Electric suspension hardware
By introducing the movement, flip, lift and rotate components of the metal tool into the power suspension metal tool, the problem of the inability to adjust the wire clip in the prior art is solved, and flexible adaptation to the busbars of different spacing, diameters and angles is achieved, and installation efficiency and adaptability are improved.
Patent Information
- Application Number
- CN202411962122.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2044-12-30
AI Technical Summary
The wire clips of existing power suspension gear cannot be adjusted according to the actual position of the pipe busbar, which makes it difficult to meet the design and installation requirements during the pipe busbar installation process, and cannot adapt to pipe busbars of different diameters and angles.
A power suspension gold rig is designed, using a U-shaped metal suspension rack, a metal moving component, a metal flip component, a metal lifting component and a metal rotating component. Through the cooperation of these components, the horizontal direction, vertical direction and angle adjustment of the wire clamp component is achieved.
It realizes flexible adaptation between the wire clamp assembly and the tube busbar, can be applied to tube busbars of different spacing and diameters, and meets the installation needs of different angles without replacing the metal tool, and improves installation efficiency and adaptability.
Smart Images

Figure CN119482235B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of electric power fittings, and in particular to an electric power suspension fitting. Background Art
[0002] The tubular busbar is one of the key equipment (materials) in the power transmission and transformation system, and plays a vital role in the safe and reliable operation of the power transmission and transformation system and power equipment. The power fittings are metal accessories that connect and combine various devices in the power system and play a role in transmitting mechanical loads, electrical loads and certain protective functions. According to the main performance and use of power fittings, the fittings can be roughly divided into connecting fittings, connecting fittings, protective fittings, fixing fittings and suspension fittings, among which the suspension fittings are also called supporting fittings or suspension wire clamps, which are mainly used to suspend conductors and jumpers on insulator strings or power towers.
[0003] When installing the busbar inside the valve hall of the converter station, it is necessary to fix the suspension fittings on the top of the valve hall, and then clamp the busbars in multiple wire clamps on the suspension fittings. The structure of the existing suspension fittings is shown in the attached figure. Figure 1 As shown, it has a U-shaped bracket, on which a plurality of wire clamps are fixedly mounted, and the above-mentioned suspension hardware can clamp and fix the tubular busbar in the horizontal direction.
[0004] However, during the actual installation of the busbar, there will inevitably be deviations between the busbar and the wire clamps. Since the positions of the multiple wire clamps on the bracket cannot be adjusted, it will cause a situation where the design and installation requirements cannot be met. Therefore, for the above situation, it is necessary to bend, shift, etc. on the busbar, or replace other electrical fittings, which is costly.
[0005] In addition, the existing wire clamps are composed of two semicircular clamps, but the size of the clamps cannot be adjusted, so they can only clamp and fix the busbars of matching diameters. When there are busbars of different diameters in the designed line, or if it is necessary to clamp and fix the busbars in the vertical direction or at a certain angle, it is necessary to prepare electrical fittings of various specifications.
[0006] Therefore, based on the defects of the prior art, the present invention provides an electric suspension fitting to solve the above problems. Summary of the invention
[0007] In view of the above situation, in order to overcome the defects of the prior art, the present invention provides an electric power suspension fitting to solve the problem that the wire clamp of the existing busbar suspension fitting cannot be adjusted according to the actual position of the busbar.
[0008] In order to achieve the above object, the technical solution adopted by the present invention is:
[0009] An electric power suspension hardware comprises a U-shaped hardware suspension frame, both ends of the hardware suspension frame are fixedly installed with hanger bolt plates, a plurality of hardware base plates are slidably installed on the hardware suspension frame, a hardware moving assembly is installed between each of the hardware base plates and the hardware suspension frame, a hardware flipping arc plate is installed on the top of the hardware base plate, a hardware flipping assembly is circumferentially slidably installed on the outer side surface of the hardware flipping arc plate, a wire clamp assembly is installed on the top of the hardware flipping assembly, the wire clamp assembly can clamp and fix the tube busbar, the hardware flipping assembly can adjust the angle of the wire clamp assembly on the hardware flipping arc plate, a hardware lifting assembly capable of moving the hardware flipping arc plate up and down is installed on the top surface of the hardware base plate, and a hardware rotating assembly capable of rotating the hardware flipping arc plate circumferentially is provided on the top surface of the hardware base plate.
