Wind power plant server cabinet
By designing the first wiring device and the second wiring device in the wind farm server cabinet, the problems of high difficulty, time-consuming and low tidyness in the prior art are solved, and a more efficient and tidy wiring process is achieved.
Patent Information
- Application Number
- CN202510348122.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-06-20
AI Technical Summary
The existing wind farm server cabinets are difficult to route, time-consuming and labor-intensive, and the layout is not very clean, especially for inexperienced staff.
A wind farm server cabinet is designed, including a first wiring device and a second wiring device. The first wiring device constrains the circuit through uniformly distributed wire management components and wire laying ducts; the second wiring device realizes the overall sorting and positioning of the circuit by positioning the grid frame and wire card components.
It effectively reduces the difficulty and time-consuming of line arrangement, improves wiring efficiency and cleanliness, and allows staff to organize and maintain lines more conveniently.
Smart Images

Figure CN120186934A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of wind farm equipment, and particularly to a server cabinet for a wind farm. Background Art
[0002] A server cabinet is used to integrally install panels, plugins, chassis, electronic components, devices, and mechanical parts and components to form an installation box. A server cabinet for a wind farm is an important installation carrier for relevant control systems of wind farm equipment.
[0003] Multiple servers installed in a server cabinet for a wind farm will generate a lot of wires. In order to facilitate subsequent maintenance and other operations on the servers, the wires need to be arranged as neatly as possible. However, the current wiring effect is completely determined by the experience level of the staff. For less skilled staff, the wiring work is a great difficulty, consuming a lot of time and energy. Moreover, even if a lot of time and energy are consumed, it may still result in an untidy arrangement. Summary of the Invention
[0004] The technical problem to be solved by the present invention is, in view of the above-mentioned technical deficiencies, to provide a server cabinet for a wind farm, which can help staff reduce the difficulty of wire arrangement, greatly reduce the time and energy consumed during wiring, and improve the wiring efficiency and neatness.
[0005] The technical solution adopted by the present invention is: to provide a server cabinet for a wind farm, including a cabinet body and a tray. A first wiring device is provided at the front end of the tray; a second wiring device is provided on the left inner wall of the cabinet body;
[0006] The first wiring device includes a plurality of wire management components evenly distributed from left to right at the front end of the tray; each wire management component includes a bearing plate; the bearing plate is fixedly connected to the tray through a connecting rod; a plurality of arc-shaped wire releasing grooves are evenly distributed from left to right at the upper end of the bearing plate; the wire releasing grooves are arranged in the front-rear direction; arc-shaped retaining pieces are respectively fixed at the front and rear ends of the wire releasing grooves; an arc-shaped constraint sleeve is correspondingly sleeved inside the wire releasing groove; a placement through opening is opened in the front-rear direction on the upper side of the constraint sleeve; a limiting block is fixed at the upper end of the constraint sleeve; an arc-shaped guiding groove is correspondingly opened in the circumferential direction at the rear side inside the wire releasing groove; when the constraint sleeve rotates at the rear end of the wire releasing groove, the limiting block slides correspondingly with the guiding groove; a limiting groove is opened in the front-rear direction at the front side inside the wire releasing groove; the limiting groove communicates with the guiding groove; the limiting groove slidably corresponds to the limiting block; when the limiting block slides along the limiting groove, the placement through opening is blocked by the wire releasing groove;
[0007] The second wiring device described above includes a positioning grid frame fixed to the left inner wall of the cabinet; multiple installation grids are formed between the positioning grid frame and the cabinet; the second wiring device further includes a plurality of wire clamping components; each wire clamping component includes a support seat magnetically connected to the corresponding installation grid; a support rod is rotatably connected to the right side of the support seat; the support rod is arranged in the left-right direction; a wire clamping clip is installed at the right end of the support rod.
[0008] To further optimize this technical solution, the inner diameter of the baffle of a wind farm server cabinet is the same as the inner diameter of the restraint sleeve.
[0009] To further optimize this technical solution, a positioning pressure ring and a control ring are sequentially sleeved on the outside of the support rod of a wind farm server cabinet from left to right; the positioning pressure ring and the control ring are connected by a support rod; a retaining ring is arranged between the positioning pressure ring and the control ring; the retaining ring is sleeved and fixed on the outside of the support rod; the retaining ring is connected to the positioning pressure ring by a compression spring.
