Cut allium giganteum transporting and packaging box

By designing the clamping mechanism and multi-hole structure in the Dahua green onion transport packaging box, the shortcomings of traditional packaging boxes in terms of fixing and ventilation are solved, and the stable fixing and fresh preservation effect of Dahua green onion in transportation is achieved.

CN223001969UActive Publication Date: 2025-06-20INST OF BOTANY JIANGSU PROVINCE & CHINESE ACADEMY OF SCI +1
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Patent Information

Application Number
CN202422001530.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-06-20
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The existing flower transportation packaging boxes are not effective when fixing and supporting large green onions, and lack effective ventilation design, which makes flowers easy to damage and difficult to preserve freshness during transportation.

Method used

A large flower onion cut flower transportation packaging box was designed, adopting a clamping mechanism and a multi-hole design. The clamping mechanism provides stable support through parallel frames and through-hole groups, while the multi-hole design promotes air circulation and temperature and humidity adjustment.

Benefits of technology

Effectively fix large flower onions, reduce shaking and damage during transportation, and at the same time extend the shelf life of flowers through ventilation design.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223001969U_ABST
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Abstract

The utility model discloses an allium giganteum cut flower transportation packing box which comprises an upper box body and a lower box body, two clamping mechanisms used for clamping allium giganteum are arranged in the space of the lower box body, and the upper box body and the lower box body are respectively formed by arranging two side plates on the left side and the right side of a bottom plate. According to the packaging box, the two clamping mechanisms special for clamping the allium giganteum are ingeniously arranged in the lower box body, and the clamping mechanisms can provide stable support for different parts of the allium giganteum, so that the allium giganteum is firmly fixed in the packaging box; the situation of damage caused by shaking, collision or external force in the transportation process is reduced, and a plurality of reasonably-distributed holes are formed in the side walls of the first plate body and the second plate body in a penetrating mode. The holes not only provide channels for air circulation in the packaging box, but also can effectively adjust the temperature and humidity of the internal environment, so that the problems of decay and mildew caused by moisture accumulation in the closed space are reduced.
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Description

Technical Field

[0001] The utility model belongs to the field of transport packaging boxes, and more specifically, relates to a transport packaging box for cut flowers of Allium giganteum. Background Art

[0002] Allium giganteum is a unique and eye-catching flower, famous for its large and round inflorescences and tall flower stems. It belongs to the genus Allium in the lily family and is native to Central Asia. It is often used as a horticultural plant and is widely loved for its magnificent flowers. The inflorescence of Allium giganteum is spherical, composed of countless small flowers, usually purple or blue-violet, and the flower stems are tall and straight, reaching a height of 1 meter or even higher. Due to its unique shape and high ornamental value, Allium giganteum is widely used in flower bed arrangement, landscape beautification, and the cut flower market.

[0003] As a cut flower, Allium giganteum has very high decorative value and is often used in making large flower bouquets, flower baskets, and wedding decorations, etc. Its flowering period is relatively long, and the flowers can still maintain a good ornamental state after being picked, so it is very popular in the cut flower market. However, due to its unique shape and size, Allium giganteum faces some challenges during transportation and storage.

[0004] Most of the common flower transport packaging boxes on the market at present adopt simple cardboard boxes or plastic box structures. These packaging boxes mainly focus on accommodating flowers in terms of structure and lack specially designed fixing and supporting devices. Due to the irregular shape of Allium giganteum, when traditional packaging boxes fix the flowers, they cannot fully consider the different characteristics of the flower stems and umbel inflorescences, resulting in the flowers being prone to movement during transportation and increasing the risk of damage. In addition, traditional packaging boxes are usually hermetically designed and cannot effectively adjust the internal air circulation, resulting in difficulties in flower preservation due to poor ventilation during transportation. Although some improved packaging box designs have added simple fixing devices, such as built-in foams or fillers to increase stability, these methods often have limited effects and are difficult to meet the transportation requirements of Allium giganteum, which has relatively high requirements for protection and ventilation.

[0005] In view of this, the present utility model is specifically proposed. Content of the Utility Model

[0006] The technical problem to be solved by the present utility model is to overcome the deficiencies of the prior art and provide a transport packaging box for cut flowers of Allium giganteum, solving the problems raised in the above background art.

