Rose low-temperature sterilization device
By designing a low-temperature sterilization device including a sterilization box, a conveying pipe and a nozzle, the cooperation of reciprocating components and sliding components is used to solve the problem of poor low-temperature sterilization effect of roses in the prior art, and the full sterilization and efficiency improvement of roses are achieved.
Patent Information
- Application Number
- CN202421712494.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-19
AI Technical Summary
The existing low-temperature sterilization device for roses is not good in sterilization, especially for roses with far distances, which are difficult to achieve sufficient sterilization.
A low-temperature sterilization device including a sterilization box, a conveying pipe and a nozzle is designed. By driving the movement of the conveying pipe and the nozzle through the reciprocating component, the plasma gas is transported to different positions in the sterilization box. Combined with the cooperation of the sliding component and the rotating component, the full sterilization of roses is achieved.
Through the design of this device, the sterilization effect and efficiency of roses can be significantly improved, and is suitable for sufficient sterilization of roses at distances.
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Figure CN222968905U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of rose sterilization, and particularly to a low-temperature rose sterilization device. Background Art
[0002] Rose: It is a general name for various plants and cultivated flowers in the Rosaceae family and the Rosa genus. When producing roses, it is necessary to sterilize the roses first.
[0003] The existing low-temperature rose sterilization method generally uses atmospheric pressure low-temperature plasma to kill microorganisms. It does not require complex vacuum equipment, has a short treatment time, a low treatment temperature, so it has high efficiency, low cost, and low energy consumption. The gas temperature is low, which significantly improves the disinfection and sterilization effect. However, when the plasma gas sterilizes the roses in the sterilization box, the position where the plasma gas is introduced into the sterilization box is fixed. Therefore, for roses that are far away, the sterilization effect is not good, which is not convenient for fully sterilizing the roses and reduces the sterilization effect of the roses. Therefore, the technical personnel in this field provide a low-temperature rose sterilization device to solve the problems raised in the above background art. Summary of the Utility Model
[0004] In order to solve the problems raised in the above background art, the present application provides a low-temperature rose sterilization device.
[0005] The low-temperature rose sterilization device provided by the present application adopts the following technical solutions:
[0006] A low-temperature rose sterilization device includes a sterilization box. A cushion net is fixed inside the sterilization box. A delivery pipe is slidably provided at the top end of the inner wall of the sterilization box. The bottom end of the delivery pipe is communicated with a plurality of spray heads. An air tank communicated with the delivery pipe is fixed at the top end of the sterilization box. The delivery pipe is connected to the sterilization box through a sliding assembly. A reciprocating assembly for driving the delivery pipe to move is provided at the top end of the sterilization box.
[0007] By adopting the above technical solutions, the reciprocating assembly drives the movement of the delivery pipe and the spray heads, which is convenient for delivering the plasma gas to different positions inside the sterilization box, facilitating the full sterilization of the roses and improving the sterilization effect of the roses.
[0008] Preferably, the sliding assembly includes a slider fixedly arranged at the top end of the delivery pipe, and a sliding groove for the slider to slide is opened at the top end of the inner wall of the sterilization box.
[0009] By adopting the above technical solutions, through the cooperation of the sliding assembly, the movement of the delivery pipe is kept stable.
[0010] Preferably, the reciprocating assembly includes two pulleys rotatably arranged at the top end of the inner wall of the sterilization box. The two pulleys are connected by a belt drive. The belt is hinged with a pull rod hinged to the conveying pipe. A drive motor fixed to the pulley is fixed at the top end of the sterilization box.
[0011] By adopting the above technical solution, through the cooperation of the reciprocating assembly, it is convenient to drive the reciprocating movement of the conveying pipe.
[0012] Preferably, vertical plates are fixed at both ends of the conveying pipe. Support plates are arranged at the bottom ends of the two vertical plates. The vertical plates are connected to the support plates through a connecting assembly. A stirring shaft is rotatably connected between the two support plates. Stirring blades are fixed to the outer wall of the stirring shaft. A rotating assembly for driving the stirring shaft to rotate is arranged at the top end of the cushion mesh.