[0010] To further optimize this technical solution, the support rod of a wind farm server cabinet is a telescopic structure; the wire clamping clip is installed at the telescopic end of the support rod.
[0011] The beneficial effects of the present invention are as follows:
[0012] 1. The placement through hole on the upper side of the restraint sleeve can facilitate the placement of the line into the restraint sleeve. By the rotation of the restraint sleeve at the rear end of the wire laying groove, the placement through hole can be blocked by the wire laying groove; when the limiting block slides along the limiting groove, the placement through hole is blocked by the wire laying groove. By the forward movement of the restraint sleeve, it is ensured that the placement through hole can maintain the blocked state, thereby realizing the constraint effect of the wire laying groove and the restraint sleeve on the line.
[0013] 2. The wire clamping clip can clamp and position the line. By the rotation of the support rod and the support seat, the direction of clamping the line can be changed. By the positioning of multiple wire clamping components in different installation grids, the arrangement direction of the line can be adjusted according to requirements, making the arrangement and arrangement of the line more convenient. Description of the Drawings
[0014] Figure 1 is the structural schematic diagram of the present invention;
[0015] Figure 2 is the structural schematic diagram of the first wiring device;
[0016] Figure 3 is the structural schematic diagram of the first wiring device in the working state;
[0017] Figure 4 is the structural schematic diagram of the wire clamping component;
[0018] Figure 5 is the structural schematic diagram of the second wiring device in the working state;
[0019] Figure 6 It is a schematic structural diagram of a working state of a wire clamping component.
[0020] In the figure, 1 is the cabinet body; 2 is the pallet; 3 is the bearing plate; 4 is the connecting rod; 5 is the wire discharging groove; 6 is the baffle; 7 is the restraint sleeve; 8 is the insertion through hole; 9 is the limiting block; 10 is the guiding groove; 11 is the limiting groove; 12 is the positioning grid; 13 is the installation grid; 14 is the support; 15 is the support rod; 16 is the wire clamping clip; 17 is the positioning pressing ring; 18 is the control ring; 19 is the support rod; 20 is the retaining ring; 21 is the compression spring; 22 is the circuit. Specific embodiments
[0021] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.
[0022] As Figure 1 shown, a wind farm server cabinet includes a cabinet body 1 (the cabinet door is omitted in the figure) and a pallet 2, and a first wiring device is arranged at the front end of the pallet 2; a second wiring device is arranged on the left side of the inner wall of the cabinet body 1.
[0023] As Figure 2 shown, the first wiring device includes a plurality of wire arranging components evenly distributed from left to right at the front end of the pallet 2; the wire arranging components include a bearing plate 3; the bearing plate 3 is fixedly connected to the pallet 2 through a connecting rod 4; a plurality of arc-shaped wire discharging grooves 5 are evenly distributed from left to right at the upper end of the bearing plate 3; the wire discharging grooves 5 are arranged in the front-rear direction; arc-shaped baffles 6 are respectively fixed at the front and rear ends of the wire discharging grooves 5; an arc-shaped restraint sleeve 7 is correspondingly sleeved inside the wire discharging grooves 5; an insertion through hole 8 is opened in the upper side of the restraint sleeve 7 in the front-rear direction; a limiting block 9 is fixed at the upper end of the restraint sleeve 7; an arc-shaped guiding groove 10 is correspondingly opened in the circumferential direction at the rear side inside the wire discharging grooves 5; when the restraint sleeve 7 rotates at the rear end of the wire discharging groove 5, the limiting block 9 slides correspondingly with the guiding groove 10; a limiting groove 11 is opened in the front side inside the wire discharging grooves 5 in the front-rear direction; the limiting groove 11 communicates with the guiding groove 10; the limiting groove 11 slides correspondingly with the limiting block 9; when the limiting block 9 slides along the limiting groove 11, the insertion through hole 8 is blocked by the wire discharging groove 5.
