Mobile high-reliability power supply cabinet

By designing shock-absorbing moving parts and heat-dissipating dehumidification parts on the power cabinet, the vibration problems of the power cabinet when it is moved and the humidity problems in the use place are solved, achieving higher reliability and service life.

CN120109673APending Publication Date: 2025-06-06JIANGSU EASTONE TECH
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Patent Information

Application Number
CN202510432897.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The existing high-performance power cabinet vibrates greatly when moving, which can easily damage electrical components. The vibration in the use site and the moisture at the bottom affect the normal use of the power cabinet.

Method used

A mobile high-reliability power cabinet is designed, using shock absorbing moving parts and heat dissipation dehumidification parts, including cabinet shock absorbing parts, moving parts and auxiliary support stabilizers. Through the combination of shock absorbing support parts, transverse shock absorbing parts and vertical shock absorbing parts, multi-axis shock absorption of the power cabinet is achieved and dehumidification through the cooling fan.

Benefits of technology

It significantly improves the shock absorption effect of the power cabinet during movement and use, extends the service life of electrical components, reduces the cost of enclosure and maintenance, and ensures the normal operation of the power cabinet.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120109673A_ABST
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Abstract

The invention discloses a mobile high-reliability power supply cabinet, and the cabinet comprises a power supply cabinet which comprises a power supply cabinet body, and the interior of the power supply cabinet body is used for installing electrical components. The damping moving part is arranged on the power supply cabinet body, the damping moving part comprises a cabinet body damping part, a moving part and an auxiliary supporting and stabilizing part, the cabinet body damping part provides supporting and damping in the power supply cabinet body, and the moving part is arranged on the cabinet body damping part so that the cabinet body can move conveniently; the auxiliary support stabilizing piece provides support on the cabinet body; and the heat dissipation and dehumidification part is arranged on the power supply cabinet body and is used for discharging heat in the power supply cabinet body. The power cabinet is reasonable in structural design, the power cabinet is convenient to move, and the damping effect in the moving process and the damping effect in the locked state can be effectively improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of power supply cabinets, and more specifically, to a mobile high-reliability power supply cabinet. Background Art

[0002] High-performance power supply cabinets are optimized by computers, with optimized combination of unit circuits, stable device performance, reliable quality and strong anti-interference. High-performance power supply cabinets have the following characteristics: 1) The central control circuit board is optimized by computers, with optimized combination of unit circuits, stable device performance, reliable quality and strong anti-interference; 2) The layout of components is coordinated and reasonable, and maintenance is convenient; 3) On the basis of zero-voltage starting, the automatic frequency sweeping and repeated starting function is added, and the voltage and current loop circuits are closely tracked, and the equipment starts and stops smoothly and stably without current shock; 4) The inverter start signal adopts a single signal high-sensitivity trigger circuit, which further increases the starting performance of the equipment; 5) The constant power circuit control system can automatically adjust the voltage and current to the optimal setting quickly with the change of furnace charge during production, without manual adjustment of the inverter cut-off angle; 6) There are complete protection systems such as overvoltage, overcurrent, undervoltage, water shortage, phase shortage, voltage and current limiting, etc., which ensures the reliability and working stability of the equipment; 7) Highly integrated circuit scheme, debugging and operation are fast, simple and easy to learn. Therefore, high-performance power supply cabinets are widely used. However, the existing high-performance power supply cabinet is inconvenient to move, and the existing power supply cabinet generates large vibrations when moving, which can easily cause damage to the electrical components in the high-performance power supply cabinet, reduce the performance and service life of the electrical components, and increase the cost of enclosure and maintenance of the electrical components; and the use place of the high-performance power supply cabinet often generates vibrations, which in turn affects the electrical components; at the same time, the bottom of the existing power supply cabinet is easily affected by the moisture of the ground, causing rust on the bottom of the power supply cabinet, which in turn affects the normal use of the power cabinet. Summary of the invention

[0003] In order to overcome the above defects, the present invention provides a mobile high-reliability power supply cabinet, which specifically adopts the following technical solutions:

[0004] A mobile high-reliability power supply cabinet, comprising:

[0005] A power supply cabinet, the power supply cabinet comprising a power supply cabinet body, the power supply cabinet body is used to install electrical components;

[0006] A shock-absorbing moving part, which is arranged on the power cabinet, the shock-absorbing moving part comprises a cabinet shock-absorbing part, a moving part and an auxiliary supporting and stabilizing part, the cabinet shock-absorbing part provides support and shock absorption in the power cabinet, the moving part facilitates the movement of the cabinet on the cabinet shock-absorbing part, and the auxiliary supporting and stabilizing part provides support on the cabinet;

[0007] The heat dissipation and dehumidification component is arranged on the power cabinet and is used to discharge the heat in the power cabinet.

