Container with efficient heat insulation layer

By installing solar reflective insulation panels and heat absorption layers on the container, and utilizing cold air delivery copper pipes to form an efficient heat exchange mechanism, the problem of rising internal temperature of the container is solved, achieving efficient heat insulation and ensuring food quality.

CN223804181UActive Publication Date: 2026-01-16ZHUHAI PINCHUANG INTEGRATED HOUSING CO LTD
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Patent Information

Application Number
CN202520077057.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2026-01-16
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

When transporting frozen and refrigerated food in existing containers, direct sunlight causes the outer walls of the container to absorb a large amount of heat, which is then conducted inward, causing the internal temperature to rise and affecting the quality of the food.

Method used

It adopts a combination of solar reflective heat insulation panel and heat absorption layer with a cooler, and uses cold air delivery copper pipe and cold air input component to form an efficient heat exchange mechanism. It rapidly transfers heat through temperature difference, and combines heat insulation layer and light reflective layer to block heat penetration.

Benefits of technology

It effectively reduces the temperature rise inside the container, maintains a stable low-temperature environment, prevents food spoilage, and improves thermal insulation performance.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223804181U_ABST
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Abstract

The utility model discloses a container with an efficient heat insulation layer, and relates to the technical field of containers, the container comprises a bottom plate, a side plate, a top plate and an unloading door, one side of the side plate and one side of the top plate are fixedly provided with sunlight reflection heat insulation plates, and the other side of the bottom plate, the other side of the side plate, the other side of the top plate and the other side of the unloading door are fixedly provided with heat absorption layers. The heat absorption layer comprises a heat absorption bin, a heat absorption plate and a cooler, and the cooler is fixedly installed in the heat absorption bin. Cold air is blown into the cold air conveying copper pipe through the air cooler, the cold air in the cold air conveying copper pipe and heated air in the heat absorption bin form an efficient heat exchange mechanism, heat is rapidly transferred by means of temperature difference driving of the cold air in the cold air conveying copper pipe and the heated air in the heat absorption bin, and then the established target of efficient heat insulation is achieved. And a stable and appropriate low-temperature environment is kept in the container.
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Description

TECHNICAL FIELD

[0001] The utility model relates to container technology field especially relates to a container with high -efficient heat -insulation insulating layer. BACKGROUND

[0002] The heat -insulating container is a kind of special container with good heat insulation performance, mainly used for transporting goods with certain temperature requirements. Its working principle is to reduce the heat transfer inside and outside the container by using low thermal conductivity heat insulation materials, such as polystyrene foam, polyurethane foam, etc., to reduce the influence of external environment temperature change on goods in the box, so as to ensure that goods are in suitable temperature environment during transportation, and ensure the quality of goods.

[0003] For example, Chinese patent publication No. CN220521577U discloses a room type heat insulation container, which comprises a container body, a sunshade ceiling is arranged above the container body, a heat insulation window and a heat insulation door are arranged on the side of the container body, a heat insulation layer is coated on the outside of the container body, and a reflective layer is arranged on the outside of the heat insulation layer.

[0004] However, when the existing container is used to transport frozen and refrigerated food, the sunlight in the external environment directly irradiates the outer wall of the container, causing the surface of the container to absorb a large amount of heat, which in turn causes heat conduction inward. Due to the limitation of the heat insulation performance of the container, the heat breaks through the barrier, causing the temperature inside the container to gradually rise. This temperature rise is extremely detrimental to the frozen and refrigerated food in the container, as the low-temperature environment of the food is destroyed, its temperature rises, and the risk of deterioration such as microbial growth and accelerated chemical reaction increases dramatically, seriously threatening the quality and safety of the frozen and refrigerated food. UTILITY MODEL CONTENTS

[0005] The utility model aims at solving the problems in the prior art that sunlight in the external environment directly irradiates the outer wall of the container, causing the surface of the container to absorb a large amount of heat, which in turn causes heat conduction inward, causing the temperature inside the container to gradually rise, the low-temperature environment of the food is destroyed, its temperature rises, and the risk of deterioration such as microbial growth and accelerated chemical reaction increases dramatically, and proposes a container with high -efficient heat -insulating layer.

