A wind blowing device
The lifting and rotating mechanism and multi-angle blowing mechanism of the air blowing device solve the problem of low efficiency in cleaning and drying of traditional decoction pots, realize all-round drying and automated production of decoction pots, and save energy and protect the environment.
Patent Information
- Application Number
- CN202510073845.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2045-01-17
AI Technical Summary
The traditional method of cleaning medicine decoction pots is time-consuming and water-consuming, relies on manual operation and is inefficient, and the drying process is labor-intensive, making it difficult to achieve automation and efficient drying.
A wind blowing device is designed, which includes a frame, a conveying line, a lifting and rotating mechanism and a blower mechanism. The decoction pot is rotated by the lifting and rotating mechanism, and the blower mechanism blows air from multiple angles to achieve all-round drying.
It improves the drying efficiency and uniformity of the decoction pot, reduces manual operations, saves energy, and improves production efficiency and automation level.
Smart Images

Figure CN119803036B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of traditional Chinese medicine production, in particular to a wind blowing device. Background Art
[0002] During the preparation of traditional Chinese medicine decoctions, the decoction pot, a crucial piece of equipment, is typically equipped with a lid to seal the decoction process and prevent the active ingredients from evaporating or contaminating the environment. Decoction pots are typically used in a cyclical manner: after each decoction, the decoction is poured out and the residue is removed from the pot. The pot is then cleaned and dried before the next decoction. This cleaning process is a key step in ensuring that the medicine remains uncontaminated and its efficacy is guaranteed.
[0003] At present, the cleaning method of decoction pot is usually to directly place the decoction container into the cleaning tank for manual cleaning. At this time, the decoction pot will be immersed in cleaning liquid or water, and scrubbed and cleaned by manual operation to remove the residual medicinal residue and liquid medicine in the pot. However, this traditional cleaning method has some significant shortcomings, especially in terms of water resource consumption and manual operation efficiency. First, since the decoction pot cleaning process requires a large amount of water for rinsing, this not only increases water consumption but is also not conducive to environmental protection. Secondly, since the cleaning process relies on manual operation, the decoction container needs to be fished out of the cleaning tank and reassembled. This process is not only time-consuming, but also prone to improper operation, resulting in uneven cleaning effect, affecting the quality of the next decoction. More importantly, this cleaning method relies entirely on manual labor, which not only increases labor intensity, but also limits the application of automated cleaning technology, making it difficult to improve production efficiency and reduce labor costs.
[0004] After cleaning, the decoction pot will have residual water on its surface, which requires a long time to dry naturally. In some places, a dedicated person is assigned to blow the decoction pot with a handheld blower. However, manual blow-drying of the decoction pot with a handheld blower is labor-intensive and easily fatigued. Using a single handheld blower is inefficient and takes a long time to fully dry the decoction pot. Summary of the Invention
[0005] The technical problem to be solved by the present invention is to solve the problem that it takes a long time to fully dry the medicine decocting pot.
[0006] In order to solve the above technical problems, the present invention provides an air blowing device, comprising: a frame; a conveyor line, which is arranged on the frame, and a transport plate and a clamping member are provided on the conveyor line, and the clamping member is arranged on the transport plate, and after the clamping member clamps the bottom of the blown object, the bottom of the blown object is suspended and placed on the transport plate, and the conveyor line transports the blown object to a drying position; a lifting and rotating mechanism, which is arranged on the frame, and when the transport plate is in the drying position, the lifting and rotating mechanism is detachably connected to the bottom of the transport plate, and the transport plate is lifted by the lifting and rotating mechanism and then rotated; a blowing mechanism, which is arranged on the frame, and the blowing mechanism is provided with an upper air outlet, a side air outlet and a lower air outlet, the upper air outlet faces the top of the blown object after it is lifted, the side air outlet faces the side of the blown object after it is lifted, and the lower air outlet faces the bottom of the blown object after it is lifted.
