Drying device for day lily

By introducing a turning component and a heat exchanger into the daylily drying device, the problem of uneven drying caused by inconsistent daylily layer thickness was solved, achieving uniform drying and improved efficiency, thereby enhancing product quality and resource utilization.

CN224179095UActive Publication Date: 2026-05-01HUNAN LONGWANG FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN LONGWANG FOOD CO LTD
Filing Date
2025-04-16
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing daylily drying equipment suffers from uneven drying due to inconsistent laying thickness, resulting in some areas being over-dried or under-dried, which affects product quality and efficiency, and increases resource waste and costs.

Method used

Design a drying device that includes a turning component, which uses a second rotating shaft, a second pulley group and a second actuating rod to spread daylilies on a conveyor belt to ensure uniform distribution and heating. Combined with a motor and baffles to adjust the spreading thickness, a heat energy converter is used to provide uniform hot air drying.

Benefits of technology

This method achieves uniform drying of daylilies, improves drying efficiency and product quality, ensures color, flavor and nutritional value, and avoids localized over-drying or under-drying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of food processing, in particular to a drying device for day lily. The utility model provides a drying device for day lily, which comprises a support, a conveying component, a fan and the like, the conveying component is mounted on the upper side of the support, and the fan is arranged below the conveying component. Through the arrangement of second rotating shafts, a second belt pulley set and a second poke rod, the second rotating shafts on the outer side synchronously rotate when the conveying belt runs, power is transmitted to the second rotating shafts on the inner side through the second belt pulley set, then the second poke rod is driven to rotate, the second poke rod pokes day lily in the day lily conveying process, and the day lily conveying efficiency is improved. Compared with the prior art, the daylily drying device has the advantages that the daylily is more loosely distributed on the conveying belt, so that the daylily is uniformly heated in the whole drying process, the condition of local excessive drying or insufficient drying is avoided, the drying efficiency and the product quality are also improved, and the finally produced daylily has excellent color, flavor and nutritional value.
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Description

A drying device for daylilies Technical Field

[0001] This utility model relates to the field of food processing, and in particular to a drying device for daylilies. Background Technology

[0002] Drying equipment for daylilies is used to remove moisture from daylilies in order to facilitate their long-term preservation, transportation, and increase their commercial value. This drying equipment can achieve the dehydration process of daylilies using different technologies; common drying methods include natural sun-drying, hot air drying, infrared drying, and microwave drying.

[0003] Currently, most daylily drying equipment on the market often suffers from uneven drying due to inconsistent thickness of the daylily buds during operation. Specifically, some daylilies are over-dried while others fail to reach the desired degree of dryness. This uneven drying not only seriously affects product quality, significantly reducing the market value of the final product, but also leads to resource waste and increased production costs. Furthermore, the need to reprocess or treat substandard daylilies as defective products further reduces production efficiency and increases unnecessary energy consumption.

[0004] To address the above problems, it is necessary to design a drying device for daylilies that can turn them over. Summary of the Invention

[0005] To overcome the problem of uneven drying caused by inconsistent thickness of daylily buds, which results in some daylilies being over-dried while others fail to reach the desired degree of dryness, this invention provides a drying device for daylilies.

[0006] The technical implementation scheme of this utility model is as follows: A drying device for daylilies includes a support frame, a conveying assembly, a fan, a heat exchanger, a shell, a conveyor belt, a support block, a motor, a baffle, and a turning assembly. The conveying assembly is installed on the upper side of the support frame, and the fan is located below the conveying assembly. The heat exchanger is installed behind the fan, and the shell is connected to the right side of the fan. Multiple conveyor belts are rotatably connected inside the shell. Support blocks are symmetrically connected front and back inside the shell above the uppermost conveyor belt. A motor is installed on the rear side of the rear support block. The front end of the motor output shaft passes through the rear support block and is connected to a baffle. The baffle rotates with the front support block. Turning assemblies are provided inside the shell and on the multiple conveyor belts.