[0013] By adopting the above technical solution, through the rotation of the rotating assembly driving the stirring shaft and the stirring blades, it is convenient to turn over the roses, facilitating the rapid sterilization of the roses and improving the sterilization efficiency of the roses.
[0014] Preferably, the connecting assembly includes a fixed block fixedly arranged at the bottom end of the vertical plate. A fixing groove adapted to the fixed block is formed at the top end of the support plate. A connecting plate is arranged on one side of the vertical plate. Two connecting blocks are fixed to one side of the connecting plate. Connecting grooves adapted to the connecting blocks are formed on one side of the vertical plate and one side of the support plate.
[0015] By adopting the above technical solution, through the cooperation of the connecting assembly, it is convenient to connect the vertical plate and the support plate.
[0016] Preferably, the rotating assembly includes a gear sleeved on the outer wall of the stirring shaft. A rack meshing with the gear is fixed at the top end of the cushion mesh.
[0017] By adopting the above technical solution, through the cooperation of the rotating assembly, it is convenient to drive the rotation of the stirring shaft and the stirring blades.
[0018] In summary, the present application includes the following beneficial technical effects:
[0019] 1. For this rose low-temperature sterilization device, when the plasma gas is ejected from the nozzles, under the cooperation of the reciprocating assembly and the sliding assembly, the reciprocating movement of the conveying pipe is driven. The reciprocating movement of the conveying pipe drives the reciprocating movement of the nozzles, so that the plasma gas can be introduced into different positions in the sterilization box, facilitating the full sterilization of the roses and improving the sterilization effect of the roses.
[0020] 2. When the conveying pipe reciprocates, it drives the reciprocating movement of the vertical plate and the support plate, thereby driving the reciprocating movement of the stirring shaft and the stirring blades. Then, with the cooperation of the rotating assembly, it drives the rotation of the stirring shaft and the stirring blades, which can turn the roses, facilitating the rapid sterilization of the roses and improving the sterilization efficiency of the roses. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a schematic cross-sectional structure diagram of a low-temperature sterilization device for roses in an embodiment of the present application;
[0022] Figure 2 is a schematic diagram of the mesh structure of a low-temperature sterilization device for roses in an embodiment of the present application;
[0023] Figure 3 is a schematic diagram of the connection component structure of a low-temperature sterilization device for roses in an embodiment of the present application;
[0024] Figure 4 is a low-temperature sterilization device for roses in an embodiment of the present application Figure 2 partial enlarged structure schematic diagram at A in;
[0025] Description of reference numerals: 1. Sterilization box; 2. Mesh; 3. Conveying pipe; 4. Nozzle; 5. Gas tank; 6. Sliding assembly; 61. Slide block; 62. Slide groove; 7. Reciprocating assembly; 71. Pulley; 72. Belt; 73. Pull rod; 74. Driving motor; 8. Vertical plate; 9. Support plate; 10. Connection component; 101. Fixed block; 102. Fixed groove; 103. Connecting plate; 104. Connecting block; 105. Connection groove; 11. Stirring shaft; 12. Stirring blade; 13. Rotating assembly; 131. Gear; 132. Rack. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] The following will further describe the present application in detail Figures 1-4 with reference to the accompanying drawings.
[0027] An embodiment of the present application discloses a low-temperature sterilization device for roses. Referring to Figures 1-4 , a low-temperature sterilization device for roses includes a sterilization box 1, a mesh 2 is fixed inside the sterilization box 1, a conveying pipe 3 is slidably provided at the top end of the inner wall of the sterilization box 1, a plurality of nozzles 4 are communicated with the bottom end of the conveying pipe 3, a gas tank 5 communicated with the conveying pipe 3 is fixed at the top end of the sterilization box 1, the conveying pipe 3 is connected to the sterilization box 1 through a sliding assembly 6, and a reciprocating assembly 7 for driving the conveying pipe 3 to move is provided at the top end of the sterilization box 1.
