Fresh flower preservation waterproof box

By designing a fresh-keeping waterproofing tank with a rotating fresh-keeping box and a movable door, the problem that traditional fresh-keeping boxes cannot maintain constant temperature and humidity is solved, and more efficient fresh-keeping flowers and better waterproofing effects are achieved.

CN120096948APending Publication Date: 2025-06-06SHANGHAI KESON PAPER CO LTD
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Patent Information

Application Number
CN202510441452.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

Traditional flower preservation boxes cannot effectively ensure that the temperature and humidity in the box are always in a constant temperature and humidity state, especially when flowers need to be taken out and replaced, resulting in an imbalance in the air temperature and humidity in the box, affecting the preservation efficiency.

Method used

A fresh-keeping waterproof tank for flowers is designed, and the box is divided into an installation chamber and a fresh-keeping chamber. The fresh-keeping chamber is equipped with a rotating fresh-keeping box and a movable door. The rotating shaft drives the fresh-keeping box and the movable door to rotate and lift to ensure that the box is always sealed and avoids air exchange.

Benefits of technology

It effectively avoids the exchange of air in the box and the outside air, maintains the temperature and humidity balance of the air in the box, improves the fresh preservation efficiency of flowers, and enhances the waterproofing effect of the box.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of fresh flower preservation, in particular to a fresh flower preservation waterproof box which comprises a box body, a first partition plate is fixed in the box body in the vertical direction, the first partition plate divides the interior of the box body into a mounting cavity and a preservation cavity on the left side and the right side, and the mounting cavity and the preservation cavity keep communicating; a fresh-keeping box is rotatably arranged in the fresh-keeping cavity, a movable door is slidably arranged on the side, away from the mounting cavity, of the fresh-keeping cavity in the vertical direction, and a rotating shaft is additionally arranged on the side, close to the movable door, in the fresh-keeping cavity in the horizontal direction; a first sealing plate is installed at the bottom of the movable door in the vertical direction, and the movable door and the first sealing plate are used for sealing the box body; the preservation box is used for sealing the movable door and the first sealing plate, and a hinge plate is arranged on one side of the preservation box. The purpose of the invention is to effectively improve the daily fresh-keeping efficiency of fresh flowers.
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Description

Technical Field

[0001] The present application relates to the technical field of flower preservation, and in particular to a flower preservation waterproof box. Background Art

[0002] The purpose of flower preservation is to prolong the freshness and viewing period of flowers. Temperature and humidity can have an important impact on the effect of flower preservation. Temperature is an important factor affecting the metabolic rate of flowers, while humidity is crucial to retaining moisture in flowers.

[0003] In the related art, a constant temperature and humidity environment is required to keep flowers fresh. A constant temperature environment, especially a lower temperature, can slow down the respiration and transpiration of flowers, thereby slowing down their aging process. Low temperature can reduce the activity of enzymes and extend the life of flowers; a constant humidity environment can reduce the evaporation of water from flowers through stomata, keeping the flowers plump and fresh. If the humidity is too low, the flowers will lose too much water and wilt.

[0004] However, the traditional fresh-keeping box has a simple structure and cannot effectively ensure that the temperature and humidity in the box are always in a constant temperature and humidity state, especially when the flowers need to be taken out of the fresh-keeping box. In actual operation, when the flowers in the fresh-keeping box need to be replaced, the fresh-keeping box needs to be opened. After the box door is opened, the air inside the fresh-keeping box will convect with the outside air, which causes the air outside the box to exchange with the air inside the box. The temperature and humidity of the air outside and inside the box are quite different, which leads to a large change in the temperature and humidity of the air in the fresh-keeping box, causing the temperature and humidity of the air in the fresh-keeping box to be unbalanced. The staff needs to re-adjust the temperature and humidity of the air in the fresh-keeping box. Only after the fresh-keeping box is adjusted to the preset temperature and humidity can the replaced flowers be put into the fresh-keeping box for preservation. This leads to low efficiency of the entire fresh-keeping process of the flowers, which is not conducive to the daily fresh-keeping work of the flowers. Summary of the invention

[0005] The present application provides a waterproof box for fresh-keeping flowers, the purpose of which is to effectively prevent the air in the fresh-keeping box from convecting with the outside air when the flowers in the fresh-keeping box are taken out of the fresh-keeping box, thereby effectively preventing the air inside the box from exchanging with the air outside the box, thereby facilitating the balance of the temperature and humidity of the air in the fresh-keeping box, which makes it unnecessary for the staff to re-adjust the temperature and humidity of the air in the fresh-keeping box. After the flowers are taken out of the fresh-keeping box, the replaced flowers can be immediately put into the fresh-keeping box for fresh-keeping, thereby facilitating improving the daily fresh-keeping efficiency of the flowers.

[0006] The present application provides a flower preservation waterproof box, which adopts the following technical solution:

[0007] A flower preservation waterproof box, comprising a box body, wherein a first partition is fixed in the vertical direction inside the box body, wherein the first partition divides the box body into an installation cavity and a preservation cavity on the left and right sides, wherein the installation cavity is used to assemble a corresponding temperature regulator and humidity regulator, and the installation cavity and the preservation cavity are kept in communication;

[0008] A fresh-keeping box is rotatably arranged in the fresh-keeping cavity, and flowers are stored in the fresh-keeping box. A movable door is slidably arranged in the vertical direction on a side of the fresh-keeping cavity away from the installation cavity, and a rotating shaft is added in the horizontal direction on a side of the fresh-keeping cavity close to the movable door. The rotating shaft is used to drive the fresh-keeping box to rotate in the fresh-keeping cavity, and the rotating shaft is used to drive the movable door to slide;

[0009] A first sealing plate is installed at the bottom of the movable door in the vertical direction, and the movable door and the first sealing plate are used to seal the box body; the fresh-keeping box is used to seal between the movable door and the first sealing plate, and one side of the fresh-keeping box is a hinged plate, and the hinged plate is used to take the flowers in the fresh-keeping box out of the box body;

[0010] An oxygen supply component is additionally arranged in the fresh-keeping box, and the oxygen supply component is used for providing oxygen required in the fresh-keeping process of flowers.

