A reactive power compensator that can be quickly installed
By designing reactive compensators that can adjust support tracks, sliding horizontal plates, lifters and cable connection components, the problem of low installation efficiency of reactive compensators in the prior art is solved, automatic connection and rapid fixation are achieved, and installation efficiency and connection quality are improved.
Patent Information
- Application Number
- CN202411348755.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2044-09-26
AI Technical Summary
During the installation process, existing reactive compensators have difficulty in connecting due to inappropriate cable length, low efficiency, and low manual stripping efficiency, which affects installation efficiency.
A reactive compensator including adjustable support tracks, sliding horizontal plates, lifters and cable connection components is designed to enable automated connection between the reactive compensator and electronics and fast fixation of cables.
It realizes rapid installation of reactive compensator, improves installation efficiency and connection quality, reduces the demand for manual operation, and improves the operation efficiency of electronic power supply systems.
Smart Images

Figure CN119340857B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of reactive power compensators, and particularly to a quickly installable reactive power compensator. Background Art
[0002] A reactive power compensator is a compensation device, which plays the role of improving the power factor of the power grid, reducing the losses of the power supply transformer and transmission lines, improving the power supply efficiency, and improving the power supply environment in the electronic power supply system. Therefore, the reactive power compensation device plays a very important and indispensable role in the power supply system. Reasonably selecting the compensation device can minimize the losses of the network and improve the power grid quality. On the contrary, if it is selected or used improperly, it may cause many factors such as voltage fluctuations and harmonic increase in the power supply system.
[0003] A reactive power compensator needs to form a path through cables with other electronic components to form a loop and function. However, the distances between the reactive power compensator and different electronic components are different, and the required cable lengths are different. If the cable is too short, it will affect the connection between the reactive power compensator and the electronic component. If it is too long, it will cause waste of resources and make the cables of the power supply system messy, which is not conducive to the operation of the power supply system. At the same time, the cable needs to be peeled at the position where it is connected to the reactive power compensator or the electronic component to make the cable function. The efficiency of manual wire stripping is low, which will greatly affect the installation efficiency of the reactive power compensator and thus affect the operation of the electronic power supply system.
[0004] Therefore, it is necessary to provide a quickly installable reactive power compensator to solve the above problems. Summary of the Invention
[0005] To achieve the above object, the present invention provides the following technical solution: a quickly installable reactive power compensator, comprising:
[0006] Adjustable support rails, two groups are arranged in a mirror image, and sliding horizontal plates are slidably arranged on the opposite sides of the two groups of adjustable support rails. An elevator is fixedly arranged between the two sliding horizontal plates, and a first driving motor is fixedly arranged on one of the sliding horizontal plates. A driving hydraulic cylinder is arranged in the middle of the elevator;
[0007] Cable connection assembly, vertically and slidably assembled on one side of the two sliding horizontal plates.
[0008] Further, as a preference, each group of adjustable support rails is composed of multiple spliced rail blocks, and support hydraulic cylinders are fixedly embedded on the spliced rail blocks on both sides of each group of adjustable support rails. A fixed suction cup is fixedly arranged at the piston end of each support hydraulic cylinder.
[0009] Further, as a preference, the cable connection assembly includes:
[0010] There are two sets of fixed plates arranged in mirror image. They are all slidably arranged on the corresponding sliding horizontal plates through the first automatic sliders installed by embedding. A lifting track is fixedly arranged on the lower fixed plate, and the other end of the lifting track is slidably arranged on the upper fixed plate.
[0011] The second automatic slider is slidably arranged on the lifting track. A second driving motor is fixedly assembled on the other side of the second automatic slider, and a cable positioning and tightening assembly is fixedly assembled on the output shaft of the second driving motor.
[0012] Furthermore, preferably, the lifting track is composed of an original track, an upper connecting track, and a supplementary chain track. One end of the original track is fixed on the lower fixed plate, and the other end is slidably arranged on the upper fixed plate. A supplementary chain track is rotatably connected to this end, and the supplementary chain track is slidably embedded in the chain track groove opened on the upper fixed plate.