[0007] To solve the above technical problem, the basic concept of the technical solution adopted by the present utility model is as follows:

[0008] A transport packaging box for cut flowers of Allium giganteum, comprising: an upper box body and a lower box body. Two clamping mechanisms for clamping Allium giganteum are arranged in the space of the lower box body. Both the upper box body and the lower box body include a bottom plate. Two side plates are arranged on the left and right sides of the bottom plate. A first plate body and a second plate body are respectively arranged on the front and rear sides of the bottom plate. Folding plates are connected to both sides of the first plate body and the second plate body. After combination, the folding plates will fit against the inner wall of the side plates and be connected to the side plates by fasteners. A plurality of holes are penetrated through the side walls of the first plate body and the second plate body. A rectangular frame is formed among the side plates, the first plate body, the second plate body and the folding plates.

[0009] Optionally, the clamping mechanism includes a parallel frame located in the lower box body and respectively formed with the first plate body and the second plate body. A plurality of through-hole groups are penetrated through the opposite sides of the frame. Each through-hole group includes two through-holes penetrated through the left and right sides of the placement frame. The frame further includes a dividing groove opened from the top to the bottommost through-hole.

[0010] Optionally, a placement space is left between the two frames and the first plate body and the second plate body respectively. A placement cavity is formed between the two frames.

[0011] Optionally, the diameter of the through-holes at the frame near the first plate body is set to decrease from top to bottom, and the diameter of the through-holes at the frame near the second plate body is set to increase from top to bottom.

[0012] Optionally, both sides of the frame are adhesively bonded to the two side plates by quick-drying glue, and the bottom of the frame is adhesively bonded to the bottom plate by quick-drying glue.

[0013] Optionally, a plurality of ventilation grooves for gas flow are penetrated through the opposite sides of the frame. The shapes of the ventilation grooves include but are not limited to circular, rectangular and diamond-shaped.

[0014] Optionally, the interval between the holes opened on the first plate body is smaller than the interval between the holes opened on the second plate body.

[0015] Optionally, the space of the upper box body is larger than the space of the lower box body, and the upper box body can wrap the lower box body.

[0016] After adopting the above technical solutions, the utility model has the following beneficial effects compared with the prior art. Of course, any product implementing the utility model does not necessarily need to achieve all the advantages described below at the same time:

[0017] The packaging box of the present utility model is ingeniously provided with two clamping mechanisms in the lower box body specifically for clamping large flower onions. The setting of the clamping mechanisms can provide stable support at different parts of the large flower onions, firmly fixing them in the packaging box and avoiding damage caused by shaking, collision or external force during transportation. A plurality of reasonably distributed holes are penetrated through the side walls of the first plate body and the second plate body. These holes not only provide a channel for air circulation in the packaging box, but also can effectively adjust the temperature and humidity of the internal environment, reducing the problems of rot and mildew caused by the accumulation of moisture in the closed space. Through this ventilation design, the large flower onions can maintain suitable microclimate conditions during transportation, thereby extending their freshness preservation period.

[0018] The following further describes in detail the specific implementation manners of the present utility model with reference to the accompanying drawings. Brief Description of the Drawings

[0019] The accompanying drawings in the following description are only some embodiments. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. In the attached

[0020] In the figures:

[0021] Figure 1 is one of the three-dimensional structure diagrams of the transportation packaging box;

[0022] Figure 2 is the second of the three-dimensional structure diagrams of the transportation packaging box;

[0023] Figure 3 is the three-dimensional structure diagram of the lower box body;

[0024] Figure 4 is the sectional structure diagram of the frame near the first plate body;

[0025] Figure 5 is the sectional structure diagram of the frame near the second plate body.

[0026] In the accompanying drawings, the list of components represented by each reference numeral is as follows:

[0027] 1. Upper box body; 2. Lower box body; 3. Bottom plate; 4. Side plate; 5. First plate body; 6. Second plate body; 7. Folding plate; 8. Hole; 9. Frame; 10. Through hole; 11. Partition groove; 12. Placement space; 13. Placement cavity; 14. Ventilation groove.

[0028] It should be noted that these drawings and the text description are not intended to limit the scope of the concept of the present utility model in any way, but to illustrate the concept of the present utility model to those skilled in the art by referring to specific embodiments. Specific Embodiment

[0029] The present utility model will now be further described in detail with reference to the accompanying drawings.

[0030] Please refer to Figures 1-5 As shown, in this embodiment, a transport packaging box for cut flowers of Allium giganteum is provided, which includes an upper box body 1 and a lower box body 2. Two clamping mechanisms for clamping Allium giganteum are arranged in the space of the lower box body 2, and the clamping mechanisms can provide a reliable fixing function. Through this design, the displacement or shaking of items during transportation can be reduced, and the damage caused by vibration or collision can be reduced.