[0011] By adopting the above technical solution, it is possible to effectively avoid convection between the air in the box and the outside air when the flowers in the box are taken out of the box, thereby effectively preventing the air in the box from exchanging with the air outside the box, which is beneficial to ensuring the balance of temperature and humidity of the air in the box, and there is no need to re-adjust the temperature and humidity of the air in the box. After the flowers are taken out of the box, the flowers to be replaced can be immediately put into the box for preservation, which is beneficial to improving the efficiency of daily preservation of flowers. At the same time, the box is always in a sealed state, which can effectively prevent moisture in the outside air from entering the box, thereby effectively ensuring the waterproof effect of the box.

[0012] Preferably, two support seats are fixed in the fresh-keeping cavity along the horizontal direction, and the two support seats are spaced apart in the fresh-keeping cavity, and through holes are penetrated at the ends of the two support seats, and the two ends of the rotating shaft are respectively inserted into the through holes of the two support seats, and one end of the rotating shaft is connected to a driving motor, and the driving motor is located outside the box, and the driving motor is used to drive the rotating shaft to rotate, and a transfer plate is integrally connected to a side of the fresh-keeping box close to the rotating shaft along the horizontal direction, and the end of the transfer plate away from the fresh-keeping box is open, and a transfer groove is opened inside the transfer plate, and the rotating shaft is clamped into the transfer groove;

[0013] The left and right ends of the rotating shaft are integrally provided with first gears in the vertical direction, and the left and right sides of the movable door are installed with first racks in the vertical direction. The two first gears correspond to the two first racks one by one, and the corresponding first gears are meshed and connected with the first racks.

[0014] By adopting the above technical solution, the driving motor drives the rotating shaft to rotate while synchronously driving the two first gears to rotate through the rotating shaft. The two first gears engage with the corresponding first racks during the rotation process. The two first gears drive the two first racks to rise and fall, and then the two first racks drive the movable door to rise and fall. Then, the rotating shaft drives the fresh-keeping box to rotate while driving the movable door to rise and fall.

[0015] Preferably, both left and right sides of the movable door are provided with sliding grooves in the vertical direction, and the two first racks are slidably installed in the two sliding grooves respectively.

[0016] By adopting the above technical solution, when the first rack drives the movable door to move up and down, the slide groove guides the moving up and down of the first rack, which is beneficial to ensure the stability of the movable door during the moving up and down process.

[0017] Preferably, the fresh-keeping box comprises a first box body and a second box body connected in one piece, the second box body is located on a side close to the movable door, the left and right sides of the second box body are open, the second box body is used to store flowers, the first box body is located on a side of the second box body away from the rotating shaft, and the hinged plate is rotatably mounted on the top of the second box body;

[0018] The first box body is provided with a sealing component, and the sealing component is used to seal the second box body during the rotation of the fresh-keeping box.

[0019] By adopting the above technical solution, since the left and right sides of the second box body are open, the air inside the second box body is likely to form convection during the rotation of the second box body, which will further have a certain impact on the temperature and humidity inside the second box body. In order to avoid this situation, during the rotation of the second box body, the sealing component on the first box body is used to further effectively seal the second box body, thereby reducing the impact of air flow on the temperature and humidity inside the second box body during the rotation of the second box body.

[0020] Preferably, the sealing assembly includes a second sealing plate, a second rack, a second gear, a third gear and a pulley, the second sealing plate, the second rack and the second gear are all mounted on the first box body, the side wall of the second sealing plate is integrally connected with the second rack, and the second rack is meshed with the second gear, the third gear is mounted on the second box body, and the third gear is meshed with the first gear on the same side, and the pulley is mounted between the second gear and the third gear.

[0021] By adopting the above technical solution, when the rotating shaft drives the first gear to rotate, the first gear meshes with the third gear on the same side, and the first gear drives the third gear on the same side to rotate. During the rotation process, the third gear drives the second gear to rotate through the pulley. While the second gear rotates, it drives the second rack to slide, and then drives the second sealing plate to slide in the direction of approaching or moving away from the second box body through the second rack. During the sliding process of the second sealing plate in the direction of approaching or moving away from the second box body, the second box body is sealed or opened.

[0022] Preferably, guide plates are installed horizontally on both upper and lower sides of the first box body, slide rails are formed between the side walls of the two guide plates and the first box body, and the upper and lower ends of the second sealing plate are respectively embedded between the two slide rails.

[0023] By adopting the above technical solution, during the sliding movement of the second sealing plate between the first box body and the second box body, the slide rail guides the sliding movement of the second sealing plate, thereby facilitating the stability of the sliding movement of the second sealing plate and, at the same time, ensuring the accuracy of the sealing of the second sealing plate to the second box body.

[0024] Preferably, the oxygen supply assembly is located in the first box body, and the oxygen supply assembly includes an oxygen supply bag and a pressure plate. The oxygen supply bag is fixedly installed in the horizontal direction at one end of the first box body close to the second box body, and the pressure plate is installed at one end of the first box body away from the second box body, and the left and right ends of the pressure plate are respectively integrally connected to the two second sealing plates on the left and right sides of the first box body.

[0025] By adopting the above technical solution, when the second sealing plate slides between the first box body and the second box body, the pressing plate is synchronously driven to slide in the direction close to or away from the oxygen supply bag. When the first box body and the second box body rotate clockwise, during this process, the second sealing plate slides in the direction close to the second box body to gradually seal the second box body. At the same time, the pressing plate slides in the direction close to the oxygen supply bag, and after the pressing plate squeezes the oxygen supply bag, the oxygen in the oxygen supply bag is input into the second box body; when the first box body and the second box body rotate counterclockwise, during this process, the second sealing plate slides in the direction away from the second box body to gradually unseal the second box body. At the same time, the pressing plate slides in the direction away from the oxygen supply bag, and during this process, the oxygen supply bag no longer supplies oxygen to the second box body.

