Multifunctional fruit storage and transportation packaging box

By setting up trapezoidal support units and movable partitions in the fruit packaging box, the vertical pressure bearing capacity is enhanced, and the problem of easy damage to fruits during transportation is solved, achieving effective protection and buffering effects.

CN223046213UActive Publication Date: 2025-07-01贾丽娜
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Patent Information

Application Number
CN202422288819.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-07-01
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

The existing fruit packaging box has unreasonable structure and weak vertical pressure bearing capacity, which leads to the fruit being easily squeezed and damaged when stacked in multiple layers.

Method used

A multi-functional fruit storage and transportation packaging box is designed, with multiple trapezoidal support units installed inside. The support unit consists of the left inclined surface, the right inclined surface, the bottom inclined surface, the upper surface and the support side plate to increase the vertical pressure bearing capacity, and vertical vertical movable partitions and deformable deformation joints are provided in the trapezoidal groove to fill the elastic filling to provide buffer protection.

Benefits of technology

It improves the vertical pressure bearing capacity of the packaging box, prevents fruits from colliding with each other and squeezing damage, and provides effective cushioning and preservation effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

A multifunctional fruit storage and transportation packaging box comprises an outer box body and is characterized in that a plurality of trapezoid supporting units are arranged in the outer box body, each trapezoid supporting unit comprises a left side inclined face, a right side inclined face, a bottom plane, an upper plane and a supporting side plate, and the bottom plane is connected between the lower end of the left side inclined face and the lower end of the right side inclined face; the outer side of the upper end of the left inclined face and the outer side of the upper end of the right inclined face are connected with upper planes respectively, the outer sides of the upper planes on the two sides are connected with supporting side plates which are vertically arranged, and the left inclined face, the right inclined face and the bottom plane form a trapezoid groove with an upper end opening larger than the bottom. The vertical supporting side plates are arranged on the two sides of the trapezoidal supporting unit, so that the vertical pressure bearing capacity of the trapezoidal supporting unit is improved, the vertical movable partition plates are arranged in the trapezoidal grooves of the trapezoidal supporting unit, the vertical pressure bearing capacity of the trapezoidal supporting unit is further improved, and the situation that fruits are crushed due to the fact that packaging boxes are stacked layer by layer is effectively avoided.
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Description

Technical Field

[0001] This application relates to a fruit packaging box, and particularly to a multifunctional fruit storage and transportation packaging box, belonging to the technical field of packaging boxes. Background Art

[0002] During the handling and transportation of fruits, they are often easily bruised. Especially for fruits with thin skins and tender bodies, they are extremely vulnerable to being damaged due to extrusion during transportation. For many existing outer packaging boxes of fruits, the internal structure of the box body is unreasonable, and the vertical bearing capacity of the box body is weak. During transportation, the boxed fruits are stacked in multiple layers. Under the heavy pressure, the box bodies placed in the middle and lower layers are prone to deformation, and the fruits in the boxes are easily squeezed and damaged, resulting in greater damage to the fruits during transportation. Therefore, it is necessary to design a fruit storage and transportation packaging box with a reasonable structure, so that the box body has good vertical bearing capacity and the fruits are not easily damaged by pressure. Summary of the Invention

[0003] The purpose of this application is to address the defects and deficiencies of the existing outer packaging boxes of fruits, where the internal structure of the box body is unreasonable, the vertical bearing capacity of the box body is weak, during transportation, multiple box bodies are stacked, and the box bodies placed in the middle and lower layers are prone to deformation under heavy pressure, and the fruits in the boxes are easily squeezed and damaged. Now, a multifunctional fruit storage and transportation packaging box with a reasonable structure, good vertical bearing capacity of the packaging box, the fruits in the packaging box are not easily collided with each other, and the fruits are well protected and not easily damaged is provided.