[0007] Furthermore, the air blowing mechanism includes a fan, a first air duct, a second air duct and a third air duct, the fan is arranged on the frame, the first air duct and the second air duct are connected to the fan output end, one end of the third air duct is connected to the second air duct, the upper air outlet is rotatably set on the first air duct, the side air outlet is rotatably set on the second air duct, and the lower air outlet is rotatably set on the third air duct, and the angles of the upper air outlet, the side air outlet and the lower air outlet towards the blown object can be adjusted.
[0008] Furthermore, the plurality of side air vents are rotatably arranged on the second air duct, and the heights of the plurality of side air vents are equidistantly distributed along the side of the raised object to be blown.
[0009] Furthermore, the fan includes a first fan and a second fan, the first fan and the second fan are both arranged on the frame, the first fan and the second fan are respectively located on both sides of the lifting and rotating mechanism, the first air duct is connected to the output end of the first fan, and the second air duct is connected to the output end of the second fan.
[0010] Furthermore, the side air vents are in the shape of an elongated strip, and the side air vents are tangent to the side of the raised object being blown.
[0011] Furthermore, it also includes baffles, which are arranged on the frame, and the baffles are located on both sides of the air-drying position, and the length direction of the baffles is parallel to the transportation direction of the conveyor line.
[0012] Furthermore, the lifting and rotating mechanism includes a supporting plate, a rotating cylinder driving the supporting plate to rotate, and a lifting cylinder driving the supporting plate to lift and lower. A connecting piece is provided on the supporting plate. When the transport plate is in the air-drying position, the connecting piece is detachably connected to the bottom of the transport plate.
[0013] Furthermore, the transport plate is provided with a plurality of protrusions, and the plurality of protrusions are distributed in an array along the axis of the transport plate, and the protrusions are against the bottom surface of the blown object.
[0014] Furthermore, the plurality of connection holes are distributed at equal intervals along the edge of the bottom surface of the transport plate.
[0015] Furthermore, a water collection trough is provided on the top of the transport plate, the water collection trough is located below the object being blown, and the diameter of the water collection trough is larger than the diameter of the object being blown.
[0016] Compared with the prior art, the wind blowing device according to the embodiment of the present invention has the following beneficial effects: by arranging a lifting and rotating mechanism on the frame, when the blown object is in the air-drying position, the lifting and rotating mechanism can be docked with the transport plate, so that the blown object clamped by the transport plate is lifted up and then rotated. At the same time, the wind blowing mechanism blows air on the top, sides and bottom plate of the blown object. Since the blown object is rotating, the wind force can act evenly on various positions of the blown object. Under the simultaneous action of the upper air outlet, side air outlet and lower air outlet, the all-round drying of the blown object is ensured, which greatly improves the drying effect and efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a three-dimensional diagram of the wind blowing device provided by the present invention;
[0018] Figure 2 This is a front view of the wind blowing device provided by the present invention;
[0019] Figure 3 It is a left side view of the wind blowing device provided by the present invention;
[0020] Figure 4 is a top view of the wind blowing device provided by the present invention;
[0021] Figure 5 It is a front view of the lifting and rotating mechanism of the wind blowing device provided by the present invention.
[0022] The corresponding relationship between the reference numerals and component names is as follows:
[0023] 1. Frame; 2. Conveyor line; 21. Transport plate; 22. Clamping piece; 23. Bump; 201. Connecting hole; 202. Water trough; 3. Lifting and rotating mechanism; 31. Supporting plate; 311. Connecting piece; 32. Rotating cylinder; 33. Lifting cylinder; 4. Blowing mechanism; 41. Fan; 411. First fan; 412. Second fan; 42. First air duct; 43. Second air duct; 44. Third air duct; 401. Upwind inlet; 402. Side wind outlet; 403. Downwind inlet; 5. Baffle. DETAILED DESCRIPTION
[0024] The following description of exemplary embodiments of the present invention is made in conjunction with the accompanying drawings, and various details of the embodiments of the present invention are included to facilitate understanding. These details should be considered as merely exemplary. Therefore, it should be appreciated by those skilled in the art that various changes and modifications may be made to the embodiments described herein without departing from the scope of the present invention. Similarly, for the sake of clarity and conciseness, descriptions of well-known functions and structures are omitted in the following description.
