Correcting mechanism for electrical equipment installation

Through the combined structure of the X-axis, Y-axis and Z-axis adjustment plate, the rapid level and height adjustment of electrical equipment is achieved by using level bubbles and threaded transmission, which solves the problem of uneven installation of electrical equipment in the prior art, and improves the leveling efficiency and stability of equipment.

CN120444528APending Publication Date: 2025-08-08CHINA CONSTR SECOND ENG BUREAU LTD
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Patent Information

Application Number
CN202510673971.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

The existing electrical equipment installation and calibration mechanism is complicated during the adjustment process and it is difficult to ensure the height consistency of the four corners, resulting in uneven installation of the inverter, affecting the normal operation and safe use of the equipment.

Method used

The combined structure of the X-axis, Y-axis and Z-axis adjustment plates is adopted to adjust the horizontal state of each shaft through the level bubble, and the threaded transmission and limiting structure are used to achieve rapid adjustment and locking to ensure the level and height of the storage plates are consistent.

Benefits of technology

It realizes rapid level and height adjustment of electrical equipment, avoids multiple measurements and repeated adjustments, improves leveling efficiency, and ensures stable installation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of electrical equipment installation, in particular to an electrical equipment installation correction mechanism which comprises a base, the base is arranged to be a shell with an upward opening, a first fixing shaft in the X-axis direction is arranged on the rear side of the inner wall of the base, and a Y-axis adjusting plate is rotationally connected to the first fixing shaft in a sleeving mode. The left end of the top of the base is fixedly provided with a Y-axis adjusting plate, the left end of the top of the Y-axis adjusting plate is fixedly provided with a Y-axis second fixing shaft, the second fixing shaft is rotationally sleeved with an X-axis adjusting plate, a storage plate parallel to the X-axis adjusting plate is arranged above the X-axis adjusting plate, a lifting mechanism is arranged between the storage plate and the X-axis adjusting plate, and the two corners of the rear end of the top of the base are fixedly provided with vertical mounting plates. According to the device, the Y axis, the X axis and the Z axis of the storage plate can be sequentially adjusted according to the sequence, so that horizontal correction of the storage plate can be rapidly completed, height correction can be conducted on the storage plate, the structure can be locked after correction is completed, and therefore the situation of loose connection is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of electrical equipment installation, and in particular to a correction mechanism for electrical equipment installation. Background Art

[0002] When installing photovoltaic panels in a ground-based power station, they need to be equipped with an inverter. The inverter is a device that converts the direct current generated by the photovoltaic panels into alternating current and plays a key role in photovoltaic power generation systems. The installation and calibration of the inverter is crucial to ensure its normal operation and safe use. The inverter must be installed in a horizontal state, and the horizontal deviation is generally required to not exceed the specified value to ensure the normal operation of the electronic components inside the inverter and avoid electrolyte leakage or other malfunctions due to tilt. However, the tilt of the inverter installation can be affected by the photovoltaic panel support. However, during use, the common calibration mechanism used for electrical equipment installation requires the position and height of the four corners of the storage plate to be adjusted sequentially. Adjusting the four corners one by one requires multiple measurements and operations, which is a cumbersome process. Each time a corner is adjusted, the overall state of the plate changes, which may affect the position of other corners. This requires repeated adjustments, which consumes a lot of time and effort and reduces the efficiency of the leveling work. Moreover, it is difficult to accurately determine the adjustment amount of the four corners during the adjustment process, which easily leads to inconsistent heights of the corners. As a result, even though each corner has been adjusted, the plate as a whole is still uneven. To this end, the present application proposes a calibration mechanism for electrical equipment installation. Summary of the Invention

[0003] In view of the shortcomings of the prior art, the present invention aims to provide a correction mechanism for the installation of electrical equipment to solve the problems raised in the above background technology.

[0004] In order to achieve the above-mentioned purpose, the present invention is implemented through the following technical solution: a correction mechanism for installing electrical equipment, including a base, the base is configured as a shell with an opening upward, a first fixed axis in the X-axis direction is provided on the rear side of the inner wall of the base, a Y-axis adjustment plate is rotatably sleeved on the first fixed axis, a second fixed axis in the Y-axis direction is fixedly installed on the left end of the top of the Y-axis adjustment plate, an X-axis adjustment plate is rotatably sleeved on the second fixed axis, a placement plate parallel to the X-axis adjustment plate is provided above the X-axis adjustment plate, a lifting mechanism is provided between the placement plate and the X-axis adjustment plate, vertical mounting plates are fixedly installed at the two corners at the rear end of the top of the base, and two mounting components are clamped on the back of each mounting plate.

