Fruit packaging box

By designing shock-resistant trays and positioning shock-resistant grids, combined with transparent or opaque blister packaging and an antibacterial preservation layer, the problem of insufficient preservation and cleaning effects of fruit packaging boxes is solved, achieving the effects of shock resistance, thorough cleaning, and extended shelf life.

CN223591355UActive Publication Date: 2025-11-25GUANGZHOU ZHONGZHI AGRICULTURAL CO LTD
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Patent Information

Application Number
CN202520018445.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-06
Publication Date
2025-11-25
Estimated Expiration
2035-01-06

AI Technical Summary

Technical Problem

Existing fruit packaging boxes are inadequate in terms of preservation and cleaning effectiveness, and their complex structure makes it difficult to meet the shock resistance requirements of fruits.

Method used

Featuring a shock-resistant tray and positioning shock-resistant grid design, combined with transparent or opaque blister packaging, the outer box has a convection vent along its upper edge for ventilation and drainage. An antibacterial preservation layer is added to the inner wall, enabling independent positioning and all-around cleaning of the fruit.

Benefits of technology

It provides excellent shock resistance, thorough cleaning, extends the shelf life of fruits, enhances antibacterial ability, and has high reusability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223591355U_ABST
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Abstract

The fruit packaging box comprises an outer box, an upper cover detachably buckled to the outer box and one or more anti-seismic trays stacked in the outer box, and the top face of each anti-seismic tray is provided with a plurality of hemispherical positioning anti-seismic grids. A skirt edge is annularly arranged on the periphery of the anti-seismic tray, the upper edge of the skirt edge exceeds the upper edge of the positioning anti-seismic grid, and the lower edge of the skirt edge exceeds the lower edge of the positioning anti-seismic grid; a plurality of drainage ditches distributed around the vertical axis are formed in the inner wall of the positioning anti-seismic grid, and the drainage ditches extend downwards from an opening of the positioning anti-seismic grid; opposite convection openings are formed in the two opposite side edges of the opening of the outer box. And when the upper cover is buckled on the outer box, the convection port is exposed to the outside. According to the fruit packaging box, water can make more comprehensive contact with the surfaces of fruits, water vapor is prevented from rising upwards to take away free water of the fruits, the antibacterial and fresh-keeping capacity of the internal environment of the outer box is improved, and the fruit packaging box has higher recycling value.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a container for fruit storage and transportation, in particular to a fruit packaging box. BACKGROUND

[0002] The fruit packaging box in the prior art usually needs to face the problem of how to preserve, prevent damage and clean the fruit.

[0003] The utility model discloses a fruit packaging box discloses a fruit packaging box, and the fruit packaging box is provided with a plurality of fruit grooves in the outer box and the inner box, can simultaneously hold a plurality of picked fruits, the through hole arranged at the top of the cover groove and the bottom of the fruit groove can be used to maintain the air permeability required when the fruit breathes, and further facilitate the implementation of batch disinfection and sterilization of the fruit in the form of spraying disinfectant, the bottom of the fruit supporting groove is not in contact with the bottom of the fruit groove through the foam pad, and the related protection against extrusion and bumping.

[0004] The utility model discloses a blueberry packaging box discloses a blueberry packaging box, a plurality of layers of shockproof trays are stacked in the outer box, at least one semi-cylindrical groove body is arranged on each side of the periphery of the shockproof tray, a plurality of shockproof trays are sequentially and superposedly arranged through the support seat formed at the bottom of the semi-cylindrical groove body at the edge, meanwhile, the outer side and the top of the semi-cylindrical groove body are open, air can flow into the semi-cylindrical groove body through the outer side, when the air circulates, there is no obvious air flow, the loss of moisture of blueberries can be reduced, and the storage time of blueberries can be prolonged.