[0007] Furthermore, the flipping assembly includes a second rotating shaft, a second pulley set, and a second actuating lever. Multiple second rotating shafts are symmetrically rotatably connected to the front side of the housing, and multiple second actuating levers are symmetrically rotatably connected to the housing between two adjacent conveyor belts. The multiple outer second rotating shafts are fixedly connected to the rotating shafts of multiple conveyor belts, and the multiple inner second rotating shafts are fixedly connected to the multiple second actuating levers. A second pulley set is provided between each outer second rotating shaft and each inner second rotating shaft.

[0008] Furthermore, it also includes a first rotating shaft, a first pulley set, and a first actuating rod. The first rotating shaft is rotatably connected to the front side of the conveying assembly, and the first actuating rod is rotatably connected to the left side of the conveying assembly. The first rotating shaft is also connected to the front side of the first actuating rod, and a first pulley set is provided between the two first rotating shafts.

[0009] Furthermore, it also includes a support frame, electric slide rails, a connecting frame, and a conveyor plate. The support frame is connected between the upper side of the conveying assembly and the upper side of the outer shell. Electric slide rails are symmetrically installed on the support frame. A connecting frame is slidably connected between the two electric slide rails. The conveyor plate is connected to the upper side of the connecting frame. The other side of the conveyor plate is fixedly connected to the upper right side of the support frame.

[0010] Furthermore, it also includes a protective shell, with the rear support block having a protective shell on its rear side, and the protective shell being located outside the motor.

[0011] Furthermore, it also includes a protective cover, which is connected to the upper side of the conveying assembly.

[0012] The beneficial effects of this utility model are as follows: By setting up the second rotating shaft, the second pulley group, and the second actuating rod, the outer second rotating shaft rotates synchronously when the conveyor belt is running, and the power is transmitted to the inner second rotating shaft through the second pulley group, thereby driving the second actuating rod to rotate. The second actuating rod disperses the daylilies during the conveying process, making the daylilies more loosely distributed on the conveyor belt. This not only ensures that the daylilies are heated evenly throughout the drying process, avoiding local over-drying or under-drying, but also improves drying efficiency and product quality, resulting in daylilies with excellent color, flavor, and nutritional value. Attached Figure Description

[0013] Figure 1 is a three-dimensional structural diagram of this utility model.

[0014] Figure 2 is a three-dimensional structural diagram of the conveying assembly, protective cover, and fan of this utility model.

[0015] Figure 3 is a three-dimensional structural diagram of the first rotating shaft, the first pulley group, and the first actuating lever of this utility model.

[0016] Figure 4 is a cross-sectional view of the outer shell of this utility model.

[0017] Figure 5 is a cross-sectional view of the protective shell of this utility model.

[0018] Figure 6 is a three-dimensional structural diagram of the second pulley assembly and the second actuating lever of this utility model.

