Temperature control cabinet
By setting up energy storage units and insulation units in the temperature control cabinet, the problem of poor temperature adjustment effect of existing equipment cabinets is solved, stable temperature regulation in the temperature control cabinet is achieved, and the operating stability of electronic components is improved.
Patent Information
- Application Number
- CN202421963964.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-08-05
- Filing Date
- 2024-08-14
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-08-14
AI Technical Summary
The existing equipment cabinets only have thermal insulation function and have limited temperature adjustment effect. They cannot effectively adjust the impact of environments with large temperature changes on electronic components.
The energy storage unit and the insulation unit are set up in the temperature control cabinet. The energy storage unit can absorb and release heat to adjust the temperature in the temperature control cabinet and keep the temperature stable.
Through the heat absorption and release of the energy storage unit, the stable temperature regulation in the temperature control cabinet is achieved, a more stable operating environment is provided, and the operation stability of electronic components is improved.
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Figure CN223217812U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of equipment cabinets, and in particular to a temperature control cabinet. Background Art
[0002] Some electronic components in electronic equipment are sensitive to temperature. In areas with large temperature fluctuations, such as high altitudes, these temperature-sensitive components are installed in equipment cabinets to reduce the impact of the external environment on them. However, existing equipment cabinets only provide insulation and have limited temperature control capabilities. Utility Model Content
[0003] Based on the above problems, the present application provides a temperature-controlled cabinet that can adjust the temperature inside the temperature-controlled cabinet to improve the stability of the operation of electronic components.
[0004] One embodiment of the present application provides a temperature control cabinet, comprising:
[0005] A frame comprising a bottom frame, pillars and a top frame, wherein the pillars are arranged between the bottom frame and the top frame;
[0006] Temperature control board, including:
[0007] A plate body is arranged on the frame;
[0008] An energy storage unit is provided on the plate body, and the energy storage unit can absorb and release heat;
[0009] The heat preservation unit is arranged on the plate body, and the heat preservation unit is close to the outer side of the frame relative to the energy storage unit.
[0010] According to some embodiments of the present application, the plate body is provided with an energy storage cavity and a heat preservation cavity, the energy storage unit is provided in the energy storage cavity, and the heat preservation unit is provided in the heat preservation cavity.
[0011] According to some embodiments of the present application, the ratio of the width of the energy storage cavity to the width of the heat preservation cavity is 1:2-3.
[0012] According to some embodiments of the present application, the support includes corner posts, which are arranged at four corners of the frame, and at least one of the temperature control plates is connected to the corner posts.
[0013] According to some embodiments of the present application, the pillar further includes an intermediate pillar, which is arranged between two adjacent corner pillars, and at least two temperature control plates are connected to the intermediate pillar.
[0014] According to some embodiments of the present application, the corner column is provided with a first filling cavity, and the pillar further includes a first filling unit, and the first filling unit is provided in the first filling cavity.
[0015] According to some embodiments of the present application, a slot is provided on the side wall of the pillar, and a protrusion adapted to the slot is provided on the end of the plate.
[0016] According to some embodiments of the present application, the protrusion is provided with a second filling cavity, and the temperature control plate further includes a second filling unit, and the second filling unit is provided in the second filling cavity.
[0017] According to some embodiments of the present application, the side wall of the plate body is flush with the side wall of the pillar.
[0018] According to some embodiments of the present application, the width of the temperature control plate is 50 to 100 cm.
[0019] The present application sets an energy storage unit in the temperature-controlled cabinet. The energy storage unit can absorb and release heat to adjust the temperature inside the temperature-controlled cabinet, making the temperature inside the temperature-controlled cabinet more stable and providing a better operating environment for electronic components. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solution of the present application, the following is a brief introduction to the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without exceeding the scope of protection required by this application.
[0021] Figure 1 This is a schematic diagram of the temperature control cabinet in the embodiment of the present application. Figure 1 ;
[0022] Figure 2 This is a schematic diagram of the temperature control cabinet in the embodiment of the present application. Figure 2 ;
[0023] Figure 3 Schematic diagram of a temperature control plate according to an embodiment of the present application;
[0024] Figure 4 This is a schematic diagram of a corner post and a temperature control plate connected to the corner post according to an embodiment of the present application;
[0025] Figure 5 Schematic diagram of the intermediate column in the embodiment of the present application. DETAILED DESCRIPTION
[0026] The following is a clear and complete description of the technical solution of this application in conjunction with the drawings in the embodiments of this application. Obviously, the embodiments described are part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without making any creative efforts are within the scope of protection of this application.
