Damping hub control cabinet body

By combining a linkage rod, a return spring, and a slider, the problem of swaying of the shock-absorbing hub control cabinet under vibration and impact is solved, enabling stable clamping of different cabinet models and reducing corrosion, thereby improving the stability and protection of the equipment.

CN223912736UActive Publication Date: 2026-02-13ZHONGMINFUQING WIND POWER CO LTD
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Patent Information

Application Number
CN202520373326.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-02-13
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

During vibration and impact testing, the internal electronic components of the existing shock-absorbing hub control cabinet are prone to shaking, leading to loose connections and difficulty in clamping and fixing different cabinet models.

Method used

The system employs a combination structure of linkage rod, return spring, slider and clamping plate. Through the cooperation of slide groove and slider, it can stably clamp different models of cabinets. The combination of buffer spring and load-bearing shaft reduces the impact of shaking. Soft pads and double-sided tape prevent loosening and corrosion.

Benefits of technology

It effectively reduces the loosening of internal components due to cabinet vibration, improves the stability and corrosion resistance of the equipment, and ensures the normal operation of electronic components and the integrity of the structure.

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Abstract

The utility model relates to the technical field of electronic elements, in particular to a damping hub control cabinet body which comprises a cabinet body, a bearing plate is connected to the bottom end of the cabinet body, fixing plates are connected to the two sides of the bottom end of the bearing plate in a fastened mode, transverse plates are connected to the bottom ends of the fixing plates in a fastened mode, a sliding groove is formed in the middle of each transverse plate, and a sliding block is connected to the interior of each sliding groove in a sliding mode. The top end of the sliding block is fixedly connected with a vertical plate, one side of the vertical plate is fixedly connected with a clamping plate, one side of the surface of the clamping plate is connected with a soft cushion, under the cooperation of a linkage rod and a reset spring, the clamping plates on the two sides can be extruded, so that the sliding block moves in a sliding groove, the clamping plates and the sliding block can be connected together through the vertical plate, and the clamping plates and the sliding block can be conveniently clamped. According to the invention, the sliding block is arranged, so that the clamping plate can be synchronously driven to move in the moving process of the sliding block, cabinet bodies of different models can be clamped and fixed, and the situation that the internal vibration is too large in the vibration and impact test process of the test cabinet body, so that electronic components are loosened, and subsequent use is affected can be reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic component technical field especially relates to a shock absorbing wheel hub control cabinet cabinet. BACKGROUND

[0002] The cabinet can prevent external physical damage such as collision, scratching, etc., protect internal electronic components and mechanical equipment, prevent dust, moisture, corrosive gas, etc. from entering, ensure internal components work in a clean and dry environment, and the shock absorbing wheel hub control cabinet is usually equipped with shock absorbing materials or devices such as rubber pads, springs, etc. which can effectively absorb and disperse vibrations and reduce the impact on internal components.

[0003] The existing shock absorbing wheel hub control cabinet cabinet, in the process of detecting vibration impact, the internal electronic components are prone to shaking, and the wiring terminals, bolts, switches, etc. in the cabinet are prone to loosening under frequent shaking. Loose connections may cause poor contact, but the existing technology directly clamps and fixes the cabinet when handling equipment shaking, which is not convenient for clamping different models of cabinets. To solve the aforementioned problems, a shock absorbing wheel hub control cabinet cabinet is provided UTILITY MODEL CONTENTS

[0004] The utility model provides the following technical scheme in view of the deficiency of prior art.

[0005] A shock absorbing wheel hub control cabinet cabinet, comprising: a cabinet, the bottom end of the cabinet is connected with a bearing plate, the bottom end of the bearing plate is fastened and connected with a fixed plate on both sides, the bottom end of the fixed plate is fastened and connected with a horizontal plate, the middle of the horizontal plate is provided with a sliding groove, the inside of the sliding groove is slidably connected with an oil sliding block, the top end of the sliding block is fastened and connected with a vertical plate, one side of the vertical plate is fastened and connected with a clamping plate, one side of the surface of the clamping plate is connected with a soft pad, and the bottom end of the vertical plate is respectively provided with a linkage rod and a return spring.