[0008] Preferably, the cabinet shock absorber comprises a shock absorbing support, a transverse shock absorbing member and a vertical shock absorbing member, the shock absorbing support is arranged on the power cabinet, and the transverse shock absorbing member and the vertical shock absorbing member are both arranged on the shock absorbing support.

[0009] Preferably, the shock-absorbing support member includes a shock-absorbing support tube and a shock-absorbing bearing rod, the side wall of the shock-absorbing support tube is arranged on the inner wall of the bottom end of the power supply cabinet, one end of the shock-absorbing bearing rod passes through the shock-absorbing through hole on the bottom surface of the power supply cabinet and extends to the other end of the shock-absorbing support tube, and the shock-absorbing bearing rod is connected to the shock-absorbing support tube through the transverse shock-absorbing member and the vertical shock-absorbing member.

[0010] Preferably, the lateral shock absorber includes an X-direction shock absorber and a Y-direction shock absorber, and the X-direction shock absorber and the Y-direction shock absorber are both arranged on the shock absorbing support member; the X-direction shock absorber includes an upper X-direction shock absorber and a lower X-direction shock absorber, and the upper X-direction shock absorber and the lower X-direction shock absorber are both arranged on the shock absorbing support member.

[0011] Preferably, the upper X-axis shock absorber includes a vertical slide seat, a sliding pad, a vertical slider, an axial guide tube, an axial guide shaft and a first spring, the bottom surface of the vertical slide seat groove is arranged on one side edge inside the shock-absorbing support tube, the sliding pad is in the shape of a right-angled inclined plane, the sliding pad is arranged on the bottom surface of the groove of the vertical slide seat, the vertical slider is slidably arranged in the vertical slide seat, and the inclined surface of the vertical slider cooperates with the inclined surface of the sliding pad, one end of the axial guide tube is arranged on the vertical slider, one end of the axial guide shaft is arranged on the side wall of one end of the shock-absorbing bearing rod, and the other end of the axial guide shaft is slidably embedded in the other end of the axial guide tube; the first spring is sleeved outside the axial guide tube and the axial guide shaft; multiple sets of the upper X-axis shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod.

[0012] Preferably, the lower X-direction shock absorber has the same structure as the upper X-direction shock absorber, and the lower X-direction shock absorber is arranged on the shock-absorbing support tube and the shock-absorbing bearing rod directly below the upper X-direction shock absorber, and the connection method between the lower X-direction shock absorber and the shock-absorbing support tube is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing support tube, and at the same time, the connection method between the lower X-direction shock absorber and the shock-absorbing bearing rod is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing bearing rod; multiple sets of the lower X-direction shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod.

[0013] Preferably, the Y-direction shock absorber comprises an upper Y-direction shock absorber and a lower Y-direction shock absorber, and the upper Y-direction shock absorber and the lower Y-direction shock absorber are both arranged on the shock absorbing support member; the upper Y-direction shock absorber has the same structure as the upper X-direction shock absorber, and the upper Y-direction shock absorber is arranged on the shock absorbing support tube and the shock absorbing bearing rod, and the upper Y-direction shock absorber is connected to the shock absorbing support tube in the same way as the upper X-direction shock absorber is connected to the shock absorbing support tube, and the upper Y-direction shock absorber is connected to the shock absorbing bearing rod in the same way as the upper X-direction shock absorber is connected to the shock absorbing bearing rod; a plurality of sets of the upper Y-direction shock absorbers are symmetrically distributed on both sides of the shock absorbing bearing rod , and multiple sets of upper Y-direction shock absorbers and multiple sets of upper X-direction shock absorbers are located in the same plane around the circumferential spacing portion of the shock-absorbing bearing rod; the lower Y-direction shock absorber has the same structure as the upper X-direction shock absorber, and the lower Y-direction shock absorber is arranged on the shock-absorbing support tube and the shock-absorbing bearing rod directly below the upper Y-direction shock absorber, and the connection method between the lower Y-direction shock absorber and the shock-absorbing support tube is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing support tube, and the connection method between the lower Y-direction shock absorber and the shock-absorbing bearing rod is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing bearing rod; multiple sets of lower Y-direction shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod.