[0024] As Figure 4 shown, the second wiring device includes a positioning grid 12 fixed on the left side of the inner wall of the cabinet body 1; a plurality of installation grids 13 are formed between the positioning grid 12 and the cabinet body 1; the second wiring device further includes a plurality of wire clamping components; the wire clamping components include supports 14 magnetically connected correspondingly in the installation grids 13; a support rod 15 is rotatably connected to the right side of the support 14; the support rod 15 is arranged in the left-right direction; a wire clamping clip 16 is installed at the right end of the support rod 15.
[0025] In this technical solution, relevant equipment of the server is placed at the pallet 2. The first wiring device arranges the joint parts of the lines 22 connected to the equipment ports, aiming to make it clear at a glance which ports correspond to the joint parts of the respective lines 22. During maintenance and troubleshooting, the lines 22 corresponding to each port can be visually identified. The second wiring device generalizes and arranges the overall lines 22 inside the cabinet body 1, preventing the lines 22 from being disorderly inside the cabinet body 1 and occupying too much space, which causes inconvenience to maintenance and other work.
[0026] Before the first wiring device restricts the lines 22, as Figure 2 shown, at this time, the restraint sleeve 7 is at the rear of the wire release groove 5, and the insertion through-hole 8 on the restraint sleeve 7 is exposed. After the line 22 is inserted into the restraint sleeve 7 through the insertion through-hole 8, the restraint sleeve 7 is rotated so that the insertion through-hole 8 moves to be blocked by the wire release groove 5. At this time, the limiting block 9 slides in the guiding groove 10. When the restraint sleeve 7 rotates to the position where the limiting block 9 corresponds to the limiting groove 11, the restraint sleeve 7 can be moved forward along the wire release groove 5. At this time, the limiting block 9 slides along the limiting groove 11, as Figure 3 shown, the restraint sleeve 7 cannot rotate, and the line 22 is successfully restricted between the corresponding wire release groove 5 and the restraint sleeve 7. Through the above operations, the parts near the joints of multiple lines 22 can be sequentially restricted conveniently, realizing the smooth arrangement of the lines 22 at the equipment ports.
[0027] When the second wiring device restricts the lines 22, according to the number of the lines 22, the lengths of the respective lines 22, the positions where the lines 22 lead outwards, etc., the installation quantity and installation positions of the wire clamping components are planned. The wire clamping components at different positions are used to sequentially restrict and define the lines 22 (the wire clamping clip 16 clamps the line 22), and the orientation arrangement after the wire clamping clip 16 clamps the line 22 (the support rod 15 can rotate to change the direction of the wire clamping clip 16 after clamping the line 22). As Figure 5 shown, the respective lines 22 can be arranged separately, and the lines 22 are attached to the side of the cabinet body 1, reducing the occupation of the internal space and bringing convenience to subsequent maintenance and troubleshooting.
[0028] Certainly, the second wiring device can not only be set on the left side wall of the cabinet body 1. According to the actual wiring requirements, it can be set at any appropriate position inside the cabinet body 1.
[0029] During the above process, the staff can greatly simplify the difficulty of wiring by using the first wiring device and the second wiring device. The arrangement and organization of the lines 22 are more convenient, effectively improving the wiring efficiency and neatness.
[0030] As Figure 3As shown, the inner diameter of the retaining piece 6 is the same as that of the restraint sleeve 7. On the premise of ensuring that the retaining piece 6 blocks the front and rear ends of the restraint sleeve 7, it can avoid the retaining piece 6 clamping the wire 22 too tightly and damaging the outer skin of the wire 22 when the wire 22 is constrained in the placement groove.
[0031] As Figure 4 shown, a positioning pressure ring 17 and a control ring 18 are successively sleeved on the outside of the support rod 15 from left to right; the positioning pressure ring 17 and the control ring 18 are connected by a support rod 19; a retaining ring 20 is arranged between the positioning pressure ring 17 and the control ring 18; the retaining ring 20 is sleeved and fixed on the outside of the support rod 15; the retaining ring 20 and the positioning pressure ring 17 are connected by a compression spring 21.