[0013] The upper connecting track is arranged above the original track and is fixedly assembled on the upper fixed plate.
[0014] Furthermore, preferably, the cable positioning and tightening assembly includes a rotating plate, which is fixedly assembled on the output shaft of the second driving motor. A cable tightening assembly is slidably assembled on the rotating plate, and a positioning wire feeding assembly is fixedly assembled at the same time. A connecting block is fixedly assembled on the positioning wire feeding assembly, and a flipping cable anti-damage device is fixedly assembled on the connecting block.
[0015] Furthermore, preferably, the cable tightening assembly includes a horizontal track, which is slidably assembled on the rotating plate. A vertical track is fixedly assembled on the horizontal track. A rotating driver is slidably arranged on the vertical track. A tightening sleeve is fixedly arranged inside the rotating driver, and a bolt tightener is fixedly assembled on the tightening sleeve.
[0016] Furthermore, preferably, the positioning wire feeding assembly includes:
[0017] A fixing frame is fixedly assembled on the rotating plate. A cable shaft anti-detachment block is detachably embedded on the fixing frame. A cable reel is arranged at the lower end of the cable shaft anti-detachment block. A cable is wound on the cable reel. The output end of the cable passes through the fixing frame and is connected to a cable stripping and cutting device, and the cable stripping and cutting device is fixedly assembled at the lower end of the fixing frame.
[0018] An adjustable connecting rod is fixedly assembled on the fixing frame, and a visual recognition device is rotatably arranged at the other end of the adjustable connecting rod.
[0019] Furthermore, preferably, the flipping cable anti-damage device includes:
[0020] A fixed bearing block is fixedly assembled on the connection block. A cable anti-damage block is fixedly assembled on the fixed bearing block. One end of the cable anti-damage block is fixedly assembled with a connecting hinge. The other leaf of the connecting hinge is fixedly provided with another group of cable anti-damage blocks. And the rotating shaft of the connecting hinge is fixedly assembled on the output shaft of a third driving motor. The third driving motor is fixedly assembled on the cable anti-damage block fixed to the fixed bearing block;
[0021] The other end of the other group of cable anti-damage blocks is provided with a connection fixator;
[0022] A plurality of groups of cable fixing wheels are evenly arranged on the inner sides of the two groups of cable anti-damage blocks.
[0023] Compared with the prior art, the present invention provides a reactive power compensator that can be quickly installed, and has the following beneficial effects:
[0024] In the present invention, an adjustable support track spliced by splicing track blocks is provided, so that the overall length of the device can be adjusted according to actual conditions, thereby improving the practicability and universality of the device. The fixed suction cup enables the device to be stably fixed in the electronic power supply system, thus ensuring the progress of the installation work. The setting of the lifter can meet different distance requirements between the reactive power compensator and the connected electronic components. At the same time, the setting of the sliding horizontal plate can cope with the complex situation inside the electronic power supply system, thereby improving the installation efficiency and the practicability of the device. The cable connection assembly can cut the cable into appropriate lengths, and accurately fix it in the corresponding terminals in the case of peeling both ends, thereby realizing the automatic connection between the reactive power compensator and the electronic components, and improving the connection efficiency on the premise of ensuring the connection quality.
[0025] In the present invention, the first automatic slider is provided on the cable connection assembly, so that when the sliding horizontal plate runs to the limit position, the cable connection assembly can be adjusted on the sliding horizontal plate through the first automatic slider thereon, thereby further expanding the moving range of the device and avoiding the situation where connection cannot be carried out. The second automatic slider is used to drive the cable positioning and tightening assembly to move, so that the cable on the cable positioning and tightening assembly can connect the reactive power compensator and the electronic components. The setting of the second driving motor enables the cable positioning and tightening assembly to complete the steering work, so as to better connect the terminals at different positions. The lifting track can extend or shorten with the lifting of the lifter, so that the second automatic slider thereon can slide better.