[0025] like Figures 1 to 5 As shown, an embodiment of the present invention discloses a wind blowing device, comprising: a frame 1, a conveying line 2, a lifting and rotating mechanism 3 and a wind blowing mechanism 4.
[0026] Among them, the conveyor line 2 is arranged on the frame 1, and a transport plate 21 and a clamping member 22 are provided on the conveyor line 2. The clamping member 22 is arranged on the transport plate 21. After the clamping member 22 clamps the bottom of the blown object, the bottom of the blown object is suspended on the transport plate 21, and the conveyor line 2 transports the blown object to the air-drying position; the lifting and rotating mechanism 3, the lifting and rotating mechanism 3 is arranged on the frame 1, and when the transport plate 21 is in the air-drying position, the lifting and rotating mechanism 3 is detachably connected to the bottom of the transport plate 21, and the transport plate 21 is lifted by the lifting and rotating mechanism 3 and rotated; the blowing mechanism 4, the blowing mechanism 4 is arranged on the frame 1, and the blowing mechanism 4 is provided with an upper air outlet 401, a side air outlet 402 and a lower air outlet 403. The upper air outlet 401 faces the top of the blown object after it is lifted, the side air outlet 402 faces the side of the blown object after it is lifted, and the lower air outlet 403 faces the bottom of the blown object after it is lifted.
[0027] The wind blowing device of the present application is provided with a lifting and rotating mechanism 3 on the frame 1. When the blown object is in the air-drying position, the lifting and rotating mechanism 3 docks with the transport plate 21, so that the blown object clamped by the transport plate 21 is lifted and then rotated. At the same time, the blowing mechanism 4 blows air to the top, sides and bottom plate of the blown object. Since the blown object is rotating, the wind force can act evenly on all positions of the blown object. Under the simultaneous action of the upper air port 401, the side air port 402 and the lower air port 403, the all-round drying of the blown object is ensured, greatly improving the drying effect and efficiency. It should be noted that the blown object can be one of a decoction pot, medicinal materials wrapped in a mesh bag, and a material cylinder.
[0028] The traditional drying method may cause uneven drying and wind force concentrated on one side. However, the present invention uses the lifting and rotating mechanism 3 to lift the medicine decocting pot on the transport plate 21 and then rotate it. Multiple air vents can blow the medicine decocting pot in multiple directions to dry it, so that the residual water in the medicine decocting pot is quickly blown dry. The multi-angle wind blowing effectively solves the problem of wind force concentrated on one side, so that the medicine decocting pot is completely dried in a relatively short time. By setting up an automated conveyor line 2 and a clamping member 22, the medicine decocting pot can be automatically transported to the air-drying position, and the pot body is raised by the lifting and rotating mechanism 3 to facilitate the rotation of the pot body, which greatly reduces manual operation time and labor intensity. It is particularly suitable for traditional Chinese medicine production lines and greatly improves production efficiency. Automated drying reduces manual intervention, not only improves work efficiency, but also avoids errors that may occur during manual operation, such as the medicine decocting pot not being completely dried.
[0029] By equipping the air blower mechanism 4 with an upper air vent 401, a side air vent 402 and a lower air vent 403, the top, side and bottom of the medicine decocting pot can be blown comprehensively, effectively avoiding the problem of wind force being concentrated on a certain side in the traditional blowing method, ensuring that each part of the medicine decocting pot can be evenly affected by the wind force, and improving the uniformity of drying. At the same time, the rotation and lifting process of the medicine decocting pot enables it to freely adjust the angle when air-drying, further optimizing the air circulation and air-drying effect. Since a plurality of air vents are provided and the medicine decocting pot is positioned and rotated by the lifting and rotating mechanism 3, the air blower mechanism 4 can more effectively concentrate the wind force on the surface of the medicine decocting pot, thereby reducing the waste of wind force. This helps to save energy consumption, improve air-drying efficiency, and reduce unnecessary energy waste. In addition, due to the use of the automatic control of the conveyor line 2, compared with manual operation, each drying process can be accurately controlled, avoiding repeated operations and further saving energy.
