Electrical power distribution cabinet installation structure
By setting up a clamping seat and flywheel in the distribution cabinet installation structure, the angular momentum of the flywheel is used to keep the distribution cabinet stable, and suspend and position adjustment are carried out through four independently driven slings, the problems of low installation efficiency and shaking of the distribution cabinet in the existing technology are solved, and efficient and stable automatic installation is achieved.
Patent Information
- Application Number
- CN202510209357.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2025-06-03
AI Technical Summary
When installing distribution cabinets in the prior art, it is necessary to load and adjust manually or with forklifts and other equipment, resulting in low installation efficiency and shaking of distribution cabinets affecting accurate installation.
By setting up a clamping seat and flywheel, the angular momentum of the flywheel rotation at high speed is used to maintain the smoothness of the distribution cabinet, and the suspension and position adjustment are carried out through four independently driven slings to achieve automatic lifting and installation.
It improves the installation efficiency of the distribution cabinet, reduces manpower investment, ensures the stability of the distribution cabinet during movement and installation, avoids damage caused by shaking, and achieves accurate installation position adjustment.
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Figure CN120090076A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of distribution cabinet installation, and specifically relates to an installation structure for an electrical distribution cabinet. Background Art
[0002] Distribution cabinets are power distribution equipment used in power systems for distributing, controlling, metering, and connecting cables. They are usually installed in the power distribution rooms, workshops, or outdoors of buildings. As an intermediate link for the transfer of electrical energy from the upper-level power distribution equipment to the lower-level electrical equipment, the installation steps of distribution cabinets include site selection, installation of brackets or foundations, safety distances, grounding, cable introduction, connection to the power supply, installation of circuit breakers and protection devices, etc.
[0003] However, when installing distribution cabinets, the traditional installation method usually involves a freight vehicle transporting the distribution cabinet to be installed to the installation site, and then using lifting equipment or flatbed trucks to unload the distribution cabinet from the freight vehicle and move it to the specific installation location for installation.
[0004] For example, a Chinese patent with the authorization announcement number CN117977418A discloses an installation structure for an electrical distribution cabinet, including a base. A pushing and pulling mechanism is installed above the base, a blocking mechanism is installed above the base, a sliding mechanism is installed on the lower surface of the base, and a fixing mechanism is installed below the base. The fixing mechanism includes a fixing member fixedly installed on the lower surface of the base. A fixing hole is opened on the lower surface of the fixing member, and an anchoring rod is movably installed on the inner surface of the fixing hole. A moving support mechanism is installed on the lower surface of the base, and a turning mechanism is installed below the base. The present invention can be installed and moved integrally, without the need to move the distribution cabinet to the designated installation location and then move it onto the installation structure, and can block and fix the distribution cabinet during the process of moving the distribution cabinet to ensure the stability of the distribution cabinet.
[0005] Another example is a Chinese patent with the authorization announcement number CN2212631 second link 17U, which discloses a hoisting mechanism for a distribution cabinet, including a distribution cabinet body. A blocking component is arranged on the distribution cabinet body. The blocking component includes a first connecting plate arranged in the middle of the distribution cabinet body. A first screw rod is connected to the first connecting plate. A first L-shaped fixing plate is connected to the first screw rod, and a second L-shaped fixing plate is connected to the first screw rod. Second connecting plates are arranged on the upper and lower parts of the distribution cabinet body, and second screw rods are arranged on the second connecting plates. Installation blocks are arranged on the upper parts of the first L-shaped fixing plate and the second connecting plates. Hanging rings are arranged on the upper parts of the installation blocks. First rubber pads are arranged on the first L-shaped fixing plate and the second L-shaped fixing plate, and second rubber pads are arranged on both the first L-shaped fixing plate and the second L-shaped fixing plate. The four groups of blocking components can cooperate with the hanging rings to prevent the deformation of the distribution cabinet body caused by hoisting.
[0006] However, the above patents still have the following disadvantages:
[0007] 1. When using a flatbed truck to transfer the power distribution cabinet, it is still necessary to manually or with the help of equipment such as forklifts to load the power distribution cabinet from the freight vehicle and fix it in the above-mentioned patent, which wastes time and manpower and affects the installation efficiency of the power distribution cabinet.