[0026] In the present invention, the cable tightening component provided on the cable positioning and tightening assembly can tighten the terminals with the installed cables, thereby ensuring the installation quality. The positioning and wire feeding assembly can cut the cable into connecting cables of appropriate lengths and strip the two ends of the connecting cables, thereby ensuring the smooth operation of the electronic components and the reactive power compensator. At the same time, one end of the cable is first fed into the corresponding terminal. The cable damage preventer can protect and clamp the cable during the process of installing one end of the cable and the rotation of the cable positioning and tightening assembly, and prevent other components from damaging the cable during the sliding process. Finally, the other end of the cable is fed into the corresponding terminal. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a schematic structural diagram of a quickly installable reactive power compensator;
[0028] Figure 2 It is a schematic structural diagram of a cable connection assembly;
[0029] Figure 3 It is a schematic structural diagram of a lifting track;
[0030] Figure 4 It is a schematic structural diagram of a cable positioning and tightening assembly;
[0031] Figure 5 It is a schematic structural diagram of a cable tightening component;
[0032] Figure 6 It is a schematic structural diagram of a positioning and wire feeding assembly;
[0033] Figure 7 It is a schematic structural diagram of a flipping cable damage preventer;
[0034] In the figure: 1. Adjustable support track; 2. Sliding horizontal plate; 3. First driving motor; 4. Lifter; 5. Driving hydraulic cylinder; 6. Cable connection assembly; 7. Splicing track block; 8. Support hydraulic cylinder; 9. Fixed suction cup; 61. Fixed plate; 62. First automatic slider; 63. Lifting track; 64. Second automatic slider; 65. Second driving motor; 66. Cable positioning and tightening assembly; 67. Chain track groove; 68. Original track; 69. Upper connecting track; 610. Supplementary chain track; 661. Rotating plate; 662. Cable tightening assembly; 663. Positioning wire feeding assembly; 664. Connecting block; 665. Flipping cable anti-damage device; 6621. Horizontal track; 6622. Vertical track; 6623. Rotating driver; 6624. Fastening sleeve; 6625. Bolt fastener; 6631. Fixed frame; 6632. Cable shaft anti-detachment block; 6633. Cable reel; 6634. Cable; 6635. Cable stripping and cutting device; 6636. Adjustable connecting rod; 6637. Visual identifier; 6651. Fixed bearing block; 6652. Cable anti-damage block; 6653. Connecting hinge; 6654. Third driving motor; 6655. Connecting fixture; 6656. Cable fixed wheel. Detailed implementation
[0035] Please refer to Figures 1 to 7 , the present invention provides a reactive power compensator that can be quickly installed, including:
[0036] The adjustable support track 1 is provided with two groups in mirror image, and sliding horizontal plates 2 are slidably arranged on the opposite sides of the two groups of adjustable support tracks 1. A lifter 4 is fixedly arranged between the two sliding horizontal plates 2, and a first driving motor 3 is fixedly arranged on one of the sliding horizontal plates 2. A driving hydraulic cylinder 5 is arranged in the middle of the lifter 4;
[0037] The cable connection assembly 6 is vertically slidably assembled on one side of the two sliding horizontal plates 2;
[0038] As a preferred embodiment, the adjustable support track 1 can fix the device in the component where the reactive power compensator is to be installed, and a clamping and positioning system is externally connected to one of the adjustable support tracks 1, which can position and place the reactive power compensator at a specified position. The setting of the lifter 4 can meet different distance requirements between the reactive power compensator and the connected electronic components. At the same time, the setting of the sliding horizontal plate 2 can cope with the complex situation inside the electronic power supply system, thereby improving the installation efficiency and the practicality of the device. The cable connection assembly 6 can cut the cable into a suitable length, and accurately fix it in the corresponding terminal after stripping the two ends, so as to realize the automatic connection between the reactive power compensator and the electronic components, and improve the connection efficiency while ensuring the connection quality.