[0030] By being equipped with a conveyor line 2, the medicine decocting pot can be automatically conveyed to the air-drying position, and the entire air-drying process is completed by the lifting and rotating mechanism 3 and the air-blowing mechanism 4. Through full-automatic control, not only is manual intervention reduced, but the accuracy and stability of the production process are also improved, and the automation and intelligence level of the production line are improved. The conveyor line 2 can be seamlessly connected to the existing production line, further improving production efficiency and automation level, and adapting to modern large-scale. Through the innovative combination of a multi-angle air-blowing device, a lifting and rotating mechanism and an automatic conveying system, the present invention effectively improves the drying efficiency, uniformity and automation level of the medicine decocting pot, reduces the intervention of manual operation, saves time and energy, optimizes the production process, and can improve operational safety and extend the service life of the equipment. It not only adapts to the needs of modern production, but also has high economic value and practicality.
[0031] Specifically, the downwind vent 403 is in the shape of an elongated strip, and is parallel to the bottom surface of the decoction pot and the upper surface of the transport plate. The elongated downwind vent 403 dries the bottom surface of the decoction pot and the transport plate at the same time.
[0032] like Figure 1 、 Figure 3 and Figure 4 As shown, in an optional embodiment of the present invention, the blowing mechanism 4 includes a fan 41, a first air duct 42, a second air duct 43 and a third air duct 44, the fan 41 is arranged on the frame 1, the first air duct 42 and the second air duct 43 are connected to the output end of the fan 41, one end of the third air duct 44 is connected to the second air duct 43, the upper air outlet 401 is rotatably set on the first air duct 42, the side air outlet 402 is rotatably set on the second air duct 43, and the lower air outlet 403 is rotatably set on the third air duct 44, and the angles of the upper air outlet 401, the side air outlet 402 and the lower air outlet 403 toward the decoction pot can be adjusted.
[0033] By providing an upper air vent 401, a side air vent 402, and a lower air vent 403 on the first air duct 42, the second air duct 43, and the third air duct 44, respectively, and adjusting the angles of these air vents toward the medicine decoction pot, the medicine decoction pot can be blown from different directions and angles. This ensures that the medicine decoction pot receives wind from all directions during the air drying process, significantly improving the drying efficiency and avoiding the drawback of conventional air blowing devices that only blow air from a single direction.
[0034] Through the reasonable layout of the first air duct 42, the second air duct 43 and the third air duct 44, the fan 41 distributes the wind power to each air outlet through multiple pipes, ensuring that the wind power is evenly distributed on the top, sides and bottom of the decoction pot. The function of adjusting the angle of the air outlet allows the wind power to be directed according to the different shapes and drying requirements of the decoction pot, which can avoid the problem of wind power being concentrated on a certain side in the traditional blowing method, and ensure that the drying effect is more uniform. Since the angle of the air outlet is adjustable, the operator can adjust the direction of the air outlet according to the actual situation and needs of the decoction pot. This flexibility enables the equipment to adapt to decoction pots of different sizes and shapes, providing a more accurate and efficient air-drying effect. By adjusting the direction of the air outlet, the wind power distribution can be accurately adjusted so that the wind power is concentrated on the surface of the decoction pot, avoiding wind power waste. This not only improves the drying efficiency, but also effectively reduces energy consumption, meets the requirements of energy conservation and environmental protection, and helps to reduce operating costs in the production process.
[0035] By arranging the fan 41 on the frame 1, the wind can be directly transmitted to the upper air port 401 and the side air port 402 through the first air duct 42 and the second air duct 43. By adjusting the angles of these air ports, the intensity and direction of the wind can be effectively controlled, ensuring that the wind is exerted to the maximum extent, thereby improving the drying effect of the decoction pot and shortening the drying time. The fan 41, the air duct, and the adjustable air ports not only achieve a multi-directional and uniform distribution of wind, but also improve drying efficiency, energy saving, and adaptability of the equipment. The flexible wind force adjustment function ensures that the decoction pot dries more evenly and quickly, and enhances the automation and intelligence level of the entire production line.