[0005] Optionally, notches are provided on both sides of the base, a Y-axis adjustment assembly is arranged between the bottom inside the base and the bottom of the front end of the Y-axis adjustment plate, a Y-axis level bubble is fixedly installed at the center of the left side of the Y-axis adjustment plate, an X-axis adjustment assembly is arranged between the top of the right end of the Y-axis adjustment plate and the bottom of the right end of the X-axis adjustment plate, and an X-axis level bubble is fixedly installed at the center of the front side of the X-axis adjustment plate.

[0006] Optionally, the Y-axis adjustment assembly includes a first fixed frame, two first fixed plates, a first moving block, a first threaded tube and a first ridge rod. The first fixed frame is fixedly installed in a U-shape on the bottom of the inner cavity of the base. A first inclined through-hole extending to the interior is opened on the front side of the base. A first bearing is fixedly installed in the first through-hole. A first rod groove is opened at the center of the inner side of the horizontal portion of the first fixed frame. A first ridge groove is opened at the inner end of the first rod groove. The first threaded tube is rotatably inserted into the first through-hole and fixedly connected to the inner ring wall of the first bearing. One end of the first threaded tube located inside the base is rotatably inserted into the first rod groove. The first ridge rod is movable and inserted into the interior of the first threaded tube, and the first ridge rod penetrates One end of the first threaded tube can be inserted into the first ridge groove, and a first fixing ring is fixedly installed at one end of the first threaded tube located outside the base, and a first spring sleeved on the first threaded tube is fixedly connected between the end of the first ridge rod and the first fixing ring. The first moving block is arranged between the first fixed frame and threadedly sleeved on the first threaded tube. The two first fixing plates are fixedly installed at the bottom of the Y-axis adjustment plate, and the two first fixing plates are respectively located on both sides of the first moving block. A first sliding groove is opened on the inner side of the two first fixing plates, and first limiting balls respectively located in the two first sliding grooves are fixedly installed on the top of both sides of the first moving block, and the first threaded tube and the first ridge rod are both in an upward tilted state.

[0007] Optionally, the X-axis adjustment assembly includes two second fixed plates, a second fixed frame, a second moving block, a second threaded tube and a second ridge rod. The second fixed frame is fixedly installed at the right end of the top of the Y-axis adjustment plate. A second opening is opened at the right end of the second fixed frame and inserted into the second opening. A second bearing is fixedly installed in the second opening. A second rod groove is opened on the inner wall of the left end of the second fixed frame. A second ridge groove is opened at the inner end of the second rod groove. The second threaded tube rotates inward and is fixedly connected to the inner ring wall of the second bearing, and one end of the second threaded tube located in the second fixed frame rotates and is inserted into the second rod groove. The second ridge rod is movable and penetrates and is inserted into the second threaded tube. The lockhole that is formed on the second cam is formed on the second cam face, and the lockhole that is formed on the second cam face is formed on the second cam face. The lockhole that is formed on the second cam face is formed on the second cam face.

[0008] Optionally, the lifting mechanism includes two bearing seats, a screw and two sets of Z-axis adjustment components. The two bearing seats are respectively fixedly installed at the middle position of the two ends of the top of the X-axis adjustment plate. The screw passes through and is fixedly inserted between the two bearing seats. A positive thread is provided on the left part of the outer wall of the screw, and a negative thread is provided on the right part of the outer wall of the screw. The two sets of Z-axis adjustment components are respectively provided at the positive thread and negative thread parts of the outer wall of the screw.

[0009] Optionally, the Z-axis adjustment assembly includes a threaded ring, two fixing bolts and two connecting rods. The threaded ring is threadedly sleeved on the threaded part of the screw, the two fixing bolts are fixedly connected to both sides of the threaded ring, the two connecting rods are respectively rotatably sleeved on the ends of the two fixing bolts away from the threaded ring, and fixing parts are rotatably connected to the tops of the two connecting rods. The fixing parts at the ends of the four connecting rods in the two sets of Z-axis adjustment assemblies are respectively fixedly connected to the four corners of the bottom of the storage plate, and a limiting assembly sleeved on the center of the screw is provided at the center of the top of the X-axis adjustment plate.