[0026] The oxygen supply component can be used to replenish oxygen in the fresh-keeping box in a timely manner during the process of replacing flowers, which is beneficial to further improve the effect of preserving the flowers in the fresh-keeping box.

[0027] Preferably, the fresh-keeping box also includes a third box body, which is integrally formed on the top of the first box body and the second box body, and a driving assembly and a second partition are added to the third box body, the second partition is vertically arranged, and the second partition is located above the second box body, and a slot is opened on the top of the second box body along its width direction, and the second partition is inserted into the slot, and the driving assembly is located above the first box body, and the driving assembly is used to drive the second partition to rise and fall in the vertical direction.

[0028] By adopting the above technical solution, when the second partition is completely lowered into the second box body, in this state, a closed chamber is formed between the second partition and the oxygen supply bag, and at this time, the oxygen input into the second box body by the oxygen supply bag is temporarily stored in the chamber. When the second partition rises, the oxygen in the chamber is supplied into the second box body again.

[0029] The purpose of doing so is that when the pressing plate slides and squeezes the oxygen supply bag in the direction close to the oxygen supply bag, the flowers are taken out of the second box body in this state. At this time, the hinged plate on the top of the second box body needs to be opened. If oxygen is supplied to the second box body at this time, the oxygen supplied to the second box body will inevitably leak when the hinged plate is opened, thereby causing a waste of oxygen. Therefore, when the pressing plate slides and squeezes the oxygen supply bag in the direction close to the oxygen supply bag, during this process, the driving component drives the second partition plate to descend into the second box body, and a closed chamber is formed between the second partition plate and the oxygen supply bag. The oxygen supplied to the second box body by the pressing plate squeezing the oxygen supply bag will be temporarily stored in the chamber, thereby preventing the oxygen from leaking.

[0030] During the process of gradually rotating the first box body and the second box body into the box, the pressing plate slides away from the oxygen supply bag under the drive of the second sealing plate. During this process, the driving assembly drives the second partition plate to gradually move upward. As the second partition plate moves upward, the oxygen temporarily stored in the chamber between the second partition plate and the oxygen supply bag is gradually released to the fresh flowers, providing the required oxygen for the preservation of the fresh flowers.

[0031] Preferably, the driving assembly includes a moving plate, a first wedge block and a second wedge block. The moving plate has an inverted "U" - shaped structure as a whole. The left and right ends of the moving plate are integrally connected to the two second racks on the left and right sides of the first box body respectively. The first wedge block is integrally formed at one end of the moving plate close to the movable door, and the second wedge block is integrally formed at the top of the second partition plate. The mutually approaching ends of the first wedge block and the second wedge block are in wedge - shaped fit.

[0032] By adopting the above - mentioned technical solution, when the second rack drives the pressing plate to slide towards the oxygen supply bag through the second sealing plate, the second rack synchronously drives the moving plate and the first wedge block to slide towards the second wedge block. During this process, the first wedge block drives the second wedge block to descend, and then drives the second partition plate to descend through the second wedge block; when the second rack drives the pressing plate to slide away from the oxygen supply bag through the second sealing plate, the second rack synchronously drives the moving plate and the first wedge block to slide away from the second wedge block. During this process, the second wedge block drives the second partition plate to rise.

[0033] In summary, when replacing the fresh flowers in the box, the fresh - keeping box rotates clockwise and the hinge plate opens. At this time, the pressing plate squeezes the oxygen supply bag to supply oxygen into the second box body, and at the same time the second partition plate descends. During this process, a sealed chamber is formed between the second partition plate and the oxygen supply bag, and oxygen is temporarily stored in this chamber, which can effectively avoid oxygen leakage; after the fresh flowers are replaced, the hinge plate closes and the fresh - keeping box rotates counterclockwise. At this time, the pressing plate slides away from the oxygen supply bag, and at the same time the second partition plate rises. During this process, the sealed chamber between the second partition plate and the oxygen supply bag gradually opens, and oxygen is gradually released to the fresh flowers.

[0034] Preferably, a moving groove for the moving plate to slide is formed along the length direction of the third box body.

[0035] By adopting the above - mentioned technical solution, during the sliding process of the moving plate in the moving groove, the moving groove limits the moving plate, and thus can effectively ensure the stability of the moving plate during the sliding process.

[0036] In summary, the present application includes at least one of the following beneficial technical effects:

[0037] 1. When the flowers in the box are taken out of the box, it can effectively prevent the air in the box from convection with the outside air, and thus effectively prevent the air in the box from exchanging with the air outside the box, which is beneficial to ensure the balance of air temperature and humidity in the box. There is no need to readjust the temperature and humidity of the air in the box. After the flowers are taken out of the box, the flowers to be replaced can be immediately put into the box for preservation, which is beneficial to improve the efficiency of daily preservation of flowers. At the same time, the box is always in a sealed state, which can effectively prevent moisture in the outside air from entering the box, and thus effectively ensure the waterproof effect of the box;

[0038] 2. Since the left and right sides of the second box body are open, the air inside the second box body is likely to form convection during the rotation of the second box body, which will have a certain impact on the temperature and humidity inside the second box body. In order to avoid this situation, the second box body is further effectively sealed by the sealing component on the first box body during the rotation of the second box body, thereby reducing the impact of air flow on the temperature and humidity inside the second box body during the rotation of the second box body;

[0039] 3. The oxygen supply component can be used to replenish the oxygen in the fresh-keeping box in a timely manner during the process of changing flowers, which is beneficial to further improve the effect of preserving flowers in the fresh-keeping box. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Figure 1 It is a schematic diagram of the overall structure of the embodiment of the present application;

[0041] Figure 2 This is a structural schematic diagram of an embodiment of the present application specifically showing the positional relationship between the first partition, the installation cavity, the fresh-keeping cavity, the fresh-keeping box and the rotating shaft;

[0042] Figure 3 It is a structural schematic diagram of an embodiment of the present application specifically showing the positional relationship between the first gear, the first rack, the slide slot, the first box body, the second box body and the third box body;

[0043] Figure 4 is a structural schematic diagram of an embodiment of the present application specifically showing the positional relationship between the adapter plate and the adapter slot;

[0044] Figure 5 is a structural schematic diagram of an embodiment of the present application specifically showing the positional relationship between the guide plate and the slide rail;

[0045] Figure 6 It is a structural schematic diagram of an embodiment of the present application that specifically shows the positional relationship among the oxygen supply bag, the pressure plate, the second partition plate, the slot, the first wedge block, and the second wedge block.

