一种集装箱箱体结构
By separating the HVAC and electrical systems within the container structure, connecting the systems via connecting pipes, and setting up partitions within the functional channels to adjust the space, the problems of inconvenient maintenance and low safety of the HVAC and electrical systems in the container house are solved, achieving simple connection and independent maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI SILANG WANWEI COMPUTING TECH CO LTD
- Filing Date
- 2025-07-30
- Publication Date
- 2026-07-17
AI Technical Summary
The cross-laid pipelines of the HVAC and electrical systems in existing containerized warehouses lead to inconvenient maintenance and low safety, making it difficult to achieve simple system connection and independent maintenance.
The container structure is adopted, and the container is divided into the main body and the docking mezzanine along the first direction by the partition. The docking mezzanine is divided into functional passage and maintenance passage by the support plate, and HVAC pipes and cable trays are installed in the same way. The system is connected by connecting pipes, and the functional passage is equipped with partition plates to adjust the size of the space and maintain each system independently.
It enables easy connection and independent maintenance of HVAC and electrical systems, avoids cross-layouts of pipelines, and improves maintenance efficiency and system safety.
Smart Images

Figure CN224512116U_ABST
Abstract
Claims
1. A container box structure, characterized by, include: The box body (1) includes a top plate (11), a bottom plate (12), and a plurality of side plates (13) disposed between the top plate (11) and the bottom plate (12); a transverse partition (14) is provided inside the box body (1); the transverse partition (14) divides the box body (1) into a box body (1) body arranged along a first direction (X1) and a connecting layer (16); the connecting layer (16) is disposed opposite to the box body communication structure and can be detachably connected to the box body communication structure; the first direction (X1) is a vertical direction; Two support plates (2) are spaced apart in the docking interlayer (16) along a second direction (X2); the two support plates (2) can divide the docking interlayer (16) into a first functional channel (161), a maintenance channel (162), and a second functional channel (163) arranged along the second direction (X2); the second direction (X2) is set at an angle to the first direction (X1); A heating and ventilation pipe is provided in the first functional channel (161) along the third direction (X3); a cable tray is provided in the second functional channel (163) along the third direction (X3); the third direction (X3), the second direction (X2) and the first direction (X1) are arranged at an angle to each other; The housing (1) also includes a first connecting pipe (3) and a second connecting pipe (4); one end of the first connecting pipe (3) is connected to the HVAC pipe, and the other end is located outside the docking interlayer (16); One end of the second connecting pipe (4) is connected to the cable tray, and the other end is located outside the docking interlayer (16).
2. The container body structure according to claim 1, characterized by Also includes: A first partition plate (5) is disposed in the first functional channel (161) and is capable of dividing the first functional channel (161) into a first sub-channel (1611) and a second sub-channel (1612) arranged along the first direction (X1). The second partition (6) is disposed in the second functional channel (163) and can divide the second functional channel (163) into a third sub-channel (1631) and a fourth sub-channel (1632) arranged along the first direction (X1); The HVAC duct is arranged in the first sub-channel (1611) along the third direction (X3); the cable tray is arranged in the third sub-channel (1631) along the third direction (X3).
3. A container body structure according to claim 2, wherein A patch panel is provided in the second sub-channel (1612) along the third direction (X3); the fourth sub-channel (1632) is a reserved expansion channel.
4. The container body structure according to claim 2, characterized by The position of the first partition plate (5) in the first direction (X1) is adjustable to adjust the size of the first sub-channel (1611) and the size of the second sub-channel (1612); And / or, The position of the second partition plate (6) in the first direction (X1) is adjustable to adjust the size of the third sub-channel (1631) and the size of the fourth sub-channel (1632).
5. A container body structure according to claim 4, wherein The inner wall of the first functional channel (161) is provided with a plurality of first installation positions along the first direction (X1); the first partition plate (5) can be selectively installed at one of the first installation positions; And / or, The inner wall of the second functional channel (163) is provided with a plurality of second mounting positions along the first direction (X1); the second partition plate (6) can be selectively installed at one of the second mounting positions.
6. The container body structure according to claim 1, characterized by In the second direction (X2), the size of the first functional channel (161) is equal to the size of the second functional channel (163).
7. A container body structure according to claim 6, characterised in that, In the second direction (X2), the ratio of the size of the first functional channel (161) to the size of the maintenance channel (162) is in the range of 1:3 to 1:
1.
8. The container body structure according to claim 1, characterized by The housing (1) has a data device (7) inside; in the first direction (X1), the data device (7) is located above at least one of the support plates (2).
9. A container body structure according to any one of claims 1 to 8, wherein It also includes a first alarm and a humidity sensor; the first alarm is located outside the docking interlayer (16); the humidity sensor is located inside the first functional channel (161); the humidity sensor is coupled to the alarm.
10. The container body structure according to claim 9, characterized in that, It also includes a second alarm, a temperature sensor and a smoke sensor; the second alarm is located outside the docking interlayer (16); the temperature sensor and the smoke sensor are located in the second functional channel (163) and are respectively coupled to the second alarm.