Energy storage cabinet evaporator cover plate structure
By designing the connecting components for the flip-up support arm and the rotating shaft, the problem of the evaporator cover of the energy storage cabinet being difficult to disassemble quickly was solved, achieving convenient cover operation and sealing, and improving the maintenance and service life of the energy storage cabinet.
Patent Information
- Application Number
- CN202422956291.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-02
AI Technical Summary
The evaporator cover of the existing energy storage cabinet cannot be quickly removed after installation, which makes maintenance and repair inconvenient and affects the reliability and service life of the energy storage cabinet.
A connecting assembly including a cover plate, first and second flip arms, a rotating shaft, an auxiliary plate, and a sliding groove is designed. The cover plate can be opened and closed conveniently through the cooperation of the rotating shaft and the sliding groove, and a seal is achieved by the mating of the boss and the cover plate, ensuring stability and reliability.
It enables convenient disassembly and installation of the evaporator cover, improves the maintenance convenience and reliability of the energy storage cabinet, and extends its service life.
Smart Images

Figure CN223539709U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an evaporator cover structure for an energy storage cabinet, belonging to the technical field of evaporator equipment. Background Technology
[0002] Energy storage cabinets effectively store energy and improve energy utilization, playing a crucial role in promoting the use of renewable energy. Within these cabinets, the evaporator, a key component, effectively reduces operating temperature, prevents overheating, and ensures safe operation. A search revealed Chinese patent CN215675928U, which discloses an evaporator cover and a tall cabinet. In this patent, a thermoformed panel and insulation filler together form an insulation layer, effectively preventing cold air loss from the evaporator chamber and improving cooling efficiency. Sheet metal parts and the thermoformed panel together form a robust structure, connecting and fixing the evaporator cover to the evaporator, compressor, and other components via connectors, ensuring the cover's stability. However, in this patent, once the evaporator cover is installed, if the evaporator malfunctions, it cannot be easily and quickly disassembled for maintenance. Summary of the Invention
[0003] The technical problem to be solved by this utility model is to overcome the defects of the prior art and provide an evaporator cover mechanism for an energy storage cabinet. It can effectively fix and protect the evaporator, and at the same time, it can be easily and quickly disassembled when the evaporator fails, which facilitates maintenance and repair, and improves the reliability and service life of the energy storage cabinet.
[0004] To solve the above-mentioned technical problems, the technical solution of this utility model is: an evaporator cover structure for an energy storage cabinet, comprising:
[0005] A housing for the evaporator body and a cover structure mounted on the housing;
[0006] The housing is provided with a receiving cavity, and the evaporator body is installed in the receiving cavity;
[0007] The cover plate structure includes a cover plate and two first connecting components. The first connecting components include a first flipping support arm, a second flipping support arm, and a connecting arm. The first flipping support arm is connected to the cover plate, and the connecting arm connects the first flipping support arm and the second flipping support arm.
[0008] The first connecting assembly further includes a first rotating shaft and a second rotating shaft. The first rotating shaft is installed at the intersection of the connecting arm and the second flipping support arm, and the second rotating shaft is installed at the other end of the second flipping support arm.
[0009] The first connecting assembly further includes a first auxiliary plate, which is installed inside the accommodating cavity. The first auxiliary plate is provided with a sliding groove, which is composed of a first vertical groove, a second vertical groove, and a first arc groove.
[0010] The first rotating shaft is adapted to slide in the first vertical groove, and the second rotating shaft is adapted to slide in the second vertical groove and the first arc groove.
[0011] Furthermore, to improve sealing, the accommodating cavity is provided with a boss, the height of which is lower than the height of the housing, and the cover is adapted to be flipped over and placed on the boss.
[0012] Furthermore, the length of the cover plate is the same as the length of the boss;
[0013] The width of the cover plate is the same as the width of the boss.
[0014] Furthermore, the first flipping arm, the second flipping arm, and the connecting arm are integrally formed.
[0015] Furthermore, in order to stabilize the opening and closing process of the cover plate, the cover plate structure also includes two second connecting components. The second connecting components include a second flip arm and a flip bracket. The flip bracket is hinged to the box body and has a second arc groove. One end of the second flip arm is hinged to the cover plate, and the other end of the second flip arm is hinged in the second arc groove.
[0016] Furthermore, the cover plate is also provided with a first hinge seat, and one end of the second flip arm is hinged to the first hinge seat.
[0017] Furthermore, the second connecting component also includes an auxiliary platform, and the inner side of the housing is provided with a movable groove. The auxiliary platform moves in the movable groove, and the auxiliary platform is provided with a second hinge seat. One end of the flip bracket is hinged to the second hinge seat.