[0005] The utility model discloses a packaging box discloses a packaging box, including outer box and a plurality of layers of inner tray that are located in the outer box, be provided with a plurality of fruit limit groove on the inner tray, be equipped with the water injection port on the upper cover, the bottom of the outer box is equipped with the water outlet, the bottom of every fruit limit groove is equipped with the water leakage, prevent the extrusion and the collision between the fruits, and still convenient direct through the packaging box to the fruit is washed.

[0006] The applicant finds in practice that most of the fruit packaging boxes on the market are the same as or similar to the above-mentioned prior art, the structure area is complex, the fresh-keeping effect is limited, and the fruit cleaning effect is poor. UTILITY MODEL CONTENTS

[0007] The utility model aims at providing a fruit packaging box to make up for the above-mentioned deficiencies of the prior art.

[0008] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme.

[0009] The fruit packaging box comprises an outer box, a detachable upper cover fastened to the outer box, and one or more shockproof trays stacked in the outer box, wherein the top surface of the shockproof tray is provided with a plurality of semi-spherical positioning shockproof grids.

[0010] The periphery of the shockproof tray is provided with a skirt, the upper edge of the skirt exceeds the upper edge of the positioning shockproof grid, and the lower edge of the skirt exceeds the lower edge of the positioning shockproof grid.

[0011] The inner wall of the positioning shockproof grid is provided with a plurality of drainage grooves distributed around the vertical axis, and the drainage grooves extend downward from the opening of the positioning shockproof grid.

[0012] The opening of the outer box is provided with opposite convection ports on two opposite side edges.

[0013] The bottom surface of the upper cover is provided with an annular protrusion corresponding to the upper edge of the skirt.

[0014] When the upper cover is fastened to the outer box, the lowermost edge of the shockproof tray is supported on the inner bottom of the outer box through the bottom of the skirt, the uppermost edge of the shockproof tray abuts against the bottom surface of the annular protrusion through the top of the skirt, and the convection ports are exposed to the outside.

[0015] As an improvement, the positioning shockproof grids are arranged in multiple rows, and adjacent positioning shockproof grids in each row have grooves communicating at the opening.

[0016] As an improvement, the bottom of the positioning shockproof grid is provided with a groove corresponding to the spherical top.

[0017] As an improvement, the periphery of the skirt of the shockproof tray is provided with a plurality of grooves, the lower edge of the groove exceeds the lower edge of the positioning shockproof grid, and when the shockproof trays are stacked, the upper and lower edges of the grooves of adjacent shockproof trays abut against each other, so that a cavity is formed between the bottom surface of the upper shockproof tray and the top surface of the lower shockproof tray.

[0018] As an improvement of the above technical solution, the lower edge of the groove is higher than the lower edge of the skirt, and when the shockproof trays are stacked, the upper shockproof tray is arranged in a gap-fitting manner around the skirt of the lower shockproof tray.

[0019] As another improvement of the above technical solution, the grooves on the skirt are asymmetrically distributed in the left-right direction or the front-rear direction, and the upper edge of the groove is an open end flush with the upper edge of the skirt; when the shockproof trays are stacked in the same left-right or front-rear direction, the grooves between adjacent shockproof trays are nested and stacked in a corresponding manner; and when the shockproof trays are stacked in opposite left-right or front-rear directions, the upper and lower edges of the grooves of adjacent shockproof trays abut against each other.

[0020] Preferably, the inner wall and / or the inner bottom of the outer box is provided with a fresh-keeping layer added with an antibacterial agent.

[0021] Further, the fresh-keeping layer is a self-adsorbing PVC antibacterial film.

[0022] Optionally, the outer box, the upper cover and the shockproof tray are transparent or non-transparent blister products.