[0032] The rotation of the support rod 15 can change the orientation of the wire 22 after the wire clamping clip 16 clamps the wire 22. However, in order to ensure the stability of this state, it is necessary to be able to stably position the support rod 15 after rotation. Therefore, before rotating the support rod 15, pull the control ring 18 to the right, pull the positioning pressure ring 17 through the support rod 19, release the abutment between the positioning pressure ring 17 and the support 14, and the support rod 15 can rotate smoothly. After rotating in place, the elastic force of the compression spring 21 presses the positioning pressure ring 17 against the support 14, and through the friction force between the positioning pressure ring 17 and the support 14, the orientation of the support column can be stably limited.
[0033] The support rod 15 is a telescopic structure; the wire clamping clip 16 is installed at the telescopic end of the support rod 15. By telescoping the support rod 15, the distance between the wire 22 and the cabinet body 1 after different wire clamping components clamp the wire 22 can be changed, so that the wire 22 can be adjusted to different levels to adapt to the situation where different wire 22 arrangements intersect, as Figure 6 shown, enhancing the practicability.
[0034] It can be understood that the present invention is described through some embodiments. As is known to those skilled in the art, without departing from the spirit and scope of the present invention, various changes or equivalent replacements can be made to these features and embodiments. In addition, under the teaching of the present invention, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application belong to the scope protected by the present invention.
Claims
1. A wind farm server cabinet, comprising a cabinet body (1) and a support plate (2), characterized in that: A first wiring device is arranged at the front end of the support plate (2); a second wiring device is arranged on the left side of the inner wall of the cabinet (1); The first wiring device comprises a plurality of wire management components evenly distributed from left to right at the front end of the support plate (2); the wire management components comprise a bearing plate (3); the bearing plate (3) is fixedly connected to the support plate (2) via a connecting rod (4); a plurality of arc-shaped wire-releasing grooves (5) are evenly distributed from left to right at the upper end of the bearing plate (3); the wire-releasing grooves (5) are arranged along the front-to-back direction; arc-shaped baffles (6) are respectively fixed at the front and rear ends of the wire-releasing grooves (5); an arc-shaped restraining sleeve (7) is correspondingly sleeved inside the wire-releasing groove (5); an insertion opening (8) is opened on the upper side of the restraining sleeve (7) along the front-to-back direction; A limiting block (9) is fixed to the upper end of the constraint sleeve (7); an arc-shaped guide groove (10) is correspondingly provided on the rear side of the wire-releasing groove (5) along the circumferential direction; when the constraint sleeve (7) rotates at the rear end of the wire-releasing groove (5), the limiting block (9) and the guide groove (10) slide correspondingly; a limiting groove (11) is provided on the front side of the wire-releasing groove (5) along the front-back direction; the limiting groove (11) is connected to the guide groove (10); the limiting groove (11) and the limiting block (9) slide correspondingly; when the limiting block (9) slides along the limiting groove (11), the insertion opening (8) is blocked by the wire-releasing groove (5); The second wiring device comprises a positioning grid (12) fixed to the left side of the inner wall of the cabinet (1); a plurality of installation grids (13) are formed between the positioning grid (12) and the cabinet (1); the second wiring device also comprises a plurality of wire clamping assemblies; the wire clamping assemblies comprise supports (14) correspondingly magnetically connected to the installation grids (13); a support rod (15) is rotatably connected to the right side of the support (14); the support rod (15) is arranged in the left-right direction; and a wire clamp (16) is installed at the right end of the support rod (15).
2. A wind farm server cabinet according to claim 1, characterized in that: The inner diameter of the baffle (6) is consistent with the inner diameter of the constraint sleeve (7).
3. A wind farm server cabinet according to claim 1, characterized in that: The outside of the support rod (15) is sleeved with a positioning pressure ring (17) and a control ring (18) in sequence from left to right; the positioning pressure ring (17) and the control ring (18) are connected via a support rod (19); a retaining ring (20) is provided between the positioning pressure ring (17) and the control ring (18); the retaining ring (20) is sleeved and fixed on the outside of the support rod (15); the retaining ring (20) and the positioning pressure ring (17) are connected via a compression spring (21).
4. A wind farm server cabinet according to claim 3, characterized in that: The support rod (15) is a telescopic structure; the wire clamp (16) is installed at the telescopic end of the support rod (15).