[0010] Optionally, the limit assembly includes a fixing seat, a limit block and a limit bolt, the fixing seat is fixedly mounted on the X-axis adjustment plate, and a through hole is provided on the side of the fixing seat, the screw is inserted into the through hole, and teeth are evenly provided on the outer wall of the screw located inside the through hole, and a groove is provided on one side of the inner wall of the through hole, the limit block is located in the groove, one end of the limit block is set to an arc groove that is adapted to the diameter of the screw, and teeth that are adapted to the tooth groove are provided in the arc groove, and the end of the limit block with teeth can be engaged in the tooth groove of the outer wall of the screw, and a third spring is fixedly connected between the other end of the limit block and the inner wall of the groove, and a threaded hole connected to the groove is provided on the outside of the fixing seat, and the limit bolt is threadedly inserted in the threaded hole and rests against the side of the limit block.

[0011] Optionally, support assemblies are provided between the four corners of the bottom of the storage plate and the four corners of the top of the X-axis adjustment plate. The support assemblies include a support tube and a support rod movably plugged inside the tube. The top end of the support rod is fixedly connected to the corner of the bottom of the storage plate, and the bottom end of the support tube is fixedly connected to the corner of the top of the X-axis adjustment plate.

[0012] Optionally, the back sides of the two mounting plates are both provided with equidistantly distributed external protrusions, and the end of each external protrusion is provided with a socket extending leftward and rightward.

[0013] Optionally, the mounting assembly includes a U-shaped hanging plate, two insertion rods and positioning bolts. The U-shaped hanging plate is provided with two recessed grooves that match the shape of the external protrusions on the side close to the mounting plate. The two insertion rods are fixedly installed at one end of the two recessed grooves, and the two insertion rods can be inserted into the sockets on the two adjacent external protrusions on the back of the mounting plate. A nut is threadedly provided on one end of the insertion rod passing through the socket, and the positioning bolt is threadedly inserted into the back of the U-shaped hanging plate.

[0014] Beneficial effects of the present invention: When the cam is in the horizontal position, the cam is in the horizontal position, and the cam is in the horizontal position, so that the cam is in the horizontal position, and ... b. After adjusting the angle of the Y-axis adjustment plate, pull the second prism and rotate it, so that the second prism drives the second threaded tube to rotate, and the second threaded tube and the second moving block rotate threadedly, thereby driving the second moving block to move between the two second fixed frames, and the second limit balls on both sides of the second moving block will move along the inclined second slide groove, thereby driving the X-axis adjustment plate to rotate around the second fixed axis. When the bubble in the X-axis level bubble is in the middle position, it indicates that the X-axis of the X-axis adjustment plate is in a horizontal state at this time. When the second prism is released, the second spring will pull the second prism so that its end is re-inserted into the second prism groove, thereby constraining the position of the second prism and the second threaded tube, so that the position of the X-axis adjustment plate can be fixed, and the X-axis adjustment plate can be adjusted to a horizontal state; c. When the X-axis adjustment plate is in a horizontal state, the storage plate parallel to it will naturally be in a horizontal state. Then, the screw is turned so that the positive and negative threads on the screw are respectively threaded with the two sets of Z-axis adjustment components, thereby driving the two sets of Z-axis adjustment components to move relative to each other along the direction of the screw. The angle of the connecting rod in the Z-axis adjustment component changes, which can drive the position and height of the storage plate to be adjusted. Then, the screw can be engaged through the limit assembly, so that the adjusted screw cannot rotate. In this way, the Y-axis, X-axis and Z-axis are adjusted in sequence, which can quickly complete the horizontal and height adjustment of the storage plate. After adjustment, they can be locked to prevent the adjustment mechanism from loosening. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Other features, objects and advantages of the present invention will become more apparent upon reading the detailed description of non-limiting embodiments with reference to the following drawings: Figure 1 It is a schematic structural diagram of the present invention as a whole; Figure 2 This is a schematic diagram of the structure of the connection between the base, the Y-axis adjustment plate and the X-axis adjustment plate of the present invention; Figure 3 A schematic diagram of the structure of the connection between the base, the Y-axis adjustment plate and the Y-axis adjustment assembly of the present invention; Figure 4 Schematic diagram of the cross-sectional structure of the Y-axis adjustment assembly of the present invention; Figure 5 A schematic diagram of the structure of the connection between the Y-axis adjustment plate and the X-axis adjustment plate of the present invention; Figure 6 Schematic diagram of the structure of the X-axis adjustment assembly of the present invention; Figure 7 This is a schematic diagram of the structure of the connection between the X-axis adjustment plate and the storage plate of the present invention; Figure 8 It is a structural schematic diagram of the X-axis adjustment plate and the lifting mechanism of the present invention; Figure 9 Schematic diagram of the structure of the limit assembly of the present invention; Figure 10 This is a schematic structural diagram of the mounting plate and mounting assembly of the present invention; In the picture: 1. Base; 101. Notch; 102. First fixed axis; 2. Y-axis adjustment plate; 201. Y-axis level bubble; 202. Second fixed axis; 3. Y-axis adjustment assembly; 31. First fixed frame; 32. First fixed plate; 34. First moving block; 35. First limiting ball; 37. First threaded tube; 38. First bearing; 39. First rib rod; 310. First rib groove; 311. First fixing ring; 312. First spring; 4. X-axis adjustment plate; 401. X-axis level bubble; 5. X-axis adjustment assembly; 51. Second fixed plate; 52. Second slide; 53. Second fixed frame; 54. Second movable block; 55. Second limiting ball; 56. Second threaded tube; 57. Second bearing; 58. Second rib rod; 59. Second rib groove; 510. Second fixing ring; 511. Second spring; 6. Storage board; 7. Support assembly; 71. Support tube; 72. Support rod; 8. Lifting mechanism; 81. Bearing seat; 83. Screw; 84. Z-axis adjustment assembly; 85. Limit assembly; 841. Threaded ring; 842. Fixing bolt; 843. Connecting rod; 844. Fixing piece; 851, fixing seat; 852, through hole; 853, groove; 854, limit block; 855, third spring; 856, limit bolt; 9. Mounting plate; 91. Jack; 10. Installation assembly; 1001. U-shaped hanging plate; 1002. Inward groove; 1003. Insert rod; 1004. Positioning bolt. DETAILED DESCRIPTION