[0006] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a container with high -efficient heat -insulating layer, including bottom plate, side plate, top plate and unloading door, the side plate and the top plate one side are all fixedly installed with solar light reflection heat insulation board, the other side of bottom plate, side plate, top plate and unloading door is all fixedly installed with heat absorption layer, the heat absorption layer includes heat absorption bin, heat absorption board and cooler, the cooler is fixedly installed in the inside of heat absorption bin, the one side of heat absorption bin is equipped with installation groove, the heat absorption board is fixedly installed in the inside of installation groove.

[0007] Preferably, the temperature reducer comprises a plurality of cold air conveying copper pipes, a cold air input assembly and a hot air output assembly, the input ends of the plurality of cold air conveying copper pipes are fixedly communicated with the output end of the cold air input assembly, and the output ends of the plurality of cold air conveying copper pipes are fixedly communicated with the input end of the hot air output assembly.

[0008] Preferably, the cold air input assembly comprises a cold air shunt pipe and a cold air input port, the cold air input port is fixedly communicated with one end of one side of the cold air shunt pipe, and the input ends of the plurality of cold air conveying copper pipes are fixedly communicated with the other side of the cold air shunt pipe.

[0009] Preferably, the hot air output assembly comprises a hot air converging pipe and a hot air outlet, one end of the hot air outlet is fixedly communicated with one end of one side of the hot air converging pipe, and the output ends of the plurality of cold air conveying copper pipes are fixedly communicated with the other side of the cold air shunt pipe.

[0010] Preferably, the outer sides of the plurality of cold air conveying copper pipes are fixedly connected with a plurality of pipeline positioning plates.

[0011] Preferably, one side of the sunlight reflection and heat insulation plate is coated with a heat insulation layer, and one side of the heat insulation layer is coated with a light reflection layer.

[0012] Compared with the prior art, the utility model has the advantages and positive effects that:

[0013] 1、in the utility model, the cold air conveying copper pipe is blown into the inside by the air cooler, the cold air in the cold air conveying copper pipe and the gas in the heat absorbing bin form the high -efficient heat exchange mechanism, the temperature difference drive is relied on, the heat is removed quickly, and the predetermined goal of high -efficient heat preservation is achieved, and the inside of the container is ensured to maintain stable and suitable low temperature environment.

[0014] 2、in the utility model, the mutual cooperation between the heat insulation layer and the light reflection layer effectively blocks the penetration of most heat to the inside of the side plate and the top plate, not only the temperature rising range of the container due to the sunlight is reduced significantly, but also the heat insulation performance of the container is further optimized, and the more stable and suitable low temperature environment is created for the goods in the container. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 a three-dimensional structure schematic diagram of the container with the high -efficient heat insulation layer is provided for the utility model;

[0016] Figure 2 an internal structure schematic diagram of the container with the high -efficient heat insulation layer is provided for the utility model;

[0017] Figure 3The utility model provides a container with heat absorption layer's three-dimensional structure schematic diagram of high -efficient heat -insulation layer.

[0018] Figure 4 The utility model provides a container with solar light reflection heat insulation board's three-dimensional structure schematic diagram of high -efficient heat -insulation layer.

[0019] Legend: 1, bottom plate; 2, side plate; 3, top plate; 4, unloading door; 5, heat absorption layer; 50, heat absorption storehouse; 501, installation groove; 51, heat absorption plate; 52, cooling device; 521, cold gas delivery copper pipe; 522, cold gas input component; 523, hot gas output component; 524, cold gas shunt pipe; 525, cold gas input; 526, hot gas flow pipe; 527, hot gas outlet; 528, pipeline positioning plate; 6, solar light reflection heat insulation board; 61, heat insulation layer; 62, light reflection layer. DETAILED DESCRIPTION

[0020] In order to more clearly understand the above purpose, features and advantages of the utility model, the utility model is further described below in conjunction with the drawings and examples.

[0021] In the following description, a lot of specific details are set forth in order to facilitate a full understanding of the utility model, but the utility model can also be implemented in other ways different from the description, therefore, the utility model is not limited to the specific embodiments disclosed in the following disclosure.