[0014] Preferably, the vertical shock-absorbing member includes a shock-absorbing vertical support member and a shock-absorbing adjustment member, and the shock-absorbing vertical support member and the shock-absorbing adjustment member are both arranged on the shock-absorbing support member; the shock-absorbing vertical support member includes a vertical guide tube, a vertical guide shaft, a transverse slider and a second spring, one end of the vertical guide tube is arranged on one end of the shock-absorbing bearing rod, and one end of the vertical guide shaft is slidably embedded in the other end of the vertical guide tube; one end face of the transverse slider is arranged on the other end of the vertical guide shaft, and the second spring is sleeved outside the vertical guide tube and the vertical guide shaft.

[0015] Preferably, the shock-absorbing adjustment part includes a vertical adjustment slider, a transmission tube, a motor and a threaded rod. The vertical adjustment slider is slidably embedded in the shock-absorbing support tube, and one end face of the vertical adjustment slider is slidably fitted with the other end face of the transverse slider. One end of the transmission tube is arranged on the other end face of the vertical adjustment slider, and the motor is arranged on the top face of the shock-absorbing support tube. One end of the threaded rod passes through the top face of the shock-absorbing support tube and is connected to the rotating shaft of the motor, and the other end of the threaded rod is fitted in the other end of the transmission tube, and the threaded rod cooperates with the internal thread of the inner wall of the transmission tube.

[0016] Preferably, the movable part includes a movable wheel, and the movable wheel is detachably arranged on the other end of the shock-absorbing support rod; the auxiliary support stabilizing part includes a telescopic column and an anti-slip seat, the top end of the telescopic column is arranged on the bottom surface of the power supply cabinet, and the anti-slip seat is arranged on the bottom surface of the telescopic column; multiple sets of the shock-absorbing movable parts are distributed circumferentially on the power supply cabinet; the heat dissipation and dehumidification part includes a heat dissipation fan, one end of the heat dissipation fan is arranged on the bottom surface of the power supply cabinet, and the other end of the heat dissipation fan is connected to the power supply support plate in the power supply cabinet.

[0017] The present invention has at least the following beneficial effects:

[0018] 1) The mobile high-reliability power supply cabinet of the present invention has a reasonable structural design, is easy to move, and can effectively improve the shock absorption effect during movement and the shock absorption effect in the locked state;

[0019] 2) The mobile high-reliability power supply cabinet of the present invention is provided with a shock-absorbing support, a lateral shock-absorbing member and a vertical shock-absorbing member. The shock-absorbing support, the lateral shock-absorbing member and the vertical shock-absorbing member cooperate with each other to reduce the shock of the power supply cabinet along the X-axis, the Y-axis and the Z-axis, and can effectively improve the shock-absorbing effect of the electrical components in the power supply cabinet; and by cooperating with the moving parts, the shock-absorbing effect of the power supply cabinet during movement is significantly improved.

[0020] Other advantages, objectives and features of the present invention will be embodied in part through the following description, and in part will be understood by those skilled in the art through study and practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a front view of the mobile high-reliability power supply cabinet of the present invention;

[0022] Figure 2 A top view of a mobile high-reliability power supply cabinet of the present invention;

[0023] Figure 3 The mobile high-reliability power supply cabinet of the present invention Figure 2 Main section view in the middle BB direction;

[0024] Figure 4 The mobile high-reliability power supply cabinet of the present invention Figure 3 A partial enlarged view of middle C;

[0025] Figure 5 The mobile high-reliability power supply cabinet of the present invention Figure 4 A partial enlarged view of D in the middle;

[0026] Figure 6 The mobile high-reliability power supply cabinet of the present invention Figure 2 Schematic diagram of the three-dimensional structure of the cross section in the middle BB direction;

[0027] Figure 7 The mobile high-reliability power supply cabinet of the present invention Figure 6 A partial enlarged view of middle E;

[0028] Figure 8 The mobile high-reliability power supply cabinet of the present invention Figure 7 A partial enlarged view of middle F;