[0016] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0017] See also Figures 1-10The present invention provides a technical solution: a correction mechanism for installing electrical equipment, comprising a base 1, which is configured as a shell with an opening upward, a first X-axial fixed shaft 102 is provided on the rear side of the inner wall of the base 1, a Y-axis adjustment plate 2 is rotatably sleeved on the first fixed shaft 102, a second Y-axial fixed shaft 202 is fixedly installed on the left end of the top of the Y-axis adjustment plate 2, an X-axis adjustment plate 4 is rotatably sleeved on the second fixed shaft 202, a placement plate 6 parallel to the X-axis adjustment plate 4 is provided above the X-axis adjustment plate 4, a lifting mechanism 8 is provided between the placement plate 6 and the X-axis adjustment plate 4, vertical mounting plates 9 are fixedly installed at the two corners at the rear end of the top of the base 1, and two mounting components 10 are clamped on the back of each mounting plate 9.

[0018] like Figure 1 and Figure 2 As shown, notches 101 are provided on both sides of the base 1, a Y-axis adjustment component 3 is arranged between the bottom inside the base 1 and the bottom of the front end of the Y-axis adjustment plate 2, a Y-axis level bubble 201 is fixedly installed at the center of the left side of the Y-axis adjustment plate 2, an X-axis adjustment component 5 is arranged between the top of the right end of the Y-axis adjustment plate 2 and the bottom of the right end of the X-axis adjustment plate 4, and an X-axis level bubble 401 is fixedly installed at the center of the front side of the X-axis adjustment plate 4.