[0046] 1. The cam face of the cabinet is provided with a plurality of locking plates, and a plurality of locking plates are provided to lock the cabinet. The locking plates are provided with a plurality of locking plates, and a plurality of locking plates are provided to lock the cabinet. The locking plates are provided with a plurality of locking plates, and a plurality of locking plates are provided to lock the cabinet. DETAILED DESCRIPTION

[0047] The following is combined with Figure 1 -Attached Figure 6 , further details of this application are given.

[0048] Example:

[0049] The present application embodiment discloses a flower preservation waterproof box, referring to Figure 1 and Figure 2 , including a box body 1, which is in a rectangular parallelepiped shape, and a first partition 2 is welded inside the box body 1 along the vertical direction. The first partition 2 divides the inside of the box body 1 into an installation cavity 3 and a fresh-keeping cavity 4 on the left and right sides. The installation cavity 3 is used to assemble the corresponding temperature regulator and humidity regulator, and the installation cavity 3 and the fresh-keeping cavity 4 are kept in communication. A fresh-keeping box 5 is provided in the fresh-keeping cavity 4, and the fresh-keeping box 5 is horizontally arranged, and the left and right sides of the fresh-keeping box 5 are open, and the corresponding flowers are stored in the fresh-keeping box 5. The temperature and humidity in the fresh-keeping cavity 4 are adjusted by the temperature regulator and humidity regulator in the installation cavity 3, so that the flowers can always be kept at the preset temperature and humidity.

[0050] At the same time, refer to Figure 1 and Figure 2 A movable door 6 that can be lifted up and down is provided in the vertical direction on the side of the fresh-keeping chamber 4 away from the installation chamber 3, and the fresh-keeping chamber 4 is opened or closed by the movable door 6. A rotating shaft 7 is provided in the horizontal direction on the side of the fresh-keeping chamber 4 close to the movable door 6, and the rotating shaft 7 is used to drive the fresh-keeping box 5 to rotate in the fresh-keeping chamber 4. At the same time, the rotating shaft 7 can drive the movable door 6 to rise to open the fresh-keeping chamber 4.

[0051] Reference Figure 1 and Figure 2, a first sealing plate 8 is vertically installed at the bottom of the movable door 6. The first sealing plate 8 is integrally in a "U" - shaped structure and is fastened to the inside of the box body 1 through fastening bolts. The first sealing plate 8 seals the movable door 6, effectively ensuring the sealing performance inside the box body 1. When the bottom of the movable door 6 rises above the first sealing plate 8, a gap will appear between the bottom of the movable door 6 and the top of the first sealing plate 8 at this time.

[0052] In this state, to effectively prevent the outside air from infiltrating into the box body 1 through the gap between the movable door 6 and the first sealing plate 8, during the process of the movable door 6 being opened upward, the fresh - keeping box 5 rotates clockwise synchronously under the drive of the rotating shaft 7, and the fresh - keeping box 5 cooperates with the movable door 6 during the rotation to seal the box body 1. When the bottom of the movable door 6 rises above the first sealing plate 8, the fresh - keeping box 5 blocks the gap between the movable door 6 and the first sealing plate 8, thereby effectively ensuring the sealing performance inside the box body 1 through the fresh - keeping box 5 and effectively preventing the outside air from infiltrating into the box body 1 through the gap between the movable door 6 and the first sealing plate 8.

[0053] Refer to Figure 1 and Figure 2 , one side of the fresh - keeping box 5 is a hinge plate 9. After the fresh - keeping box 5 rotates from the horizontal state to the vertical state, the fresh - keeping box 5 and the movable door 6 seal the box body 1. In this state, the hinge plate 9 is located outside the box body 1. Open the hinge plate 9 and take out the flowers in the fresh - keeping box 5. This makes the box body 1 always in a sealed state during the process of taking out the flowers. After the flowers to be replaced are stored in the fresh - keeping box 5, the fresh - keeping box 5 rotates into the box body 1. At the same time, the movable door 6 descends. During this process, the top of the fresh - keeping box 5 and the inner side wall of the movable door 6 still stick tightly to seal the box body 1. After the movable door 6 descends below the first sealing plate 8, the box body 1 is continuously sealed by the movable door 6 and the first sealing plate 8.

[0054] It should be noted here that in the initial state when the fresh - keeping box 5 is in the fresh - keeping cavity 4, the hinge plate 9 on the fresh - keeping box 5 is at the top of the fresh - keeping box 5. When the fresh - keeping box 5 is rotationally connected to the first rotating shaft 7 and starts to rotate clockwise by 90° in the fresh - keeping cavity 4, the hinge plate 9 rotates to the right side of the fresh - keeping box 5.

[0055] This arrangement can effectively prevent the air in the box 1 from convection with the outside air when the flowers in the box 1 are taken out of the box 1, and can effectively prevent the air in the box 1 from exchanging with the air outside the box 1, which is beneficial to ensuring the balance of the temperature and humidity of the air in the box 1. There is no need to re-adjust the temperature and humidity of the air in the box 1. After the flowers are taken out of the box 1, the flowers to be replaced can be immediately put into the box 1 for preservation, which is beneficial to improving the efficiency of daily preservation of flowers. At the same time, the box 1 is always in a sealed state, which can effectively prevent moisture in the outside air from entering the box 1, and can effectively ensure the waterproof effect of the box 1.

[0056] In summary, during the process of the movable door 6 rising to open the box body 1, the sealing of the box body 1 is divided into two stages.