[0010] Preferably, the hardware moving assembly includes a hardware moving slide rail, a hardware moving bracket, a pulley hollow shaft, a hardware moving pulley, a moving positioning screw hole, and a moving positioning bolt;
[0011] The front and rear sides of the hardware suspension frame are provided with U-shaped hardware moving slide rails, and two hardware moving brackets are fixedly installed on the front and rear ends of the bottom surface of each hardware base plate, and the bottom end of each hardware moving bracket is penetrated and fixedly installed with a pulley hollow shaft, and the outer side of each pulley hollow shaft is coaxially rotatably installed with a hardware moving pulley located inside the hardware moving slide rail, and a plurality of moving positioning screw holes equidistantly distributed along the length direction are penetrated between the two hardware moving slide rails, and a moving positioning bolt is penetrated and installed between the insides of the pulley hollow shafts corresponding to every two front and rear positions, and each of the moving positioning bolts can be threadedly matched with one of the moving positioning screw holes.
[0012] Preferably, the hardware turning assembly includes a hardware turning sleeve, a hardware turning rail, a hardware turning pin, a turning positioning stud, and a turning positioning assembly;
[0013] A hardware turning sleeve is coaxially slidably installed on the outer side surface of the hardware turning arc plate, and a hardware turning slide rail is opened on the left and right sides of the hardware turning arc plate. The left and right ends of the hardware turning sleeve are bent to the left and right sides of the hardware turning arc plate, and are respectively fixed with a hardware turning pin located inside the hardware turning slide rail. A turning positioning stud is fixedly installed on the middle part of the outer side surface of the hardware turning sleeve, and the wire clamp assembly is fixedly installed on the top of the turning positioning stud, and a turning positioning assembly is installed between the turning positioning stud, the hardware turning sleeve and the hardware turning arc plate.
[0014] Preferably, the flip positioning assembly comprises a flip positioning hole, a flip positioning screw sleeve, a positioning rod turntable, a positioning rod guide hole, a positioning rod slide groove, a positioning rod slider, and a flip positioning rod;
[0015] The outer side surface of the hardware flip arc plate is provided with a plurality of flip positioning holes equidistantly distributed in the circumferential direction, the outer side thread of the flip positioning stud is installed with a flip positioning screw sleeve, the bottom of the flip positioning screw sleeve is coaxially connected to the positioning rod turntable, and two positioning rod guide holes located on the front and rear sides of the flip positioning stud are penetrated between the inner and outer side surfaces of the hardware flip sleeve. When the hardware flip sleeve moves, the two positioning rod guide holes can be in a coaxial position with any two flip positioning holes, and two front-to-back symmetrical positioning rod slide grooves are provided on the bottom surface of the positioning rod turntable, each of the positioning rod slide grooves is slidably installed with a positioning rod slider, and the bottom of each of the positioning rod sliders is fixedly installed with a flip positioning rod located in the positioning rod guide hole.
[0016] Preferably, the wire clamp assembly comprises a lower hard wire clamp, an upper soft wire clamp, a hard wire clamp bolt hole plate, a soft wire clamp bolt hole, a soft wire clamp pressure hole plate, and a wire clamp bolt;
[0017] The top of the flip positioning stud is fixedly installed with a lower half hard wire clamp in an arc shape and whose axis intersects perpendicularly with the axis of the hardware flip arc plate; the upper half soft wire clamp is detachably installed above the lower half hard wire clamp; the left and right ends of the lower half hard wire clamp are fixedly connected with hard wire clamp bolt hole plates, and the hard wire clamp bolt hole plates are provided with multiple bolt holes; the left and right ends of the upper half soft wire clamp are respectively provided with multiple soft wire clamp bolt holes equidistantly distributed along the length direction; soft wire clamp pressure hole plates with bolt holes are placed above the left and right ends of the multiple upper half soft wire clamps; a wire clamp bolt is fixedly installed between the soft wire clamp pressure hole plate and the hard wire clamp bolt hole plate; the busbar is clamped and fixed between the lower half hard wire clamp and the upper half soft wire clamp.