[0018] Furthermore, the auxiliary platform slides in the movable slot via a sliding seat, and the auxiliary platform is mounted on the sliding seat.
[0019] After adopting the above technical solution, this utility model has the following beneficial effects:
[0020] In this utility model, when it is necessary to close the cover, an external pushing force is applied, and the cover rotates around the first rotating axis towards the box body. The second rotating axis drives the second flipping support arm to slide downward along the first arc groove. When the second rotating axis slides to the intersection of the first arc groove and the second vertical groove, the cover is parallel to the top end face of the box body. An external pushing force is then applied downward to the cover, causing the first rotating axis to slide downward in the first vertical groove and the second rotating axis to slide downward in the second vertical groove, causing the cover to close on the top of the box body until it completely covers the receiving cavity and abuts against the boss. At this time, the cover and the box body remain sealed.
[0021] When closing the cover, reverse the above steps, and the cover will gradually change from the covered state to the open state.
[0022] During the opening and closing of the cover, the second connecting component ensures the stability and smoothness of the cover, while the design of the auxiliary platform and sliding seat further improves the stability and reliability of the operation. Attached Figure Description
[0023] Figure 1 This is a perspective view of the evaporator cover structure of an energy storage cabinet according to this utility model;
[0024] Figure 2 This is a front view of an evaporator cover structure for an energy storage cabinet according to this utility model;
[0025] Figure 3 This is a top view of an evaporator cover structure for an energy storage cabinet according to this utility model;
[0026] Figure 4 This is a full sectional view of the evaporator cover structure of an energy storage cabinet according to this utility model. Detailed Implementation
[0027] To make the contents of this utility model easier to understand, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings.
[0028] like Figure 1-4 As shown, an evaporator cover structure for an energy storage cabinet includes:
[0029] The housing 1 that holds the evaporator body and the cover plate structure installed on the housing 1;
[0030] The housing 1 is provided with a receiving cavity 11, and the evaporator body is installed in the receiving cavity 11;
[0031] The cover plate structure includes a cover plate 21 and two first connecting components. The first connecting components include a first flipping support arm 221A, a second flipping support arm 221C and a connecting arm 221B. The first flipping support arm 221A is connected to the cover plate 21, and the connecting arm 221B connects the first flipping support arm 221A and the second flipping support arm 221C.
[0032] The first connecting assembly also includes a first rotating shaft 221D and a second rotating shaft 221E. The first rotating shaft 221D is installed at the intersection of the connecting arm 221B and the second flipping support arm 221C, and the second rotating shaft 221E is installed at the other end of the second flipping support arm 221C.
[0033] The first connecting component also includes a first auxiliary plate 222, which is installed inside the accommodating cavity 11. The first auxiliary plate 222 is provided with a sliding groove, which is composed of a first vertical groove 223A, a second vertical groove 223B and a first arc groove 223C.
[0034] The first rotating shaft 221D is adapted to slide in the first vertical groove 223A, and the second rotating shaft 221E is adapted to slide in the second vertical groove 223B and the first arc groove 223C.
[0035] In this embodiment, the cover plate 21 is provided with a handle.
[0036] Specifically, such as Figure 3-4 As shown, the accommodating cavity 11 is provided with a boss 12, the height of which is lower than the height of the box body 1, and the cover plate 21 is adapted to be flipped over and placed on the boss 12.
[0037] Specifically, the length of the cover plate 21 is the same as the length of the boss 12;
[0038] The width of the cover plate 21 is the same as the width of the boss 12.
[0039] Specifically, such as Figure 4 As shown, the first flipping support arm 221A, the second flipping support arm 221C, and the connecting arm 221B are integrally formed.
[0040] Specifically, such as Figure 1-4 As shown, the cover structure also includes two second connecting components. The second connecting components include a second flipping arm 231 and a flipping bracket 232. The flipping bracket 232 is hinged to the housing 1. The flipping bracket 232 is provided with a second arc groove 232A. One end of the second flipping arm 231 is hinged to the cover plate 21, and the other end of the second flipping arm 231 is hinged in the second arc groove 232A.
[0041] Specifically, such as Figure 1-4 As shown, the cover plate 21 is also provided with a first hinge seat 24, and one end of the second flip arm 231 is hinged to the first hinge seat 24.
[0042] Specifically, such as Figure 3-4As shown, the second connecting component also includes an auxiliary platform 233, and the inner side of the housing 1 is also provided with a movable groove 13. The auxiliary platform 233 moves in the movable groove 13. The auxiliary platform 233 is provided with a second hinge seat 234, and one end of the flip bracket 232 is hinged to the second hinge seat 234.
