A partition insulation structure for a cold storage insulation system

CN224771855UActive Publication Date: 2026-09-18SHANGHAI SENYUANYUAN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202522188901.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-16
Publication Date
2026-09-18
Estimated Expiration
2035-10-16

AI Technical Summary

Technical Problem

[0003]本实用新型所要解决的技术问题是提供了一种冷库保温系统的隔板保温结构,它能够有效解决现有技术中,虽然通过聚氨酯减少冷气外泄,但未设计分隔结构,当长时间使用后,容易导致隔层材料因挤压或者老化等出现层间粘连,导致整体容易发生变形,从而影响其正常使用的问题

Benefits of technology

1、该冷库保温系统的隔板保温结构,通过三个分隔板分别位于保温层一、加强层、保温层二之间,可起到物理隔离与支撑作用,可便于防止各层材料因挤压、老化产生的层间粘连,同时增强保温件的整体刚性,避免长期使用导致的变形;

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Abstract

This utility model relates to the field of cold storage partition technology and discloses a partition insulation structure for a cold storage insulation system, including insulation components, mounting frames, and mounting columns. Multiple insulation components and mounting columns constitute an overall cold storage frame. The insulation components include a first insulation panel and a second insulation panel. The partition insulation structure of this cold storage insulation system uses polyurethane foam or polystyrene foam for the first insulation layer, which can block heat exchange between the inside and outside of the cold storage. The first and second insulation layers have the same structure and are symmetrically distributed, forming a double insulation barrier, enhancing the overall insulation effect, reducing cold storage energy consumption, and meeting the insulation requirements of low-temperature storage environments. Three partitions are located between the first insulation layer, the reinforcing layer, and the second insulation layer, respectively, providing physical isolation and support. This helps prevent interlayer adhesion caused by compression and aging of the materials, while also enhancing the overall rigidity of the insulation components and avoiding deformation due to long-term use.
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Description

Technical Field

[0001] This utility model relates to the field of cold storage partition technology, specifically to a partition insulation structure for a cold storage insulation system. Background Technology

[0002] In cold chain logistics, food storage, and pharmaceutical preservation, cold storage facilities are frequently used to preserve products or raw materials. As a core facility in a low-temperature environment, the insulation performance of cold storage directly affects energy consumption, operating costs, and the quality stability of stored goods. Partitions, as key components for dividing and zoning the internal space of cold storage, are an important part of the overall insulation system of the cold storage facility. Chinese Utility Model Patent Publication No. CN214614674U discloses a partition insulation structure for a cold storage column. The specification describes a structure where dovetail grooves and blocks are used to sequentially splice the outer panels end-to-end onto the outside of the column. Polyurethane is then filled between the outer panels and the column to effectively insulate the column. Connecting plates and nails further secure the outer panels. Sealant filled in the dovetail grooves further reduces cold air leakage and improves the insulation effect of the outer panels. However, while this partition insulation structure reduces cold air leakage through polyurethane, it lacks a separate partition structure. After prolonged use, the partition materials are prone to interlayer adhesion due to compression or aging, leading to overall deformation and affecting normal use. Summary of the Invention

[0003] The technical problem to be solved by this utility model is to provide a partition insulation structure for a cold storage insulation system. It can effectively solve the problem in the prior art that although polyurethane is used to reduce cold air leakage, no partition structure is designed. After long-term use, the partition material is prone to interlayer adhesion due to compression or aging, which makes the whole structure prone to deformation and thus affects its normal use.

[0004] The technical solution adopted by this utility model is: a partition insulation structure for a cold storage insulation system, including insulation components, mounting frames and mounting columns, wherein multiple insulation components and mounting columns constitute an overall cold storage frame; The insulation component includes a first insulation panel and a second insulation panel. An insulation layer one, a reinforcing layer and an insulation layer two are sequentially disposed between the first insulation panel and the second insulation panel. The reinforcing layer is located between the insulation layer one and the insulation layer two. The mounting column includes a column, and a protective sleeve is inserted and installed at the end of the column away from the insulation component. An insulation strip is fixedly installed at the inner edge of the column. The insulation component and the column are fixedly installed, and the column has a semi-circular cross-section.

[0005] Preferably, the first insulation layer is either polyurethane foam or polystyrene foam, and the first insulation layer and the second insulation layer have the same structure.