[0018] Preferably, the hardware lifting assembly includes a lifting telescopic rod, a hardware lifting screw, a hardware lifting sleeve, and a hardware lifting nut;
[0019] Two left-right symmetrical lifting and telescopic rods are installed on the top surface of the hardware base plate, and the other ends of the two lifting and telescopic rods are fixedly connected to the inner side surface of the hardware flip arc plate. A hardware lifting screw is penetrated and rotatably installed in the middle of the hardware base plate, and a hardware lifting sleeve that cooperates with the thread of the hardware lifting screw is fixedly installed in the middle of the inner side surface of the hardware flip arc plate, and a hardware lifting nut is coaxially fixedly installed on the bottom end of the hardware lifting screw.
[0020] Preferably, the hardware rotating assembly comprises a hardware rotating arc groove, a hardware rotating slider, a hardware rotating positioning hole, a hardware rotating positioning plate, and a rotating positioning bolt;
[0021] The top surface of the hardware base plate is provided with two hardware rotation arc grooves which are located on the left and right sides of the hardware lifting screw and extend in the clockwise direction thereof respectively; a hardware rotation slider is slidably installed in each of the hardware rotation arc grooves; the bottom ends of the two lifting telescopic rods are respectively fixedly installed on the tops of the two hardware rotation sliders; a plurality of hardware rotation positioning holes equidistantly distributed in the arc direction are respectively provided on the top surface of the hardware base plate located on the outer sides of the two hardware rotation arc grooves; each of the hardware rotation sliders is fixedly connected with a hardware rotation positioning plate; each of the hardware rotation positioning plates is penetrated by a threaded hole and is provided with a rotation positioning bolt which can be plugged and matched with the hardware rotation positioning hole.
[0022] The beneficial effects of the present invention are:
[0023] 1. The hardware moving assembly can drive the hardware base plate to move and adjust on the hardware suspension frame, thereby realizing the distance adjustment between multiple wire clamp assemblies, so that the wire clamp assembly can be clamped and fixed to the tube busbars at different positions, and the hardware base plate can be fixed on the hardware suspension frame. The hardware flipping assembly can drive the wire clamp assembly to move circumferentially along the hardware flipping arc plate, thereby realizing the adjustment of the angle of the wire clamp assembly on the hardware flipping arc plate, and can clamp and fix the tube busbars erected at different angles.
[0024] 2. When there is a height difference between the busbar and the wire clamp assembly, the height of the wire clamp assembly can be adjusted by the hardware lifting assembly, so that the busbar can be clamped and fixed without bending the busbar. A hardware rotating assembly that can make the hardware flip arc plate rotate circumferentially is provided on the top surface of the hardware bottom plate. The angle of the wire clamp assembly in the horizontal direction can be adjusted by the hardware rotating assembly, so that the busbars at different angles in the horizontal direction can be clamped and fixed.
[0025] 3. The suspension fittings of the present invention can adjust the horizontal, vertical and angular directions of the wire clamp assembly through the fitting moving assembly, the fitting flipping assembly, the fitting lifting assembly and the fitting rotating assembly, so that it is suitable for the installation of busbars with different spacings. The wire clamp assembly can also clamp and fix busbars with different diameters, and has better adaptability, without the need to prepare more types of suspension fittings. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the structure of the existing busbar suspension fittings.
[0027] Figure 2 It is a three-dimensional schematic diagram of the present invention when erecting the tubular busbar.
[0028] Figure 3 It is a front view of the present invention when setting up the tubular busbar.
