Cold storage ice plate structure used for being installed in container

By designing a mounting rack and a snap-fit ​​and bolted connection structure for the insulated ice plates inside the container, the problem of the ice plates shifting during transportation was solved, improving stability and insulation performance, and also providing an automatic drainage function.

CN224061660UActive Publication Date: 2026-03-31BEIJING JINGXIN XIANGNENG TECH
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional ice packs lack connecting mechanisms inside shipping containers, causing them to shift during transport and affecting the stability of the food.

Method used

A structure including a mounting bracket, an insulated ice plate, clips, mounting holes, a pressure plate, a mounting plate, and bolts was designed. The ice plate is stably fixed by clips and bolts, which enhances the connection stability. Support columns and water-permeable holes are set inside the ice plate to enhance the pressure-bearing capacity and drainage function.

Benefits of technology

It achieves a stable connection of the ice plates, preventing movement and improving stability and heat preservation during transportation. It also has an automatic drainage function to prevent the ice plates from breaking.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224061660U_ABST
    Figure CN224061660U_ABST
Patent Text Reader

Abstract

The utility model discloses a cold storage ice plate structure used for being installed in a container, which comprises a pair of installation frames and a heat preservation ice plate, clamping strips are horizontally arranged at the two ends of the heat preservation ice plate, grooves are formed in the two ends of the heat preservation ice plate, the grooves are distributed on the two sides of the heat preservation ice plate, and concave columns are arranged at the two ends of the heat preservation ice plate in an inward pressing and concave mode. Every two opposite concave columns are connected, and a through hole penetrates through the connecting position. A pair of mounting plates is arranged between every two adjacent heat preservation ice plates, the mounting plates are embedded in the grooves in the two ends of the heat preservation ice plates, the two ends of each mounting plate are provided with angle lugs used for being embedded in the corresponding concave column, and first bolts penetrate through the positions between the angle lugs. According to the utility model, the mounting plates are arranged between the heat-insulating ice plates, so that the adjacent heat-insulating ice plates are firmly connected, the heat-insulating ice plates are prevented from moving during transportation, the stability during transportation is ensured, each heat-insulating ice block is quickly mounted on the mounting rack by adopting the heat-insulating ice plates which are mounted in a sliding manner, and the quick assembly and disassembly of the heat-insulating ice blocks are completed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of cold storage ice plates, and in particular to a cold storage ice plate structure for installation in containers. Background Technology

[0002] Cold storage ice plates are devices specifically designed to store cold energy and release it when needed, widely used in cold chain logistics, refrigerated transportation, and fresh food delivery. They work by freezing cold storage materials at low temperatures and then melting them at higher temperatures to absorb heat, thus achieving a cooling effect. This technology effectively extends the shelf life of goods and is particularly useful in situations where there is no power or traditional refrigeration equipment is inconvenient.

[0003] Traditional large shipping containers require ice plates to be installed inside the container to refrigerate and preserve food when transporting fresh food. Because the containers are large, many ice plates are needed. However, traditional ice plates lack a connecting mechanism, causing them to shift during transport and affecting the stable transport of food. An improvement is needed. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a cold storage ice plate structure for installation in containers, which has the effect of improving stability.

[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a cold storage ice plate structure for installation inside a container, comprising:

[0006] A pair of mounting brackets are horizontally positioned at the top and bottom of the container;

[0007] Insulated ice plates are vertically spaced between a pair of mounting brackets;

[0008] Both ends of the heat-insulating ice plate are horizontally provided with locking strips. The cross-section of the mounting frame is U-shaped and the openings are opposite to each other. The mounting frame is provided with multiple mounting holes at intervals. The mounting holes are for the locking strips to be inserted. A pressure plate is formed between two adjacent mounting holes to press the middle position of the locking strip after the heat-insulating ice plate slides horizontally.

[0009] The insulated ice plate has grooves at both ends, and the grooves are distributed on both sides of the insulated ice plate. The surface of the clip is flush with the bottom wall of the groove. Both ends of the insulated ice plate are recessed inward with concave posts. The end faces of two opposite concave posts are connected, and a through hole is provided at the connection position.