[0027] like Figure 1 As shown, an embodiment of the present application provides a temperature-controlled cabinet 100 , comprising a frame 1 and a temperature-controlled plate 2 . The temperature-controlled plate 2 is disposed on the frame 1 . The temperature-controlled plate 2 can absorb and release heat to adjust the ambient temperature inside the temperature-controlled cabinet 100 .
[0028] The frame 1 includes a bottom frame 11, pillars 12 and a top frame 13. The pillars 12 are arranged between the bottom frame 11 and the top frame 13. The bottom ends of the pillars 12 are connected to the bottom frame 11, and the top ends of the pillars 12 are connected to the top frame 13. Optionally, the frame 1 is a steel structure frame.
[0029] like Figure 2 As shown, the temperature control panel 2 includes a panel 21, an energy storage unit 22, and a heat preservation unit 23. The panel 21 is mounted on the frame 1. For example, the panel 21 is mounted on the support 12 to serve as a side panel of the temperature control cabinet 100. Optionally, the panel 21 is made of an existing fiberboard.
[0030] The energy storage unit 22 is provided on the plate 21. The energy storage unit 22 can absorb and release heat. For example, the energy storage unit 22 is an existing heat storage material with good heat storage performance.
[0031] The insulation unit 23 is mounted on the plate 21 to provide insulation. Existing insulation materials can be used. The insulation unit 23 is located closer to the outside of the frame 1 than the energy storage unit 22. The energy storage unit 22 is located inside the temperature-controlled cabinet 100, which facilitates its absorption and release of heat from the cabinet 100.
[0032] A bottom plate is provided on the bottom frame 11 , and a cover plate is provided on the top frame 13 . The materials of the bottom plate and the cover plate are set according to requirements.
[0033] The electronic components are arranged in the temperature-controlled cabinet 100. When the electronic components are in operation, the energy storage unit 22 can absorb the heat generated by the electronic components and store the heat to reduce the ambient temperature in the temperature-controlled cabinet 100. After the electronic components stop operating, the energy storage unit 22 can release the heat to increase the ambient temperature in the temperature-controlled cabinet 100.
[0034] The temperature control cabinet 100 of the present application can adaptively adjust the ambient temperature inside the temperature control cabinet 100 to make the temperature inside the temperature control cabinet 100 more stable, which is conducive to the operation of electronic components in a more stable environment.
[0035] like Figure 3As shown, in some embodiments, the plate body 21 is provided with an energy storage cavity 211 and a heat preservation cavity 212, and the heat preservation cavity 212 is closer to the outside of the temperature control cabinet 100 relative to the energy storage cavity 211. The energy storage unit 22 is provided in the energy storage cavity 211, and the heat preservation unit 23 is provided in the heat preservation cavity 212. Both the energy storage cavity 211 and the heat preservation cavity 212 can be configured as closed cavities. For example, after the energy storage cavity 211 is filled, the opening of the energy storage cavity 211 is sealed with a cover plate or a sealing material. The dimensions of the energy storage cavity 211 and the heat preservation cavity 212 are set according to requirements.
[0036] In some embodiments, the ratio of the width D1 of the energy storage cavity 211 to the width D2 of the insulation cavity 212 is 1:2-3, which meets energy storage requirements while improving the insulation performance of the temperature-controlled cabinet 100. Optionally, the width D1 of the energy storage cavity 211 is 15-20 mm, for example, 18 mm. The width D2 of the insulation cavity 212 is 30-40 mm, for example, 35 mm.
[0037] like Figure 2 As shown, in some embodiments, the support 12 includes corner posts 121 , four corner posts 121 are respectively disposed at four corners of the frame 1 , and at least one temperature control plate 2 is connected to the corner posts 121 .
[0038] In some embodiments, the pillars 12 further include an intermediate pillar 122. When the temperature-controlled cabinet 100 is relatively large, the intermediate pillar 122 is disposed between two adjacent corner pillars 121. At least two temperature-controlled panels 2 are connected to the intermediate pillars 122, respectively. For example, one temperature-controlled panel 2 is disposed on one side of the intermediate pillar 122, and the other temperature-controlled panel 2 is disposed on the other side of the intermediate pillar 122. The heights of the corner pillars 121 and the intermediate pillars 122 are set as required.