[0008] 2. When using a hoisting device to transfer the power distribution cabinet, the power distribution cabinet will have uncontrollable shaking during the hoisting transfer process. Then, when installing the power distribution cabinet, the shaking of the power distribution cabinet will affect the process of accurately installing the power distribution cabinet into the installation position, which is not conducive to quickly and accurately carrying out the installation work.
[0009] 3. When installing the power distribution cabinet in the above-mentioned patent, workers need to manually adjust the position of the power distribution cabinet to ensure that the power distribution cabinet can be accurately installed in the installation position. The adjustment method is laborious and inaccurate, and workers need to repeatedly adjust, which affects the installation efficiency. Summary of the Invention
[0010] In order to overcome the deficiencies of the prior art, the technical problem solved by the present invention is that by moving this patent near the transport vehicle, the clamping device is directly located above the target power distribution cabinet, and direct hoisting transfer is carried out, which is convenient for operation, saves manpower, and improves the installation efficiency of the power distribution cabinet. By setting four suspension cables to suspend the power distribution cabinet simultaneously, a more stable hoisting effect can be provided for the power distribution cabinet, avoiding bumps and damages caused by shaking of the power distribution cabinet during the transfer process. At the same time, by setting a flywheel, using the angular momentum when the flywheel rotates at high speed, the power distribution cabinet can be kept stable, and the power distribution cabinet can always maintain a vertical state during the descending installation process. Cooperating with the independent drive of the four suspension cables for retracting and releasing, the installation position of the power distribution cabinet can be accurately adjusted without manual adjustment of the position by personnel.
[0011] In order to achieve the above object, the present invention provides the following technical solutions: 1. An installation structure for an electrical power distribution cabinet, comprising:
[0012] A clamping seat, a hoisting component is arranged on the upper side, a clamping component is arranged below the clamping seat, and the clamping component clamps and arranges a power distribution cabinet;
[0013] A flywheel, a flywheel is arranged at the center below the clamping seat, a wheel shaft rotatably connected to the clamping seat is fixedly arranged at the center of the flywheel, a first motor is fixedly connected to the top of the clamping seat, and the power output end of the top cover is in transmission connection with the wheel shaft;
[0014] Wherein, a bottom plate is arranged below the power distribution cabinet, the hoisting component is fixedly connected to one end of the bottom plate, an avoidance groove is opened at the position corresponding to the power distribution cabinet on the bottom plate, and a flywheel cover for covering the flywheel is fixedly connected to the bottom of the clamping seat.
[0015] Furthermore, the flywheel is evenly distributed with a plurality of adjustment slots, each of which is slidably connected to a counterweight block, and the counterweight block can slide in the adjustment slot to adjust its position. An end cover is fixedly connected to the outer side of the flywheel at a corresponding position of each adjustment slot, and a screw rod is rotatably connected between each end cover and the bottom of the adjustment slot, and each screw rod is threadedly connected to the corresponding counterweight block.
[0016] Furthermore, the clamping component includes a rod seat, two groups of rod seats are fixedly connected to the two ends of the bottom side of the clamping seat, a group of first connecting rods and a group of second connecting rods are hinged on each group of the rod seats, a group of first hinges are hinged at the ends of each group of the first connecting rods and the second connecting rods, a clamping plate for clamping the power distribution cabinet is fixedly connected to each group of the first hinges, a third hinge is fixedly connected at the upper side of the clamping seat at the corresponding position of each first connecting rod, a second hinge is hinged at the top end of each first connecting rod, and an electric drive lever is connected between the movable end of each second hinge and the corresponding third hinge.
[0017] Furthermore, two sides of the two clamping plates close to each other are respectively fixedly connected with rubber plates, and an electromagnet is fixedly connected inside each clamping plate.
[0018] Furthermore, the lifting component includes a hanger, which is fixedly connected to one end of the upper side of the base plate, a top cover is fixedly connected to the top of the clamping seat, four lifting rings are symmetrically distributed and fixedly connected at the four corners of the top of the top cover, and a sling is hung on each of the lifting rings, and the sling passes around the hanger.