[0010] A pair of mounting plates are provided between two adjacent heat-insulating ice plates. The mounting plates are embedded in the grooves where the two ends of the heat-insulating ice plates are joined. Both ends of the mounting plates are provided with corner lugs for being embedded in the recessed posts. A first bolt passes through the corner lugs.

[0011] In a preferred embodiment, the present invention can be further configured such that: both sides of the mounting plate are provided with fixing plates for clamping the two sides of the card strip, and a second bolt is provided through the fixing plates.

[0012] In a preferred embodiment, the present invention can be further configured such that: overlapping strips are provided on both sides of the heat-insulating ice plate, and the overlapping strips are distributed in an alternating pattern.

[0013] In a preferred embodiment, the present invention can be further configured such that: a lifting hole is provided through the middle of both sides of the heat-insulating ice plate.

[0014] In a preferred embodiment, the present invention can be further configured such that: both sides of the heat-insulating ice plate are provided with a plurality of support columns that are recessed inward, and the ends of two opposite support columns are connected.

[0015] In a preferred embodiment, the present invention can be further configured such that the support columns are divided into three rows, with the support columns on both sides in the same row and staggered with the support columns in the middle row.

[0016] In a preferred embodiment, the present invention can be further configured such that: water-permeable holes are provided through the ends of the two opposing support columns.

[0017] In summary, this utility model has the following beneficial effects:

[0018] 1. By setting mounting plates between the insulated ice plates, a tight connection between adjacent insulated ice plates is achieved, preventing the insulated ice plates from shifting during transportation and ensuring stability during transportation. At the same time, the use of sliding installation of insulated ice plates allows each insulated ice block to be quickly installed onto the mounting frame, completing the rapid assembly and unloading of insulated ice blocks.

[0019] 2. By setting up overlapping insulating ice plates, the stability between the insulating ice plates is increased, while achieving all-round coverage and improving the insulation effect;

[0020] 3. By setting multiple support columns inside the insulated ice plate, the internal and external pressure bearing capacity of the insulated ice plate is increased, stress concentration is prevented, and the insulated ice plate is prevented from cracking after freezing.

[0021] 4. By setting water-permeable holes on the support columns, rainwater or accumulated water can be discharged through the water-permeable holes during the stacking or use of the heat-insulating ice sheets, thus satisfying the automatic drainage requirement. Attached Figure Description

[0022] Figure 1 This is a structural schematic diagram of an embodiment;

[0023] Figure 2 This is a schematic diagram of the connection relationship in the embodiment;

[0024] Figure 3 This is a schematic diagram of the structure of the heat-insulating ice plate in the embodiment;

[0025] Figure 4 This is a schematic diagram of the internal structure of the heat-insulating ice plate in the embodiment;

[0026] Figure 5 This is a schematic diagram of the mounting plate in an embodiment.

[0027] Reference numerals: 1. Mounting bracket; 11. Mounting hole; 12. Pressure plate; 2. Insulating ice plate; 21. Clip; 22. Groove; 23. Recessed column; 24. Through hole; 3. Overlap strip; 4. Lifting hole; 5. Support column; 51. Water permeable hole; 6. Mounting plate; 61. Angle lug; 62. First bolt; 63. Fixing plate; 64. Second bolt. Detailed Implementation

[0028] The present invention will be further described in detail below with reference to the accompanying drawings.

[0029] like Figure 1 , Figure 2 As shown, a cold storage ice plate structure for installation inside a container includes a pair of mounting frames 1 and insulated ice plates 2. The pair of mounting frames 1 are horizontally arranged at the upper and lower ends of the container, and the insulated ice plates 2 are vertically spaced between the pair of mounting frames 1.

[0030] like Figure 1 , Figure 2 As shown, the mounting frame 1 has a U-shaped cross-section with opposite openings. Both ends of the heat-insulating ice plate 2 are horizontally provided with clips 21. The mounting frame 1 has multiple mounting holes 11 spaced apart. The mounting holes 11 are for the clips 21 to be inserted. A pressure plate 12 is formed between two adjacent mounting holes 11 to press the middle position of the clips 21 after the heat-insulating ice plate 2 slides horizontally.