[0057] Stage 1: The movable door 6 rises and the fresh-keeping box 5 rotates. When the bottom of the movable door 6 has not risen to the top of the first sealing plate 8, the movable door 6 and the first sealing plate 8 are in a sealed state, that is, there is no gap between the movable door 6 and the first sealing plate 8, and the air outside the box body 1 cannot enter the box body 1. In this state, the sealing of the box body 1 is still achieved by the cooperation of the movable door 6 and the first sealing plate 8.

[0058] The second stage: As the movable door 6 continues to rise, when the bottom of the movable door 6 rises above the top of the first sealing plate 8, a gap will appear between the bottom of the movable door 6 and the top of the first sealing plate 8, and the outside air can penetrate into the box body 1 through the gap. When the bottom of the movable door 6 rises above the top of the first sealing plate 8, the fresh-keeping box 5 rotates to a vertical state. In this state, the gap between the movable door 6 and the first sealing plate 8 is blocked by the fresh-keeping box 5, and the sealing of the inside of the box body 1 is effectively guaranteed by the fresh-keeping box 5, effectively preventing the outside air from penetrating into the box body 1 through the gap between the movable door 6 and the first sealing plate 8. That is, the sealing inside the box body 1 in the second stage is achieved by the cooperation of the fresh-keeping box 5, the first sealing plate 8 and the movable door 6.

[0059] Reference Figure 1 and Figure 2 Specifically, two support seats 10 are welded in the fresh-keeping cavity 4 along the horizontal direction, and the two support seats 10 are spaced apart in the fresh-keeping cavity 4. Through holes are provided at the ends of the two support seats 10, and the two ends of the rotating shaft 7 are respectively inserted into the through holes of the two support seats 10, so that the rotating shaft 7 is stably supported by the two support seats 10. One end of the rotating shaft 7 is connected to a driving motor 11, which is located outside the box body 1, and is used to drive the rotating shaft 7 to rotate.

[0060] Reference Figure 2 , Figure 3 as well as Figure 4A transfer plate 12 is integrally connected to one side of the fresh-keeping box 5 close to the rotating shaft 7 in the horizontal direction. The end of the transfer plate 12 away from the fresh-keeping box 5 is open, and a circular arc-shaped transfer groove 13 is opened inside the transfer plate 12, and the rotating shaft 7 is snapped into the transfer groove 13.

[0061] During the specific operation, the driving motor 11 is turned on, and the driving motor 11 drives the rotating shaft 7 to rotate, while driving the adapter plate 12 and the fresh-keeping box 5 to rotate clockwise in the fresh-keeping cavity 4.

[0062] It should be noted here that one end of the adapter plate 12 close to the first sealing plate 8 is abutted against the first sealing plate 8. The purpose of this is that after the front end of the adapter plate 12 abuts against the first sealing plate 8, when the adapter plate 12 is rotated to a vertical state, the fresh-keeping box 5 can be closely attached to the first sealing plate 8, so that the fresh-keeping box 5 can cover the gap between the movable door 6 and the first sealing plate 8 more tightly, further preventing the outside air from entering the box body 1.

[0063] Reference Figure 2 and Figure 3 The left and right ends of the rotating shaft 7 are integrally provided with a first gear 14 in the vertical direction. At the same time, the left and right sides of the movable door 6 are installed with a first rack 15 in the vertical direction. The two first gears 14 correspond to the two first racks 15 one by one, and the corresponding first gears 14 and the first racks 15 are meshed and connected.

[0064] While driving the rotating shaft 7 to rotate, the driving motor 11 synchronously drives the two first gears 14 to rotate through the rotating shaft 7. The two first gears 14 engage with the corresponding first racks 15 during the rotation process. The two first gears 14 drive the two first racks 15 to rise and fall, and then the two first racks 15 drive the movable door 6 to rise and fall. Then, the rotating shaft 7 drives the fresh-keeping box 5 to rotate and drives the movable door 6 to rise and fall.

[0065] A corresponding auxiliary gear is provided between the first gear 14 and the first rack 15. The purpose of the auxiliary gear is to effectively ensure the smooth transmission between the first gear 14 and the first rack 15. In this embodiment, when the movable door rises, the first rack 15 rises, and the first gear 14 rotates counterclockwise at this time. However, when the fresh-keeping box 5 rotates in the direction close to the movable door 6, the first gear 14 should rotate clockwise. This causes a conflict in the motion state of the first gear 14. In order to effectively avoid such motion interference, a corresponding auxiliary gear is provided between the first gear 14 and the first rack 15, and the auxiliary gears are respectively engaged with the first gear 14 and the first rack 15. When the first gear 14 rotates clockwise, it drives the auxiliary gear to rotate counterclockwise, and then drives the first rack 15 to rise through the auxiliary gear.

[0066] Reference Figure 2 and Figure 3 The left and right sides of the movable door 6 are provided with long slide grooves 16 in the vertical direction, and the two first racks 15 are respectively slidably installed in the two slide grooves 16. When the first rack 15 drives the movable door 6 to rise and fall, the slide groove 16 guides the rise and fall of the first rack 15, which is conducive to ensuring the stability of the movable door 6 during the rise and fall process.

[0067] Reference Figure 2 , Figure 3 as well as Figure 4 Further, the fresh-keeping box 5 includes a first box body 17 and a second box body 18 which are connected in one piece. The second box body 18 is located on a side close to the movable door 6. The left and right sides of the second box body 18 are open. The second box body 18 is used to store flowers. The first box body 17 is located on a side of the second box body 18 away from the rotating shaft 7. The hinge plate 9 is rotatably mounted on the top of the second box body 18.

[0068] A sealing assembly is provided on the first box body 17 , and the sealing assembly is used to seal the second box body 18 during the rotation of the fresh-keeping box 5 , further ensuring the sealing inside the second box body 18 , and effectively avoiding the exchange convection of air inside the second box body 18 .