[0043] Specifically, such as Figure 3-4 As shown, the auxiliary platform 233 slides in the movable groove 13 via the sliding seat 235, and the auxiliary platform 233 is mounted on the sliding seat 235.
[0044] In this embodiment, by applying an external force, the cover plate 21 rotates around the first rotating shaft 221D toward the box 1, and the second rotating shaft 221E drives the second flipping support arm 221C to slide downward along the first arc groove 223C. When the second rotating shaft 221E slides to the intersection of the first arc groove 223C and the second vertical groove 223B, the cover plate 21 is parallel to the top end face of the box 1. By applying an external force downward to the cover plate 21, the first rotating shaft 221D slides downward in the first vertical groove 223A, and the second rotating shaft 221E slides downward in the second vertical groove 223B, causing the cover plate 21 to close on the top of the box 1.
[0045] In reverse operation, by pulling the cover plate 21 upward by the handle, the first rotating shaft 221D and the second rotating shaft 221E are driven to perform corresponding operations, causing the cover plate 21 to detach from the box body 1.
[0046] The specific embodiments described above further illustrate the technical problems, technical solutions, and beneficial effects of this utility model. It should be understood that the above descriptions are merely specific embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A structure for an evaporator cover plate of an energy storage cabinet, characterized in that, include: A housing (1) for placing the evaporator body and a cover structure mounted on the housing (1); The housing (1) is provided with a receiving cavity (11), and the evaporator body is installed in the receiving cavity (11); The cover plate structure includes a cover plate (21) and two first connecting components. The first connecting components include a first flipping support arm (221A), a second flipping support arm (221C), and a connecting arm (221B). The first flipping support arm (221A) is connected to the cover plate (21), and the connecting arm (221B) connects the first flipping support arm (221A) and the second flipping support arm (221C). The first connecting assembly further includes a first rotating shaft (221D) and a second rotating shaft (221E). The first rotating shaft (221D) is installed at the intersection of the connecting arm (221B) and the second flipping support arm (221C), and the second rotating shaft (221E) is installed at the other end of the second flipping support arm (221C). The first connecting assembly further includes a first auxiliary plate (222), which is installed inside the accommodating cavity (11). The first auxiliary plate (222) is provided with a sliding groove, which is composed of a first vertical groove (223A), a second vertical groove (223B), and a first arc groove (223C). The first rotating shaft (221D) is adapted to slide in the first vertical groove (223A), and the second rotating shaft (221E) is adapted to slide in the second vertical groove (223B) and the first arc groove (223C).
2. The evaporator cover structure of an energy storage cabinet according to claim 1, characterized in that: The accommodating cavity (11) is provided with a boss (12), the height of which is lower than the height of the box body (1), and the cover plate (21) is adapted to be flipped over and placed on the boss (12).
3. The evaporator cover structure of an energy storage cabinet according to claim 2, characterized in that: The length of the cover plate (21) is the same as the length of the boss (12); The width of the cover plate (21) is the same as the width of the boss (12).
4. The evaporator cover structure of an energy storage cabinet according to claim 1, characterized in that: The first flipping support arm (221A), the second flipping support arm (221C), and the connecting arm (221B) are integrally formed.
5. The evaporator cover structure of an energy storage cabinet according to claim 1, characterized in that: The cover structure also includes two second connecting components. The second connecting components include a second flip arm (231) and a flip bracket (232). The flip bracket (232) is hinged to the box body (1). The flip bracket (232) is provided with a second arc groove (232A). One end of the second flip arm (231) is hinged to the cover plate (21), and the other end of the second flip arm (231) is hinged in the second arc groove (232A).
6. The evaporator cover structure of an energy storage cabinet according to claim 5, characterized in that: The cover plate (21) is also provided with a first hinge seat (24), and one end of the second flip arm (231) is hinged to the first hinge seat (24).
7. The evaporator cover structure of an energy storage cabinet according to claim 5, characterized in that: The second connecting component also includes an auxiliary platform (233), and the inner side of the housing (1) is provided with a movable groove (13). The auxiliary platform (233) moves in the movable groove (13). The auxiliary platform (233) is provided with a second hinge seat (234). One end of the flipping bracket (232) is hinged to the second hinge seat (234).
8. The evaporator cover structure of an energy storage cabinet according to claim 7, characterized in that: The auxiliary platform (233) slides in the movable groove (13) via a sliding seat (235), and the auxiliary platform (233) is mounted on the sliding seat (235).
Citation Information
Patent Citations
Evaporator cover plate and high-body cabinet
CN215675928U