[0019] like Figure 2 、 Figure 3 and Figure 4As shown, the Y-axis adjustment assembly 3 includes a first fixed frame 31, two first fixed plates 32, a first moving block 34, a first threaded tube 37 and a first ridge rod 39. The first fixed frame 31 is fixedly installed at the bottom of the inner cavity of the base 1 in a U shape, and an inclined first through-hole extending into the interior is opened on the front side of the base 1. A first bearing 38 is fixedly installed in the first through-hole, and a first rod groove is opened at the center of the inner side of the horizontal part of the first fixed frame 31. A first ridge groove 310 is opened at the inner end of the first rod groove. The first threaded tube 37 is rotatably inserted into the first through-hole and fixedly connected to the inner ring wall of the first bearing 38. One end of the first threaded tube 37 located inside the base 1 is rotatably inserted into the first rod groove. The first ridge rod 39 is movable and penetrates and is inserted into the interior of the first threaded tube 37, and one end of the first ridge rod 39 penetrates the first threaded tube 37 and can be inserted into the first ridge groove 310. A first fixing ring 311 is fixedly installed at one end of the first threaded tube 37 located outside the base 1, and the end of the first ridge rod 39 is connected to the first fixing ring The first spring 312 is fixedly connected between the two ends of the first screw thread tube 37 and the second spring 311. The first moving block 34 is arranged between the first fixed frame 31 and threadedly sleeved on the first screw thread tube 37. The two first fixing plates 32 are fixedly mounted on the bottom of the Y-axis adjustment plate 2, and the two first fixing plates 32 are respectively located on both sides of the first moving block 34. A first sliding groove is opened on the inner side of the two first fixing plates 32, and a first limiting ball 35 is fixedly mounted on the top of the two sides of the first moving block 34 and is respectively located in the two first sliding grooves. The first threaded tube 37 and the first ridge rod 39 are both in an upward tilted state. The Y-axis adjustment assembly 3 drives the first threaded tube 37 and the first moving block 34 to rotate by pulling out the first ridge rod 39 to connect the thread and rotate, so that the first moving block 34 moves to adjust the angle of the Y-axis adjustment plate 2. The Y-axis level bubble 201 is used to judge the horizontal state of the Y-axis. After loosening the first ridge rod 39, it is pulled by the first spring 312 so that its end is inserted and engaged in the first ridge groove 310 to fix its position.

[0020] like Figure 1 、 Figure 5 and Figure 6As shown, the X-axis adjustment assembly 5 includes two second fixed plates 51, a second fixed frame 53, a second moving block 54, a second threaded tube 56 and a second ridge rod 58. The second fixed frame 53 is fixedly installed at the right end of the top of the Y-axis adjustment plate 2. A second through-hole is opened at the right end of the second fixed frame 53. A second bearing 57 is fixedly installed in the second through-hole. A second rod groove is opened on the inner wall of the left end of the second fixed frame 53. A second ridge groove 59 is opened at the inner end of the second rod groove. The second threaded tube 56 is rotatably inserted into the second through-hole and fixedly connected to the inner ring wall of the second bearing 57. One end of the second threaded tube 56 located in the second fixed frame 53 is rotatably inserted into the second rod groove. The second ridge rod 58 is movable and inserted through the second threaded tube 56. One end of the second ridge rod 58 can be inserted into the second ridge groove 59. A second fixing ring 510 is fixedly installed at one end of the outer portion of 53, and a second spring 511 sleeved on the second threaded tube 56 is fixedly connected between the second fixing ring 510 and the head of the second edge rod 58, and the second movable block 54 is threadedly sleeved on the second threaded tube 56. The two second fixing plates 51 are fixedly installed at the bottom of the right end of the X-axis adjustment plate 4, and the two second fixing plates 51 are respectively located on both sides of the second movable block 54. An inclined second slide groove 52 is provided on the inner side of the two second fixing plates 51, and second limiting balls 55 respectively located in the two second slide grooves 52 are fixedly installed on the top of both sides of the second movable block 54. The principle of the X-axis adjustment assembly 5 is similar to that of the Y-axis adjustment assembly 3. It also adopts threaded transmission and limiting structure, which can effectively adjust the angle of the X-axis adjustment plate 4, thereby adjusting the X-axis adjustment plate 4 to a horizontal state.

[0021] like Figure 7 and Figure 8 As shown, the lifting mechanism 8 includes two bearing seats 81, a screw 83 and two groups of Z-axis adjustment components 84. The two bearing seats 81 are respectively fixedly installed at the middle positions of the two ends of the top of the X-axis adjustment plate 4. The screw 83 passes through and is fixedly inserted between the two bearing seats 81. A positive thread is provided on the left part of the outer wall of the screw 83, and a negative thread is provided on the right part of the outer wall of the screw 83. The two groups of Z-axis adjustment components 84 are respectively provided at the positive thread and negative thread parts of the outer wall of the screw 83. The lifting mechanism 8 uses the positive and negative threads on the screw 83 to drive the two groups of Z-axis adjustment components 84 to move and adjust.

[0022] like Figure 7 and Figure 8As shown, the Z-axis adjustment assembly 84 includes a threaded ring 841, two fixing bolts 842 and two connecting rods 843. The threaded ring 841 is threadedly sleeved on the threaded part of the screw 83, and the two fixing bolts 842 are fixedly connected to both sides of the threaded ring 841. The two connecting rods 843 are respectively rotatably sleeved on the ends of the two fixing bolts 842 away from the threaded ring 841, and the tops of the two connecting rods 843 are rotatably connected with fixing parts 844. The fixing parts 844 at the ends of the four connecting rods 843 in the two sets of Z-axis adjustment assemblies 84 are respectively fixedly connected to the four corners of the bottom of the storage plate 6. A limiting assembly 85 sleeved on the center of the screw 83 is provided at the center of the top of the X-axis adjustment plate 4. The horizontal height of the storage plate 6 is adjusted by changing the angle of the connecting rod 843, and the screw 83 is locked by the limiting assembly 85. The design is ingenious and reasonable.