[0019] Furthermore, four winch seats are fixedly connected to the surface of the bottom plate at corresponding positions of the hanger, a winch is rotatably connected in each of the winch seats, each of the slings is wound around and connected to the corresponding winch, a second motor is fixedly connected to the outside of each winch seat, and a power output end of each of the second motors is transmission-connected to the corresponding winch.
[0020] Furthermore, four groups of ring seats are symmetrically distributed and fixedly connected to the top of the hanger, guide rings are fixedly connected between each group of the ring seats, and each of the slings passes through the corresponding guide rings. A group of first pulley seats is fixedly connected to the top of the hanger near each guide ring, and a first pulley is rotatably connected in each group of the first pulley seats, and each of the slings passes around the corresponding first pulley. Two groups of second pulley seats are fixedly connected at the corners of the top end of the hanger, and two second pulleys are rotatably connected in each group of the second pulley seats, and each of the slings passes around the corresponding second pulley.
[0021] Furthermore, two groups of batteries are fixedly connected to the top of the bottom plate at both sides of the avoidance groove, and two groups of buckles are fixedly connected to the bottom plate at both sides of the avoidance groove.
[0022] In summary, compared with the prior art, the beneficial effects of the present invention are:
[0023] (1) This patent can directly reach the vicinity of the transport vehicle, hoist the distribution cabinet, and transfer it. It is easy to operate, saves manpower, improves the installation efficiency of the distribution cabinet, and is more flexible and convenient to use than traditional hoisting methods.
[0024] (2) By setting four slings to suspend the distribution cabinet in four directions at the same time, a more stable lifting effect can be provided for the distribution cabinet, thereby preventing the distribution cabinet from shaking and bumping during movement.
[0025] (3) By setting up a flywheel and utilizing the angular momentum of the flywheel when rotating at high speed, the stability of the distribution cabinet is ensured, and the distribution cabinet is always kept in a vertical state during the lowering and installation process. By cooperating with the independent drive of the retraction and extension of the four slings, the installation position of the distribution cabinet can be accurately adjusted without the need for manual adjustment. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 This is a three-dimensional schematic diagram of this patent.
[0027] Figure 2 This is a schematic diagram of the structure of the main components of this patent.
[0028] Figure 3 This is an exploded diagram of the main components of this patent.
[0029] Figure 4 This is a schematic diagram of the structure of the flywheel in this patent.
[0030] Figure 5 It is a schematic diagram of the structure at the lifting component.
[0031] Figure 6 for Figure 5 A partial enlarged view of point A in the middle.
[0032] Figure 7 This is a schematic diagram of the structure of the guide ring in this patent.
[0033] Figure 8 It is a three-dimensional schematic diagram of this patent with universal wheels.
[0034] Description of reference numerals: bottom plate 10; avoidance groove 11; battery 12; buckle 13; clamping seat 14; rod seat 15; first connecting rod 16; second connecting rod 17; first hinge 18; clamping plate 19; rubber plate 20; electromagnet 21; second hinge 22; electric drive rod 23; third hinge 24; flywheel cover 25; wheel axle 26; flywheel 27; end cover 28; adjustment groove 29; counterweight 30; lead screw 31; first motor 32; top cover 33; lifting ring 34; lifting cable 35; ring seat 36; guide ring 37; first pulley seat 38; first pulley 39; second pulley seat 40; second pulley 41; hanger 42; winch seat 43; winch 44; second motor 45; power distribution cabinet 46; universal wheel 47; electric telescopic support leg 48. Detailed implementation manners
[0035] In order to enable those skilled in the art to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
[0036] Embodiment 1:
[0037] As Figure 1-7 shown, an installation structure of an electrical power distribution cabinet includes a bottom plate 10. One end of the upper side of the bottom plate 10 is fixedly connected with a hanger 42. Four groups of ring seats 36 are symmetrically distributed and fixedly connected to the top of the hanger 42. A guide ring 37 is fixedly connected inside each group of ring seats 36. A lifting cable 35 is arranged through each guide ring 37. A clamping seat 14 is arranged above the bottom plate 10. A top cover 33 is fixedly connected to the top of the clamping seat 14. Four lifting rings 34 are symmetrically distributed and fixedly connected to the four corners of the top of the top cover 33. Each lifting ring 34 is hung with the corresponding lifting cable 35. A clamping component is arranged below the bottom plate 10. A power distribution cabinet 46 is clamped inside the clamping component. An avoidance groove 11 is opened on the surface of the bottom plate 10 at the position below the power distribution cabinet 46.