[0029] Figure 4For the present invention Figure 3 Three-dimensional cross-section view at AA in the middle.
[0030] Figure 5 For the present invention Figure 4 Enlarged view of point B in the middle.
[0031] Figure 6 It is a three-dimensional schematic diagram of the wire clamp assembly of the present invention.
[0032] Figure 7 For the present invention Figure 6 Enlarged view of point C in the middle.
[0033] Figure 8 It is a front view of the wire clamp assembly of the present invention.
[0034] Fig. 9 For the present invention Figure 8 Cross-sectional view at DD in the middle.
[0035] Fig.10 For the present invention Fig. 9 Enlarged view of point E in the middle.
[0036] Fig.11 It is a left side view of the wire clamp assembly of the present invention.
[0037] Fig.12 For the present invention Fig.11 Three-dimensional cross-sectional view at FF in the middle.
[0038] Fig.13 For the present invention Fig.12 Cross-sectional view at point G in the middle.
[0039] In the figure: 1. Hardware suspension bracket; 2. Hanger bolt plate; 3. Hardware bottom plate; 4. Hardware moving assembly; 5. Hardware flip arc plate; 6. Hardware flip assembly; 7. Wire clamp assembly; 01. Tube busbar; 8. Hardware lifting assembly; 9. Hardware rotating assembly; 10. Hardware moving slide rail; 11. Hardware moving bracket; 12. Pulley hollow shaft; 13. Hardware moving pulley; 14. Mobile positioning screw hole; 15. Mobile positioning bolt; 16. Hardware flip sliding sleeve; 17. Hardware flip slide rail; 18. Hardware flip pin; 19. Flip positioning stud; 20. Flip positioning hole; 21. Flip positioning 1. Positioning screw sleeve; 2. Positioning rod turntable; 3. Positioning rod guide hole; 4. Positioning rod slide groove; 5. Positioning rod slider; 6. Lower half hard wire clamp; 7. Upper half soft wire clamp; 8. Hard wire clamp bolt hole plate; 9. Soft wire clamp bolt hole; 10. Soft wire clamp pressure hole plate; 11. Wire clamp bolt; 12. Lifting and telescopic rod; 13. Hardware lifting screw rod; 14. Hardware lifting sleeve; 15. Hardware lifting nut; 16. Hardware rotating arc groove; 17. Hardware rotating slider; 18. Hardware rotating positioning hole; 19. Hardware rotating positioning plate; 20. Rotating positioning bolt. DETAILED DESCRIPTION
[0040] The following will refer to the attached Figure 2 To Attachment Fig.13 Various embodiments of the present invention are described in detail.
[0041] Embodiment 1, as attached Figure 2-Figure 13As shown, an electric power suspension hardware comprises a U-shaped hardware suspension frame 1, both ends of the hardware suspension frame 1 are fixedly mounted with hanger bolt plates 2, the hanger bolt plates 2 can be fixedly mounted on the top of the valve hall by bolts, a plurality of hardware base plates 3 are slidably mounted on the hardware suspension frame 1, a hardware moving component 4 is installed between each of the hardware base plates 3 and the hardware suspension frame 1, the hardware base plates 3 and the hardware moving components 4 can also be installed on the two vertical rods of the hardware suspension frame 1, and the hardware moving components 4 can drive the hardware base plates 3 to move and adjust on the hardware suspension frame 1, thereby realizing the distance between the plurality of wire clamp components 7. Adjustment allows the wire clamp assembly 7 to be clamped and fixed to the tube busbar 01 at different positions, and the hardware base plate 3 can be fixed on the hardware suspension frame 1. A hardware flip arc plate 5 is installed on the top of the hardware base plate 3. The hardware base plate 3 can drive the hardware flip arc plate 5 to move synchronously. A hardware flip assembly 6 is circumferentially slidably installed on the outer side surface of the hardware flip arc plate 5. A wire clamp assembly 7 is installed on the top of the hardware flip