[0036] like Figure 1 and Figure 4 As shown, in an optional embodiment of the present invention, a plurality of side air vents 402 are rotatably arranged on the second air duct 43, and the heights of the plurality of side air vents 402 are equidistantly distributed along the side of the raised decoction pot.
[0037] By having multiple side vents 402 evenly distributed along the sides of the medicine decocting pot and being rotatably arranged on the second air duct 43, it is ensured that the wind can evenly act on the sides of the medicine decocting pot. The evenly distributed vents can avoid the problem of uneven wind force in traditional designs, ensuring that the sides of the medicine decocting pot can be evenly exposed to wind during the drying process, thereby improving the drying efficiency and effect. The rotation setting of the side vents 402 provides a more flexible wind force adjustment function. The operator can adjust the angle of the side vents 402 as needed so that the wind can be blown to different areas of the medicine decocting pot more accurately. The flexible adjustment function allows the air blowing mechanism 4 to perform directional blowing according to the shape and size of the medicine decocting pot, the air-drying position, and the drying requirements, further optimizing the drying process.
[0038] By distributing multiple side vents 402 equidistantly along the sides of the medicine decoction pot, wind can be applied evenly across the entire side of the pot, helping to improve drying uniformity and avoiding problems such as localized overdrying or incomplete evaporation of moisture. This effectively enhances the drying effect of the pot and shortens drying time. By providing multiple rotating side vents 402 on the second air duct 43 and distributing them equidistantly along the sides of the pot, the uniformity and adjustable flexibility of wind force are fully improved, enhancing the stability and energy efficiency of the drying effect. This design not only optimizes wind force distribution and shortens drying time, but also improves the adaptability of the system, meeting the requirements of modern production lines for high efficiency, energy saving, and intelligence, and possesses significant practical value and technical advantages.
[0039] like Figure 1 and Figure 3As shown, in an optional embodiment of the present invention, the fan 41 includes a first fan 411 and a second fan 412, the first fan 411 and the second fan 412 are both arranged on the frame 1, the first fan 411 and the second fan 412 are respectively located on both sides of the lifting and rotating mechanism 3, the first air duct 42 is connected to the output end of the first fan 411, and the second air duct 43 is connected to the output end of the second fan 412.
[0040] By adopting a combination of a first blower 411 and a second blower 412, located on either side of the lifting and rotating mechanism 3, a more powerful and stable wind power supply can be provided to the medicine decoction pot. The coordinated operation of the two blowers 41 effectively improves the stability and continuity of the wind power output, thereby ensuring that the medicine decoction pot receives continuous and uniform wind power support throughout the drying process. The first blower 411 and the second blower 412 are connected to the output end of the blower 41 via a first air duct 42 and a second air duct 43, respectively, providing a more flexible wind power regulation function. By independently controlling the operation of the two blowers 41, wind power can be adjusted in different areas to meet the drying needs of different medicine decoction pots, thereby improving the drying effect and efficiency. The first blower 411 and the second blower 412 provide wind power to both sides of the medicine decoction pot, avoiding the problem of uneven wind power caused by only using a single blower 41 in traditional devices. The coordinated action of the two blowers 41 ensures that the wind power evenly covers different areas of the medicine decoction pot, thereby preventing local overheating or incomplete evaporation of moisture, and improving the consistency and uniformity of the drying effect. The installation of two fans 41 not only effectively prevents system downtime caused by the failure of a single fan 41, but also allows for a replacement in the event of a failure, ensuring the long-term stable operation of the device. Multiple fans 41 increase system redundancy and further enhance equipment reliability.
[0041] By independently controlling the first blower 411 and the second blower 412, the power of the blower 41 can be adjusted according to the specific needs of the decoction pot to avoid unnecessary energy waste. When the wind demand is low, only some blowers 41 can be enabled to further save energy and reduce operating costs. By arranging the blowers 41 on the frame 1 and distributing them on both sides of the lifting and rotating mechanism 3, the structure is more compact and clear, simplifying daily operation and maintenance work. The operator can more easily access the blower 41 and perform necessary inspections and maintenance to ensure the normal operation of the equipment. By adopting a combination of the first blower 411 and the second blower 412, and respectively located on both sides of the lifting and rotating mechanism 3, and connected by an independent air duct, the stability, flexibility and uniformity of the wind supply are effectively improved.