[0006] As an improvement of the above technical scheme, the bottom end of the cabinet is provided with a connecting block, the bottom end of the connecting block is fastened and connected with a buffer spring, the bottom end of the buffer spring is fastened and connected with a bearing shaft, the top end of the bearing shaft is slidably connected with a plurality of supports, the top end of the plurality of supports is connected in the middle of the bottom end of the connecting block, and the bottom end of the bearing shaft is sleeved with an antiskid pad.

[0007] As an improvement of the above technical scheme, the two ends of the return spring and the buffer spring are both provided with dampers, and the intersection of the soft pad and the clamping plate is provided with double-sided adhesive tape.

[0008] As an improvement of the above technical scheme, the top end of the vertical plate is slidably connected to the surface of the bearing plate, one end of the linkage rod is fastened and connected with a four-corner limiting block, and the bottom end of the four-corner limiting block is fastened and connected to the surface of the horizontal plate.

[0009] As the improvement of the above technical scheme, the top end of the connecting block is tightly connected with a plurality of groups of screws, and one end of the plurality of groups of screws is threadedly connected to the bottom end of the load-bearing plate.

[0010] The utility model discloses the beneficial effect that: through the cooperation of the linkage rod, reset spring, sliding block, sliding slot and clamping block that set up, load-bearing plate is convenient for connecting subsequent equipment, and the load-bearing effect of whole equipment is improved, then the cabinet body is placed on the surface of load-bearing plate, in the process of placing the cabinet body, through the cooperation of linkage rod and reset spring, will extrude the clamping plate of both sides, makes the sliding block move in the inside of sliding slot, utilizes the baffle and can connect clamping plate and sliding block together, conveniently in the process of sliding block movement, synchronous drive clamping plate moves, so as to clamp and fix the cabinet body of different models, can reduce in the process of testing cabinet body vibration and impact test, inside vibration is too big, leads to electronic component loose, and influences subsequent use, prevents by using soft pad, then under the action of fixed plate, can prevent linkage rod and reset spring from deviating and influencing subsequent use effect in the process of operation.

[0011] The utility model discloses the beneficial effect that: in the process of clamping the cabinet body, will scratch off the paint on the surface of the cabinet body, the main function of the paint layer of the cabinet body is to protect the metal surface from corrosion, once paint drop, the exposed metal part will be directly exposed to air, and react with moisture, oxygen and the like, accelerate the corrosion process, long -term corrosion can lead to the structural strength of switchgear to decline, even influence electrical performance. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is overall structure front view of the utility model;

[0013] Figure 2 It is vertical plate, reset spring, clamping plate, sliding block and four corner limit block installation schematic drawing of the utility model;

[0014] Figure 3 It is local structure front view of the utility model;

[0015] Figure 4 It is load-bearing shaft, buffer spring, connecting block, support and antiskid pad structure installation schematic drawing of the utility model;

[0016] Figure 5 It is the structure of the utility model located Figure 2 A place structure enlarged view.

[0017] Mark No. : 1, cabinet; 2, sliding groove; 3, vertical plate; 4, linkage rod; 5, reset spring; 6, clamping plate; 7, bearing shaft; 8, buffer spring; 9, connecting block; 10, support; 11, non-slip pad; 12, soft pad; 13, fixed plate; 14, bearing plate; 15, horizontal plate; 16, double-sided adhesive tape; 17, sliding block; 18, four-corner limiting block; 19, screw. DETAILED DESCRIPTION

[0018] The implementation modes of the utility model are described below through specific specific examples, and other advantages and effects of the utility model can be easily understood by those skilled in the art from the disclosure of the specification. The utility model can also be implemented or applied through other different specific implementation modes, and various modifications or changes can be made to the details in the specification based on different viewpoints and applications without departing from the spirit of the utility model.