[0023] Compared with the prior art, the utility model has the beneficial effects that:

[0024] (1) the fruits are placed in the positioning shockproof grids one by one, and good shockproof performance is provided through the shockproof tray and the positioning shockproof grids;

[0025] (2) the convection port formed on the upper edge of the outer box is used as a passive drainage port, water injection into the outer box can realize soaking cleaning and shaking cleaning, and the water can be more fully contacted with the surface of the fruits through the drainage ditch, so that the cleaning is more thorough;

[0026] (3) the convection port formed on the upper edge of the outer box is used as the only air port, and will not be blocked due to product stacking, so that the air exchange requirement is met, and water vapor transpiration upward to take away the free water of the fruits is avoided to a great extent, the fruits are prevented from being wrinkled due to rapid water loss, and the fresh-keeping period of the fruits is prolonged;

[0027] (4) the fresh-keeping layer improves the antibacterial and fresh-keeping ability of the inner environment of the outer box, and effectively delays the aging and decay process of the fruits;

[0028] (5) has higher recycling value.

[0029] In the following, the utility model is further described in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 is a structural schematic diagram of the utility model.

[0031] Figure 2 is a structural exploded schematic diagram of the utility model.

[0032] Figure 3 is a structural schematic diagram of the shockproof tray in the utility model.

[0033] Figure 4 is a schematic diagram of the stacking state of the shockproof tray in the utility model Figure 1 .

[0034] Figure 5 is a schematic diagram of the stacking state of the shockproof tray in the utility model Figure 2 .

[0035] Figure 6 is a structural schematic diagram of the outer box in the utility model.

[0036] Figure 7 is a structural schematic diagram of the upper cover in the utility model. DETAILED DESCRIPTION

[0037] Referring to Figures 1 to 7 In an embodiment, the fruit packaging box comprises an outer box 1, a detachable upper cover 2 buckled to the outer box 1, and one or more anti-vibration trays 3 stacked in the outer box 1. The top surface of the anti-vibration tray 3 is provided with a plurality of semi-spherical positioning anti-vibration grids 4:

[0038] The periphery of the anti-vibration tray 3 is provided with a skirt 5, the upper edge of the skirt 5 exceeds the upper edge of the positioning anti-vibration grid 4, and the lower edge of the skirt 5 exceeds the lower edge of the positioning anti-vibration grid 4.

[0039] The inner wall of the positioning anti-vibration grid 4 is provided with a plurality of drainage ditches 41 distributed around the vertical axis, which extend downward from the opening of the positioning anti-vibration grid 4.

[0040] The opening of the outer box 1 is provided with opposite convection ports 11 on the two opposite side edges.

[0041] The bottom surface of the upper cover 2 is provided with an annular boss 21 corresponding to the upper edge of the skirt 5.

[0042] When the upper cover 2 is buckled to the outer box 1, the lowermost edge of the anti-vibration tray 3 is supported on the inner bottom of the outer box 1 through the bottom of the skirt 5, the uppermost edge of the anti-vibration tray 3 abuts against the bottom surface of the annular boss 21 through the top of the skirt 5, and the convection ports 11 are exposed to the outside.

[0043] In the above embodiment, the fruits are placed one by one in the positioning anti-vibration grids 4. Since when the upper cover 2 is buckled to the outer box 1, the lowermost edge of the anti-vibration tray 3 is supported on the inner bottom of the outer box 1 through the bottom of the skirt 5, and the uppermost edge of the anti-vibration tray 3 abuts against the bottom surface of the upper cover 2 through the top of the skirt 5, therefore, whether in the anti-vibration tray 3 scheme or in the multiple stacked scheme, the tray will be properly fixed in the outer box 1.

[0044] In the above technical scheme, since when the upper cover 2 is buckled to the outer box 1, the convection ports 11 are exposed to the outside, the convection ports 11, as the only two air vents of the outer box 1, will not be blocked by stacking multiple outer boxes 1, which not only meets the air exchange requirement, but also greatly avoids the upward migration of water vapor, thereby avoiding the rapid water loss and shrinkage of fruits, and prolonging the preservation period of fruits.