[0006] The above technical solution uses polyurethane foam or polystyrene foam for insulation layer one, which can block the heat exchange between the inside and outside of the cold storage. In addition, insulation layer one and insulation layer two have the same structure and are symmetrically distributed, forming a double insulation barrier, which enhances the overall heat insulation effect, reduces the energy consumption of the cold storage, and meets the heat insulation requirements of the low-temperature storage environment.

[0007] Preferably, a partition plate is fixedly installed between each of the insulation layer one, the reinforcing layer and the insulation layer two, and three identical partition plates are provided, with the three partition plates respectively located between the insulation layer one, the reinforcing layer and the insulation layer two.

[0008] The above technical solution uses three partition plates located between the first insulation layer, the reinforcing layer, and the second insulation layer to provide physical isolation and support. This helps prevent interlayer adhesion caused by compression and aging of the materials, while also enhancing the overall rigidity of the insulation component and preventing deformation caused by long-term use.

[0009] Preferably, the first insulation panel is located at the end of the insulation layer away from the reinforcing layer, and the second insulation panel is located at the end of the insulation layer and the reinforcing layer.

[0010] The above technical solution involves covering the outer sides of insulation layer one and insulation layer two with the first and second panels respectively, forming the surface structure of the insulation component. This protects the inner insulation layer from impact and moisture erosion, while also making the surface of the insulation component smooth, facilitating cleaning and maintenance.

[0011] Preferably, the column has a slot at one end near the insulation component, and the protective sleeve has a plug plate fixedly installed at one end near the column, with the plug plate and the slot being plugged in.

[0012] The above technical solution involves inserting the protective sleeve into the slot of the column to form a detachable protective structure. The protective sleeve can also buffer the collision between the column and the outside world, preventing wear or dents from the column due to long-term use.

[0013] Preferably, the insulation strip is the same length as the column, and the insulation strip is made of rock wool.

[0014] The above technical solution involves filling the internal cavity of the column with insulation strips made of rock wool that are the same length as the column. Rock wool has excellent thermal insulation and fire resistance, which can prevent thermal bridges from forming on the column, avoid the loss of cold storage through the column, and enhance the overall insulation effect of the installed column.

[0015] Preferably, the length of the insulation strip is the same as the length of the column, the insulation strip is made of rock wool material, two identical mounting columns are provided, the two mounting columns are symmetrically distributed about the center line of the insulation component, the mounting frame has a mounting groove at one end near the insulation component, the width of the mounting groove is the same as the width of the insulation component, and mounting doors are rotatably installed between multiple insulation components and mounting columns.

[0016] The above technical solution provides lateral support for the insulation component through two symmetrically distributed mounting columns, ensuring the stability of the cold storage frame. Furthermore, the mounting groove of the mounting frame matches the width of the insulation component, facilitating embedded installation. Combined with the design of the mounting door, it ensures the airtightness of the cold storage to maintain the internal low temperature while facilitating the entry and exit of goods, making the overall structure both heat preservation and practicality.

[0017] Compared with the prior art, this utility model provides a partition insulation structure for a cold storage insulation system, which has the following beneficial effects: 1. The partition insulation structure of this cold storage insulation system has three partitions located between the first insulation layer, the reinforcing layer and the second insulation layer, which can play a role in physical isolation and support. This can help prevent the interlayer adhesion caused by compression and aging of the materials, while enhancing the overall rigidity of the insulation components and avoiding deformation caused by long-term use. 2. The partition insulation structure of this cold storage insulation system uses polyurethane foam or polystyrene foam plastic for the first insulation layer, which can block the heat exchange between the inside and outside of the cold storage. Furthermore, the first insulation layer and the second insulation layer have the same structure and are symmetrically distributed, forming a double insulation barrier, which enhances the overall heat insulation effect, reduces the energy consumption of the cold storage, and meets the insulation requirements of the low-temperature storage environment. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a three-dimensional structural diagram of the insulation component of this utility model; Figure 3 This is a schematic diagram of the disassembled structure of the thermal insulation component of this utility model. Figure 1 ; Figure 4 This is a schematic diagram of the disassembled structure of the thermal insulation component of this utility model. Figure 2 ; Figure 5 This is a schematic diagram of the disassembled structure of the mounting column of this utility model. Figure 1 ; Figure 6 This is a schematic diagram of the disassembled structure of the mounting column of this utility model. Figure 2 ; Figure 7 This is a partially enlarged structural diagram of the thermal insulation component of this utility model.