[0038] By providing the hanger 42, it is possible to conveniently move the clamping component to the carriage of the transport vehicle, facilitating the hoisting and transfer of the power distribution cabinet 46 on the transport vehicle, with convenient operation, thereby improving the installation efficiency of the power distribution cabinet 46.
[0039] As Figure 1 、 Figure 5 and Figure 6As shown in the figure, a set of first pulley seats 38 are fixedly connected near the top of the hanging frame 42 at each guiding ring 37. A first pulley 39 is rotatably connected in each set of first pulley seats 38. Each sling 35 bypasses the corresponding first pulley 39 and becomes horizontal. Two sets of second pulley seats 40 are fixedly connected at the position near the first pulley seats 38 at the fold angle of the top of the hanging frame 42. Two second pulleys 41 are rotatably connected in each set of second pulley seats 40. Each sling 35 bypasses the corresponding second pulley 41 and vertically faces downward. There are gaps between the slings 35 without interference. Four winch seats 43 are fixedly connected to the surface of the bottom plate 10 at the bottom of the hanging frame 42. A winch 44 is rotatably connected in each winch seat 43. A second motor 45 is fixedly connected to the outside of each winch seat 43. The power output end of each second motor 45 is in transmission connection with the corresponding winch 44. Each sling 35 is wound around the outside of the corresponding winch 44.
[0040] Lifting the power distribution cabinet 46 with four slings 35 can reduce the sway of the power distribution cabinet 46 and improve the stability of the power distribution cabinet 46 during movement and installation. By setting four winches 44, the four slings 35 can be independently wound and adjusted respectively, so as to control and adjust the position of the power distribution cabinet 46 during the descending installation, and then make the process of installing the power distribution cabinet 46 more convenient and improve the installation efficiency.
[0041] As Figure 1 and Figure 5 As shown in the figure, two sets of batteries 12 are respectively fixedly connected to both sides of the avoidance groove 11 at the top of the bottom plate 10. Two sets of fasteners 13 are respectively fixedly connected to both sides of the avoidance groove 11 on the bottom plate 10.
[0042] By setting the batteries 12, electrical energy can be provided for the electrical equipment in the device, and it can also be used as a counterweight to lower the center of gravity of the device, making the device more stable during the lifting process. By setting the fasteners 13, the device can be directly installed on the forklift and moved by the forklift, which is convenient to operate and flexible to use. It can be installed on the existing forklift, reducing the production cost of the equipment.
[0043] As Figure 2 and Figure 3As shown, the clamping component includes a rod base 15. At both ends of the bottom side of the clamping seat 14, two groups of rod bases 15 are respectively and fixedly connected. On each group of rod bases 15, a group of first connecting rods 16 and a group of second connecting rods 17 are respectively hinged. At the end of each group of first connecting rods 16 and second connecting rods 17, a group of first hinges 18 are hinged. On each group of first hinges 18, a clamping plate 19 is fixedly connected. The two clamping plates 19 face each other for clamping and fixing the power distribution cabinet 46. Above the clamping seat 14, at the corresponding position of each first connecting rod 16, a third hinge 24 is fixedly connected. At the top end of each first connecting rod 16, a second hinge 22 is hinged. Between the movable end of each second hinge 22 and the corresponding third hinge 24, an electric drive rod 23 is connected.
[0044] By setting the clamping plate 19, it can adapt to power distribution cabinets 46 of different sizes, clamp and fix the power distribution cabinet 46, and thus realize the hoisting of the power distribution cabinet 46.