[0045] In the above technical scheme, since the periphery of the anti-vibration tray 3 is provided with the skirt 5, the upper edge of the skirt 5 exceeds the upper edge of the positioning anti-vibration grid 4, and the lower edge of the skirt 5 exceeds the lower edge of the positioning anti-vibration grid 4, therefore, the fruits in the positioning anti-vibration grid 4 can maintain independence in the vertical and horizontal directions, reducing the probability of mutual extrusion and collision of the fruits.

[0046] In the above technical solution, the inner wall of the positioning anti-vibration grid 4 is provided with multiple drainage grooves 41 distributed around the vertical axis, and the convection port 11 formed on the upper edge of the outer box 1 serves as a passive drainage port. Water injection into the outer box 1 can achieve immersion cleaning and shaking cleaning. During the cleaning process, water overflow can be effectively avoided, and the water can more comprehensively contact the fruit surface through the drainage grooves 41, achieving more thorough cleaning.

[0047] In a preferred embodiment, the positioning anti-vibration grids 4 are arranged in multiple rows, and adjacent positioning anti-vibration grids 4 in each row have grooves 31 that communicate at the opening, facilitating mutual flow guidance between the positioning anti-vibration grids 4 during water injection cleaning, further ensuring thorough cleaning.

[0048] In a preferred embodiment, the bottom of the positioning anti-vibration grid 4 has a support groove 42 located at the top of the ball, and the lower end of the drainage groove 41 opens into the support groove 42. On the one hand, this reduces the contact area of the fruit bottom, which is beneficial for protecting the appearance quality of the fruit. On the other hand, it facilitates the bottom of the fruit to be fully immersed during water injection cleaning.

[0049] In a preferred embodiment, the skirt 5 of the anti-vibration tray 3 has multiple profile grooves 6 around the periphery, and the lower edge of the profile groove 6 exceeds the lower edge of the positioning anti-vibration grid 4. When the anti-vibration trays 3 are stacked, the upper and lower edges of the profile grooves 6 of adjacent anti-vibration trays 3 abut each other, forming a cavity between the bottom surface of the upper anti-vibration tray 3 and the top surface of the lower anti-vibration tray 3. This arrangement allows the anti-vibration trays 3 to form a cavity with sufficient strength when stacked, effectively preventing the stacking of fruits in each layer due to the stacking of anti-vibration trays 3.

[0050] In a preferred embodiment, the lower edge of the profile groove 6 is higher than the lower edge of the skirt 5, and when the anti-vibration trays 3 are stacked, the upper anti-vibration tray 3 is fitted with the skirt 5 of the lower anti-vibration tray 3 in a gap, making each layer of anti-vibration trays 3 more stable and less likely to collapse.

[0051] In a preferred embodiment, the multiple profile grooves 6 on the skirt 5 are asymmetrically distributed in the left-right direction or the front-back direction, and the upper edge of the profile groove 6 is an open end flush with the upper edge of the skirt 5. When anti-vibration trays 3 in the left-right or front-back direction are stacked, as shown in Figure 4 , the profile grooves 6 between adjacent anti-vibration trays 3 are meaningfully nested and stacked; when anti-vibration trays 3 in the left-right or front-back direction are stacked, as shown in Figure 5As shown, the upper and lower edges of the type groove 6 of the adjacent anti-vibration trays 3 abut each other. According to the foregoing scheme, it can be inferred that the idle anti-vibration trays 3 can be stacked in the left-right or front-rear direction to prevent the stacking of the anti-vibration trays 3, thereby facilitating storage and transportation. When multiple layers of fruits are needed, the anti-vibration trays 3 of the adjacent two layers are moved in the opposite direction, i.e., the left-right or front-rear direction, so that the upper and lower edges of the type groove 6 of the adjacent anti-vibration trays 3 abut each other, thereby forming a desired cavity to avoid the stacking of the fruits in each layer.