[0019] In the above attached figures: 1: bracket, 2: conveying assembly, 21: protective cover, 3: fan, 4: heat converter, 5: outer shell, 6: conveyor belt, 7: support block, 8: motor, 81: protective shell, 9: baffle, 10: first rotating shaft, 11: first pulley group, 12: first actuating lever, 13: second rotating shaft, 14: second pulley group, 15: second actuating lever, 16: support frame, 17: electric slide rail, 18: connecting frame, 19: conveying plate. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Example: A drying device for daylilies, as shown in Figures 1-6, includes a support frame 1, a conveying assembly 2, a protective cover 21, a fan 3, a heat exchanger 4, a housing 5, a conveyor belt 6, a support block 7, a motor 8, a protective shell 81, a baffle 9, a first rotating shaft 10, a first pulley group 11, a first actuating lever 12, a support frame 16, an electric slide rail 17, a connecting frame 18, a conveying plate 19, and a turning assembly. The conveying assembly 2 is mounted on the upper side of the support frame 1, and the protective cover 21 is connected to the upper side of the conveying assembly 2. The fan 3 is located below the conveying assembly 2, and the heat exchanger 4 is mounted behind the fan 3. The heat exchanger 4 can convert electrical energy or other forms of energy into heat energy to provide the necessary heat for the drying process. The heat is transferred to the fan 3. A casing 5 is connected to the right side of the fan 3. Multiple conveyor belts 6 are rotatably connected inside the casing 5. These conveyor belts 6 are connected in series to transfer the daylily buds downwards, ensuring even distribution and gradual drying. Support blocks 7 are symmetrically connected front and back inside the casing 5 above the uppermost conveyor belt 6. A motor 8 is mounted on the rear side of the rear support block 7. The front end of the motor 8's output shaft passes through the rear support block 7 and connects to a baffle 9. The baffle 9 rotatably engages with the front support block 7. The baffle 9 is used to adjust the thickness of the daylily buds, ensuring even heating. A protective shell 81 is located on the rear side of the rear support block 7, outside the motor 8, protecting it. A first rotating shaft 10 is rotatably connected to the front of component 2. A first actuating rod 12 is rotatably connected to the left side of the conveying component 2. The first actuating rod 12 is used to disperse the piled daylilies to avoid local over-thickness affecting the drying effect. The front of the first actuating rod 12 is also connected to the first rotating shaft 10. A first pulley group 11 is arranged between the two first rotating shafts 10. A support frame 16 is connected between the upper side of the conveying component 2 and the upper side of the outer shell 5. Electric slide rails 17 are symmetrically installed on the support frame 16. A connecting frame 18 is slidably connected between the two electric slide rails 17. A conveying plate 19 is connected to the upper side of the connecting frame 18. The other side of the conveying plate 19 is fixedly connected to the upper right side of the support frame 16. The interior of the outer shell 5 is connected to multiple conveyor belts 6. A flipping assembly is provided, which includes a second rotating shaft 13, a second pulley set 14, and a second actuating rod 15. Multiple second rotating shafts 13 are symmetrically rotatably connected to the front side of the outer casing 5. Multiple second actuating rods 15 are symmetrically rotatably connected to the outer casing 5 located between two adjacent conveyor belts 6. The second actuating rods 15 can further disperse the daylilies, ensuring that all daylilies can be evenly exposed to the hot air. The multiple outer second rotating shafts 13 are fixedly connected to the rotating shafts of the multiple conveyor belts 6, and the multiple inner second rotating shafts 13 are fixedly connected to the multiple second actuating rods 15. A second pulley set 14 is provided between each outer second rotating shaft 13 and each inner second rotating shaft 13.

[0022] When this device is needed to dry daylilies, firstly, activate the two electric slide rails 17, causing the connecting frame 18 to move the conveyor plate 19 to the left. As the connecting frame 18 moves, the conveyor plate 19 gradually unfolds. When the connecting frame 18 moves to the appropriate position, the conveyor plate 19 is in a fully unfolded state. At this time, close the two electric slide rails 17. Then, the operator starts the conveying assembly 2, the fan 3, and the heat exchanger 4, putting them into operation. During operation, the conveying assembly 2 drives the first rotating shaft 10 on the left to rotate, and through the first pulley group 11, drives the first rotating shaft 10 on the right to rotate, which in turn drives the first actuating lever 12 to rotate. Then, the operator... Workers place the daylilies to be dried on conveyor assembly 2, which then transports them to the right. During this process, the first actuating lever 12 disperses any accumulated daylilies to prevent excessive buildup from affecting subsequent drying efficiency. When the daylilies reach the right end of conveyor assembly 2, they automatically fall onto the first conveyor belt 6, which continues to transport them to the right. Simultaneously, motor 8 is started, and its output shaft drives baffle 9 to rotate. Once baffle 9 reaches the appropriate angle, motor 8 is turned off. Subsequently, the daylilies continue to contact and pass under baffle 9 during transport, ensuring a uniform thickness of the daylily layer. Meanwhile, heat exchanger 4 converts electrical energy or other forms of energy... The energy (such as the chemical energy of fuel) is converted into heat energy. During the operation of the fan 3, the fan 3 draws in hot air and blows it into the interior of the outer casing 5 to dry the daylilies inside the casing 5. During this process, the hot air is evenly distributed throughout the entire interior of the outer casing 5, ensuring that the daylilies are heated evenly and effectively removing moisture. When the daylilies are conveyed to the right end of the first conveyor belt 6, they automatically fall down onto the second conveyor belt 6. The second conveyor belt 6 conveys the daylilies to the left. During the conveying process, the second conveyor belt 6 drives the outer second rotating shaft 13 to rotate, and through the second pulley group 14, drives the inner second rotating shaft 13 to rotate, which in turn drives the second actuating lever 1. 5. As the daylily buds rotate, when they come into contact with the second actuating lever 15, the second actuating lever 15 further disperses the daylily buds, making their distribution more even and improving the drying effect. The above process is repeated sequentially on multiple conveyor belts 6 until all conveyor belts 6 are covered with daylily buds. During this process, the daylily buds on each conveyor belt 6 are evenly dispersed by the action of multiple second actuating levers 15, ensuring that the daylily buds do not pile up. As the daylily buds gradually cover each conveyor belt 6, hot air is continuously blown into the outer shell 5 to evenly dry all the daylily buds. When the daylily buds have finished drying, the conveyor assembly 2, the fan 3, and the heat exchanger 4 are turned off, and the entire drying process ends.