[0019] Referring to the accompanying drawings Figures 1-5 As shown in the drawings, in order to solve the above problems, a damping hub control cabinet cabinet is provided, which comprises: a cabinet 1, the bottom end of the cabinet 1 is connected with a bearing plate 14, the bottom end of the bearing plate 14 is fastened and connected with a fixed plate 13 on both sides, the bottom end of the fixed plate 13 is fastened and connected with a horizontal plate 15, the middle of the horizontal plate 15 is provided with a sliding groove 2, the inside of the sliding groove 2 is slidably connected with an oil sliding block 17, the top end of the sliding block 17 is fastened and connected with a vertical plate 3, one side of the vertical plate 3 is fastened and connected with a clamping plate 6, one side of the surface of the clamping plate 6 is connected with a soft pad 12, and the bottom end of the vertical plate 3 is respectively provided with a linkage rod 4 and a reset spring 5.

[0020] By setting, the bearing plate 14 facilitates the connection of subsequent equipment, and improves the bearing effect of the overall equipment. Then, the cabinet 1 is placed on the surface of the bearing plate 14. During the placement of the cabinet 1, the linkage rod 4 and the reset spring 5 are matched, which can extrude the clamping plates 6 on both sides, so that the sliding block 17 moves in the inside of the sliding groove 2. The vertical plate 3 can connect the clamping plate 6 and the sliding block 17 together, which facilitates the movement of the clamping plate 6 during the movement of the sliding block 17, so as to clamp and fix different models of the cabinet 1. This can reduce the excessive internal vibration during the vibration and impact test of the cabinet 1, so as to prevent the electronic components from loosening and affecting the subsequent use. The soft pad 12 can prevent the clamping plate 6 from scratching the paint on the surface of the cabinet 1 during the clamping of the cabinet 1. The main function of the paint layer of the cabinet 1 is to protect the metal surface from corrosion. Once the paint is peeled off, the exposed metal part will be directly exposed to the air, react with moisture, oxygen and other substances, and accelerate the corrosion process. Long-term corrosion may cause the structural strength of the power distribution cabinet to decrease, and even affect the electrical performance. Then, under the action of the fixed plate 13, the linkage rod 4 and the reset spring 5 can be prevented from deviating during operation and affecting the subsequent use effect.

[0021] In the detection cabinet 1 vibration and impact test process, the cabinet 1 will produce the shake, cause the electronic component in the cabinet 1 to produce the loosening, in order to reduce the cabinet 1 shake, please refer to Figures 1-5 , the bottom end of the cabinet 1 is provided with the connecting block 9, the bottom end of the connecting block 9 is fastened and connected with the buffer spring 8, the bottom end of the buffer spring 8 is fastened and connected with the bearing shaft 7, the top end of the bearing shaft 7 is slidably connected with the plurality of groups of supports 10, the top end of the plurality of groups of supports 10 is connected in the middle of the bottom end of the connecting block 9, the bottom end of the bearing shaft 7 is sleeved with the anti-skid pad 11.

[0022] Through the setting, the connecting block 9 can install the buffer spring 8 and the bearing shaft 7 at the bottom end of the cabinet 1, when the buffer spring 8 and the support 10 are subjected to the downward pressure, the buffer spring 8 will shrink, and the support 10 will ascend along the circumferential side of the bearing shaft 7 to achieve the damping effect, and finally under the action of the anti-skid pad 11, the anti-skid effect of the overall equipment can be improved.

[0023] In order to improve the technical scheme of the equipment cabinet 1, please refer to Figures 1-5 , specifically, the both ends of the reset spring 5 and the buffer spring 8 are provided with dampers, the intersection of the soft pad 12 and the clamping plate 6 is provided with the double-sided adhesive tape 16.