[0052] In a preferred embodiment, the inner wall and / or the inner bottom of the outer box 1 has a fresh-keeping layer 7 added with an antibacterial agent. The fresh-keeping layer 7 improves the antibacterial and fresh-keeping ability of the inner environment of the outer box 1, thereby effectively delaying the aging and decay process of the fruits.

[0053] Further, the fresh-keeping layer 7 is a self-absorbing PVC antibacterial film.

[0054] Optionally, the outer box 1, the upper cover 2, and the anti-vibration tray 3 are transparent or non-transparent blister products, which have higher recycling value in addition to being used for fruit packaging when selling fruits, and the user can reuse the disassembled outer box 1, the upper cover 2, and the anti-vibration tray 3.

[0055] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements, and variations can be made to the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A fruit packaging box comprising an outer box, a detachable upper cover fastened to the outer box, and one or more shockproof trays stacked in the outer box, the top surface of the shockproof tray having a plurality of semi-spherical positioning shockproof cells, characterized in that: a skirt is arranged around the periphery of the shockproof tray, the upper edge of the skirt exceeds the upper edge of the positioning shockproof cell, and the lower edge of the skirt exceeds the lower edge of the positioning shockproof cell; the inner wall of the positioning shockproof cell is provided with a plurality of drainage grooves distributed around the vertical axis, the drainage grooves extend downward from the opening of the positioning shockproof cell; the opening of the outer box is formed with opposite convection ports on two opposite side edges; the bottom surface of the upper cover has a ring-shaped boss corresponding to the upper edge of the skirt; when the upper cover is fastened to the outer box, the lowermost edge of the shockproof tray is supported on the inner bottom of the outer box through the bottom of the skirt, the uppermost edge of the shockproof tray abuts against the bottom surface of the ring-shaped boss through the top of the skirt, and the convection ports are exposed to the outside. The positioning shockproof cells are arranged in multiple rows, and adjacent positioning shockproof cells in each row have grooves communicating at the opening. The bottom of the positioning shockproof cell has a groove located at the top of the ball, and the lower end of the drainage groove opens into the groove. The skirt of the shockproof tray has a plurality of grooves around the periphery, the lower edge of the groove exceeds the lower edge of the positioning shockproof cell; when the shockproof trays are stacked, the upper and lower edges of the grooves of adjacent shockproof trays abut against each other, so that a cavity is formed between the bottom surface of the upper shockproof tray and the top surface of the lower shockproof tray. The lower edge of the groove is higher than the lower edge of the skirt; when the shockproof trays are stacked, the upper shockproof tray is fitted with the skirt gap around the lower shockproof tray. The grooves on the skirt are asymmetrically distributed in the left-right direction or the front-back direction, and the upper edge of the groove is an open end flush with the upper edge of the skirt; when the shockproof trays are stacked in the same left-right or front-back direction, the grooves between adjacent shockproof trays are correspondingly nested and stacked; when the shockproof trays are stacked in opposite left-right or front-back directions, the upper and lower edges of the grooves of adjacent shockproof trays abut against each other.

2. The fruit package of claim 1, wherein: The inner wall and / or the inner bottom of the outer box has a fresh-keeping layer added with an antibacterial agent.

3. The fruit package of claim 1, wherein: The fresh-keeping layer is a self-adsorbing PVC antibacterial film.

4. The fruit package of claim 1, wherein: The outer box, the upper cover, and the shockproof tray are transparent or opaque vacuum-formed products.

5. The fruit package of claim 4, wherein: ​ 6. The fruit package of claim 4, wherein: ​ 7. A fruit pack according to any one of claims 1 to 6, characterised in that: ​ 8. The fruit pack of claim 7, wherein: ​ 9. A fruit pack according to any one of claims 1 to 6, characterised in that: ​

Citation Information

Patent Citations

  • Blueberry packaging box

    CN209814684U

  • Fruit packaging box

    CN212333340U

  • Packaging box

    CN215945359U