[0022] Example one: as Figure 1 - Figure 3The utility model provides a container with high -efficient heat -insulation layer, including bottom plate 1, side plate 2, roof 3 and unloading door 4, and one side of side plate 2 and roof 3 is fixedly installed with sunlight reflection heat -insulation board 6, and the other side of bottom plate 1, side plate 2, roof 3 and unloading door 4 is fixedly installed with heat absorption layer 5, heat absorption layer 5 includes heat absorption bin 50, heat absorption board 51 and cooler 52, cooler 52 is fixedly installed in the inside of heat absorption bin 50, and one side of heat absorption bin 50 is provided with mounting groove 501, and heat absorption board 51 is fixedly installed in the inside of mounting groove 501, and cooler 52 includes several cold gas delivery copper pipes 521, cold gas input component 522 and hot gas output component 523, and the input end of several cold gas delivery copper pipes 521 is fixedly communicated with the output end of cold gas input component 522, and the output end of several cold gas delivery copper pipes 521 is fixedly communicated with the input end of hot gas output component 523, and cold gas input component 522 includes cold gas shunt pipe 524 and cold gas input port 525, and cold gas input port 525 is fixedly communicated at one end of one side of cold gas shunt pipe 524, and the input end of several cold gas delivery copper pipes 521 is fixedly communicated at the other side of cold gas shunt pipe 524, and hot gas output component 523 includes hot gas converging pipe 526 and hot gas outlet 527, and one end of hot gas outlet 527 is fixedly communicated at one end of one side of hot gas converging pipe 526, and the output end of several cold gas delivery copper pipes 521 is fixedly communicated at the other side of cold gas shunt pipe 524, and the outside of several cold gas delivery copper pipes 521 is fixedly connected with several pipeline positioning plates 528.

[0023] The utility model discloses a container with high -efficient heat -insulation layer, including bottom plate 1, side plate 2, roof 3 and unloading door 4, and one side of side plate 2 and roof 3 is fixedly installed with sunlight reflection heat -insulation board 6, and the other side of bottom plate 1, side plate 2, roof 3 and unloading door 4 is fixedly installed with heat absorption layer 5, heat absorption layer 5 includes heat absorption bin 50, heat absorption board 51 and cooler 52, cooler 52 is fixedly installed in the inside of heat absorption bin 50, and one side of heat absorption bin 50 is provided with mounting groove 501, and heat absorption board 51 is fixedly installed in the inside of mounting groove 501, and cooler 52 includes several cold gas delivery copper pipes 521, cold gas input component 522 and hot gas output component 523, and the input end of several cold gas delivery copper pipes 521 is fixedly communicated with the output end of cold gas input component 522, and the output end of several cold gas delivery copper pipes 521 is fixedly communicated with the input end of hot gas output component 523, and cold gas input component 522 includes cold gas shunt pipe 524 and cold gas input port 525, and cold gas input port 525 is fixedly communicated at one end of one side of cold gas shunt pipe 524, and the input end of several cold gas delivery copper pipes 521 is fixedly communicated at the other side of cold gas shunt pipe 524, and hot gas output component 523 includes hot gas converging pipe 526 and hot gas outlet 527, and one end of hot gas outlet 527 is fixedly communicated at one end of one side of hot gas converging pipe 526, and the output end of several cold gas delivery copper pipes 521 is fixedly communicated at the other side of cold gas shunt pipe 524, and the outside of several cold gas delivery copper pipes 521 is fixedly connected with several pipeline positioning plates 528.

[0024] Embodiment two: as Figure 1 - Figure 4As shown, a container with high-efficiency thermal insulation layer, including the bottom plate 1, side plate 2, top plate 3 and unloading door 4, one side of the side plate 2 and the top plate 3 are fixedly installed with sunlight reflection heat insulation plate 6, the other side of the bottom plate 1, side plate 2, top plate 3 and unloading door 4 are fixedly installed with heat absorption layer 5, heat absorption layer 5 includes heat absorption bin 50, heat absorption plate 51 and cooler 52, cooler 52 is fixedly installed in the inside of heat absorption bin 50, one side of heat absorption bin 50 is provided with installation groove 501, heat absorption plate 51 is fixedly installed in the inside of installation groove 501, one side of sunlight reflection heat insulation plate 6 is coated with heat insulation layer 61, one side of heat insulation layer 61 is coated with light reflection layer 62.