[0019] The components include: 1. Insulation components; 101. First warehouse panel; 102. Insulation layer one; 103. Reinforcing layer; 104. Insulation layer two; 105. Second warehouse panel; 106. Partition plate; 2. Mounting frame; 3. Mounting groove; 4. Mounting column; 401. Column; 402. Slot; 404. Insulation strip; 405. Protective sleeve; 406. Insert plate; 5. Mounting door. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Example 1: As Figure 1-7 As shown, the present invention provides a partition insulation structure for a cold storage insulation system, including insulation components 1, mounting frames 2 and mounting columns 4, with multiple insulation components 1 and mounting columns 4 forming an overall cold storage frame. The insulation component 1 includes a first storage plate 101 and a second storage plate 105. A first insulation layer 102, a reinforcing layer 103, and a second insulation layer 104 are sequentially arranged between the first storage plate 101 and the second storage plate 105. The reinforcing layer 103 is located between the first insulation layer 102 and the second insulation layer 104. The mounting column 4 includes a column 401, a protective sleeve 405 is inserted and installed at the end of the column 401 away from the insulation component 1, and an insulation strip 404 is fixedly installed at the inner edge of the column 401. The insulation component 1 and the column 401 are fixedly installed, and the cross-section of the column 401 is a "semi-circular" structure.

[0022] Specifically, insulation layer 102 is made of either polyurethane foam or polystyrene foam. Insulation layer 102 and insulation layer 2 104 have the same structure. The advantage is that by using polyurethane foam or polystyrene foam for insulation layer 102, heat exchange between the inside and outside of the cold storage can be blocked. In addition, insulation layer 102 and insulation layer 2 104 have the same structure and are symmetrically distributed, forming a double insulation barrier, which enhances the overall heat insulation effect, reduces the energy consumption of the cold storage, and meets the insulation requirements of the low-temperature storage environment.

[0023] Specifically, partition plates 106 are fixedly installed between insulation layer 102, reinforcing layer 103, and insulation layer 2 104. There are three identical partition plates 106, which are located between insulation layer 102, reinforcing layer 103, and insulation layer 2 104, respectively. The advantage is that the three partition plates 106, located between insulation layer 102, reinforcing layer 103, and insulation layer 2 104, can play a role in physical isolation and support, which can help prevent interlayer adhesion caused by compression and aging of the materials, while enhancing the overall rigidity of the insulation component 1 and avoiding deformation caused by long-term use.

[0024] Specifically, the first insulation plate 101 is located at the end of the insulation layer 102 away from the reinforcing layer 103, and the second insulation plate 105 is located at the end of the reinforcing layer 103 of the insulation layer 104. The advantage is that by covering the outer sides of the insulation layer 102 and the insulation layer 104 respectively with the first insulation plate 101 and the second insulation plate 105, the surface structure of the insulation component 1 is formed, which can protect the inner insulation layer from collision and water vapor erosion, while making the surface of the insulation component flat, which is convenient for cleaning and maintenance.

[0025] Example 2: Figure 2-7 As shown, this is an improvement on the previous embodiment.

[0026] Specifically, a slot 402 is provided at one end of the column 401 near the insulation component 1, and an insert plate 406 is fixedly installed at one end of the protective sleeve 405 near the column 401. The insert plate 406 and the slot 402 are plugged into each other. The advantage is that the insert plate 406 of the protective sleeve 405 is inserted into the slot 402 of the column 401 to form a detachable protective structure. In addition, the protective sleeve 405 can buffer the collision between the column 401 and the outside world, and prevent the column 401 from being worn or dented due to long-term use.

[0027] Specifically, the insulation strip 404 is the same length as the column 401. The insulation strip 404 is made of rock wool. The advantage is that by using the rock wool insulation strip 404, which is the same length as the column 401, it fills the internal cavity of the column. Rock wool has excellent thermal insulation and fire resistance, which can prevent the column 401 from forming thermal bridges and avoid the loss of cold storage through the column 401. At the same time, it enhances the overall thermal insulation effect of the installed column 4.

[0028] Specifically, the insulation strip 404 is the same length as the column 401. The insulation strip 404 is made of rock wool. There are two identical mounting columns 4, which are symmetrically distributed about the center line of the insulation component 1. The mounting frame 2 has a mounting groove 3 at one end near the insulation component 1. The width of the mounting groove 3 is the same as the width of the insulation component 1. Multiple insulation components 1 and mounting columns 4 are rotatably installed with mounting doors 5. The advantage is that the two symmetrically distributed mounting columns 4 provide support for the insulation component 1 on both sides, ensuring the stability of the cold storage frame. In addition, the mounting groove 3 of the mounting frame 2 matches the width of the insulation component 1, which can facilitate embedded installation. Furthermore, the design of the mounting doors 5 can ensure the airtightness of the cold storage to maintain the internal low temperature, while also facilitating the entry and exit of goods, making the overall structure both heat preservation and practical.