[0031] When it is necessary to assemble the insulated ice plate 2, the insulated ice plate 2 is erected vertically, and then the locking strips 21 at both ends of the insulated ice plate 2 are inserted into the mounting holes 11 on the upper and lower mounting brackets 1. Then, the insulated ice plate 2 is controlled to slide horizontally so that the insulated ice plate 2 is located in a pair of mounting brackets 1, and the pressure plate 12 presses the middle position of the locking strip 21.

[0032] At this point, the two sides of the insulated ice plate 2 are flush with the two sides of the mounting bracket 1, thus achieving the snap-fit ​​fixation of the insulated ice plate 2. Since the insulated ice plate 2 only needs to be slid outward by half a body position to be disassembled and installed, the installation and disassembly process of the insulated ice plate 2 is made easier and more convenient.

[0033] like Figure 3 , Figure 4 As shown, overlapping strips 3 are provided on both sides of the heat-insulating ice plate 2, and the overlapping strips 3 are distributed in an alternating pattern.

[0034] Therefore, when the insulated ice plate 2 is installed, as the insulated ice plate 2 slides, the adjacent sides are stacked on top of each other to achieve the connection between the insulated ice plates 2, increase the connection stability, and at the same time ensure the stacking setting of the connection position to achieve all-round protection of food and meet the requirements of full preservation.

[0035] like Figure 3 , Figure 4 As shown, lifting holes 4 are provided through the middle of both sides of the insulated ice plate 2 to facilitate lifting and transporting the ice plate. Since the lifting holes 4 are located inside the overlapping strip 3, fingers can be inserted into the lifting holes 4 regardless of which side of the insulated ice plate 2 is facing up, thus enabling convenient lifting and transporting of the insulated ice plate 2.

[0036] like Figure 3 , Figure 4 As shown, multiple support columns 5 are recessed inward on both sides of the heat-insulating ice plate 2, and the ends of two opposing support columns 5 are connected. The support columns 5 are divided into three rows, with the support columns 5 on both sides in the same row and staggered with the support columns 5 in the middle row.

[0037] Therefore, by setting multiple support columns 5 inside the insulated ice plate 2, the internal and external pressure bearing capacity of the insulated ice plate 2 is increased while ensuring the preservation performance of the insulated ice plate 2, to prevent stress concentration and avoid the insulated ice plate 2 from cracking after freezing.

[0038] like Figure 3 , Figure 4 As shown, water-permeable holes 51 are provided at the ends of the two opposing support columns 5. Therefore, during the stacking or use of the heat-insulating ice plate 2, rainwater or accumulated water can be automatically discharged along the water-permeable holes 51, satisfying automatic drainage and achieving stable storage.

[0039] like Figure 4 , Figure 5 As shown, both ends of the heat-insulating ice plate 2 are provided with grooves 22, which are distributed on both sides of the heat-insulating ice plate 2, and the surface of the retaining strip 21 is flush with the bottom wall of the groove 22. Both ends of the heat-insulating ice plate 2 are provided with recessed posts 23 pressed inward, and the end faces of two opposite recessed posts 23 are connected, with a through hole 24 passing through the connection position.

[0040] like Figure 5 As shown, a pair of mounting plates 6 are provided between two adjacent insulated ice plates 2, and the mounting plates 6 are embedded in the grooves 22 where the two ends of the insulated ice plates 2 are joined. Both ends of the mounting plates 6 are provided with corner lugs 61 for being embedded in the recessed posts 23, and a first bolt 62 passes through the corner lugs 61. Both sides of the mounting plates 6 are provided with fixing plates 63 that hold the two sides of the clamping strips 21, and a second bolt 64 passes through the fixing plates 63.

[0041] When the container is relatively tall, two or more insulated ice plates 2 need to be connected to form a long strip that stands upright inside the container. Therefore, during the connection process of the insulated ice plates 2, two insulated ice plates 2 are arranged longitudinally so that the retaining strips 21 at both ends abut against each other.