[0023] like Figure 7 、 Figure 8 and Figure 9 As shown, the limiting assembly 85 includes a fixing seat 851, a limiting block 854 and a limiting bolt 856. The fixing seat 851 is fixedly installed on the X-axis adjustment plate 4, and a through hole 852 is provided on the side of the fixing seat 851. The screw 83 is inserted into the through hole 852. Tooth grooves are evenly provided on the outer wall of the screw 83 located inside the through hole 852. A groove 853 is provided on one side of the inner wall of the through hole 852. The limiting block 854 is located in the groove 853. One end of the limiting block 854 is set to an arc groove that matches the diameter of the screw 83. Teeth that match the tooth groove are provided in the arc groove. The limiting block 854 is provided with teeth. One end can be engaged in the tooth groove of the outer wall of the screw 83, and a third spring 855 is fixedly connected between the other end of the limit block 854 and the inner wall of the groove 853. A threaded hole connected to the groove 853 is opened on the outer side of the fixing seat 851, and the limit bolt 856 is threadedly inserted in the threaded hole and rests on the side of the limit block 854. Turning the limit bolt 856 pushes the limit block 854 to move outward from the groove 853, so that the teeth at one end of the limit block 854 are engaged with the tooth groove on the outer wall of the screw 83, so that the screw 83 is constrained and cannot rotate, thereby fixing the adjusted angle of the storage plate 6.

[0024] like Figure 1 、 Figure 7 and Figure 8 As shown, support assemblies 7 are provided between the four corners of the bottom of the storage plate 6 and the four corners of the top of the X-axis adjustment plate 4. The support assembly 7 includes a support tube 71 and a support rod 72 movably plugged in therein. The top end of the support rod 72 is fixedly connected to the corner of the bottom of the storage plate 6, and the bottom end of the support tube 71 is fixedly connected to the corner of the top of the X-axis adjustment plate 4. Through the coordinated connection of the support rod 72 and the support tube 71, the four corners of the storage plate 6 can be supported, making the storage plate 6 more stable during the lifting process.

[0025] like Figure 1 and Figure 10 As shown, the back of the two mounting plates 9 are provided with equidistantly distributed outer protrusions, and a left-right through-hole 91 is provided at the end of each outer protrusion. The mounting assembly 10 is plugged into and matched with two adjacent outer protrusions at different positions, so that the positions of the two mounting assemblies 10 on the same mounting plate 9 can be appropriately adjusted according to the situation.

[0026] like Figure 1 and Figure 10 As shown, the mounting assembly 10 includes a U-shaped hanging plate 1001, two insertion rods 1003 and positioning bolts 1004. The U-shaped hanging plate 1001 is provided with two recessed grooves 1002 that are adapted to the shape of the external protrusions on the side near the mounting plate 9. The two insertion rods 1003 are fixedly installed at one end of the two recessed grooves 1002, and the two insertion rods 1003 can pass through and be inserted into the sockets 91 on the two adjacent external protrusions on the back side of the mounting plate 9. A nut is threadedly sleeved on one end of the insertion rod 1003 passing through the socket 91, and the positioning bolt 1004 is threadedly inserted into the back side of the U-shaped hanging plate 1001. By using the insertion rods 1003 in the two recessed grooves 1002 on the side of the U-shaped hanging plate 1001 to be inserted into the sockets 91 on two adjacent external protrusions at different positions, it can be appropriately adjusted according to the mounting frame of the inverter, and then locked with nuts, and then the U-shaped hanging plate 1001 is hung on the mounting frame and installed and connected with the positioning bolts 1004.