[0029] Fig. 9 The mobile high-reliability power supply cabinet of the present invention Figure 1 Schematic diagram of the three-dimensional structure of the cross section in the AA direction;

[0030] Fig.10 The mobile high-reliability power supply cabinet of the present invention Fig. 9 A partial enlarged view of middle G;

[0031] Fig.11 It is a schematic diagram of the connection relationship between the vertical slide seat, the sliding pad and the vertical sliding block in the mobile high-reliability power supply cabinet of the present invention;

[0032] Fig.12 It is a longitudinal cross-sectional schematic diagram of the connection relationship between the vertical slide seat, the sliding pad block and the vertical sliding block in the mobile high-reliability power supply cabinet of the present invention.

[0033] Among them: 1-power cabinet, 2-shock-absorbing support tube, 3-shock-absorbing bearing rod, 4-Y-direction shock-absorbing member, 5-vertical slide seat, 6-sliding pad, 7-vertical slider, 8-axial guide tube, 9-axial guide shaft, 10-first spring, 11-vertical guide tube, 12-vertical guide shaft, 13-lateral slider, 14-second spring, 15-vertical adjustment slider, 16-transmission tube, 17-motor, 18-threaded rod, 19-moving wheel, 20-telescopic column, 21-anti-slip seat, 22-cooling fan, 23-power support plate. DETAILED DESCRIPTION

[0034] The technical solution of the present invention will be described in detail below by way of embodiments with reference to the accompanying drawings. It should be noted that the description of these embodiments is used to help understand the present invention, but does not constitute a limitation of the present invention.

[0035] The term "and / or" in this article is only a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can mean: A exists alone, B exists alone, and A and B exist at the same time. The term " / and" in this article describes another type of association object relationship, indicating that there can be two relationships. For example, A / and B can mean: A exists alone, and A and B exist alone. In addition, the character " / " in this article generally indicates that the previous and next associated objects are in an "or" relationship.

[0036] according to Figure 1-Figure 12 As shown, a mobile high-reliability power supply cabinet includes a power supply cabinet, a shock-absorbing movable part and a heat dissipation and dehumidification part, wherein the shock-absorbing movable part and the heat dissipation and dehumidification part are both arranged on the power supply cabinet. The power supply cabinet includes a power supply cabinet body 1, which is in a vertical cabinet shape, and the power supply cabinet body 1 is used to install electrical components.

[0037] The shock-absorbing moving part includes a cabinet shock-absorbing part, a moving part and an auxiliary supporting and stabilizing part, and the cabinet shock-absorbing part and the auxiliary supporting and stabilizing part are both arranged in the power cabinet. The cabinet shock-absorbing part includes a shock-absorbing support part, a lateral shock-absorbing part and a vertical shock-absorbing part, and the shock-absorbing support part is arranged on the power cabinet, and the lateral shock-absorbing part and the vertical shock-absorbing part are both arranged on the shock-absorbing support part.

[0038] The shock-absorbing support member includes a shock-absorbing support tube 2 and a shock-absorbing bearing rod 3. The shock-absorbing support tube 2 is in a rectangular tube shape. The side wall of the shock-absorbing support tube 2 is fixedly arranged on the inner wall of the bottom end of the power cabinet 1. The shock-absorbing bearing rod 3 is in a rectangular rod shape. One end of the shock-absorbing bearing rod 3 passes through the shock-absorbing through hole on the bottom surface of the power cabinet 1 and then extends into the other end of the shock-absorbing support tube 2. The shock-absorbing bearing rod 3 is connected to the shock-absorbing support tube 2 through the transverse shock-absorbing member and the vertical shock-absorbing member, thereby realizing shock absorption of the power cabinet 1. The size of the shock-absorbing through hole is larger than the cross-sectional size of the shock-absorbing bearing rod 3.

[0039] The lateral shock absorbing member includes an X-direction shock absorbing member and a Y-direction shock absorbing member 4, and the X-direction shock absorbing member and the Y-direction shock absorbing member 4 are both arranged on the shock absorbing support member. The X-direction shock absorbing member includes an upper X-direction shock absorbing member and a lower X-direction shock absorbing member, and the upper X-direction shock absorbing member and the lower X-direction shock absorbing member are both arranged on the shock absorbing support member.