assembly 6. The wire clamp assembly 7 can clamp and fix the tube busbar 01, and the wire clamp assembly 7 can clamp and fix the tube busbar 01 with different diameters. The hardware flip assembly 6 can bring The moving wire clamp assembly 7 moves circumferentially along the hardware flip arc plate 5, so as to adjust the angle of the wire clamp assembly 7 on the hardware flip arc plate 5, and can clamp and fix the tube busbars erected at different angles. A hardware lifting assembly 8 that can move the hardware flip arc plate 5 up and down is installed on the top surface of the hardware bottom plate 3. When there is a height difference between the tube busbar 01 and the wire clamp assembly 7, the height of the wire clamp assembly 7 can be adjusted by the hardware lifting assembly 8, so that the tube busbar 01 can be clamped and fixed without bending the tube busbar 01. The top surface of the hardware bottom plate 3 is provided with a hardware lifting assembly 8 that can move the hardware flip arc plate 5 up and down. The circumferentially rotating hardware rotating assembly 9 can adjust the angle of the wire clamp assembly 7 in the horizontal direction through the hardware rotating assembly 9, so that the busbar 01 at different angles in the horizontal direction can be clamped and fixed. The suspension hardware of the present invention can adjust the horizontal direction, vertical direction and angle of the wire clamp assembly 7 through the hardware moving assembly 4, the hardware flip assembly 6, the hardware lifting assembly 8 and the hardware rotating assembly 9, so that it is suitable for the installation of busbars 01 with different spacings. The wire clamp assembly 7 can also clamp and fix busbars 01 with different diameters, has better adaptability, and there is no need to prepare more types of suspension hardware.
[0042] Embodiment 2, based on embodiment 1, as shown in the attached Figure 2-Figure 5 As shown, the hardware moving assembly 4 includes a hardware moving slide rail 10, a hardware moving bracket 11, a pulley hollow shaft 12, a hardware moving pulley 13, a moving positioning screw hole 14, and a moving positioning bolt 15;
[0043] The front and rear sides of the hardware suspension frame 1 are provided with U-shaped hardware moving slide rails 10, and the front and rear ends of the bottom surface of each of the hardware base plates 3 are fixedly installed with two hardware moving brackets 11, and the bottom ends of the two hardware moving brackets 11 gradually move away from each other, and the bottom end of each of the hardware moving brackets 11 is penetrated and fixedly installed with a pulley hollow shaft 12, and the outer side of each of the pulley hollow shafts 12 is coaxially rotatably installed with a hardware moving pulley 13 located inside the hardware moving slide rail 10. When the hardware moving pulley 13 moves inside the hardware moving slide rail 10, it can drive the wire clamp assembly 7 to move, and the two hardware moving slide rails 10 are connected. There are multiple movable positioning screw holes 14 equidistantly distributed along its length direction, and a movable positioning bolt 15 is installed between the interior of the pulley hollow shaft 12 corresponding to every two front and rear positions. Each of the movable positioning bolts 15 can be threadedly matched with one of the movable positioning screw holes 14. When the position of the wire clamp assembly 7 needs to be adjusted, the movable positioning bolt 15 can be screwed out. At this time, the hardware movable bracket 11 can be moved, so that the wire clamp assembly 7 is clamped and fixed to the busbar 01, and then the movable positioning bolt 15 can be screwed into the corresponding movable positioning screw hole 14 at this time, so as to fix the position of the wire clamp assembly 7.