[0039] Furthermore, each adjustable support rail 1 is composed of multiple groups of spliced rail blocks 7. Support hydraulic cylinders 8 are fixedly embedded on the spliced rail blocks 7 on both sides of each adjustable support rail 1, and a fixed suction cup 9 is fixedly arranged at the piston end of each support hydraulic cylinder 8;
[0040] As a preferred embodiment, the setting of the spliced rail blocks 7 enables the overall length of the device to be adjusted according to actual situations, thereby improving the practicability and universality of the device. The fixed suction cup 9 enables the device to be stably fixed within the electronic power supply system, thus ensuring the progress of the installation work.
[0041] Furthermore, the cable connection assembly 6 includes:
[0042] Fixing plates 61, two groups are arranged in mirror image. They are both slidably arranged on the corresponding sliding horizontal plates 2 through the first automatic sliders 62 installed by embedding. A lifting rail 63 is fixedly arranged on the lower fixing plate 61, and the other end of the lifting rail 63 is slidably arranged on the upper fixing plate 61;
[0043] A second automatic slider 64 is slidably arranged on the lifting rail 63. On the other side of the second automatic slider 64, a second driving motor 65 is fixedly assembled. A cable positioning and tightening assembly 66 is fixedly assembled on the output shaft of the second driving motor 65;
[0044] As a preferred embodiment, the setting of the first automatic slider 62 enables the cable connection assembly 6 to be adjusted on the sliding horizontal plate 2 through the first automatic slider 62 thereon when the sliding horizontal plate 2 runs to the limit position, thereby further expanding the moving range of the device and avoiding the situation where connection cannot be made. The second automatic slider 64 is used to drive the cable positioning and tightening assembly 66 to move, so that the cables on the cable positioning and tightening assembly 66 can connect the reactive power compensator and the electronic components. The setting of the second driving motor 65 enables the cable positioning and tightening assembly 66 to complete the steering work, thereby achieving better connection for terminals at different positions.
[0045] Furthermore, the lifting rail 63 is composed of an original rail 68, an upper connecting rail 69, and a supplementary chain rail 610. One end of the original rail 68 is fixed on the lower fixing plate 61, and the other end is slidably arranged on the upper fixing plate 61. A supplementary chain rail 610 is rotatably connected to this end, and the supplementary chain rail 610 is slidably embedded in the chain rail groove 67 opened on the upper fixing plate 61;
[0046] The upper connecting rail 69 is arranged above the original rail 68 and is fixedly assembled on the upper fixing plate 61;
[0047] As a preferred embodiment, the supplementary track 610 can extend the actual length of the lifting track 63, so that it can be extended or shortened along with the lifting of the lifter 4, so that the second automatic slider 64 thereon can slide better. The setting of the upper connecting track 69 enables the second automatic slider 64 to drive the cable positioning and tightening assembly 66 to reach the upper limit position, so as to connect the reactive power compensator or electronic components above.
[0048] Furthermore, the cable positioning and tightening assembly 66 includes a rotating plate 661, which is fixedly assembled on the output shaft of the second driving motor 65. A cable tightening assembly 662 is slidably assembled on the rotating plate 661, and a positioning wire feeding assembly 663 is fixedly assembled at the same time. A connecting block 664 is fixedly assembled on the positioning wire feeding assembly 663, and a flipping cable damage preventer 665 is fixedly assembled on the connecting block 664;
[0049] As a preferred embodiment, the cable tightening assembly 662 can tighten the terminals with the cables installed thereon to ensure the installation quality. The positioning wire feeding assembly 663 can cut the cable into connecting cables of appropriate length and strip the two ends of the connecting cables, so as to ensure the smooth operation of the electronic components and the reactive power compensator. At the same time, one end of the cable is first fed into the corresponding terminal. The flipping cable damage preventer 665 can protect and clamp the cable during the installation of one end of the cable and the rotation of the cable positioning and tightening assembly 66 (during the rotation, the positioning wire feeding assembly 663 will send out a section of the cable to prevent the cable from being stressed during the rotation and pulling out the installed end), and at the same time prevent other components from damaging the cable during the sliding process, and finally feed the other end of the cable into the corresponding terminal.