[0069] Since the left and right sides of the second box body 18 are open, the air inside the second box body 18 is likely to form convection during its rotation, which will in turn have a certain impact on the temperature and humidity inside the second box body 18. In order to avoid this situation, during the rotation of the second box body 18, the sealing component on the first box body 17 further effectively seals the second box body 18, thereby reducing the impact of air flow on the temperature and humidity inside the second box body 18 during its rotation.

[0070] There are two sets of sealing components, which are respectively located on the left and right sides of the first box body 17 , and the left and right sides of the second box body 18 are sealed respectively by the two sealing components.

[0071] Specifically, refer to Figure 2 , Figure 3 as well as Figure 4 The sealing assembly includes a second sealing plate 19, a second rack 20, a second gear 21, a third gear 22 and a pulley 23. The second sealing plate 19 is in a rectangular parallelepiped shape. The second sealing plate 19, the second rack 20 and the second gear 21 are all mounted on the first box body 17. The side wall of the second sealing plate 19 is integrally connected with the second rack 20, and the second rack 20 is meshed and connected with the second gear 21. The third gear 22 is mounted on the second box body 18, and the third gear 22 is meshed and connected with the first gear 14 on the same side. The pulley 23 is mounted between the second gear 21 and the third gear 22.

[0072] Specifically, when the rotating shaft 7 drives the first gear 14 to rotate, the first gear 14 meshes with the third gear 22 on the same side, and the third gear 22 on the same side is driven to rotate by the first gear 14. During the rotation process, the third gear 22 drives the second gear 21 to rotate through the pulley 23. While the second gear 21 rotates, it drives the second rack 20 to slide, and then drives the second sealing plate 19 to slide toward or away from the second box body 18 through the second rack 20. During the sliding process of the second sealing plate 19 toward or away from the second box body 18, the second box body 18 is sealed or opened.

[0073] Corresponding auxiliary gears may also be added between the second gear 21 and the third gear 22 to adjust the rotation directions of the second gear 21 and the third gear 22 accordingly.

[0074] Further, refer to Figure 3 , Figure 4 as well as Figure 5 The first box body 17 is provided with guide plates 24 installed horizontally on both upper and lower sides. The guide plates 24 are in an "L"-shaped structure as a whole. The side walls of the two guide plates 24 are formed with slide rails 25 between the first box body 17. The upper and lower ends of the second sealing plate 19 are respectively embedded between the two slide rails 25. During the sliding movement of the second sealing plate 19 between the first box body 17 and the second box body 18, the slide rails 25 guide the sliding movement of the second sealing plate 19, which is conducive to ensuring the stability of the sliding process of the second sealing plate 19. At the same time, it can also ensure the accuracy of the second sealing plate 19 sealing the second box body 18.

[0075] Furthermore, an oxygen supply component is further provided in the first box body 17 , and the oxygen supply component supplies oxygen to the second box body 18 , thereby providing the flowers with the required oxygen during the preservation process in the second box body 18 .

[0076] Specifically, refer to Figure 4 , Figure 5 as well as Figure 6 The oxygen supply assembly includes an oxygen supply bag 26 and a pressing plate 27. The oxygen supply bag 26 is fixedly mounted horizontally at one end of the first box body 17 close to the second box body 18. The pressing plate 27 is mounted at one end of the first box body 17 away from the second box body 18. The left and right ends of the pressing plate 27 are respectively connected to the two second sealing plates 19 on the left and right sides of the first box body 17. A through hole is provided on the connecting plate between the first box body 17 and the second box body 18, and the oxygen outlet of the oxygen supply bag 26 is connected to the second box body 18 through the through hole.

[0077] When the second sealing plate 19 slides between the first box body 17 and the second box body 18, the pressing plate 27 is synchronously driven to slide in the direction close to or away from the oxygen supply bag 26. When the first box body 17 and the second box body 18 rotate clockwise, the second sealing plate 19 slides in the direction close to the second box body 18 to gradually seal the second box body 18. At the same time, the pressing plate 27 slides in the direction close to the oxygen supply bag 26. After the pressing plate 27 squeezes the oxygen supply bag 26, the oxygen in the oxygen supply bag 26 is input into the second box body 18; when the first box body 17 and the second box body 18 rotate counterclockwise, the second sealing plate 19 slides in the direction away from the second box body 18 to gradually unseal the second box body 18. At the same time, the pressing plate 27 slides in the direction away from the oxygen supply bag 26, and the oxygen supply bag 26 no longer supplies oxygen to the second box body 18.

[0078] The oxygen supply component can be used to replenish the oxygen in the fresh-keeping box 5 in a timely manner during the process of replacing the flowers, which is beneficial to further improve the effect of preserving the flowers in the fresh-keeping box 5.

[0079] Further, refer to Figure 4 , Figure 5 as well as Figure 6 The fresh-keeping box 5 also includes a third box body 28, which is integrally formed on the top of the first box body 17 and the second box body 18. A driving assembly and a second partition 29 are added to the third box body 28. The second partition 29 is vertically arranged. The second partition 29 is located above the second box body 18. A slot 30 is opened on the top of the second box body 18 along its width direction. The second partition 29 is inserted into the slot 30. The driving assembly is located above the first box body 17. The driving assembly is used to drive the second partition 29 to rise and fall in the vertical direction. When the second partition 29 is completely lowered into the second box body 18, in this state, a closed chamber is formed between the second partition 29 and the oxygen supply bag 26. At this time, the oxygen input into the second box body 18 by the oxygen supply bag 26 is temporarily stored in the chamber. When the second partition 29 rises, the oxygen in this chamber is supplied to the second box body 18.

[0080] The purpose of doing this is that when the pressing plate 27 slides towards the oxygen supply bag 26 to squeeze the oxygen supply bag 26, in this state, the process of taking out the fresh flowers from the second box body 18 is carried out. At this time, the hinge plate 9 at the top of the second box body 18 needs to be opened. If oxygen is supplied into the second box body 18 at this time, when the hinge plate 9 is opened, it is inevitable that the oxygen supplied into the second box body 18 will leak, thus causing waste of oxygen. Therefore, when the pressing plate 27 slides towards the oxygen supply bag 26 to squeeze the oxygen supply bag 26, during this process, the driving assembly drives the second partition plate 29 to descend into the second box body 18, and a sealed chamber will be formed between the second partition plate 29 and the oxygen supply bag 26. The oxygen supplied into the second box body 18 by the pressing plate 27 squeezing the oxygen supply bag 26 will be temporarily stored in this chamber, and thus these oxygen will not leak.

