Electromechanical safety protection device
Through the design of height adjustment components and clamping components, combined with shock absorption components, the problems of shaking and height adaptability of electromechanical equipment during movement are solved, the stable clamping and shock absorption effect of the equipment is achieved, and the service life and safety of electromechanical equipment are improved.
Patent Information
- Application Number
- CN202422509293.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-16
AI Technical Summary
The existing mechanical and electrical safety protection devices lack clamping function during movement, causing the equipment to shake and damage internal electronic components, and cannot adapt to equipment at different heights, affecting the service life. At the same time, there is a lack of shock absorbing mechanism, resulting in poor buffering effect of the equipment during transportation.
The height adjustment assembly and clamping assembly are adopted to achieve clamping and fixing through the drive motor and screw system, and are equipped with shock absorbing components to buffer vibration, including the drive motor, screw, clamping rod, shock absorbing spring and damper structure to achieve stable clamping and shock absorption of the equipment.
Effectively avoid the equipment shaking and damaging the internal components during movement, adapt to equipment clamping at different heights, improve the stability and service life of the equipment, and at the same time, buffer vibration through shock absorption components, protect internal components of the equipment, and extend the service life of the equipment.
Smart Images

Figure CN223286054U_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electromechanical safety protection devices, and in particular to an electromechanical safety protection device. Background Art
[0002] At present, electromechanical generally refers to machinery, electrical appliances and electrical automation equipment. Advanced electromechanical equipment can not only greatly improve labor productivity, reduce labor intensity, improve the production environment, and complete tasks that cannot be completed by manpower, but also electromechanical equipment requires the use of electromechanical control cabinets to power the electromechanical equipment and conduct real-time monitoring of the voltage during power supply.
[0003] However, the existing electromechanical safety protection device has the following defects:
[0004] (1) After the equipment is installed in the electromechanical cabinet, the power distribution equipment shakes during the movement, and there is no clamping function. In addition, the equipment at different heights cannot be clamped, which can easily cause damage to the internal electronic components and reduce the service life of the equipment.
[0005] (2) Since mature products on the market generally do not have a shock-absorbing mechanism, when the electromechanical control cabinet is installed in the electromechanical safety protection device for transportation, it cannot effectively buffer the electromechanical equipment, which is not conducive to the service life of the equipment. Utility Model Content
[0006] In order to solve one or some technical problems existing in the prior art, the purpose of this application is to provide an electromechanical safety protection device, which enables the clamping assembly to clamp and fix the electromechanical equipment to avoid shaking of the distribution equipment during movement, which may cause damage to its internal electronic components.
[0007] In order to solve the above existing technical problems, one of the objectives of this application is achieved by adopting the following technical solutions:
[0008] A electromechanical safety protection device includes an electromechanical cabinet, a switch door arranged on the rear side wall of the electromechanical cabinet, a height adjustment component arranged in the electromechanical cabinet, and a clamping component arranged on the height adjustment component. The height adjustment component adjusts the height of the clamping component, and the clamping component clamps the electromechanical equipment placed in the electromechanical cabinet. After being clamped by the clamping component, the electromechanical equipment can be stably transported. The height adjustment component can drive the clamping component to clamp and fix electromechanical equipment of different heights.
[0009] Furthermore, the height adjustment assembly includes a height adjustment box, a limiting opening opened on the rear side wall of the height adjustment box, a driving motor 1 fixedly arranged on the top of the height adjustment box, a screw rod penetrating the top of the height adjustment box and rotating forward and reversely by the driving motor 1, and a connecting block penetrating the limiting opening and threadedly connected to the screw rod, and the clamping assembly is fixedly arranged on the connecting block.
[0010] Furthermore, the clamping assembly includes a clamping box fixedly arranged on the connecting block, a second driving motor fixedly arranged at the right end of the clamping box, an opening on the rear side wall of the clamping box, a bidirectional threaded screw passing through the right end of the clamping box and rotated forward and reversed by the second driving motor, and two clamping rods symmetrically passing through the opening and threadedly connected to the bidirectional threaded screw.
[0011] Furthermore, a shock absorbing assembly is provided at the bottom of the electromechanical cabinet, and the height adjustment assembly is fixedly arranged on the top of the shock absorbing assembly. The shock absorbing assembly plays a role in shock absorption and buffering for the electromechanical equipment placed in the electromechanical cabinet.