[0039] like Figure 4 As shown, Figure 4 a is a schematic diagram of the first filling cavity, Figure 4 Figure b is a schematic diagram of the first filling unit. Corner post 121 is provided with a first filling cavity 123 extending vertically. Support column 12 also includes a first filling unit 124, which is disposed within first filling cavity 123. Optionally, first filling unit 124 is made of an existing thermal insulation material. Filling corner post 121 with first filling unit 124 helps improve the thermal insulation performance of temperature-controlled cabinet 100.
[0040] like Figure 3 、 Figure 4 and Figure 5As shown, the sidewalls of the pillars 12 are provided with slots 125. For example, slots 125 are provided on two adjacent sidewalls of the corner pillars 121, and slots 125 are provided on two opposing sidewalls of the center pillars 122. The slots 125 extend vertically. The ends of the plate 21 are provided with protrusions 213 that mate with the slots 125. Optionally, screw holes are provided on the sidewalls of the slots 125 and the sidewalls of the protrusions 213. After the protrusions 213 are inserted into the slots 125, screws are passed through the slots 125 and protrusions 213 to securely connect the slots 125 and protrusions 213.
[0041] In some embodiments, the protrusion 213 is provided with a second filling cavity 214. The temperature control plate 2 also includes a second filling unit 24, which is disposed in the second filling cavity 214. Optionally, the second filling unit 24 is made of an existing thermal insulation material. Filling the protrusion 213 with the second filling unit 24 helps improve the thermal insulation performance of the temperature control cabinet 100.
[0042] In some embodiments, the sidewalls of the plate 11 are flush with the sidewalls of the pillars 2. For example, the outer sidewall of the plate 11 is flush with the outer sidewall of the corner post 21, and the inner sidewall of the plate 11 is flush with the inner sidewall of the corner post 21, which facilitates assembly of the plate 11 and the pillars 2.
[0043] like Figure 3 As shown, in some embodiments, the width L1 of the temperature control plate 2 is 50 to 100 cm. Optionally, the width L1 of the temperature control plate 2 is 50 mm, 80 mm, or 100 mm. Standardizing the width L1 of the temperature control plate 2 facilitates the production of the temperature control plate 2. For example, if the width L1 of the temperature control plate 2 is 50 mm, the width of the temperature control cabinet 100 can be set to approximately 100 mm, 150 mm, or 200 mm, thereby improving the production efficiency of the temperature control cabinet 100.
[0044] The embodiments of the present application are described in detail above. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only intended to help understand the technical solutions and core concepts of the present application. Therefore, changes or modifications made by those skilled in the art based on the concepts of the present application, the specific implementation methods, and the scope of application of the present application, all fall within the scope of protection of the present application. In summary, the contents of this specification should not be construed as limiting the present application.
Claims
1. A temperature control cabinet, characterized in that: include: A frame comprising a bottom frame, pillars and a top frame, wherein the pillars are arranged between the bottom frame and the top frame; Temperature control board, including: A plate body is arranged on the frame, and the plate body is provided with an energy storage cavity and a heat preservation cavity; An energy storage unit is provided in the energy storage cavity of the plate body, and the energy storage unit can absorb and release heat; A heat preservation unit is provided in the heat preservation cavity of the plate body, and the heat preservation unit is close to the outer side of the frame relative to the energy storage unit.
2. The temperature control cabinet according to claim 1, characterized in that: The ratio of the width of the energy storage cavity to the width of the heat preservation cavity is 1:2-3.
3. The temperature control cabinet according to claim 1, characterized in that: The support comprises a corner post, the corner post is arranged at the four corners of the frame, and at least one temperature control plate is connected to the corner post.
4. The temperature control cabinet according to claim 3, characterized in that: The support column further includes an intermediate column, which is arranged between two adjacent corner columns, and at least two temperature control plates are connected to the intermediate column.
5. The temperature control cabinet according to claim 3, characterized in that: The corner column is provided with a first filling cavity, and the pillar further includes a first filling unit, and the first filling unit is provided in the first filling cavity.
6. The temperature control cabinet according to claim 1, characterized in that: The side wall of the pillar is provided with a clamping groove, and the end of the plate body is provided with a protrusion adapted to the clamping groove.
7. The temperature control cabinet according to claim 6, characterized in that: The protrusion is provided with a second filling cavity, and the temperature control plate further includes a second filling unit, and the second filling unit is provided in the second filling cavity.
8. The temperature control cabinet according to claim 6, characterized in that: The side wall of the plate body is flush with the side wall of the pillar.
9. The temperature control cabinet according to claim 1, characterized in that: The width of the temperature control plate is 50 to 100 cm.