[0081] During the process that the first box body 17 and the second box body 18 are gradually rotated into the box body 1, the pressing plate 27 slides away from the oxygen supply bag 26 under the drive of the second sealing plate 19. During this process, the driving assembly drives the second partition plate 29 to gradually move upward. As the second partition plate 29 moves upward, the oxygen temporarily stored in the chamber between the second partition plate 29 and the oxygen supply bag 26 is gradually released to the fresh flowers, providing the required oxygen for the preservation of the fresh flowers.

[0082] Specifically, referring to Figure 4 、 Figure 5 and Figure 6 the driving assembly includes a moving plate 31, a first wedge block 32 and a second wedge block 33. The moving plate 31 is integrally in an inverted "U" - shaped structure. The left and right ends of the moving plate 31 are respectively integrally connected to the two second racks 20 on the left and right sides of the first box body 17. During the sliding process of the second racks 20, the moving plate 31 is synchronously driven to slide. The first wedge block 32 is integrally formed at one end of the moving plate 31 close to the movable door 6, and the second wedge block 33 is integrally formed at the top of the second partition plate 29. The mutually approaching ends of the first wedge block 32 and the second wedge block 33 are in wedge - shaped fit.

[0083] When the second rack 20 drives the pressing plate 27 to slide towards the oxygen supply bag 26 through the second sealing plate 19, the second rack 20 synchronously drives the moving plate 31 and the first wedge block 32 to slide towards the second wedge block 33. During this process, the first wedge block 32 drives the second wedge block 33 to descend, and thus drives the second partition plate 29 to descend through the second wedge block 33; when the second rack 20 drives the pressing plate 27 to slide away from the oxygen supply bag 26 through the second sealing plate 19, the second rack 20 synchronously drives the moving plate 31 and the first wedge block 32 to slide away from the second wedge block 33. During this process, the second wedge block 33 drives the second partition plate 29 to rise.

[0084] To sum up, when the flowers are replaced in the box body 1, the fresh-keeping box 5 rotates clockwise and the hinged plate 9 opens. At this time, the pressure plate 27 squeezes the oxygen supply bag 26 to supply oxygen to the second box body 18, and the second partition 29 descends. During this process, a closed chamber is formed between the second partition 29 and the oxygen supply bag 26, and oxygen is temporarily stored in the chamber, which can effectively prevent oxygen leakage; after the flowers are replaced, the hinged plate 9 is closed and the fresh-keeping box 5 rotates counterclockwise. At this time, the pressure plate 27 slides away from the oxygen supply bag 26, and the second partition 29 rises. During this process, the closed chamber between the second partition 29 and the oxygen supply bag 26 gradually opens, and oxygen is gradually released to the flowers.

[0085] Specifically, refer to Figure 4 and Figure 6 A moving groove 34 for the moving plate 31 to slide is provided on the third box body 28 along its length direction. When the moving plate 31 slides in the moving groove 34, the moving groove 34 limits the moving plate 31, thereby effectively ensuring the stability of the moving plate 31 during the sliding process.

[0086] The implementation principle of a flower preservation waterproof box in the embodiment of the present application is:

[0087] When the movable door 6 rises to open the box body 1, the sealing of the box body 1 is divided into two stages.

[0088] Stage 1: The movable door 6 rises and the fresh-keeping box 5 rotates. When the bottom of the movable door 6 has not risen to the top of the first sealing plate 8, the movable door 6 and the first sealing plate 8 are in a sealed state, that is, there is no gap between the movable door 6 and the first sealing plate 8, and the air outside the box body 1 cannot enter the box body 1. In this state, the sealing of the box body 1 is still achieved by the cooperation of the movable door 6 and the first sealing plate 8.

[0089] The second stage: As the movable door 6 continues to rise, when the bottom of the movable door 6 rises above the top of the first sealing plate 8, a gap will appear between the bottom of the movable door 6 and the top of the first sealing plate 8, and the outside air can penetrate into the box body 1 through the gap. When the bottom of the movable door 6 rises above the top of the first sealing plate 8, the fresh-keeping box 5 rotates to a vertical state. In this state, the gap between the movable door 6 and the first sealing plate 8 is blocked by the fresh-keeping box 5, and the sealing of the inside of the box body 1 is effectively guaranteed by the fresh-keeping box 5, effectively preventing the outside air from penetrating into the box body 1 through the gap between the movable door 6 and the first sealing plate 8. That is, the sealing inside the box body 1 in the second stage is achieved by the cooperation of the fresh-keeping box 5, the first sealing plate 8 and the movable door 6.

[0090] This arrangement can effectively prevent the air in the box 1 from convection with the outside air when the flowers in the box 1 are taken out of the box 1, and can effectively prevent the air in the box 1 from exchanging with the air outside the box 1, which is beneficial to ensuring the balance of the temperature and humidity of the air in the box 1. There is no need to re-adjust the temperature and humidity of the air in the box 1. After the flowers are taken out of the box 1, the flowers to be replaced can be immediately put into the box 1 for preservation, which is beneficial to improving the efficiency of daily preservation of flowers. At the same time, the box 1 is always in a sealed state, which can effectively prevent moisture in the outside air from entering the box 1, and can effectively ensure the waterproof effect of the box 1.