[0028] In this embodiment, when sterilizing roses, the roses are placed on the mat net 2, and then the plasma gas is delivered to the delivery pipe 3 through the gas tank 5, and then sprayed out through the nozzle 4, and then with the cooperation of the reciprocating component 7 and the sliding component 6, the delivery pipe 3 is driven to reciprocate, and the delivery pipe 3 drives the reciprocating movement of the nozzle 4, so that the plasma gas can be introduced into different positions in the sterilization box 1, which is convenient for the full sterilization of the roses and improves the sterilization effect of the roses.
[0029] In a further embodiment, Figures 1-2 As shown, the sliding assembly 6 includes a slider 61 fixedly arranged at the top end of the conveying tube 3, a slide groove 62 for the slider 61 to slide is provided at the top end of the inner wall of the sterilization box 1, and the reciprocating assembly 7 includes two pulleys 71 rotatably arranged at the top end of the inner wall of the sterilization box 1, and the two pulleys 71 are connected by a belt 72, and the belt 72 is hinged with a pull rod 73 hinged with the conveying tube 3, and a driving motor 74 fixed to the pulley 71 is fixed at the top end of the sterilization box 1.
[0030] When the nozzle 4 sprays plasma gas to sterilize the roses, the movement of the driving motor 74 drives the pulley 71 to rotate, the pulley 71 drives the belt 72 to rotate, the belt 72 drives the pull rod 73 to rotate, and the pull rod 73 drives the reciprocating motion of the conveying tube 3. At the same time, with the cooperation of the slider 61 and the slide groove 62, the conveying tube 3 is auxiliary supported to maintain the stability of the movement of the conveying tube 3. The conveying tube 3 drives the reciprocating motion of the nozzle 4, thereby spraying the plasma gas to different positions in the sterilization box 1, thereby facilitating the full sterilization of the roses and improving the sterilization effect of the roses.
[0031] In a further preferred embodiment of the present invention, Figure 1 As shown, vertical plates 8 are fixed at both ends of the conveying pipe 3, and support plates 9 are provided at the bottom ends of the two vertical plates 8. The vertical plates 8 are connected to the support plates 9 through a connecting component 10, and a stirring shaft 11 is rotatably connected between the two support plates 9. A stirring blade 12 is fixed to the outer wall of the stirring shaft 11, and a rotating component 13 for driving the stirring shaft 11 to rotate is provided at the top of the pad net 2.
[0032] The support plate 9 is connected to the vertical plate 8 through the connecting component 10. When the conveying pipe 3 reciprocates, the vertical plate 8 is driven to reciprocate, and the vertical plate 8 drives the support plate 9 to reciprocate. The support plate 9 drives the reciprocating movement of the stirring shaft 11 and the stirring blade 12. At the same time, with the cooperation of the rotating component 13, the stirring shaft 11 and the stirring blade 12 are driven to rotate, so that the roses can be turned over, which is convenient for the rapid sterilization of the roses and improves the sterilization efficiency of the roses.
[0033] In a further embodiment, Figures 3-4As shown in the figure, the connecting component 10 includes a fixing block 101 fixedly arranged at the bottom end of the vertical plate 8. A fixing groove 102 adapted to the fixing block 101 is formed at the top end of the support plate 9. A connecting plate 103 is arranged on one side of the vertical plate 8. Two connecting blocks 104 are fixed on one side of the connecting plate 103. Connecting grooves 105 adapted to the connecting blocks 104 are formed on one side of both the vertical plate 8 and the support plate 9. The rotating component 13 includes a gear 131 sleeved on the outer wall of the stirring shaft 11. A rack 132 meshing with the gear 131 is fixed at the top end of the cushion mesh 2.
[0034] First, insert the fixing block 101 into the fixing groove 102, and then insert the connecting block 104 into the connecting groove 105. Then, under the connection and cooperation of the connecting plate 103, the vertical plate 8 and the support plate 9 can be connected and fixed together. Then, during the reciprocating movement of the conveying pipe 3, the reciprocating movement of the vertical plate 8 is driven. The vertical plate 8 drives the reciprocating movement of the support plate 9. The support plate 9 drives the reciprocating movement of the stirring shaft 11 and the stirring blades 12. During the movement of the stirring shaft 11, the gear 131 is driven to mesh with the rack 132, which can drive the rotation of the stirring shaft 11 and the stirring blades 12, thereby turning the roses, facilitating the rapid sterilization of the roses, and improving the sterilization efficiency of the roses.