[0023] Although this disclosure has been shown and described with reference to specific exemplary embodiments thereof, those skilled in the art will understand that various changes in form and detail may be made to this disclosure without departing from the spirit and scope of the disclosure as defined by the appended claims and their equivalents. Therefore, the scope of this disclosure should not be limited to the above embodiments, but should be defined not only by the appended claims, but also by their equivalents.

Claims

1. A drying apparatus for daylilies, characterized in that: It includes a bracket (1), a conveying assembly (2), a fan (3), a heat exchanger (4), a housing (5), a conveyor belt (6), a support block (7), a motor (8), a baffle (9), and a turning assembly. The conveying assembly (2) is installed on the upper side of the bracket (1), and the fan (3) is located below the conveying assembly (2). The heat exchanger (4) is installed on the rear side of the fan (3). The housing (5) is connected to the right side of the fan (3). Multiple conveyor belts (6) are rotatably connected inside the housing (5). The support block (7) is symmetrically fixedly connected to the front and back of the housing (5) above the uppermost conveyor belt (6). The motor (8) is installed on the rear side of the support block (7). The front end of the output shaft of the motor (8) passes through the support block (7) on the rear side and is connected to the baffle (9). The baffle (9) is rotatably engaged with the support block (7) on the front side. Turning assemblies are set inside the housing (5) and on the multiple conveyor belts (6).

2. A drying apparatus for daylilies according to claim 1, characterized in that: The flipping assembly includes a second rotating shaft (13), a second pulley group (14), and a second actuating lever (15). Multiple second rotating shafts (13) are symmetrically connected to the front side of the housing (5). Multiple second actuating levers (15) are symmetrically connected to the housing (5) between two adjacent conveyor belts (6). The multiple outer second rotating shafts (13) are fixedly connected to the rotating shafts of multiple conveyor belts (6). The multiple inner second rotating shafts (13) are fixedly connected to the multiple second actuating levers (15). A second pulley group (14) is provided between each outer second rotating shaft (13) and each inner second rotating shaft (13).

3. A drying apparatus for daylilies according to claim 2, characterized in that: It also includes a first rotating shaft (10), a first pulley group (11) and a first actuating rod (12). The first rotating shaft (10) is rotatably connected to the front side of the conveying assembly (2), and the first actuating rod (12) is rotatably connected to the left side of the conveying assembly (2). The first rotating shaft (10) is also connected to the front side of the first actuating rod (12), and the first pulley group (11) is arranged between the two first rotating shafts (10).

4. A drying apparatus for daylilies according to claim 3, characterized in that: It also includes a support frame (16), an electric slide rail (17), a connecting frame (18), and a conveyor plate (19). The support frame (16) is fixedly connected between the upper side of the conveying assembly (2) and the upper side of the outer shell (5). The electric slide rail (17) is symmetrically installed on the support frame (16). The connecting frame (18) is slidably connected between the two electric slide rails (17). The conveyor plate (19) is fixedly connected to the upper side of the connecting frame (18). The other side of the conveyor plate (19) is fixedly connected to the upper right side of the support frame (16).

5. A drying apparatus for daylilies according to claim 4, characterized in that: It also includes a protective shell (81), and the rear side of the support block (7) is connected to the protective shell (81), which is located outside the motor (8).

6. A drying apparatus for daylilies according to claim 5, characterized in that: It also includes a protective cover (21), and the upper side of the conveying assembly (2) is equipped with a protective cover (21).