[0004] To achieve the purpose of the above application, the technical solution of this application is: a multifunctional fruit storage and transportation packaging box, including an outer box body, characterized in that: a plurality of trapezoidal support units are installed inside the outer box body. The trapezoidal support unit includes a left inclined surface, a right inclined surface, a bottom plane, an upper plane, and a support side plate. A bottom plane is connected between the lower ends of the left inclined surface and the right inclined surface. Upper planes are respectively connected to the outer sides of the upper ends of the left inclined surface and the right inclined surface. Support side plates perpendicular to each other are connected to the outer sides of the upper planes on both sides. The left inclined surface, the right inclined surface, and the bottom plane form a trapezoidal groove with an opening larger at the upper end than at the bottom, and a plurality of fruit placement positions are arranged in the trapezoidal groove.

[0005] Further, the plurality of trapezoidal support units are neatly arranged in sequence from left to right and neatly stacked in sequence from top to bottom inside the outer box body.

[0006] Further, the left inclined surface, the right inclined surface, the bottom plane, the upper plane, and the support side plate are integrally provided.

[0007] Further, deformation joints are respectively arranged on the left inclined surface and the right inclined surface on both sides of the fruit placement position.

[0008] Further, the deformation joint includes a long strip notch and a long strip support piece. A plurality of equidistantly arranged long strip notches are respectively formed on the left inclined surface and the right inclined surface, and the inclined surface between two adjacent long strip notches is the long strip support piece.

[0009] Further, partition insertion slots are respectively formed on the left inclined surface and the right inclined surface and located between adjacent fruit placement positions, and movable partitions are inserted into the partition insertion slots on both the left and right sides.

[0010] Further, the gaps between the left inclined surface and the left support side plate and between the right inclined surface and the right support side plate are set as partition cavities, and elastic fillers or ice packs can be filled in the partition cavities.

[0011] The beneficial effects of the present application are as follows:

[0012] 1. In the present application, vertical support side plates are arranged on both sides of the trapezoidal support unit for placing fruits, thereby improving the vertical bearing capacity of the trapezoidal support unit. And vertical movable partitions are arranged in the trapezoidal grooves of the trapezoidal support unit, further improving the vertical bearing capacity of the trapezoidal support unit, and effectively avoiding fruits from being bruised due to the stacking of packaging boxes layer by layer.

[0013] 2. The structure of the present application is reasonable. Deformable deformation joints are arranged on the inclined surfaces on both sides of the fruit placement position, so that the fruit placement positions on the trapezoidal support unit can adapt to fruits of different sizes. At the same time, elastic fillers are filled in the partition cavities, and the partition and buffer protection effects on fruits are good, and ice packs can be placed according to needs for preservation. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic structural diagram of the present application.

[0015] In the figure: outer box body 1, trapezoidal support unit 2, left inclined surface 2-1, right inclined surface 2-2, bottom plane 2-3, upper plane 2-4, support side plate 2-5, trapezoidal groove 3, fruit placement position 4, deformation joint 5, long strip notch 5-1, long strip support piece 5-2, partition cavity 6, partition insertion slot 7, movable partition 8, elastic filler 9. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0016] The following further describes the present application in detail in conjunction with the drawings and specific embodiments.

[0017] See Figure 1, a multifunctional fruit storage and transportation packaging box of the present application, including an outer box body 1, characterized in that: a plurality of trapezoidal support units 2 are installed inside the outer box body 1. The trapezoidal support unit 2 includes a left inclined plane 2-1, a right inclined plane 2-2, a bottom plane 2-3, an upper plane 2-4, and a support side plate 2-5. A bottom plane 2-3 is connected between the lower ends of the left inclined plane 2-1 and the right inclined plane 2-2. An upper plane 2-4 is respectively connected to the outer sides of the upper ends of the left inclined plane 2-1 and the right inclined plane 2-2. Vertical support side plates 2-5 are connected to the outer sides of the upper planes 2-4 on both sides. The left inclined plane 2-1, the right inclined plane 2-2, and the bottom plane 2-3 form a trapezoidal groove 3 with an opening at the upper end larger than the bottom. A plurality of fruit placement positions 4 are arranged in the trapezoidal groove 3.

[0018] The plurality of trapezoidal support units 2 are neatly arranged in sequence from left to right and neatly stacked in sequence from top to bottom inside the outer box body 1.

[0019] The left inclined plane 2-1, the right inclined plane 2-2, the bottom plane 2-3, the upper plane 2-4, and the support side plate 2-5 are integrally arranged.