[0012] Furthermore, the shock-absorbing assembly includes a base plate fixedly arranged at the bottom of the electromechanical cabinet, four grooves symmetrically arranged on the top of the base plate, a placement plate arranged on the upper side of the base plate, a cross bar fixedly arranged between the left and right side walls of the groove, two sliders symmetrically and movably sleeved on the cross bar, a shock-absorbing spring arranged between the slider and the inner side wall of the groove and sleeved on the cross bar, a damper fixed between the slider and the inner side wall of the slot, and a hinged rod hinged to the top of the slider, and the other end of the hinged rod is hinged to the bottom of the placement plate.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] (1) When in use, the electromechanical equipment is placed in the electromechanical cabinet, and then the height adjustment component is operated to drive the clamping component to perform lifting and lowering movements, and the clamping component is adjusted to a height that matches the height of the electromechanical equipment. Then, the clamping component is operated to clamp the electromechanical equipment to prevent the power distribution equipment from shaking during movement, thereby causing damage to its internal electronic components. Compared with the existing technology, this solves the technical problem that the power distribution equipment shakes during movement, and there is no clamping function, and it is impossible to clamp equipment at different heights, which easily causes damage to its internal electronic components and reduces the service life of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the overall structure of the present application, showing a schematic diagram of the structures of the height adjustment assembly, the clamping assembly, and the shock absorbing assembly;
[0016] Figure 2 This is a schematic diagram of the structure of the connection block in this application;
[0017] Figure 3 This is a schematic diagram of the structure of two clamping rods in this application;
[0018] In the figure: 1. Electromechanical cabinet; 2. Bottom plate; 3. Groove; 4. Cross bar; 5. Slider; 6. Shock-absorbing spring; 7. Damper; 8. Articulated rod; 9. Placement plate; 10. Height adjustment box; 11. Screw; 12. Limiting opening; 13. Clamping box; 14. Opening; 15. Clamping rod; 16. Drive motor 1; 17. Drive motor 2; 18. Connecting block; 19. Bidirectional threaded screw; 20. Height adjustment assembly; 21. Clamping assembly; 22. Shock-absorbing assembly. DETAILED DESCRIPTION
[0019] Below, the present application is further described in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0020] In the description of this application, it should be understood that the terms "up", "down", "left", "right", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they should not be understood as limitations on this application.
[0021] The terms "first," "second," and the like in this application are used to distinguish similar objects, and are not used to describe a specific order or precedence. It should be understood that the data used in this manner are interchangeable where appropriate, so that the embodiments of this application can be implemented in an order other than that illustrated or described herein, and that the objects distinguished by "first," "second," and the like are generally of the same type, and do not limit the number of objects; for example, the first object can be one or more. In addition, "and / or" in the specification and claims represents at least one of the connected objects, and the character " / " generally indicates that the previously associated objects are in an "or" relationship of an electromechanical safety protection device.
[0022] Example 1:
[0023] like Figure 1-Figure 3As shown, this embodiment provides an electromechanical safety protection device, which includes an electromechanical cabinet 1, a switch door arranged on the rear side wall of the electromechanical cabinet 1, a height adjustment component 20 arranged in the electromechanical cabinet 1, and a clamping component 21 arranged on the height adjustment component 20. The height adjustment component 20 plays a role of height adjustment for the clamping component 21, and the clamping component 21 plays a role of clamping for the electromechanical equipment placed in the electromechanical cabinet 1. After being clamped by the clamping component 21, the electromechanical equipment can achieve a stable transportation effect, and the height adjustment component 20 can drive the clamping component 21 to clamp and fix electromechanical equipment of different heights.
[0024] The electromechanical safety protection device includes an electromechanical cabinet 1, a switch door is provided on the rear side wall of the electromechanical cabinet 1, a height adjustment component 20 is provided in the electromechanical cabinet 1, and a clamping component 21 is provided on the height adjustment component 20. The height adjustment component 20 plays a height adjustment role for the clamping component 21, and the clamping component 21 plays a clamping role for the electromechanical equipment placed in the electromechanical cabinet 1. After being clamped by the clamping component 21, the electromechanical equipment can achieve a stable transportation effect. The height adjustment component 20 can drive the clamping component 21 to clamp and fix electromechanical equipment of different heights. During use, the electromechanical equipment is placed in the electromechanical cabinet 1, and then the height adjustment component 20 is operated to drive the clamping component 21 to perform lifting movements, and the clamping component 21 is adjusted to a height that matches the height of the electromechanical equipment. Then the clamping component 21 is operated to clamp and fix the electromechanical equipment, thereby avoiding shaking of the power distribution equipment during movement, which may cause damage to its internal electronic components. Compared with the prior art, this solves the technical problem that the power distribution equipment shakes during movement, there is no clamping function, and it is impossible to clamp equipment of different heights, which may easily cause damage to its internal electronic components and reduce the service life of the equipment.