[0050] Furthermore, the cable tightening assembly 662 includes a horizontal track 6621, which is slidably assembled on the rotating plate 661. A vertical track 6622 is fixedly assembled on the horizontal track 6621. A rotating driver 6623 is slidably arranged on the vertical track 6622. A fastening sleeve 6624 is fixedly arranged inside the rotating driver 6623. A bolt fastener 6625 is fixedly assembled on the fastening sleeve 6624;
[0051] As a preferred embodiment, the horizontally sliding track 6621, the horizontal track 6621, the vertical track 6622 and the rotation driver 6623 together form a three-axis movement system, so as to ensure that the bolt fastener 6625 can accurately tighten the bolts of the corresponding terminals within the electronic power supply system. While the rotation driver 6623 can slide on the vertical track 6622, it can also rotate the fastener sleeve 6624, so that the bolt fastener 6625 tightens the bolt. And the actual size and shape of the bolt fastener 6625 can be adjusted according to the actual situation of the reactive power compensator and the electronic components.
[0052] Furthermore, the positioning wire feeding assembly 663 includes:
[0053] A fixed frame 6631, fixedly assembled on the rotating plate 661. A cable shaft anti-drop block 6632 is detachably embedded on the fixed frame 6631. A cable reel 6633 is arranged at the lower end of the cable shaft anti-drop block 6632. A cable 6634 is wound on the cable reel 6633. The output end of the cable 6634 passes through the fixed frame 6631 and is connected to a cable stripping and cutting device 6635. The cable stripping and cutting device 6635 is fixedly assembled at the lower end of the fixed frame 6631;
[0054] An adjustable connecting rod 6636, fixedly assembled on the fixed frame 6631. The other end of the adjustable connecting rod 6636 is rotatably provided with a visual recognition device 6637;
[0055] As a preferred embodiment, in use, the cable shaft anti-drop block 6632 is removed, the cable reel 6633 is assembled on the cable shaft anti-drop block 6632, and the free end of the cable 6634 of the cable reel 6633 is inserted into the cable stripping and cutting device 6635. Then the cable shaft anti-drop block 6632 is reinstalled to the initial position. The cable stripping and cutting device 6635 can drive the cable 6634 to extend, and during the extension process, a certain length of stripping treatment (which can ensure the connectivity between the terminal and the cable 6634 and at the same time avoid excessive exposure of the wire) is performed on this end. Then it continues to extend until the cable anti-damage device 665 is about to approach the terminal corresponding to the previous terminal. The cable stripping and cutting device 6635 performs a certain length of stripping treatment on this end and then cuts it off. Thus, the cable connection work for a group of corresponding terminals is completed. And during this process, the position determination work can be carried out through the visual recognition device 6637.
[0056] Furthermore, the cable anti-damage device 665 that can be flipped includes:
[0057] The fixed bearing block 6651 is fixedly assembled on the connecting block 664. A cable anti-damage block 6652 is fixedly assembled on the fixed bearing block 6651. One end of the cable anti-damage block 6652 is fixedly assembled with a connecting hinge 6653. The other side of the connecting hinge 6653 is fixedly provided with another set of cable anti-damage blocks 6652. The rotating shaft of the connecting hinge 6653 is fixedly assembled on the output shaft of the third driving motor 6654. The third driving motor 6654 is fixedly assembled on the cable anti-damage block 6652 fixed to the fixed bearing block 6651;
[0058] The other end of the other set of cable anti-damage blocks 6652 is provided with a connecting fixture 6655;
[0059] A plurality of groups of cable fixing wheels 6656 are evenly arranged on the inner sides of the two groups of cable anti-damage blocks 6652;
[0060] As a preferred embodiment, the settings of the two groups of cable anti-damage blocks 6652 and the cable fixing wheels 6656 therein can limit the position of the cable 6634 to avoid damage to it and cause poor power transmission effects. At the same time, the setting of the cable fixing wheels 6656 can enable the cable 6634 to retract and extend, thereby better positioning the wire feeding process. And the retraction can ensure that there is a certain margin for the cable 6634 to avoid the cable being too tight and breaking during use. The settings of the third driving motor 6654, the connecting hinge 6653 and the connecting fixture 6655 can realize the entire clamping process, avoid damage to the cable 6634 during the clamping process, and prevent it from becoming loose due to vibration during the clamping process, thereby damaging the cable 6634.
