are fixedly installed. At the centers of the tops of the two support platforms (9), lifting components (3) for driving the flushing table board (2) to lift are installed. At the tops of the two support platforms (9), flap plates (6) are hinged. At one end of each of the two flap plates (6) away from the flushing pool (1), sprinkling components (8) are installed. Among them, the sprinkling component (8) includes a spray pipe (801) and spray nozzles (802). The spray pipe (801) is fixed at the end of the flap plate (6). A number of spray nozzles (802) are arranged at equal intervals on the spray pipe (801).
2. The flower rinsing device for processing rose tea according to claim 1, wherein: The cross-section of the flushing table board (2) is the same as the shape of the inner cross-section of the flushing pool (1) and is of a size suitable for fitting. Water-permeable holes (201) are formed in the flushing table board (2).
3. The flower rinsing device for processing rose tea according to claim 1, characterized in that: The lifting component (3) includes a support frame (4), a lifting plate (5) and a lifting pull rod (502). The support frame (4) is vertically fixed at the end of the support platform (9). The lifting plate (5) is lifted and lowered and fitted on the support frame (4). The lifting pull rod (502) is hinged and fitted on the lifting plate (5). At the bottom of the lifting pull rod (502), a connecting block fixed to one end of the top of the flushing table board (2) is hinged. The lifting pull rod (502) lifts the flushing table board (2) through the connecting block.
4. The flower rinsing device for processing rose tea according to claim 3, characterized in that: The lifting component (3) further includes a hydraulic cylinder (402). The hydraulic cylinder (402) is vertically fixed inside the support platform (9). At the top of the hydraulic cylinder (402), a hydraulic rod (403) is provided. At the top of the hydraulic rod (403), a push plate (404) is connected. The push plate (404) is connected to the lifting plate (5).
5. The flower rinsing device for processing rose tea according to claim 4, characterized in that: On one side of the support frame (4) close to the lifting plate (5), a slide rail (401) is vertically fixed. On one side of the lifting plate (5) close to the support frame (4), a slider (501) is fixed. The slider (501) is slidably fitted on the slide rail (401).
6. The flower rinsing device for processing rose tea according to claim 2, characterized in that: At both ends of the top of the flushing table board (2), push-pull rods (601) are hinged. At one end of each of the two push-pull rods (601) away from the flushing table board (2), they are respectively hinged to the two flap plates (6).
7. The flower rinsing device for processing rose tea according to claim 1, wherein: A number of stirring components (7) are installed on the two flap plates (6). A number of stirring components (7) are all located in the middle of the flap plates (6).
8. A flower rinsing device for processing rose tea according to claim 7, characterized in that: The stirring component (7) includes a rotating rod (701) and a stirring driving motor (703). The rotating rod (701) is rotatably fitted on one side of the flap plate (6) close to the flushing table board (2). The stirring driving motor (703) is installed on one side of the flap plate (6) away from the flushing table board (2). And the stirring driving motor (703) is connected to the rotating rod (701) through a rotating shaft. On the end of the rotating rod (701) away from the flap plate (6), stirring blade plates (702) are provided.
9. The flower rinsing device for processing rose tea according to claim 1, wherein: The top of the support platform (9) is flush with the top of the flushing pool (1). The flap plate (6) is hinged and fitted on one side of the top of the support platform (9) away from the flushing pool (1).