[0025] Furthermore, the height adjustment assembly 20 includes a height adjustment box 10, a limit opening 12 opened on the rear side wall of the height adjustment box 10, a drive motor 16 fixedly arranged on the top of the height adjustment box 10, a screw 11 penetrating the top of the height adjustment box 10 and rotating forward and reversely by the drive motor 16, a connecting block 18 penetrating the limit opening 12 and threadedly connected to the screw 11, and a clamping assembly 21 fixedly arranged on the connecting block 18.
[0026] The height adjustment assembly 20 includes a height adjustment box 10, a limiting opening 12 defined on the rear sidewall of the height adjustment box 10, a drive motor 16 fixedly mounted on the top of the height adjustment box 10, a screw 11 extending through the top of the height adjustment box 10 for forward and reverse rotation by the drive motor 16, and a connecting block 18 threadedly connected to the screw 11 extending through the limiting opening 12, securing the clamping assembly 21 to the connecting block 18. During use, the drive motor 16 is activated, and the forward and reverse rotation of the drive motor 16 is utilized to adjust the height of the clamping assembly 21. The drive motor 16 drives the screw 11 to rotate, which in turn drives the connecting block 18, which in turn drives the clamping assembly 21, thereby conveniently adjusting the height of the clamping assembly 21.
[0027] Furthermore, the clamping assembly 21 includes a clamping box 13 fixedly arranged on the connecting block 18, a driving motor 17 fixedly arranged at the right end of the clamping box 13, an opening 14 opened on the rear side wall of the clamping box 13, a bidirectional threaded screw 19 passing through the right end of the clamping box 13 and rotated forward and reversed by the driving motor 17, and two clamping rods 15 symmetrically passing through the opening 14 and threadedly connected to the bidirectional threaded screw 19.
[0028] The clamping assembly 21 includes a clamping box 13 fixedly mounted on a connecting block 18, a drive motor 2 17 fixedly mounted at the right end of the clamping box 13, an opening 14 formed on the rear side wall of the clamping box 13, a bidirectional threaded screw 19 threadedly connected to the bidirectional threaded screw 19 and symmetrically mounted at the right end of the clamping box 13. During use, the drive motor 2 17 is started, and the forward and reverse rotation of the drive motor 2 17 is utilized to adjust the distance between the two clamping rods 15. The drive motor 2 17 drives the bidirectional threaded screw 19 to move, which in turn drives the two clamping rods 15 to move, so that the two clamping rods 15 clamp the electromechanical equipment, thereby preventing the electromechanical equipment from shaking within the electromechanical cabinet 1.
[0029] Furthermore, a shock absorbing assembly 22 is also provided at the bottom of the electromechanical cabinet 1, and the height adjustment assembly 20 is fixedly arranged on the top of the shock absorbing assembly 22. The shock absorbing assembly 22 plays a shock absorbing and buffering role for the electromechanical equipment placed in the electromechanical cabinet 1; the shock absorbing assembly 22 includes a base plate 2 fixedly arranged at the bottom of the electromechanical cabinet 1, four grooves 3 symmetrically arranged on the top of the base plate 2, a placement plate 9 arranged on the upper side of the base plate 2, a cross bar 4 fixedly arranged between the left and right side walls of the groove 3, two sliders 5 symmetrically and movably mounted on the cross bar 4, a shock absorbing spring 6 arranged between the slider 5 and the inner wall of the groove 3 and mounted on the cross bar 4, and a hinged rod 8 hinged to the top of the slider 5, and the other end of the hinged rod 8 is hinged to the bottom of the placement plate 9.