[0040] The upper X-axis shock-absorbing member includes a vertical slide 5, a sliding pad 6, a vertical slider 7, an axial guide tube 8, an axial guide shaft 9 and a first spring 10. The vertical slide 5 is in the shape of a rectangular groove, and the bottom of the groove of the vertical slide 5 is fixedly arranged vertically on one side of the inner side of the shock-absorbing support tube 2. The sliding pad 6 is in the shape of a right-angled inclined plane, and the right-angled surface of the sliding pad 6 is fixedly arranged on the bottom surface of the groove of the vertical slide 5, so that the inclined surface of the sliding pad 6 faces the shock-absorbing receiving rod. The vertical slider 7 is in the shape of a rectangular block as a whole, and one side of the vertical slider 7 is in the shape of an inclined plane. The vertical slider 7 is slidably arranged in the vertical slide 5, and the inclined surface of the vertical slider 7 cooperates with the inclined surface of the sliding pad 6, so that the other side of the vertical pad is parallel to the bottom surface of the groove of the vertical slide 5. One end of the axial guide tube 8 is horizontally fixedly arranged on the other side of the vertical slider 7, one end of the axial guide shaft 9 is horizontally fixedly arranged on the side wall of one end of the shock-absorbing bearing rod 3, and the other end of the axial guide shaft 9 is slidably embedded in the other end of the axial guide tube 8. The first spring 10 is sleeved outside the axial guide tube 8 and the axial guide shaft 9, and one end of the first spring 10 is connected to the shock-absorbing bearing rod 3, and the other end of the first spring 10 is connected to the vertical slider 7.

[0041] Furthermore, two sets of upper X-direction shock absorbing members are provided, and the two sets of upper X-direction shock absorbing members are symmetrically distributed on both sides of the shock absorbing bearing rod 3. When the shock absorbing bearing rod 3 is vibrated by the ground along the X-axis, the two sets of upper X-direction shock absorbing members will be used for shock absorption to prevent the vibration from being transmitted to the shock absorbing support tube 2, thereby preventing the power cabinet 1 from vibrating.

[0042] The lower X-direction shock absorber has the same structure as the upper X-direction shock absorber, and the lower X-direction shock absorber is arranged on the shock-absorbing support tube 2 and the shock-absorbing bearing rod 3 directly below the upper X-direction shock absorber, and the connection method between the lower X-direction shock absorber and the shock-absorbing support tube 2 is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing support tube 2, and at the same time, the connection method between the lower X-direction shock absorber and the shock-absorbing bearing rod 3 is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing bearing rod 3.

[0043] Furthermore, two sets of lower X-direction shock absorbers are provided, and the two sets of lower X-direction shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod 3. The upper X-direction shock absorber and the lower X-direction shock absorber cooperate with each other to improve the stability of the shock-absorbing bearing rod 3 during the shock absorption process.

[0044] The Y-direction shock absorber 4 includes an upper Y-direction shock absorber and a lower Y-direction shock absorber, and the upper Y-direction shock absorber and the lower Y-direction shock absorber are both arranged on the shock absorbing support member. The upper Y-direction shock absorber has the same structure as the upper X-direction shock absorber, and is arranged on the shock absorbing support tube 2 and the shock absorbing bearing rod 3, and the upper Y-direction shock absorber is connected to the shock absorbing support tube 2 in the same manner as the upper X-direction shock absorber is connected to the shock absorbing support tube 2, and the upper Y-direction shock absorber is connected to the shock absorbing bearing rod 3 in the same manner as the upper X-direction shock absorber is connected to the shock absorbing bearing rod 3.

[0045] Furthermore, two sets of upper Y-direction shock absorbers are provided, and the two sets of upper Y-direction shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod 3, and the two sets of upper Y-direction shock absorbers and the two sets of upper X-direction shock absorbers are located on the same plane around the circumferential spacing portion of the shock-absorbing bearing rod 3.

[0046] The lower Y-direction shock absorber has the same structure as the upper X-direction shock absorber, and the lower Y-direction shock absorber is arranged on the shock-absorbing support tube 2 and the shock-absorbing bearing rod 3 directly below the upper Y-direction shock absorber, and the connection method between the lower Y-direction shock absorber and the shock-absorbing support tube 2 is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing support tube 2, and the connection method between the lower Y-direction shock absorber and the shock-absorbing bearing rod 3 is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing bearing rod 3.