[0035] The implementation principle of a low-temperature sterilization device for roses in an embodiment of the present application is as follows: When sterilizing roses, place the roses on the cushion mesh 2, then convey plasma gas to the conveying pipe 3 through the gas tank 5 and spray it out through the nozzle 4. Then, under the movement of the driving motor 74, the rotation of the belt pulley 71 is driven. The belt pulley 71 drives the rotation of the belt 72. The belt 72 drives the rotation of the pull rod 73. The pull rod 73 drives the reciprocating movement of the conveying pipe 3. The conveying pipe 3 drives the reciprocating movement of the nozzle 4, so as to spray the plasma gas to different positions in the sterilization box 1, thereby facilitating the full sterilization of the roses, improving the sterilization effect of the roses. At the same time, during the reciprocating movement of the conveying pipe 3, the reciprocating movement of the vertical plate 8 is driven. The vertical plate 8 drives the reciprocating movement of the support plate 9. The support plate 9 drives the reciprocating movement of the stirring shaft 11 and the stirring blades 12. During the movement of the stirring shaft 11, the gear 131 is driven to mesh with the rack 132, which can drive the rotation of the stirring shaft 11 and the stirring blades 12, thereby turning the roses, facilitating the rapid sterilization of the roses, and improving the sterilization efficiency of the roses.
[0036] The above are all preferred embodiments of the present application. The protection scope of the present application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A rose low-temperature sterilization device, comprising a sterilization box (1), characterized in that: A pad net (2) is fixed inside the sterilization box (1); a delivery pipe (3) is slidably provided at the top of the inner wall of the sterilization box (1); the bottom end of the delivery pipe (3) is connected to a plurality of nozzles (4); a gas tank (5) connected to the delivery pipe (3) is fixed at the top of the sterilization box (1); the delivery pipe (3) is connected to the sterilization box (1) via a sliding component (6); and a reciprocating component (7) for driving the delivery pipe (3) to move is provided at the top of the sterilization box (1).
2. The rose low temperature sterilization device according to claim 1, characterized in that: The sliding assembly (6) comprises a sliding block (61) fixedly arranged at the top end of the conveying pipe (3), and a sliding groove (62) for the sliding block (61) to slide is provided at the top end of the inner wall of the sterilization box (1).
3. A rose low temperature sterilization device according to claim 2, characterized in that: The reciprocating assembly (7) comprises two pulleys (71) rotatably arranged at the top end of the inner wall of the sterilization box (1), the two pulleys (71) are connected to each other by a belt (72), the belt (72) is hinged with a pull rod (73) hinged with the conveying pipe (3), and a driving motor (74) fixed to the pulley (71) is fixed at the top end of the sterilization box (1).
4. The rose low-temperature sterilization device according to claim 3, characterized in that: Both ends of the conveying pipe (3) are fixed with vertical plates (8), the bottom ends of the two vertical plates (8) are provided with support plates (9), the vertical plates (8) are connected to the support plates (9) through a connecting component (10), a stirring shaft (11) is rotatably connected between the two support plates (9), a stirring blade (12) is fixed to the outer wall of the stirring shaft (11), and a rotating component (13) for driving the stirring shaft (11) to rotate is provided at the top end of the pad net (2).
5. The rose low temperature sterilization device according to claim 4, characterized in that: The connection assembly (10) comprises a fixing block (101) fixedly arranged at the bottom end of the vertical plate (8); a fixing groove (102) adapted to the fixing block (101) is provided at the top end of the support plate (9); a connecting plate (103) is provided on one side of the vertical plate (8); two connecting blocks (104) are fixed on one side of the connecting plate (103); and connecting grooves (105) adapted to the connecting blocks (104) are provided on one side of the vertical plate (8) and one side of the support plate (9).
6. The rose low-temperature sterilization device according to claim 5, characterized in that: The rotating assembly (13) comprises a gear (131) sleeved on the outer wall of the stirring shaft (11), and a rack (132) meshing with the gear (131) is fixed on the top end of the pad net (2).