[0020] Deformation joints 5 are respectively arranged on the left inclined plane 2-1 and the right inclined plane 2-2 on both sides of the fruit placement position 4.

[0021] The deformation joint 5 includes a long strip slot 5-1 and a long strip support piece 5-2. A plurality of equidistantly arranged long strip slots 5-1 are respectively opened on the left inclined plane 2-1 and the right inclined plane 2-2. The inclined plane between two adjacent long strip slots 5-1 is the long strip support piece 5-2.

[0022] Partition insertion slots 7 are respectively opened on the left inclined plane 2-1 and the right inclined plane 2-2 and located between adjacent fruit placement positions 4. Movable partitions 8 are inserted into the partition insertion slots 7 on both the left and right sides.

[0023] The gaps between the left inclined plane 2-1 and the left support side plate 2-5 and between the right inclined plane 2-2 and the right support side plate 2-5 are set as partition chambers 6. Elastic fillers 9 or ice packs can be filled in the partition chambers 6.

[0024] In this application, a plurality of trapezoidal support units are arranged in sequence inside the outer box body. The trapezoidal support unit is composed of left and right side inclined planes, upper and lower planes, and support side plates. The left and right side inclined planes and the bottom plane form a structure with a trapezoidal cross-section. A plurality of fruit placement positions are arranged at intervals in the same long strip-shaped trapezoidal support unit. A plurality of longitudinal deformation seams are respectively opened on the inclined planes on both sides of each fruit placement position. The inner support unit can be assembled as needed and can adapt to fruits of different sizes. The support side plates of the trapezoidal support unit can improve the vertical bearing capacity of the box body. The separation cavity is filled with elastic filler to achieve good buffer protection effect, and ice bags can be placed as needed for freshness preservation. The specific structure of this application is as follows:

[0025] This application includes an outer box body 1, which can be a conventional paper box. Inside the outer box body 1, a plurality of neatly arranged trapezoidal support units 2 are installed. The plurality of trapezoidal support units 2 are neatly arranged in sequence from left to right and neatly stacked from top to bottom inside the outer box body 1.

[0026] The trapezoidal support unit 2 includes a left side inclined plane 2-1, a right side inclined plane 2-2, a bottom plane 2-3, an upper plane 2-4, and a support side plate 2-5. The bottom plane 2-3 connects the lower ends of the left side inclined plane 2-1 and the right side inclined plane 2-2. The outer sides of the upper ends of the left side inclined plane 2-1 and the right side inclined plane 2-2 are respectively connected to the vertically arranged support side plates 2-5. The vertically arranged support side plates 2-5 can improve the overall vertical bearing capacity of the trapezoidal support unit 2 and ensure that the trapezoidal support unit 2 will not deform.

[0027] The left side inclined plane 2-1, the right side inclined plane 2-2, the bottom plane 2-3, the upper plane 2-4, and the support side plate 2-5 are integrally formed, and the material can be cardboard or foam material. The left side inclined plane 2-1, the right side inclined plane 2-2, and the bottom plane 2-3 form a trapezoidal groove 3 with an opening at the upper end larger than the bottom. A plurality of fruit placement positions 4 are arranged inside the trapezoidal groove 3, and the fruit placement positions 4 are used to place fruits.

[0028] Deformable deformation seams 5 are respectively arranged on the left side inclined plane 2-1 and the right side inclined plane 2-2 on both sides of the fruit placement position 4. The deformation seam 5 includes a long strip notch 5-1 and a long strip support piece 5-2. A plurality of equidistantly arranged long strip notches 5-1 are respectively opened on the left side inclined plane 2-1 and the right side inclined plane 2-2 on both sides of the fruit placement position 4. The inclined plane between two adjacent long strip notches 5-1 is the long strip support piece 5-2, and a plurality of long strip support pieces 5-2 form a vertical mesh structure. During the process of placing fruits, due to the narrow width and thinness of the long strip support piece 5-2, the fruit can squeeze and deform the long strip support piece 5-2, so that the long strip support pieces 5-2 on both sides of the left side inclined plane 2-1 and the right side inclined plane 2-2 play a certain limiting role on the fruit. At the same time, the long strip support piece 5-2 is squeezed and has a certain elasticity, so that it can adapt to the placement of fruits of different sizes.