[0027] Although this specification is described according to implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A correction mechanism for installing electrical equipment, comprising a base (1), characterized in that: The base (1) is configured as a shell with an opening facing upward, a first X-axis fixed shaft (102) is provided on the rear side of the inner wall of the base (1), a Y-axis adjustment plate (2) is rotatably sleeved on the first fixed shaft (102), a second Y-axis fixed shaft (202) is fixedly installed on the left end of the top of the Y-axis adjustment plate (2), an X-axis adjustment plate (4) is rotatably sleeved on the second fixed shaft (202), a storage plate (6) parallel to the X-axis adjustment plate (4) is provided above the X-axis adjustment plate (4), a lifting mechanism (8) is provided between the storage plate (6) and the X-axis adjustment plate (4), vertical mounting plates (9) are fixedly installed at two corners at the rear end of the top of the base (1), and two mounting components (10) are clamped on the back of each mounting plate (9).

2. The electrical equipment installation correction mechanism according to claim 1, characterized in that: Notches (101) are provided on both sides of the base (1), a Y-axis adjustment assembly (3) is provided between the bottom inside the base (1) and the bottom of the front end of the Y-axis adjustment plate (2), a Y-axis level bubble (201) is fixedly installed at the center of the left side of the Y-axis adjustment plate (2), an X-axis adjustment assembly (5) is provided between the top of the right end of the Y-axis adjustment plate (2) and the bottom of the right end of the X-axis adjustment plate (4), and an X-axis level bubble (401) is fixedly installed at the center of the front side of the X-axis adjustment plate (4).

3. The electrical equipment installation correction mechanism according to claim 2, characterized in that: The Y-axis adjustment assembly (3) includes a first fixed frame (31), two first fixed plates (32), a first moving block (34), a first threaded tube (37) and a first rib (39), wherein the first fixed frame (31) is fixedly mounted at the bottom of the inner cavity of the base (1) in a U-shape, a first inclined opening extending to the interior of the base (1) is provided on the front side of the base (1), a first bearing (38) is fixedly mounted in the first opening, a first rod groove is provided at the center of the inner side of the horizontal portion of the first fixed frame (31), a first rib (310) is provided at the inner end of the first rod groove, the first threaded tube (37) is rotatably inserted into the first opening and fixedly connected to the inner wall of the first bearing (38), one end of the first threaded tube (37) located inside the base (1) is rotatably inserted into the first rod groove, the first rib (39) is movable and penetrates and is inserted into the interior of the first threaded tube (37), and the first rib (39) penetrates the first threaded tube (3 7) can be inserted into the first ridge groove (310), and a first fixing ring (311) is fixedly installed on the end of the first threaded tube (37) located outside the base (1), and a first spring (312) sleeved on the first threaded tube (37) is fixedly connected between the end of the first ridge rod (39) and the first fixing ring (311). The first moving block (34) is set between the first fixing frame (31) and threadedly sleeved on the first threaded tube (37). The two first fixing plates (32) are fixedly installed at the bottom of the Y-axis adjustment plate (2), and the two first fixing plates (32) are respectively located on both sides of the first moving block (34). A first sliding groove is opened on the inner side of the two first fixing plates (32), and a first limiting ball (35) located in the two first sliding grooves is fixedly installed on the top of both sides of the first moving block (34). The first threaded tube (37) and the first ridge rod (39) are both in an upward tilted state.

4. The electrical equipment installation correction mechanism according to claim 2, characterized in that: The X-axis adjustment assembly (5) includes two second fixed plates (51), a second fixed frame (53), a second moving block (54), a second threaded tube (56) and a second ridged rod (58), wherein the second fixed frame (53) is fixedly mounted on the right end of the top of the Y-axis adjustment plate (2), a second opening is provided at the right end of the second fixed frame (53), a second bearing (57) is fixedly mounted in the second opening, a second rod groove is provided on the inner wall of the left end of the second fixed frame (53), a second ridged groove (59) is provided at the inner end of the second rod groove, the second threaded tube (56) is rotatably inserted into the second opening and fixedly connected to the inner wall of the second bearing (57), and one end of the second threaded tube (56) located in the second fixed frame (53) is rotatably inserted into the second rod groove, the second ridged rod (58) is movable and inserted through the second threaded tube (56), and the second ridged rod (58) is movable and inserted through the second threaded tube (56), and the second ridged rod (59) is provided. One end of the rod (58) can be inserted into the second ridge groove (59), and a second fixing ring (510) is fixedly installed on one end of the second threaded tube (56) located outside the second fixed frame (53). A second spring (511) sleeved on the second threaded tube (56) is fixedly connected between the second fixing ring (510) and the head of the second ridge rod (58). The second moving block (54) is threadedly sleeved on the second threaded tube (56). The two second fixing plates (51) are fixedly installed at the bottom of the right end of the X-axis adjustment plate (4), and the two second fixing plates (51) are respectively located on both sides of the second moving block (54). An inclined second slide groove (52) is opened on the inner side of the two second fixing plates (51), and second limiting balls (55) respectively located in the two second slide grooves (52) are fixedly installed on the top of both sides of the second moving block (54).