[0047] Furthermore, two sets of lower Y-direction shock absorbers are provided, and the two sets of lower Y-direction shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod 3, and the two sets of lower Y-direction shock absorbers and the two sets of lower X-direction shock absorbers are located on the same plane around the circumferential spacing portion of the shock-absorbing bearing rod 3.

[0048] The vertical shock-absorbing member includes a shock-absorbing vertical support member and a shock-absorbing adjustment member, and the shock-absorbing vertical support member and the shock-absorbing adjustment member are both arranged on the shock-absorbing support member. The shock-absorbing vertical support member includes a vertical guide tube 11, a vertical guide shaft 12, a transverse slider 13 and a second spring 14. One end of the vertical guide tube 11 is fixedly arranged on one end of the shock-absorbing bearing rod 3, and one end of the vertical guide shaft 12 is slidably embedded in the other end of the vertical guide tube 11. The transverse slider 13 is in the shape of a rectangular plate, and one end face of the transverse slider 13 is horizontally fixedly arranged on the other end of the vertical guide shaft 12. The second spring 14 is sleeved outside the vertical guide tube 11 and the vertical guide shaft 12, and one end of the second spring 14 is connected to the shock-absorbing bearing rod 3, and the other end of the second spring 14 is connected to the transverse slider 13.

[0049] The shock-absorbing adjustment member includes a vertical adjustment slider 15, a transmission tube 16, a motor 17 and a threaded rod 18. The vertical adjustment slider 15 is in a rectangular block shape. The size of the vertical adjustment slider 15 is not larger than the inner size of the shock-absorbing support tube 2. The vertical adjustment slider 15 is slidably embedded in the shock-absorbing support tube 2, and one end face of the vertical adjustment slider 15 is slidably fitted with the other end face of the horizontal slider 13. One end of the transmission tube 16 is vertically fixed on the other end face of the vertical adjustment slider 15. The motor 17 is fixedly set on the top surface of the shock-absorbing support tube 2. One end of the threaded rod 18 passes through the top surface of the shock-absorbing support tube 2 and is fixedly connected to the rotating shaft of the motor 17. The other end of the threaded rod 18 is embedded in the other end of the transmission tube 16. At the same time, the threaded rod 18 cooperates with the internal thread of the inner wall of the transmission tube 16. When the motor 17 drives the threaded rod 18 to rotate, the vertical adjustment slider 15 is driven to rise or fall vertically in the shock-absorbing support tube 2 through the transmission tube 16, and the descending vertical adjustment slider 15 adjusts the shock-absorbing effect of the shock-absorbing bearing rod 3 along the Z axis through the second spring 14. The vertical slider 7 that descends with the shock-absorbing bearing rod 3 slides in cooperation with the sliding pad 6, which reduces the horizontal distance between the vertical slider 7 and the shock-absorbing bearing rod 3, and then adjusts the shock-absorbing effect of the shock-absorbing bearing rod 3 along the X axis and the Y axis through the first spring 10.

[0050] The moving member includes a moving wheel 19, and the moving wheel 19 is detachably arranged on the other end of the shock-absorbing support rod, so that the shock-absorbing support rod is in rolling contact with the ground through the moving wheel 19. It is convenient for the staff to move the power cabinet. Furthermore, the moving wheel 19 has a locking function to improve the stability of the power cabinet during use. As an option, the moving wheel 19 is one or a combination of a fixed wheel, a universal wheel and a stair climbing wheel.

[0051] The auxiliary support stabilizer includes a telescopic column 20 and an anti-skid seat 21. The top end of the telescopic column 20 is vertically fixed on the bottom surface of the power cabinet 1, and the anti-skid seat 21 is arranged on the bottom surface of the telescopic column 20. When the power cabinet is moved to a predetermined position, the moving wheel 19 is first locked, and then the auxiliary support stabilizer is started to further improve the support stability of the power cabinet. Furthermore, the anti-skid seat 21 is made of rubber material. The rubber protective seat has a shock-absorbing and shock-absorbing effect, and only plays an auxiliary supporting role, and does not affect the overall shock-absorbing performance of the power cabinet.

[0052] The shock-absorbing movable parts are provided in four sets, and the four sets of the shock-absorbing movable parts are distributed on the power cabinet body 1 along the circumferential direction to further improve the shock-absorbing support stability of the power cabinet after it is moved and locked.