[0091] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A flower preservation waterproof box, characterized in that: The invention comprises a box body (1), wherein a first partition (2) is fixed inside the box body (1) in a vertical direction, wherein the first partition (2) divides the inside of the box body (1) into an installation cavity (3) and a fresh-keeping cavity (4) on the left and right sides, wherein the installation cavity (3) is used to mount a corresponding temperature regulator and a humidity regulator, and the installation cavity (3) and the fresh-keeping cavity (4) are kept in communication; A fresh-keeping box (5) is rotatably arranged in the fresh-keeping cavity (4), and flowers are stored in the fresh-keeping box (5). A movable door (6) is slidably arranged in a vertical direction on a side of the fresh-keeping cavity (4) away from the installation cavity (3). A rotating shaft (7) is additionally arranged in a horizontal direction on a side of the fresh-keeping cavity (4) close to the movable door (6). The rotating shaft (7) is used to drive the fresh-keeping box (5) to rotate in the fresh-keeping cavity (4), and the rotating shaft (7) is used to drive the movable door (6) to slide. A first sealing plate (8) is installed at the bottom of the movable door (6) in the vertical direction, and the movable door (6) and the first sealing plate (8) are used to seal the box body (1); the fresh-keeping box (5) is used to seal between the movable door (6) and the first sealing plate (8), and one side of the fresh-keeping box (5) is a hinge plate (9), and the hinge plate (9) is used to take the flowers in the fresh-keeping box (5) out of the box body (1); An oxygen supply component is provided inside the fresh-keeping box (5), and the oxygen supply component is used to provide oxygen required in the fresh-keeping process of flowers.

2. A flower preservation waterproof box according to claim 1, characterized in that: Two support seats (10) are fixed in the fresh-keeping cavity (4) along the horizontal direction. The two support seats (10) are spaced apart in the fresh-keeping cavity (4). Through holes are provided at the ends of the two support seats (10). The two ends of the rotating shaft (7) are respectively inserted into the through holes of the two support seats (10). One end of the rotating shaft (7) is connected to a driving motor (11). The driving motor (11) is located outside the box body (1). The driving motor (11) is used to drive the rotating shaft (7) to rotate. A transfer plate (12) is integrally connected to one side of the fresh-keeping box (5) close to the rotating shaft (7) along the horizontal direction. The end of the transfer plate (12) away from the fresh-keeping box (5) is open, and a transfer groove (13) is provided inside the transfer plate (12). The rotating shaft (7) is clamped into the transfer groove (13). The left and right ends of the rotating shaft (7) are both integrally sleeved with a first gear (14) in the vertical direction, and the left and right sides of the movable door (6) are both vertically mounted with a first rack (15), the two first gears (14) correspond to the two first racks (15) one by one, and the corresponding first gears (14) and the first racks (15) are meshed and connected.

3. A flower preservation waterproof box according to claim 2, characterized in that: The left and right sides of the movable door (6) are provided with sliding grooves (16) in the vertical direction, and the two first racks (15) are slidably installed in the two sliding grooves (16) respectively.

4. A flower preservation waterproof box according to claim 3, characterized in that: The fresh-keeping box (5) comprises a first box body (17) and a second box body (18) which are connected in one piece, the second box body (18) being located on a side close to the movable door (6), the left and right sides of the second box body (18) being open, the second box body (18) being used to store flowers, the first box body (17) being located on a side of the second box body (18) away from the rotating shaft (7), and the hinge plate (9) being rotatably mounted on the top of the second box body (18); The first box body (17) is provided with a sealing component, and the sealing component is used to seal the second box body (18) during the rotation of the fresh-keeping box (5).

5. A flower preservation waterproof box according to claim 4, characterized in that: The sealing assembly comprises a second sealing plate (19), a second rack (20), a second gear (21), a third gear (22) and a pulley (23); the second sealing plate (19), the second rack (20) and the second gear (21) are all mounted on the first box body (17); the side wall of the second sealing plate (19) is integrally connected with the second rack (20), and the second rack (20) is meshed with the second gear (21); the third gear (22) is mounted on the second box body (18), and the third gear (22) is meshed with the first gear (14) on the same side; the pulley (23) is mounted between the second gear (21) and the third gear (22).

6. A flower preservation waterproof box according to claim 5, characterized in that: Guide plates (24) are installed in the horizontal direction on both upper and lower sides of the first box body (17), and slide rails (25) are formed between the side walls of the two guide plates (24) and the first box body (17), and the upper and lower ends of the second sealing plate (19) are respectively embedded between the two slide rails (25).

7. A flower preservation waterproof box according to claim 6, characterized in that: The oxygen supply assembly is located in the first box body (17), and comprises an oxygen supply bag (26) and a pressure plate (27). The oxygen supply bag (26) is fixedly mounted in a horizontal direction at one end of the first box body (17) close to the second box body (18), and the pressure plate (27) is mounted at one end of the first box body (17) away from the second box body (18), and the left and right ends of the pressure plate (27) are respectively connected in one piece with the two second sealing plates (19) on the left and right sides of the first box body (17).

8. A flower preservation waterproof box according to claim 7, characterized in that: The fresh-keeping box (5) also includes a third box body (28), the third box body (28) is integrally formed on the top of the first box body (17) and the second box body (18), a driving assembly and a second partition (29) are added to the third box body (28), the second partition (29) is vertically arranged, the second partition (29) is located above the second box body (18), a slot (30) is opened on the top of the second box body (18) along its width direction, the second partition (29) is inserted into the slot (30), the driving assembly is located above the first box body (17), and the driving assembly is used to drive the second partition (29) to rise and fall in the vertical direction.

9. A flower preservation waterproof box according to claim 8, characterized in that: The driving assembly includes a moving plate (31), a first wedge block (32) and a second wedge block (33). The moving plate (31) has an overall inverted "U" - shaped structure. The left and right ends of the moving plate (31) are integrally connected to the two second racks (20) on the left and right sides of the first box body (17) respectively. The first wedge block (32) is integrally formed at one end of the moving plate (31) close to the movable door (6). The second wedge block (33) is integrally formed on the top of the second partition plate (29). The ends of the first wedge block (32) and the second wedge block (33) close to each other are in wedge - shaped cooperation.

10. A flower preservation waterproof box according to claim 9, characterized in that: A moving groove (34) for the sliding of the moving plate (31) is formed along the length direction of the third box body (28).

Citation Information

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