[0024] Through the setting, the buffer spring 8 can slow down the propagation of vibration, reduce the amplitude and frequency of vibration, and by adjusting the damping effect, the movement speed and amplitude of the equipment or structure can be controlled to be more stable, and then the double-sided adhesive tape 16 can be used to adhere the soft pad 12 and the clamping plate 6 together, avoiding the soft pad 12 from falling off and reducing the subsequent use effect.

[0025] In order to improve the technical scheme of the equipment cabinet 1, please refer to Figures 1-5 , specifically, the top end of the vertical plate 3 is slidably connected to the surface of the bearing plate 14, one end of the linkage rod 4 is fastened and connected with the four-corner limiting block 18, and the bottom end of the four-corner limiting block 18 is fastened and connected to the surface of the horizontal plate 15.

[0026] Through the setting, the four-corner limiting plate 18 can limit the linkage rod 4, and the four-corner limiting plate 18 can further limit the linkage rod 4 and the buffer spring 8, so that the linkage rod 4 and the buffer spring 8 move more stably under the action of force.

[0027] In order to improve the technical scheme of the equipment cabinet 1, please refer to Figures 1-5 , specifically, the top end of the connecting block 9 is fastened and connected with a plurality of groups of screws 19, and one end of the plurality of groups of screws 19 is threadedly connected to the bottom end of the bearing plate 14.

[0028] Through the setting, the multiple sets of screws 19 can connect the connecting block 9 and the bearing plate 14 together, and the fixed equipment cannot be accidentally dropped due to vibration, collision or other external force, thereby reducing the risk of equipment damage.

[0029] The above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes completed by those skilled in the art without departing from the spirit and technical thought disclosed by the present application should be covered by the claims of the present application.

Claims

1. A shock absorber hub control cabinet cabinet body, characterized in that, Include: The cabinet (1), the bottom end of the cabinet (1) is connected with the bearing plate (14), the bottom end of the bearing plate (14) is fastened and connected with the fixed plate (13) on both sides, the bottom end of the fixed plate (13) is fastened and connected with the transverse plate (15), the middle of the transverse plate (15) is provided with a sliding groove (2), the inside of the sliding groove (2) is slidably connected with the oil sliding block (17), the top end of the sliding block (17) is fastened and connected with the vertical plate (3), one side of the vertical plate (3) is fastened and connected with the clamping plate (6), the surface of the clamping plate (6) is connected with the soft pad (12) on one side, the bottom end of the vertical plate (3) is respectively provided with the linkage rod (4) and the reset spring (5).

2. The shockwave hub control cabinet of claim 1, wherein: The bottom end of the cabinet (1) is provided with the connecting block (9), the bottom end of the connecting block (9) is fastened and connected with the buffer spring (8), the bottom end of the buffer spring (8) is fastened and connected with the bearing shaft (7), the top end of the bearing shaft (7) is slidably connected with the plurality of brackets (10), the top end of the plurality of brackets (10) is connected in the middle of the bottom end of the connecting block (9), the bottom end of the bearing shaft (7) is sleeved with the antiskid pad (11).

3. The shockwave hub control cabinet of claim 2, wherein: The both ends of the reset spring (5) and the buffer spring (8) are provided with dampers, the intersection of the soft pad (12) and the clamping plate (6) is provided with the double-sided adhesive tape (16).

4. The shockwave hub control cabinet of claim 2, wherein: The top end of the vertical plate (3) is slidably connected on the surface of the bearing plate (14), one end of the linkage rod (4) is fastened and connected with the four-corner limiting block (18), the bottom end of the four-corner limiting block (18) is fastened and connected on the surface of the transverse plate (15).

5. The shockwave hub control cabinet of claim 2, wherein: The top end of the connecting block (9) is fastened and connected with the plurality of screws (19) around, one end of the plurality of screws (19) is threadedly connected on the bottom end of the bearing plate (14).