[0042] In an optional embodiment of the present invention, the side vents 402 are elongated, and the side vents 402 are tangent to the side of the medicine decoction pot after it is raised. By setting the side vents 402 to be elongated, a more uniform wind distribution can be provided, ensuring that the side of the medicine decoction pot is more evenly affected by the wind, thereby improving the drying efficiency. By optimizing the direction of the vents, the wind can more effectively cut into the side of the medicine decoction pot, promote the drying of the medicinal materials in the pot, and avoid local overheating or incomplete evaporation of moisture. The tangent of the side vents 402 to the side of the medicine decoction pot allows the wind to act directly on the side surface. The reasonable vent angle reduces wind fluctuations, reduces wind waste, and improves the efficiency of wind use.
[0043] like Figure 1 and Figure 3 As shown, in an optional embodiment of the present invention, a baffle 5 is further included. The baffle 5 is arranged on the frame 1 and is located on both sides of the air-drying position. The length direction of the baffle 5 is parallel to the transportation direction of the conveyor line 2.
[0044] By setting the baffle 5 on both sides of the air-drying position, the wind is effectively guided to the air-drying position, blocking the water droplets that drift with the wind, and preventing the wind from dispersing, ensuring that the wind force of the decoction pot is concentrated on the target area during the drying process, and improving the drying efficiency. The baffle 5 can block unnecessary wind flow, prevent wind force from leaking out, ensure that the wind force can act more effectively on the decoction pot, and improve the overall drying effect and uniformity. The baffle 5 reduces the ineffective loss of wind force by optimizing the air flow path, improves the utilization efficiency of wind force, saves energy and reduces operating costs. The baffle 5 can effectively prevent the wind force from excessively affecting the sides and other sensitive parts of the decoction pot, reduces wear and tear, and extends the service life of the system. The baffle 5 increases the stability of the air flow, reduces the fluctuation of the drying effect caused by uneven wind force, and helps to improve the overall operational stability and consistency of the equipment. The baffle 5 is set parallel to the transport direction of the conveyor line 2, making the device smoother when performing material transportation and air-drying operations, reducing interference and obstruction, and optimizing the operating process of the equipment.
[0045] like Figure 4 and Figure 5 As shown, in an optional embodiment of the present invention, the lifting and rotating mechanism 3 includes a supporting plate 31, a rotating cylinder 32 for driving the supporting plate 31 to rotate, and a lifting cylinder 33 for driving the supporting plate 31 to lift and lower. A connecting piece 311 is provided on the supporting plate 31. When the transport plate 21 is in the air-drying position, the connecting piece 311 is detachably connected to the bottom of the transport plate 21.
[0046] The detachable connection between the supporting plate 31 and the transport plate 21 facilitates the loading and unloading operations of the transport plate 21, reduces the complexity of manual intervention, and improves the efficiency and safety of the operation. Through the coordinated use of the rotating cylinder 32 and the lifting cylinder 33, the lifting and rotating mechanism 3 can ensure the smooth lifting and rotation of the supporting plate 31, ensure the stability during the air-drying process, and avoid affecting the drying effect due to shaking or uneven position of the equipment. The lifting and rotating functions of the supporting plate 31 allow the transport plate 21 to be accurately rotated in the air-drying position. By adjusting the height, the effect of the wind force contacting the decoction pot is optimized, and the uniformity and efficiency of the drying effect are improved. The detachable connection between the supporting plate 31 and the bottom of the transport plate 21 facilitates regular cleaning and maintenance, which not only helps to keep the equipment hygienic, but also extends the service life of the equipment and reduces failures caused by pollution or fouling.
[0047] like Figure 3 and Figure 5 As shown, in an optional embodiment of the present invention, a connecting hole 201 is provided on the bottom surface of the transport plate 21 , and when the transport plate 21 is located in the air-drying position, one end of the connecting member 311 is inserted into the connecting hole 201 .