[0045] As Figure 2 and Figure 3 shown, on the two sides of the two clamping plates 19 close to each other, rubber plates 20 are respectively fixedly connected. In this embodiment, it is preferably that the material of the rubber plate 20 is rubber material. The surface of the rubber plate 20 is provided with uniform grooves. On each clamping plate 19, an electromagnet 21 is fixedly connected. One end of each electromagnet 21 with magnetic force can be in contact and fit with the power distribution cabinet 46.
[0046] By setting the rubber plate 20, the friction when clamping the power distribution cabinet 46 can be increased, so that the power distribution cabinet 46 is fixed more firmly. And by setting the electromagnet 21, a magnetic attraction is applied to the power distribution cabinet 46 during the hoisting process to prevent the power distribution cabinet 46 from slipping during the movement.
[0047] As Figure 3 and Figure 4 shown, above the clamping seat 14 and below the top cover 33, a first motor 32 is fixedly connected. At the bottom of the clamping seat 14, a flywheel cover 25 is fixedly connected. Between the flywheel cover 25 and the clamping seat 14, a wheel shaft 26 is rotatably connected. The power output end of the first motor 32 is in transmission connection with the wheel shaft 26. On the wheel shaft 26, a flywheel 27 is fixedly connected. Inside the flywheel 27, a plurality of adjusting grooves 29 are evenly distributed in the circumferential direction. In each adjusting groove 29, a counterweight 30 is slidably connected. At the corresponding position of each adjusting groove 29 on the outer side of the flywheel 27, an end cover 28 is fixedly connected. Between each end cover 28 and the bottom of the corresponding adjusting groove 29, a lead screw 31 is rotatably connected. Each lead screw 31 is threadedly connected with the corresponding counterweight 30.
[0048] By setting up the flywheel 27 to rotate at high speed during the hoisting and moving process, and using its rotational angular momentum to reduce the swaying of the power distribution cabinet 46, and when the power distribution cabinet 46 is lowered and installed, keeping the power distribution cabinet 46 always in a vertical state, preventing the power distribution cabinet 46 from making a conical pendulum motion when descending, improving the stability of the installation process, thus achieving a stable and accurate installation process and improving the installation efficiency.
[0049] Moreover, by setting up an adjustable counterweight 30, the dynamic balance of the flywheel 27 can be adjusted, and further making the center of gravity of the flywheel 27 coincide with the axis of the wheel shaft 26, avoiding the vibration generated by the high-speed rotation of the flywheel 27 from affecting the stability of the hoisting.
[0050] In this embodiment, initially, the operator installs the device on the forklift forks through the buckle 13, so that the power of the forklift can be used to move and transfer the device and the hoisted power distribution cabinet 46, which is convenient for flexible operation.
[0051] Before hoisting the power distribution cabinet 46, the operator can adjust the position of the counterweight 30 in the adjustment groove 29 by screwing the screw rod 31, and then adjust the dynamic balance of the flywheel 27 to make the center of gravity of the flywheel 27 coincide with the axis of the wheel shaft 26, ensuring the stability when the flywheel 27 rotates.
[0052] When the installation of the power distribution cabinet is required, the transport vehicle transports multiple power distribution cabinets to the vicinity of the installation construction location. The operator drives the forklift to insert the forks under the bottom of the carriage. Then the upper end of the hanging frame 42 is above the carriage. The operator controls the second motor 45 to loosen the lifting rope 35, and the clamping seat 14 descends until the two clamping plates 19 reach both sides of the target power distribution cabinet 46.
[0053] Subsequently, the operator controls the four electric drive rods 23 to extend. Then, driven by the first connecting rod 16 and the second connecting rod 17, the two clamping plates 19 move horizontally and approach each other until the rubber plate 20 is in close contact with the surface of the power distribution cabinet 46 to clamp the target power distribution cabinet 46. At the same time, the operator activates the electromagnet 21 to generate a strong magnetic force to magnetically adsorb the power distribution cabinet 46, ensuring a firm and stable clamping of the power distribution cabinet 46.
[0054] Subsequently, the operator controls the second motor 45 to reel in the lifting rope 35. Then the lifting rope 35 hoists the clamping seat 14 and the power distribution cabinet 46 until the power distribution cabinet 46 is completely separated from the carriage. Since four lifting ropes 35 are provided, it can ensure that the power distribution cabinet 46 remains stable during the lifting process and reduces the swaying. Moreover, during this process, the operator starts the first motor 32 to drive the flywheel 27 to rotate at high speed, and uses the angular momentum of the high-speed rotation of the flywheel 27 to stably lift the power distribution cabinet 46, also achieving the effect of reducing the swaying of the power distribution cabinet 46.