[0025] The effect of the whole embodiment is that when the external sunlight is irradiated above the sunlight reflection heat insulation plate 6, the light reflection layer 62 can reflect most of the sunlight to the external environment with extremely high efficiency, greatly reducing the heat input caused by direct sunlight. At the same time, the heat insulation layer 61 located below the light reflection layer adopts a material with excellent heat insulation performance, forming a solid barrier in the initial link of heat transfer, effectively blocking most of the heat from penetrating into the inside of the side plate 2 and the top plate 3. In this way, not only the temperature rise amplitude of the container caused by sunlight is significantly reduced, but also the overall thermal insulation performance of the container is further optimized, creating a more stable and suitable low-temperature environment for the goods in the container.

[0026] The use method and working principle of the device are as follows: when the external sunlight is irradiated above the sunlight reflection heat insulation plate 6, the light reflection layer 62 can reflect most of the sunlight to the external environment with extremely high efficiency, greatly reducing the heat input caused by direct sunlight. At the same time, the heat insulation layer 61 located below the light reflection layer adopts a material with excellent heat insulation performance, forming a solid barrier in the initial link of heat transfer, effectively blocking most of the heat from penetrating into the inside of the side plate 2 and the top plate 3. In this way, not only the temperature rise amplitude of the container caused by sunlight is significantly reduced, but also the overall thermal insulation performance of the container is further optimized, creating a more stable and suitable low-temperature environment for the goods in the container.

[0027] The above merely describes preferred embodiments of the present application, and is not intended to limit the present application in other forms, and any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields with equivalent changes, but any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present application without departing from the technical scheme of the present application still falls within the protection scope of the present application.

Claims

1. A container with high-efficiency thermal insulation layer, comprising a bottom plate (1), a side plate (2), a top plate (3) and a discharge door (4), characterized in that: The side plate (2) and the top plate (3) are fixedly installed with sunlight reflection heat insulation plates (6), the bottom plate (1), the side plate (2), the top plate (3) and the unloading door (4) are fixedly installed with heat absorption layers (5) on the other side, the heat absorption layer (5) comprises a heat absorption bin (50), a heat absorption plate (51) and a cooler (52), the cooler (52) is fixedly installed in the heat absorption bin (50), one side of the heat absorption bin (50) is provided with a mounting groove (501), and the heat absorption plate (51) is fixedly installed in the mounting groove (501).

2. The container with high efficiency thermal insulation layer according to claim 1, characterized in that: The cooler (52) comprises a plurality of cold air conveying copper pipes (521), a cold air input assembly (522) and a hot air output assembly (523), the input ends of the plurality of cold air conveying copper pipes (521) are fixedly communicated with the output end of the cold air input assembly (522), and the output ends of the plurality of cold air conveying copper pipes (521) are fixedly communicated with the input end of the hot air output assembly (523).

3. The container with high efficiency thermal insulation layer according to claim 2, characterized in that: The cold air input assembly (522) comprises a cold air shunt pipe (524) and a cold air input port (525), one end of the cold air input port (525) is fixedly communicated on one side of the cold air shunt pipe (524), and the input ends of the plurality of cold air conveying copper pipes (521) are fixedly communicated on the other side of the cold air shunt pipe (524).

4. The container with high efficiency thermal insulation layer according to claim 2, characterized in that: The hot air output assembly (523) comprises a hot air converging pipe (526) and a hot air outlet (527), one end of the hot air outlet (527) is fixedly communicated on one side of the hot air converging pipe (526), and the output ends of the plurality of cold air conveying copper pipes (521) are fixedly communicated on the other side of the cold air shunt pipe (524).

5. The container with high efficiency thermal insulation layer according to claim 2, characterized in that: The outer sides of the plurality of cold air conveying copper pipes (521) are fixedly connected with a plurality of pipeline positioning plates (528).

6. The container with high efficiency thermal insulation layer according to claim 1, characterized in that: One side of the sunlight reflection heat insulation plate (6) is coated with a heat insulation layer (61), and one side of the heat insulation layer (61) is coated with a light reflection layer (62).

Citation Information

Patent Citations

  • Room type heat insulation container

    CN220521577U