[0048] The connection holes 201 and connectors 311 cooperate to ensure that the transport plate 21 is securely fixed in the air-drying position, preventing displacement or shaking of the transport plate 21 during the air-drying process, improving the stability of the device, and thus ensuring that the drying effect of the decoction pot is not affected. The insertion of connectors 311 into the connection holes 201 facilitates the rapid connection and removal of the transport plate 21 from other components, reducing the complexity of device operation and maintenance, and improving the efficiency and convenience of the device.
[0049] The cooperation between the connection holes 201 and the connector 311 allows for precise control of the position of the transport plate 21, ensuring proper docking of the transport plate 21 in the drying position. This prevents uneven drying due to positional deviation and optimizes the drying process. The cooperation between the connection holes 201 and the connector 311 allows the transport plate 21 to be securely fixed in the drying position, preventing it from falling off or loosening due to external forces or improper operation, thereby reducing safety hazards during operation.
[0050] In an optional embodiment of the present invention, the plurality of connection holes 201 are distributed at equal distances along the bottom edge of the transport plate 21 .
[0051] By distributing multiple connection holes 201 equidistantly along the bottom surface of the transport board 21, the connectors 311 can evenly secure the transport board 21 at multiple points, avoiding concentrated force. This effectively improves the stability and load-bearing capacity of the transport board 21 and reduces the risk of deformation or damage caused by localized uneven force. Through the multiple connection holes 201, the connectors 311 can simultaneously secure the transport board 21 at multiple points, improving the firmness and reliability of the connection, ensuring a more secure fixation of the transport board 21 during the drying process, and preventing the transport board 21 from falling or loosening due to vibration or external forces during use.
[0052] By equidistantly distributing the plurality of connection holes 201 along the edge, the installation position of the connector 311 is made more flexible, and the usage of the connector 311 can be adjusted as needed to meet the air-drying requirements of different types or sizes of decoction pots, thereby enhancing the adaptability of the equipment. The equidistantly distributed connection holes 201 make the installation and disassembly of the connector 311 more standardized and regular, allowing operators to more conveniently assemble, adjust, and maintain it, reducing human error and improving work efficiency. The plurality of connection holes 201 are distributed along the edge of the transport plate 21, which can effectively disperse the impact force or mechanical stress that may be generated during the air-drying process, extend the service life of the equipment, and reduce damage or failure caused by excessive local force. The uniform distribution of the connection holes 201 makes it easier for maintenance personnel to check the connection, ensure the firmness of each connection point, promptly detect and address any looseness or damage problems that may exist, reduce the failure rate, and improve the reliability and safety of the equipment. Specifically, a first clamping block is provided on the supporting plate 31, which is used to clamp the lower end of the transport plate 21.
[0053] In an optional embodiment of the present invention, the transport plate 21 is provided with a plurality of protrusions 23 , which are distributed in an array along the axis of the transport plate 21 . The protrusions 23 abut against the bottom surface of the blown object, so that the blown object is suspended on the transport plate 21 .
[0054] In an optional embodiment of the present invention, a water collection trough 202 is provided on the top of the transport plate 21. The water collection trough 202 is located below the medicine decoction pot, and the diameter of the water collection trough 202 is larger than the diameter of the medicine decoction pot.
[0055] like Figure 1 and Figure 4As shown, by providing a water collection trough 202 on the top of the transport plate 21, it is possible to collect moisture that may be generated below the decoction pot, preventing the moisture from affecting the conveyor line 2 below during the air drying process, helping to dry the conveyor line 2 and preventing corrosion or damage caused by moisture accumulation. The water collection trough 202 can collect and effectively guide excess water to flow out, reducing the instability caused by moisture accumulation and reducing vibration or imbalance caused by accumulated water. The diameter of the water collection trough 202 is larger than the diameter of the decoction pot, ensuring that the water collection trough 202 covers the area below the decoction pot while preventing accumulated water from overflowing or splashing to the greatest extent. The provision of the water collection trough 202 facilitates the cleaning and maintenance of the equipment. The water collection trough 202 allows accumulated water to be easily cleaned, reducing the pollution or damage to the equipment caused by accumulated water and also reducing the risk of failure caused by moisture accumulation during long-term use of the conveyor line 2.