[0055] After the power distribution cabinet 46 is completely separated from the carriage, the operator drives a forklift to move the power distribution cabinet 46 to the installation position, so that the avoidance groove 11 is located above the installation position. The power distribution cabinet 46 can be initially aligned with the installation position. During the transfer process, since the four sling ropes 35 can provide tensile force to the power distribution cabinet 46 in all directions, the shaking of the power distribution cabinet 46 during the transfer process can be reduced. Moreover, the angular momentum of the flywheel 27 rotating at a high speed can keep the power distribution cabinet 46 always in a vertical state, so that the power distribution cabinet 46 is more stable during the transfer process and the power distribution cabinet 46 is prevented from being damaged due to collision.
[0056] Subsequently, the operator controls the second motor 45 again to loosen the sling ropes 35. The power distribution cabinet 46 gradually descends until it enters the installation position through the avoidance groove 11. During this process, the angular momentum of the flywheel 27 rotating at a high speed can ensure that the power distribution cabinet 46 is always in a vertical installation and adjustment state, prevent the power distribution cabinet 46 from making a circular pendulum motion, and by independently controlling each second motor 45, the loosening degrees of the respective sling ropes 35 can be made inconsistent, so that the power distribution cabinet 46 can be adjusted in position in the horizontal direction, and thus the operator does not need to hold the power distribution cabinet by hand to adjust the position, facilitating the installation work of the machine type.
[0057] Embodiment 2:
[0058] In this embodiment, universal wheels 47 are provided to replace the fasteners 13, so that the device can be separated from external equipment and can be pushed by the operator to transfer the power distribution cabinet. At the same time, by providing electric telescopic feet 48, the electric telescopic feet 48 can be made to abut against the ground during installation, thereby fixing the position of the device and facilitating stable installation work.
[0059] The above-mentioned electromagnet 21, electric drive rod 23, first motor 32, battery 12, and second motor 45 are mature existing technologies and will not be elaborated herein.
[0060] As certain terms are used in the specification and claims to refer to particular components. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. The specification and claims do not use the difference in name as a way to distinguish components, but use the difference in function of components as the criterion for distinction. As the term "comprising" mentioned throughout the specification and claims is an open-ended term, it should be interpreted as "including but not limited to". "Substantially" means within an acceptable error range. Those skilled in the art can solve the technical problem within a certain error range and basically achieve the technical effect.
[0061] It should be noted that the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, such that a commodity or system comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such commodity or system. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the commodity or system comprising said element.
[0062] The above description illustrates and describes several preferred embodiments of the present application. However, as previously mentioned, it should be understood that the present application is not limited to the forms disclosed herein, should not be regarded as excluding other embodiments, but can be used in various other combinations, modifications and environments, and can be changed within the scope of the application concept described herein through the above teachings or the techniques or knowledge in the relevant field. Any changes and variations made by those skilled in the art without departing from the spirit and scope of the present application shall fall within the protection scope of the appended claims of the present application.
Claims
1. An electrical distribution cabinet installation structure, characterized in that: The electrical distribution cabinet installation structure comprises: a clamping seat (14), a lifting component is arranged on the upper side of the clamping seat (14), a clamping component is arranged below the clamping seat (14), and the clamping component clamps the distribution cabinet (46); A flywheel (27), wherein a flywheel (27) is arranged at the center below the clamping seat (14), a wheel shaft (26) rotatably connected to the clamping seat (14) is fixedly arranged at the center of the flywheel (27), a first motor (32) is fixedly connected to the top of the clamping seat (14), and a power output end of the top cover (33) is drivingly connected to the wheel shaft (26); A base plate (10) is provided below the power distribution cabinet (46), the lifting component is fixedly connected to one end of the base plate (10), an avoidance groove (11) is provided on the base plate (10) at a position corresponding to the power distribution cabinet (46), and a flywheel cover (25) for covering a flywheel (27) is fixedly connected to the bottom of the clamping seat (14).