[0053] The heat dissipation and dehumidification component includes a heat dissipation fan 22, one end of which is arranged on the bottom surface of the power cabinet 1, and one end of the heat dissipation fan 22 is connected to the exhaust through hole on the bottom surface of the power cabinet 1. The other end of the heat dissipation fan 22 is connected to the power support plate 23 in the power cabinet 1, and the other end of the heat dissipation fan 22 is connected to the exhaust through hole on the power support plate 23 to extract and discharge the hot air in the power cabinet 1. The power support plate 23 is used to install the electrical components.

[0054] Although the embodiments of the present invention have been disclosed as above, they are not limited to the applications listed in the specification and the implementation modes, and they can be fully applied to various fields suitable for the present invention. For those familiar with the art, additional modifications can be easily implemented. Therefore, without departing from the general concept defined by the claims and the scope of equivalents, the present invention is not limited to the specific details and the illustrations shown and described herein.

Claims

1. A mobile high-reliability power supply cabinet, characterized in that: include: A power supply cabinet, the power supply cabinet comprising a power supply cabinet body, the power supply cabinet body is used to install electrical components; A shock-absorbing moving part, which is arranged on the power cabinet, the shock-absorbing moving part comprises a cabinet shock-absorbing part, a moving part and an auxiliary supporting and stabilizing part, the cabinet shock-absorbing part provides support and shock absorption in the power cabinet, the moving part facilitates the movement of the cabinet on the cabinet shock-absorbing part, and the auxiliary supporting and stabilizing part provides support on the cabinet; The heat dissipation and dehumidification component is arranged on the power cabinet and is used to discharge the heat in the power cabinet.

2. The mobile high-reliability power supply cabinet according to claim 1 is characterized in that: The cabinet shock absorbing member comprises a shock absorbing support member, a transverse shock absorbing member and a vertical shock absorbing member. The shock absorbing support member is arranged on the power cabinet, and the transverse shock absorbing member and the vertical shock absorbing member are both arranged on the shock absorbing support member.

3. The mobile high-reliability power supply cabinet according to claim 2 is characterized in that: The shock-absorbing support member includes a shock-absorbing support tube and a shock-absorbing bearing rod, the side wall of the shock-absorbing support tube is arranged on the inner wall of the bottom end of the power supply cabinet, one end of the shock-absorbing bearing rod passes through the shock-absorbing through hole on the bottom surface of the power supply cabinet and extends to the other end of the shock-absorbing support tube, and the shock-absorbing bearing rod is connected to the shock-absorbing support tube through the transverse shock-absorbing member and the vertical shock-absorbing member.

4. The mobile high-reliability power supply cabinet according to claim 2 or 3, characterized in that: The lateral shock absorber includes an X-direction shock absorber and a Y-direction shock absorber, and the X-direction shock absorber and the Y-direction shock absorber are both arranged on the shock absorbing support member; the X-direction shock absorber includes an upper X-direction shock absorber and a lower X-direction shock absorber, and the upper X-direction shock absorber and the lower X-direction shock absorber are both arranged on the shock absorbing support member.

5. The mobile high-reliability power supply cabinet according to claim 4, characterized in that: The upper X-axis shock absorber includes a vertical slide seat, a sliding pad, a vertical slider, an axial guide tube, an axial guide shaft and a first spring. The bottom surface of the vertical slide seat groove is arranged on one side of the inside of the shock-absorbing support tube. The sliding pad is in the shape of a right-angled inclined plane. The sliding pad is arranged on the bottom surface of the groove of the vertical slide seat. The vertical slider is slidably arranged in the vertical slide seat, and the inclined surface of the vertical slider cooperates with the inclined surface of the sliding pad. One end of the axial guide tube is arranged on the vertical slider, one end of the axial guide shaft is arranged on the side wall of one end of the shock-absorbing bearing rod, and the other end of the axial guide shaft is slidably embedded in the other end of the axial guide tube; the first spring is sleeved outside the axial guide tube and the axial guide shaft; multiple sets of the upper X-axis shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod.