[0030] A shock absorbing assembly 22 is also provided at the bottom of the electromechanical cabinet 1, and the height adjustment assembly 20 is fixedly arranged on the top of the shock absorbing assembly 22. The shock absorbing assembly 22 plays a shock absorbing and buffering role for the electromechanical equipment placed in the electromechanical cabinet 1; the shock absorbing assembly 22 includes a base plate 2 fixedly arranged at the bottom of the electromechanical cabinet 1, four grooves 3 are symmetrically arranged on the left and right sides of the top of the base plate 2, a placement plate 9 is arranged on the upper side of the base plate 2, a cross bar 4 is fixedly arranged between the left and right side walls of the groove 3, two sliders 5 are symmetrically and movably arranged on the cross bar 4, a shock absorbing spring 6 that can be mounted on the cross bar 4 is arranged between the slider 5 and the inner wall of the groove 3, and a damper 7 is also fixedly arranged between the slider 5 and the inner wall of the slot, and a hinged rod 8 is hinged at the top of the slider 5, so that the other end of the hinged rod 8 is hinged to the bottom of the placement plate 9. During use, the electromechanical equipment is placed on the placement plate 9 so that the clamping assembly 21 clamps the electromechanical equipment. Then, when transporting the electromechanical equipment, after the placement plate 9 shakes, the placement plate 9 transmits the vibration force to the hinge rod 8, slider 5, shock-absorbing spring 6, and damper 7 in sequence to achieve shock absorption of the electromechanical equipment, preventing damage to the electromechanical equipment inside the electromechanical cabinet 1 caused by excessive vibration. Compared with the existing technology, this solves the technical problem that the product generally has no shock-absorbing mechanism, resulting in the electromechanical control cabinet being installed in the electromechanical safety protection device for transportation, which cannot effectively buffer the electromechanical equipment and is not conducive to the service life of the equipment.
[0031] The above-mentioned embodiments are only preferred embodiments of the present application and cannot be used to limit the scope of protection of the present application. Any non-substantial changes and replacements made by technicians in this field based on the present application shall fall within the scope of protection required by the present application.
Claims
1. An electromechanical safety protection device, characterized in that: The invention comprises an electromechanical cabinet (1), a switch door arranged on the rear side wall of the electromechanical cabinet (1), a height adjustment component (20) arranged in the electromechanical cabinet (1), and a clamping component (21) arranged on the height adjustment component (20). The height adjustment component (20) plays a role of height adjustment for the clamping component (21). The clamping component (21) plays a role of clamping the electromechanical equipment placed in the electromechanical cabinet (1). After being clamped by the clamping component (21), the electromechanical equipment can achieve a stable transportation effect. The height adjustment component (20) can drive the clamping component (21) to clamp and fix the electromechanical equipment at different heights.
2. The electromechanical safety protection device according to claim 1, characterized in that: The height adjustment assembly (20) comprises a height adjustment box (10), a limiting opening (12) opened on the rear side wall of the height adjustment box (10), a driving motor (16) fixedly arranged on the top of the height adjustment box (10), a screw (11) penetrating the top of the height adjustment box (10) and rotating forward and reversely by the driving motor (16), and a connecting block (18) penetrating the limiting opening (12) and threadedly connected to the screw (11); the clamping assembly (21) is fixedly arranged on the connecting block (18).
3. The electromechanical safety protection device according to claim 2, characterized in that: The clamping assembly (21) includes a clamping box (13) fixedly arranged on the connecting block (18), a second driving motor (17) fixedly arranged at the right end of the clamping box (13), an opening (14) opened on the rear side wall of the clamping box (13), a bidirectional threaded screw (19) penetrating the right end of the clamping box (13) and rotating forward and reversely by the second driving motor (17), and two clamping rods (15) symmetrically penetrating the opening (14) and threadedly connected to the bidirectional threaded screw (19).
4. The electromechanical safety protection device according to claim 1, characterized in that: A shock absorbing component (22) is also provided at the bottom of the electromechanical cabinet (1), and the height adjustment component (20) is fixedly arranged on the top of the shock absorbing component (22). The shock absorbing component (22) plays a role of shock absorption and buffering for the electromechanical equipment placed in the electromechanical cabinet (1).
5. The electromechanical safety protection device according to claim 4, characterized in that: The shock absorbing assembly (22) comprises a bottom plate (2) fixedly arranged at the bottom of the electromechanical cabinet (1), four grooves (3) symmetrically arranged at the top of the bottom plate (2), a placement plate (9) arranged on the upper side of the bottom plate (2), a cross bar (4) fixedly arranged between the left and right side walls of the groove (3), two sliders (5) symmetrically and movably sleeved on the cross bar (4), a shock absorbing spring (6) arranged between the slider (5) and the inner side wall of the groove (3) and sleeved on the cross bar (4), a damper (7) fixedly arranged between the slider (5) and the inner side wall of the slot, and a hinge rod (8) hinged to the top of the slider (5), the other end of the hinge rod (8) being hinged to the bottom of the placement plate (9).