[0061] During specific implementation, the following steps are included: Select the appropriate number of splicing track blocks 7 according to the size of the electronic system to be installed in the device. Then, place the device above or below in a suitable installation position. Then, start the driving hydraulic cylinder 5 to extend the device so that the other side is also adjusted to a suitable installation position. And during this process, the lifting track 63 on the cable connection assembly will extend to adapt to the extended device. Then, drive the first driving motor 3 to move the sliding horizontal plate 2 to drive the cable assembly 6 to a suitable position (at the reactive power compensator or the electronic component interface terminal connected thereto). Then, the second automatic slider 64 will slide to the upper limit position or the lower limit position of the lifting track 63. Then, the positioning wire feeding assembly 663 will extend the cable 6634, and the front end of the cable 6634 will be skinned by the cable skinning and cutting device 6635. Then, continue to extend and feed it into the corresponding terminal. Then, the cable tightening assembly 662 will fix the cable 6634. Then, the second driving motor 65 will drive the cable positioning and tightening assembly 66 to rotate 90°. At this time, the opened flipping cable damage preventer 665 will clamp the cable to prevent it from being damaged. Then, the second automatic slider 64 will slide to the other side. At the same time, the sliding horizontal plate 2 will continue to slide to find another terminal corresponding to this terminal (the terminals of each reactive power compensator correspond to the terminals of an electronic component according to the principle of proximity). The second automatic slider 64 will slide to the lower limit position or the upper limit position of the lifting track 63. Then, the positioning wire feeding assembly 663 will extend the cable 6634, and the front end of the cable 6634 will be skinned and cut by the cable skinning and cutting device 6635. Then, the flipping cable damage preventer 665 will control the cable 6634 to continue to extend and feed it into the corresponding terminal. Then, the cable tightening assembly 662 will fix the cable 6634. Repeat the above steps until the installation of the reactive power compensator is completed.
[0062] The above is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A reactive power compensator that can be quickly installed, characterized in that: include: Two groups of adjustable support rails (1) are arranged in a mirror image, and sliding horizontal plates (2) are slidably arranged on opposite sides of the two groups of adjustable support rails (1), a lifter (4) is fixedly arranged between the two groups of sliding horizontal plates (2), and a first drive motor (3) is fixedly arranged on one group of the sliding horizontal plates (2), and a drive hydraulic cylinder (5) is arranged in the middle of the lifter (4); A cable connection assembly (6) is vertically slidably mounted on one side of the two sets of sliding horizontal plates (2); The cable connection assembly (6) comprises: The fixed plate (61) is provided with two sets of mirror images, and both are slidably arranged on the corresponding sliding horizontal plate (2) through the embedded first automatic sliding block (62); a lifting track (63) is fixedly arranged on the fixed plate (61) arranged below, and the other end of the lifting track (63) is slidably arranged on the fixed plate (61) arranged above; A second automatic slider (64) is slidably mounted on the lifting track (63); a second drive motor (65) is fixedly mounted on the other side of the second automatic slider (64); and a cable positioning and tightening assembly (66) is fixedly mounted on the output shaft of the second drive motor (65); The cable positioning and tightening assembly (66) comprises a rotating plate (661), the rotating plate (661) is fixedly mounted on the output shaft of the second driving motor (65), a cable tightening assembly (662) is slidably mounted on the rotating plate (661), and a positioning wire feeding assembly (663) is fixedly mounted on the rotating plate (661), a connecting block (664) is fixedly mounted on the positioning wire feeding assembly (663), and a flip cable damage preventer (665) is fixedly mounted on the connecting block (664); The cable tightening assembly (662) tightens the terminal of the installed cable, the positioning and wire feeding assembly (663) cuts the cable into connecting cables of appropriate length, and strips the two ends of the connecting cable. At the same time, one end of the cable is first fed into the corresponding terminal. The flip cable damage preventer (665) is installed at one end of the cable and protects the clamped cable during the rotation of the cable positioning and tightening assembly (66).