2. An electrical distribution cabinet installation structure according to claim 1, characterized in that: The flywheel (27) is evenly distributed with a plurality of adjustment slots (29), each of which is slidably connected with a counterweight block (30), and the counterweight block (30) can be slidably adjusted in the adjustment slot (29).
3. An electrical distribution cabinet installation structure according to claim 2, characterized in that: An end cover (28) is fixedly connected to the outer side of the flywheel (27) at a position corresponding to each adjustment slot (29), a screw rod (31) is rotatably connected between each end cover (28) and the bottom of the adjustment slot (29), and each screw rod (31) is threadedly connected to a corresponding counterweight block (30).
4. The electrical distribution cabinet installation structure according to claim 1, characterized in that: The clamping component comprises a rod seat (15), two groups of rod seats (15) are fixedly connected at both ends of the bottom side of the clamping seat (14), a group of first connecting rods (16) and a group of second connecting rods (17) are hinged on each group of the rod seats (15), a group of first hinges (18) are hinged at the ends of each group of the first connecting rods (16) and the second connecting rods (17), and a clamping plate (19) for clamping and fixing the power distribution cabinet (46) is fixedly connected to each group of the first hinges (18).
5. The electrical distribution cabinet installation structure according to claim 4, characterized in that: A third hinge (24) is fixedly connected to the upper side of the clamping seat (14) at a position corresponding to each first connecting rod (16); a second hinge (22) is hinged to the top end of each first connecting rod (16); and an electric drive lever (23) is connected between the movable end of each second hinge (22) and the corresponding third hinge (24).
6. An electrical distribution cabinet installation structure according to claim 4, characterized in that: The two sides of the two clamping plates (19) close to each other are respectively fixedly connected with rubber plates (20), and an electromagnet (21) is fixedly connected inside each clamping plate (19).
7. The electrical distribution cabinet installation structure according to claim 1, characterized in that: The lifting component comprises a hanger (42), one end of the upper side of the base plate (10) is fixedly connected to the hanger (42), the top of the clamping seat (14) is fixedly connected to a top cover (33), four lifting rings (34) are symmetrically distributed and fixedly connected at the four corners of the top of the top cover (33), each of the lifting rings (34) is suspended with a sling (35), and the sling (35) passes around the hanger (42).
8. An electrical distribution cabinet installation structure according to claim 7, characterized in that: Four capstan seats (43) are fixedly connected to the surface of the bottom plate (10) at positions corresponding to the hanger (42), each of the capstan seats (43) is rotatably connected to a capstan (44), each of the slings (35) is wound around and connected to the corresponding capstan (44), a second motor (45) is fixedly connected to the outside of each capstan seat (43), and a power output end of each of the second motors (45) is transmission-connected to the corresponding capstan (44).
9. The electrical distribution cabinet installation structure according to claim 7, characterized in that: Four groups of ring seats (36) are symmetrically distributed and fixedly connected to the top of the hanger (42), and a guide ring (37) is fixedly connected between each group of the ring seats (36). Each of the slings (35) passes through the corresponding guide ring (37). A group of first pulley seats (38) is fixedly connected to the top of the hanger (42) near each guide ring (37), and a first pulley (39) is rotatably connected in each group of the first pulley seats (38). Each of the slings (35) passes around the corresponding first pulley (39). Two groups of second pulley seats (40) are fixedly connected at the top corner of the hanger (42), and two second pulleys (41) are rotatably connected in each group of the second pulley seats (40), and each of the slings (35) passes around the corresponding second pulley (41).
10. The electrical distribution cabinet installation structure according to claim 1, characterized in that: Two groups of batteries (12) are fixedly connected to the top of the bottom plate (10) at both sides of the avoidance groove (11), and two groups of buckles (13) are fixedly connected to the bottom plate (10) at both sides of the avoidance groove (11).
Citation Information
Patent Citations
Electrical power distribution cabinet installation structure
CN117977418A
Self-adjusting flexible installing and correcting system and method of lifting manner
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Hoisting structure for high and large formwork support
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