[0042] Then, the mounting plate 6 is taken out and fastened into the grooves 22 at both ends of the pair of heat-insulating ice plates 2. At this time, the corner lugs 61 on the mounting plate 6 are embedded in the recessed posts 23 on the heat-insulating ice plates 2. At the same time, the fixing plates 63 on both sides of the mounting plate 6 clamp the two sides of the clip 21, thereby wrapping the clip 21.

[0043] Then, the first bolt 62 is inserted through the corner lug 61 and the through hole 24, and the second bolt 64 is inserted through the fixing plate 63 to achieve a stable connection between adjacent heat-insulating ice plates 2. Since the mounting plate 6 surrounds the card strip 21, it can achieve fixation in all directions in the three-dimensional plane. The mounting plate 6 is used to resist the sliding force and torque generated at the connection position to ensure the stability of the heat-insulating ice plate 2 during transportation.

[0044] The specific embodiments are merely explanations of this utility model and are not intended to limit it. After reading this specification, those skilled in the art can make modifications to these embodiments without contributing any inventive step, but such modifications are protected by patent law as long as they fall within the scope of the claims of this utility model.

Claims

1. A cold storage ice plate structure for installation within a shipping container, characterized by: The utility model relates to a container ice plate installation structure, including: A pair of mounting frames (1) are horizontally arranged at the upper and lower ends of the container; A heat preservation ice plate (2) is vertically and spacedly arranged between the mounting frames (1); Both ends of the heat preservation ice plate (2) are horizontally provided with clamping strips (21), the mounting frame (1) is provided in a U-shaped section, and the openings are opposite, a plurality of mounting holes (11) are spacedly arranged on the mounting frame (1), the mounting holes (11) are embedded with the clamping strips (21), and the pressing plates (12) for pressing the middle positions of the clamping strips (21) after the heat preservation ice plate (2) slides horizontally are formed between the adjacent two mounting holes (11); Both ends of the heat preservation ice plate (2) are provided with grooves (22), the grooves (22) are distributed on both sides of the heat preservation ice plate (2), the surface of the clamping strip (21) is flush with the bottom wall of the groove (22), and recessed inwardly provided with recessed columns (23) are arranged at both ends of the heat preservation ice plate (2), the end faces of the two recessed columns (23) are connected, and the connecting positions are penetrated with through holes (24); A pair of mounting plates (6) are arranged between the adjacent two heat preservation ice plates (2), the mounting plate (6) is embedded in the groove (22) at the two ends of the heat preservation ice plate (2) and spliced, the two ends of the mounting plate (6) are provided with corner ears (61) embedded in the recessed column (23), and the first bolt (62) is penetrated between the corner ears (61).

2. A cold storage ice slab structure for installation in a container according to claim 1, characterized in that: Both sides of the mounting plate (6) are provided with the fixed plate (63) clamping both sides of the clamping strip (21), and the second bolt (64) is penetrated between the fixed plates (63).

3. A cold storage ice panel structure for installation within a shipping container according to claim 1, wherein: Both sides of the heat preservation ice plate (2) are respectively provided with the overlapping strips (3) and are distributed in an up-and-down staggered manner.

4. A cold plate structure for installation within a shipping container according to claim 3, wherein: The carrying holes (4) are penetrated in the middle positions of both sides of the heat preservation ice plate (2).

5. A cold storage ice slab structure for installation in a container according to claim 1, wherein: Both sides of the heat preservation ice plate (2) are inwardly recessed and provided with a plurality of support columns (5), and the end positions of the two support columns (5) are connected.

6. A cold plate structure for installation within a shipping container according to claim 5, wherein: The support columns (5) are divided into three rows, the support columns (5) on both sides are in the same row and are distributed in an interlaced manner with the support columns (5) in the middle row.

7. A cold plate structure for installation within a shipping container according to claim 6, wherein: The water permeable holes (51) are penetrated in the end positions of the two support columns (5).