5. The electrical equipment installation correction mechanism according to claim 1, characterized in that: The lifting mechanism (8) includes two bearing seats (81), a screw (83) and two groups of Z-axis adjustment components (84). The two bearing seats (81) are fixedly installed at the middle positions of the two ends of the top of the X-axis adjustment plate (4). The screw (83) passes through and is fixedly inserted between the two bearing seats (81). A positive thread is provided on the left part of the outer wall of the screw (83), and a negative thread is provided on the right part of the outer wall of the screw (83). The two groups of Z-axis adjustment components (84) are respectively provided at the positive thread and negative thread parts of the outer wall of the screw (83).

6. The electrical equipment installation correction mechanism according to claim 5, characterized in that: The Z-axis adjustment assembly (84) includes a threaded ring (841), two fixing bolts (842) and two connecting rods (843), wherein the threaded ring (841) is threadedly sleeved on the threaded portion of the screw rod (83), the two fixing bolts (842) are fixedly connected to both sides of the threaded ring (841), the two connecting rods (843) are respectively rotatably sleeved on the ends of the two fixing bolts (842) away from the threaded ring (841), and the top ends of the two connecting rods (843) are rotatably connected with fixing members (844), the fixing members (844) at the ends of the four connecting rods (843) in the two sets of Z-axis adjustment assemblies (84) are respectively fixedly connected to the four corners of the bottom of the storage plate (6), and a limiting assembly (85) sleeved on the center of the screw rod (83) is provided at the center of the top of the X-axis adjustment plate (4).

7. The electrical equipment installation correction mechanism according to claim 6, characterized in that: The limiting assembly (85) includes a fixing seat (851), a limiting block (854) and a limiting bolt (856), wherein the fixing seat (851) is fixedly mounted on the X-axis adjustment plate (4), and a through hole (852) is provided on the side of the fixing seat (851), and the screw rod (83) is inserted into the through hole (852), and tooth grooves are evenly provided on the outer wall of the screw rod (83) located inside the through hole (852), and a groove (853) is provided on one side of the inner wall of the through hole (852), and the limiting block (854) is located in the groove (853), and the limiting bolt (856) is provided in the groove (853). One end of the limit block (854) is provided with an arc groove that matches the diameter of the screw (83), and teeth that match the tooth groove are provided in the arc groove. The end of the limit block (854) provided with the teeth can be engaged in the tooth groove of the outer wall of the screw (83). A third spring (855) is fixedly connected between the other end of the limit block (854) and the inner wall of the groove (853). A threaded hole communicating with the groove (853) is provided on the outer side of the fixing seat (851). The limit bolt (856) is threadedly inserted in the threaded hole and abuts against the side of the limit block (854).

8. The electrical equipment installation correction mechanism according to claim 5, characterized in that: Support assemblies (7) are provided between the four corners of the bottom of the storage plate (6) and the four corners of the top of the X-axis adjustment plate (4). The support assembly (7) comprises a support tube (71) and a support rod (72) movably connected therein. The top end of the support rod (72) is fixedly connected to the corner of the bottom of the storage plate (6), and the bottom end of the support tube (71) is fixedly connected to the corner of the top of the X-axis adjustment plate (4).

9. The electrical equipment installation correction mechanism according to claim 1, characterized in that: The backs of the two mounting plates (9) are both provided with equidistantly distributed external protrusions, and a socket (91) extending leftward and rightward is provided at the end of each external protrusion.

10. The electrical equipment installation correction mechanism according to claim 9, characterized in that: The mounting assembly (10) comprises a U-shaped hanging plate (1001), two insertion rods (1003) and a positioning bolt (1004). The U-shaped hanging plate (1001) is provided with two recessed grooves (1002) on the side close to the mounting plate (9) and adapted to the shape of the external protrusions. The two insertion rods (1003) are fixedly mounted at one end of the two recessed grooves (1002), and the two insertion rods (1003) can be inserted into the insertion holes (91) on the two adjacent external protrusions on the back of the mounting plate (9). A nut is threadedly sleeved on one end of the insertion rod (1003) that passes through the insertion hole (91). The positioning bolt (1004) is threadedly inserted into the back of the U-shaped hanging plate (1001).