6. The mobile high-reliability power supply cabinet according to claim 4, characterized in that: The lower X-direction shock absorber has the same structure as the upper X-direction shock absorber, and the lower X-direction shock absorber is arranged on the shock-absorbing support tube and the shock-absorbing bearing rod directly below the upper X-direction shock absorber, and the connection method between the lower X-direction shock absorber and the shock-absorbing support tube is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing support tube, and the connection method between the lower X-direction shock absorber and the shock-absorbing bearing rod is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing bearing rod; multiple sets of the lower X-direction shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod.

7. The mobile high-reliability power supply cabinet according to claim 4, characterized in that: The Y-direction shock absorber comprises an upper Y-direction shock absorber and a lower Y-direction shock absorber, and the upper Y-direction shock absorber and the lower Y-direction shock absorber are both arranged on the shock absorbing support member; the upper Y-direction shock absorber has the same structure as the upper X-direction shock absorber, and the upper Y-direction shock absorber is arranged on the shock absorbing support tube and the shock absorbing bearing rod, and the upper Y-direction shock absorber is connected to the shock absorbing support tube in the same way as the upper X-direction shock absorber is connected to the shock absorbing support tube, and the upper Y-direction shock absorber is connected to the shock absorbing bearing rod in the same way as the upper X-direction shock absorber is connected to the shock absorbing bearing rod; a plurality of sets of the upper Y-direction shock absorbers are symmetrically distributed on both sides of the shock absorbing bearing rod, and And multiple sets of upper Y-direction shock absorbers and multiple sets of upper X-direction shock absorbers are located in the same plane and surround the circumferential spacing portion of the shock-absorbing bearing rod; the lower Y-direction shock absorber has the same structure as the upper X-direction shock absorber, and the lower Y-direction shock absorber is arranged on the shock-absorbing support tube and the shock-absorbing bearing rod directly below the upper Y-direction shock absorber, and the connection method between the lower Y-direction shock absorber and the shock-absorbing support tube is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing support tube, and the connection method between the lower Y-direction shock absorber and the shock-absorbing bearing rod is the same as the connection method between the upper X-direction shock absorber and the shock-absorbing bearing rod; multiple sets of lower Y-direction shock absorbers are symmetrically distributed on both sides of the shock-absorbing bearing rod.

8. The mobile high-reliability power supply cabinet according to claim 4, characterized in that: The vertical shock-absorbing member includes a shock-absorbing vertical support member and a shock-absorbing adjustment member, and the shock-absorbing vertical support member and the shock-absorbing adjustment member are both arranged on the shock-absorbing support member; the shock-absorbing vertical support member includes a vertical guide tube, a vertical guide shaft, a transverse slider and a second spring, one end of the vertical guide tube is arranged on one end of the shock-absorbing bearing rod, and one end of the vertical guide shaft is slidably embedded in the other end of the vertical guide tube; one end face of the transverse slider is arranged on the other end of the vertical guide shaft, and the second spring is sleeved outside the vertical guide tube and the vertical guide shaft.

9. The mobile high-reliability power supply cabinet according to claim 8, characterized in that: The shock-absorbing adjustment part includes a vertical adjustment slider, a transmission tube, a motor and a threaded rod. The vertical adjustment slider is slidably embedded in the shock-absorbing support tube, and one end face of the vertical adjustment slider is slidably fitted with the other end face of the transverse slider. One end of the transmission tube is arranged on the other end face of the vertical adjustment slider, and the motor is arranged on the top face of the shock-absorbing support tube. One end of the threaded rod passes through the top face of the shock-absorbing support tube and is connected to the rotating shaft of the motor, and the other end of the threaded rod is fitted in the other end of the transmission tube, and the threaded rod cooperates with the internal thread of the inner wall of the transmission tube.

10. The mobile high-reliability power supply cabinet according to claim 4, characterized in that: The movable part includes a movable wheel, which is detachably arranged on the other end of the shock-absorbing support rod; the auxiliary support stabilizing part includes a telescopic column and an anti-slip seat, the top end of the telescopic column is arranged on the bottom surface of the power supply cabinet, and the anti-slip seat is arranged on the bottom surface of the telescopic column; multiple sets of shock-absorbing movable parts are distributed circumferentially on the power supply cabinet; the heat dissipation and dehumidification part includes a heat dissipation fan, one end of the heat dissipation fan is arranged on the bottom surface of the power supply cabinet, and the other end of the heat dissipation fan is connected to the power supply support plate in the power supply cabinet.