[0031] Both the upper box body 1 and the lower box body 2 include a bottom plate 3. Two side plates 4 are arranged on the left and right sides of the bottom plate 3. A first plate body 5 and a second plate body 6 are respectively arranged on the front and rear sides of the bottom plate 3. Folding plates 7 are connected to both sides of the first plate body 5 and the second plate body 6. The design that the folding plates 7 are attached to the inner wall of the side plates 4 and connected by fasteners makes the assembly and disassembly of the packaging box more convenient and fast. This detachable structural design helps to reduce production and transportation costs, and at the same time is convenient for users to quickly assemble or disassemble the packaging box during use.

[0032] And after combination, the folding plates 7 will be attached to the inner wall of the side plates 4 and connected to the side plates 4 by fasteners. A plurality of holes 8 are formed through the side walls of the first plate body 5 and the second plate body 6, which helps the circulation of internal air. This ventilation design can effectively reduce the problems of dampness and mildew caused by the closed environment technically, thereby prolonging the fresh-keeping time of the packaged items.

[0033] Moreover, a rectangular frame is formed among the side plates 4, the first plate body 5, the second plate body 6, and the folding plates 7. The rectangular frame 9 structure formed by the plate bodies and the folding plates 7 makes the packaging box have the characteristics of modularization. This modular design not only has higher flexibility in production and can adapt to the packaging requirements of different specifications of items. The fasteners include but are not limited to bolts, rivets, and axles. The frame 9 is a rigid sponge structure.

[0034] In this embodiment, the clamping mechanism includes two frames 9 located in the lower box body 2 and parallel to the first plate body 5 and the second plate body 6 respectively. Multiple groups of through-hole groups are arranged through the opposite sides of the frame 9. The through-hole group includes two through-holes 10 formed through the left and right sides of the placement frame. The frame 9 also includes a dividing groove 11 with through-holes 10 from the top to the bottom. The position of Allium giganteum is clamped by two frames 9 parallel to the first plate body 5 and the second plate body 6. And the frame 9 can form a stable support structure in the packaging box to ensure that Allium giganteum or other items will not be displaced or shaken during transportation, effectively protecting the integrity of the items. By providing the through-holes 10 penetrating the left and right sides, the frame 9 can evenly disperse the pressure generated when clamping the items to the entire structure, reducing the risk of damage or deformation of the items caused by excessive local pressure.

[0035] In this embodiment, a placement space 12 is left between the two frames 9 and the first plate body 5 and the second plate body 6, respectively, and a placement cavity 13 is formed between the two frames 9. An ice bag can be placed in the placement cavity 13 to reduce the temperature in the box and achieve a fresh-keeping effect.

[0036] In this embodiment, the diameter of the through hole 10 at the frame 9 near the first plate body 5 is set from large to small from the top, and the diameter of the through hole 10 at the frame 9 near the second plate body 6 is set from small to large. When in use, the root of the allium is inserted into the larger through hole 10, and the part with the umbel is inserted into the small through hole 10, so as to achieve the clamping of the allium. Inserting the root of the allium into the larger through hole 10 and the umbel part into the smaller through hole 10 can better adapt to the shape change of the allium. This design ensures that all parts of the allium can be firmly fixed, thereby reducing the shaking or damage of the allium during transportation, and the cross placement of the allium can be achieved through the setting of the through hole group, thereby increasing the transportation quantity of the allium.

[0037] In this embodiment, the two sides of the frame 9 are bonded to the two side panels 4 by quick-drying glue, and the bottom of the frame 9 is bonded to the bottom panel 3 by quick-drying glue. The two sides of the frame 9 are bonded to the side panels 4, and the bottom is bonded to the bottom panel 3 by quick-drying glue, forming an integral bonding structure. This structure can significantly improve the connection strength between the frame 9 and the various components of the packaging box, ensure that the frame 9 will not loosen or shift during transportation, and enhance the overall stability of the packaging box.