2. A reactive power compensator that can be quickly installed according to claim 1, characterized in that: Each set of adjustable support rails (1) is composed of a plurality of sets of spliced rail blocks (7), and support hydraulic cylinders (8) are fixedly embedded on the spliced rail blocks (7) on both sides of each set of adjustable support rails (1), and fixed suction cups (9) are fixedly provided on the piston ends of each set of the support hydraulic cylinders (8).
3. The reactive power compensator that can be quickly installed according to claim 1 is characterized in that: The lifting track (63) is composed of an original track (68), an upper track (69) and a supplementary chain track (610). One end of the original track (68) is fixed on a fixed plate (61) arranged below, and the other end is slidably arranged on a fixed plate (61) arranged above, and the end is rotatably connected to the supplementary chain track (610). The supplementary chain track (610) is slidably embedded in a chain track groove (67) provided on the upper fixed plate (61). The upper connecting track (69) is arranged above the original track (68) and is fixedly assembled on a fixing plate (61) arranged above.
4. The quickly installable reactive power compensator according to claim 1, characterized in that: The cable tightening assembly (662) includes a horizontal track (6621), which is slidably mounted on the rotating plate (661), and a vertical track (6622) is fixedly mounted on the horizontal track (6621), and a rotating driver (6623) is slidably mounted on the vertical track (6622), a fastener sleeve (6624) is fixedly mounted on the inner side of the rotating driver (6623), and a bolt fastener (6625) is fixedly mounted on the fastener sleeve (6624).
5. The reactive power compensator capable of rapid installation according to claim 1, characterized in that: The positioning wire feeding assembly (663) comprises: A fixed frame (6631) is fixedly mounted on the rotating plate (661), a cable shaft anti-slip block (6632) is detachably mounted on the fixed frame (6631), a cable drum (6633) is arranged at the lower end of the cable shaft anti-slip block (6632), a cable (6634) is mounted on the upper drum of the cable drum (6633), an output end of the cable (6634) passes through the fixed frame (6631) and a cable stripping and cutting device (6635), and the cable stripping and cutting device (6635) is fixedly mounted at the lower end of the fixed frame (6631); The adjustable connecting rod (6636) is fixedly mounted on the fixing frame (6631), and the other end of the adjustable connecting rod (6636) is rotatably provided with a visual identifier (6637).
6. The reactive power compensator capable of rapid installation according to claim 1, characterized in that: The flip cable damage preventer (665) comprises: A fixed bearing block (6651) is fixedly mounted on the connecting block (664); a cable anti-damage block (6652) is fixedly mounted on the fixed bearing block (6651); one end of the cable anti-damage block (6652) is fixedly mounted with a connecting hinge (6653); another set of cable anti-damage blocks (6652) is fixedly arranged on the other end of the connecting hinge (6653); a rotating shaft of the connecting hinge (6653) is fixedly mounted on the output shaft of a third driving motor (6654); and the third driving motor (6654) is fixedly mounted on the cable anti-damage block (6652) fixed to the fixed bearing block (6651); The other end of the other set of cable damage prevention blocks (6652) is provided with a connection fixture (6655); Multiple groups of cable fixing wheels (6656) are evenly arranged on the inner sides of the two groups of cable anti-damage blocks (6652).
Citation Information
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