[0056] Specifically, the transport plate 21 is provided with a ventilation hole, which is located below the decoction pot. After the transport plate 21 is raised, the ventilation hole corresponds to the downwind port 403, and the downwind port 403 faces the bottom surface of the raised decoction pot.
[0057] It should be understood that the various forms of the processes shown above can be used to reorder, add, or delete steps. For example, the steps described in the present invention can be performed in parallel, sequentially, or in a different order, as long as the desired results of the technical solutions disclosed in the present invention can be achieved. This is not limited herein.
[0058] The above specific embodiments do not limit the scope of protection of the present invention. Those skilled in the art will appreciate that various modifications, combinations, sub-combinations, and substitutions may be made based on design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the principles of the present invention are intended to be included within the scope of protection of the present invention.
Claims
1. A wind blowing device, characterized in that: include: frame; A conveyor line is provided on the frame, and is provided with a transport plate and a clamping member. A connection hole is provided on the bottom surface of the transport plate, and the clamping member is provided on the transport plate. After the clamping member clamps the bottom of the blown object, the bottom of the blown object is suspended and placed on the transport plate. The conveyor line transports the blown object to the air-drying position; A lifting and rotating mechanism, the lifting and rotating mechanism being arranged on the frame, and the lifting and rotating mechanism being provided with a connecting piece, when the transport plate is located in the air-drying position, one end of the connecting piece is inserted into the connecting hole, and the transport plate is lifted by the lifting and rotating mechanism and then rotated; A blower mechanism is provided on the frame, and is provided with an upper air vent, a side air vent, and a lower air vent, wherein the upper air vent faces the top of the blown object after the blown object is raised, the side air vent faces the side of the blown object after the blown object is raised, and the lower air vent faces the bottom of the blown object after the blown object is raised; The blowing mechanism includes a fan, a first air duct, a second air duct and a third air duct, the fan is arranged on the frame, the first air duct and the second air duct are connected to the fan output end, one end of the third air duct is connected to the second air duct, the upper air outlet is rotatably arranged on the first air duct, the side air outlet is rotatably arranged on the second air duct, and the lower air outlet is rotatably arranged on the third air duct, and the angles of the upper air outlet, the side air outlet and the lower air outlet toward the blown object are all adjustable; The plurality of side air vents are rotatably arranged on the second air duct, and the heights of the plurality of side air vents are equidistantly distributed along the side of the raised object to be blown.
2. The wind blowing device according to claim 1, characterized in that: The fan includes a first fan and a second fan, the first fan and the second fan are both arranged on the frame, the first fan and the second fan are respectively located on both sides of the lifting and rotating mechanism, the first air duct is connected to the output end of the first fan, and the second air duct is connected to the output end of the second fan.
3. The wind blowing device according to claim 1, characterized in that: The side vents are in an elongated strip shape and are tangent to the side of the raised object being blown.
4. The wind blowing device according to claim 1, characterized in that: It also includes baffles, which are arranged on the frame, located on both sides of the air-drying position, and the length direction of the baffles is parallel to the transportation direction of the conveyor line.
5. The wind blowing device according to claim 1, characterized in that: The lifting and rotating mechanism also includes a supporting plate, a rotating cylinder that drives the supporting plate to rotate, and a lifting cylinder that drives the supporting plate to lift and lower. The connecting piece is arranged on the supporting plate. When the transport plate is in the air-drying position, the connecting piece is detachably connected to the bottom of the transport plate.
6. The wind blowing device according to claim 1, characterized in that: The transport plate is provided with a plurality of protrusions, which are distributed in an array along the axis of the transport plate, and the protrusions are against the bottom surface of the blown object.
7. The wind blowing device according to claim 1, characterized in that: A plurality of connection holes are distributed at equal intervals along the edge of the bottom surface of the transport plate.
8. The wind blowing device according to claim 1, characterized in that: A water collection trough is provided on the top of the transport plate. The water collection trough is located below the object being blown, and the diameter of the water collection trough is larger than the diameter of the object being blown.
Citation Information
Patent Citations
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