[0038] In the present embodiment, a plurality of ventilation grooves 14 for gas flow are provided on opposite sides of the frame 9, and the shapes of the ventilation grooves 14 include but are not limited to circular, rectangular, and diamond-shaped. The ventilation grooves 14 are provided on opposite sides of the frame 9 to facilitate the free flow of cold air in the packaging box, so that the cold air from the ice pack placed in the placement cavity 13 can enter the placement space 12. This design can effectively reduce the temperature inside the packaging box, ensure that the shallots remain fresh during transportation, and extend their shelf life. The presence of the ventilation grooves 14 not only improves the flow of cold air, but also reduces the stress concentration caused by the internal temperature difference, and reduces the physical damage that may occur to the shallots during temperature changes, thereby improving transportation quality and safety.

[0039] In this embodiment, the intervals between the holes 8 provided in the first plate 5 are smaller than the intervals between the holes 8 provided in the second plate 6. The sealing of the packaging box can be achieved by adjusting the positions when the upper box body 1 and the lower box body 2 are assembled by different sizes of the holes 8. Secondly, by designing different intervals between the holes 8, the user can choose to partially align the holes 8 to achieve moderate ventilation while maintaining a certain degree of sealing.

[0040] In this embodiment, the space of the upper box body 1 is larger than that of the lower box body 2, and the upper box body 1 can wrap the lower box body 2. After the upper box body 1 completely wraps the lower box body 2, a double-layer protection structure is formed. During transportation, this double-layer structure can better absorb the impact force and reduce the direct damage to the internal items, thereby improving the safety of the items.

[0041] The present utility model is not limited to the above embodiments. Anyone should know that structural changes made under the inspiration of the present utility model, as long as they have the same or similar technical solutions as the present utility model, all fall within the protection scope of the present utility model. The technologies, shapes, and structures not described in detail in the present utility model are all well-known technologies.

Claims

1. A transport packaging box for cut Allium sibiricum flowers, characterized in that: include: An upper box body (1) and a lower box body (2), wherein two clamping mechanisms for clamping green onions are arranged in the space of the lower box body (2), and the upper box body (1) and the lower box body (2) both comprise a bottom plate (3), and two side plates (4) are arranged on the left and right sides of the bottom plate (3), and a first plate body (5) and a second plate body (6) are arranged on the front and rear sides of the bottom plate (3), respectively, and both sides of the first plate body (5) and the second plate body (6) are connected with folding plates (7), and after being assembled, the folding plates (7) will be attached to the inner walls of the side plates (4) and connected to the side plates (4) by fasteners, and the side walls of the first plate body (5) and the second plate body (6) are penetrated with a plurality of holes (8), and a rectangular frame is formed between the side plates (4), the first plate body (5), the second plate body (6), and the folding plates (7).

2. A transport packaging box for cut Allium scalyana flowers according to claim 1, characterized in that: The clamping mechanism comprises two frames (9) located in the lower box body (2) and parallel to the first plate body (5) and the second plate body (6), respectively; a plurality of through hole groups are provided through the opposite sides of the frames (9); the through hole groups include two through holes (10) provided through the left and right sides of the placement frame; and a dividing groove (11) is provided from the top of the frame (9) to the through hole (10) at the bottom.

3. A transport packaging box for cut Allium grandiflorum flowers according to claim 2, characterized in that: A placement space (12) is left between the two frames (9) and the first plate body (5) and the second plate body (6), respectively, and a placement cavity (13) is formed between the two frames (9).

4. A transport packaging box for cut Allium scalyana flowers according to claim 2, characterized in that: The diameter of the through hole (10) at the frame (9) close to the first plate body (5) is set from large to small from the top, and the diameter of the through hole (10) at the frame (9) close to the second plate body (6) is set from small to large from the top.

5. A transport packaging box for cut Allium scalyana flowers according to claim 4, characterized in that: The two sides of the frame (9) are bonded to the two side panels (4) by quick-drying glue, and the bottom of the frame (9) is bonded to the bottom panel (3) by quick-drying glue.

6. A transport packaging box for cut Allium scalyana flowers according to claim 5, characterized in that: A plurality of ventilation grooves (14) for gas flow are provided through opposite sides of the frame (9), and the shapes of the ventilation grooves (14) include but are not limited to circular, rectangular, and diamond shapes.

7. The transport packaging box for cut Allium scalyana flowers according to claim 1, characterized in that: The spacing between the holes (8) formed in the first plate body (5) is smaller than the spacing between the holes (8) formed in the second plate body (6).

8. The transport packaging box for cut Allium scalyana flowers according to claim 1, characterized in that: The space of the upper box body (1) is larger than the space of the lower box body (2), and the upper box body (1) can wrap the lower box body (2).