[0029] Partition insertion slots 7 are respectively formed on the left inclined surface 2-1 and the right inclined surface 2-2 and are located between adjacent fruit placement positions 4. Movable partitions 8 are inserted into the partition insertion slots 7 on the left and right sides. The movable partitions 8 can separate the fruit placement positions 4 on the trapezoidal groove 3, play a role in limiting the fruits, prevent adjacent fruits from colliding with each other, and at the same time, the movable partitions 8 can increase the overall vertical bearing capacity of the trapezoidal support unit 2 to ensure that the trapezoidal support unit 2 will not deform.

[0030] The gaps between the left inclined surface 2-1 and the left support side plate 2-5 and between the right inclined surface 2-2 and the right support side plate 2-5 are provided as separation cavities 6. Elastic fillers 9 or ice packs can be filled in the separation cavities 6. The elastic fillers 9 can be made of sponge or filling foam. The elastic fillers 9 can play a buffering role and reduce the damage to the fruits.

[0031] The above content is a further detailed description of the present application in combination with specific implementation manners. It cannot be considered that the specific implementation of the present application is only limited to these descriptions. For those of ordinary skill in the technical field to which the present application belongs, without departing from the concept of the present application, the present application will also have various simple substitutions, improvements and changes. All the simple substitutions, improvements and changes made should be regarded as belonging to the protection scope of the present application.

Claims

1. A multifunctional fruit storage and transportation packaging box, comprising an outer box body (1), characterized in that: The outer box body (1) is provided with a plurality of trapezoidal support units (2) therein. The trapezoidal support units (2) comprise a left inclined surface (2-1), a right inclined surface (2-2), a bottom plane (2-3), an upper plane (2-4) and a supporting side plate (2-5). The bottom plane (2-3) is connected between the lower ends of the left inclined surface (2-1) and the lower ends of the right inclined surface (2-2). The upper plane (2-4) is respectively connected to the outer sides of the upper ends of the left inclined surface (2-1) and the right inclined surface (2-2). The outer sides of the upper planes (2-4) on both sides are connected to supporting side plates (2-5) arranged vertically. The left inclined surface (2-1), the right inclined surface (2-2) and the bottom plane (2-3) form a trapezoidal groove (3) whose upper opening is larger than the bottom. The trapezoidal groove (3) is provided with a plurality of fruit placement positions (4).

2. A multifunctional fruit storage and transportation packaging box according to claim 1, characterized in that: The plurality of trapezoidal support units (2) are neatly arranged in sequence on the left and right inside the outer box body (1), and neatly stacked on the top and bottom.

3. A multifunctional fruit storage and transportation packaging box according to claim 1, characterized in that: The left side inclined surface (2-1), the right side inclined surface (2-2), the bottom plane (2-3), the upper plane (2-4) and the supporting side plate (2-5) are integrally arranged.

4. The multifunctional fruit storage and transportation packaging box according to claim 1, characterized in that: Deformation seams (5) are respectively provided on the left inclined surface (2-1) and the right inclined surface (2-2) on both sides of the fruit placement position (4).

5. A multifunctional fruit storage and transportation packaging box according to claim 4, characterized in that: The deformation joint (5) comprises a long strip notch (5-1) and a long strip support sheet (5-2); a plurality of long strip notches (5-1) arranged at equal distances are respectively provided on the left inclined surface (2-1) and the right inclined surface (2-2); and the inclined surface between two adjacent long strip notches (5-1) is the long strip support sheet (5-2).

6. The multifunctional fruit storage and transportation packaging box according to claim 1, characterized in that: Partition board insertion grooves (7) are respectively provided on the left inclined surface (2-1) and the right inclined surface (2-2) and between adjacent fruit placement positions (4), and movable partition boards (8) are inserted into the partition board insertion grooves (7) on the left and right sides.

7. The multifunctional fruit storage and transportation packaging box according to claim 1, characterized in that: The gaps between the left inclined surface (2-1) and the left supporting side plate (2-5) and between the right inclined surface (2-2) and the right supporting side plate (2-5) are provided as separation chambers (6), and the separation chambers (6) can be filled with elastic fillers (9) or ice packs.