[0029] Working Principle: During use, three partition plates 106 are located between the first insulation layer 102, the reinforcing layer 103, and the second insulation layer 104, respectively. These partition plates provide physical isolation and support, preventing interlayer adhesion caused by compression and aging, while also enhancing the overall rigidity of the insulation component 1 and preventing deformation due to long-term use. The first and second baffle plates 101 and 105 cover the outer sides of the first and second insulation layers 102 and 104, respectively, forming the surface structure of the insulation component 1. This protects the internal insulation layers from impact and moisture erosion, while also ensuring a smooth surface for easy cleaning and maintenance. The protective sleeve 405 has insert plates 40... The 6-pin insert is inserted into the slot 402 of the column 401 to form a detachable protective structure. The protective sleeve 405 can buffer the collision between the column 401 and the outside world, and prevent the column 401 from being worn or dented due to long-term use. The two symmetrically distributed mounting columns 4 provide side support for the insulation component 1 to ensure the stability of the cold storage frame. The mounting groove 3 of the mounting frame 2 matches the width of the insulation component 1, which can facilitate embedded installation. In addition, the design of the mounting door 5 can ensure the airtightness of the cold storage to maintain the internal low temperature, and facilitate the entry and exit of goods. The overall structure combines insulation and practicality.

[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A partition insulation structure for a cold storage insulation system, comprising an insulation component (1), a mounting frame (2), and a mounting column (4), characterized in that: The multiple insulation components (1) and mounting columns (4) constitute the overall cold storage frame; The insulation component (1) includes a first insulation panel (101) and a second insulation panel (105). A first insulation layer (102), a reinforcing layer (103), and a second insulation layer (104) are sequentially arranged between the first insulation panel (101) and the second insulation panel (105). The reinforcing layer (103) is located between the first insulation layer (102) and the second insulation layer (104). The mounting column (4) includes a column (401), a protective sleeve (405) is inserted and installed at the end of the column (401) away from the insulation component (1), and an insulation strip (404) is fixedly installed at the inner edge of the column (401). The insulation component (1) and the column (401) are fixedly installed, and the column (401) has a "semi-circular" cross-section.

2. The partition insulation structure of a cold storage insulation system according to claim 1, characterized in that: The insulation layer one (102) is either polyurethane foam or polystyrene foam plastic, and the insulation layer one (102) and the insulation layer two (104) have the same structure.

3. The partition insulation structure of a cold storage insulation system according to claim 1, characterized in that: A partition plate (106) is fixedly installed between each of the insulation layer one (102), the reinforcing layer (103), and the insulation layer two (104). There are three identical partition plates (106), and the three partition plates (106) are respectively located between the insulation layer one (102), the reinforcing layer (103), and the insulation layer two (104).

4. The partition insulation structure of a cold storage insulation system according to claim 1, characterized in that: The first insulation panel (101) is located at the end of the insulation layer (102) away from the reinforcing layer (103), and the second insulation panel (105) is located at the end of the insulation layer (104) and the reinforcing layer (103).

5. The partition insulation structure of a cold storage insulation system according to claim 1, characterized in that: The column (401) has a slot (402) at one end near the insulation component (1), and the protective sleeve (405) has a plug plate (406) fixedly installed at one end near the column (401). The plug plate (406) and the slot (402) are plugged in.

6. The partition insulation structure of a cold storage insulation system according to claim 1, characterized in that: The insulation strip (404) has the same length as the column (401), and the insulation strip (404) is made of rock wool material.

7. The partition insulation structure of a cold storage insulation system according to claim 1, characterized in that: There are two identical mounting columns (4), and the two mounting columns (4) are symmetrically distributed about the center line of the insulation component (1). The mounting frame (2) has a mounting groove (3) at one end near the insulation component (1). The width of the mounting groove (3) is the same as the width of the insulation component (1). A mounting door (5) is rotatably installed between the multiple insulation components (1) and the mounting columns (4).

Citation Information

Patent Citations

  • Partition plate heat preservation structure of cold storage stand column

    CN214614674U