[0044] Embodiment 3, based on embodiment 2, as shown in the attached Figure 6-Figure 12 As shown, the hardware turning assembly 6 includes a hardware turning sleeve 16, a hardware turning slide rail 17, a hardware turning pin 18, a turning positioning stud 19, and a turning positioning assembly;
[0045] A hardware turning sleeve 16 is coaxially slidably installed on the outer surface of the hardware turning arc plate 5, and a hardware turning slide rail 17 is provided on the left and right sides of the hardware turning arc plate 5. The left and right ends of the hardware turning sleeve 16 are bent to the left and right sides of the hardware turning arc plate 5, and are respectively fixed with a hardware turning pin 18 located inside the hardware turning slide rail 17. The hardware turning pin 18 can limit the hardware turning sleeve 16. When the hardware turning sleeve 16 moves circumferentially, the hardware turning pin 18 can slide in the hardware turning slide rail 17. A flip positioning stud 19 is fixedly installed in the middle of the outer side surface of the flip sleeve 16, and the wire clamp assembly 7 is fixedly installed on the top of the flip positioning stud 19. A flip positioning assembly is installed between the flip positioning stud 19, the hardware flip sleeve 16 and the hardware flip arc plate 5. When the hardware flip sleeve 16 moves circumferentially, it can drive the flip positioning stud 19 and the wire clamp assembly 7 at the top of it to move synchronously, thereby realizing the angle adjustment of the wire clamp assembly 7. When the angle adjustment of the wire clamp assembly 7 is completed, the position of the hardware flip sleeve 16 can be positioned by the flip positioning assembly.
[0046] Embodiment 4, based on embodiment 3, as shown in the attached Figure 2-Figure 12As shown, the flip positioning assembly includes a flip positioning hole 20, a flip positioning screw sleeve 21, a positioning rod turntable 02, a positioning rod guide hole 22, a positioning rod slide groove 23, a positioning rod slider 24, and a flip positioning rod 25;
[0047] The outer side surface of the hardware flip arc plate 5 is provided with a plurality of flip positioning holes 20 distributed equidistantly in the circumferential direction, the outer side thread of the flip positioning stud 19 is installed with a flip positioning screw sleeve 21, the bottom of the flip positioning screw sleeve 21 is coaxially connected with a positioning rod turntable 02, the inner side surface of the positioning rod turntable 02 does not contact the thread of the flip positioning stud 19, and rotating the flip positioning screw sleeve 21 can drive the positioning rod turntable 02 to move up and down, and two positioning rod guide holes 22 located on the front and rear sides of the flip positioning stud 19 are penetrated between the inner and outer side surfaces of the hardware flip sliding sleeve 16, and when the hardware flip sliding sleeve 16 moves, the two positioning rod guide holes 22 can be in a coaxial position with any two flip positioning holes 20, and two front-to-back symmetrical positioning rod sliding grooves 23 are provided on the bottom surface of the positioning rod turntable 02, each of the positioning rod sliding grooves 23 is slidably installed with a positioning rod slider 24, and the bottom of each of the positioning rod sliders 24 is fixedly installed with a flip positioning rod 25 located in the positioning rod guide hole 22, as shown in the attached Fig.10 As shown, when the position of the wire clamp assembly 7 needs to be adjusted, the flip positioning screw sleeve 21 can be rotated to move upward, thereby driving the positioning rod turntable 02 to move upward, and the positioning rod turntable 02 drives the two flip positioning rods 25 to move upward in the positioning rod guide hole 22, thereby separating from the two flip positioning holes 20, and the movable hardware flip sliding sleeve 16 can be adjusted. Since the two positioning rod guide holes 22 and the axis of the positioning rod turntable 02 have a certain angle, when the two flip positioning rods 25 move upward, the distance between the top ends of the two becomes larger, thereby driving the two positioning rod sliders 24 to slide outward. Similarly, when the wire clamp assembly 7 needs to be positioned, the flip positioning screw sleeve 21 moves downward, and the two flip positioning rods 25 are inserted into the corresponding two flip positioning holes 20 along the two positioning rod guide holes 22 (the top ends of the two flip positioning rods 25 gradually approach each other, so the two positioning rod sliders 24 slide toward the middle), thereby realizing the angle adjustment and fixation of the wire clamp assembly 7.
[0048] Embodiment 5, based on embodiment 3, as shown in the attached Figure 6-Figure 12 As shown, the wire clamp assembly 7 includes a lower hard wire clamp 26, an upper soft wire clamp 27, a hard wire clamp bolt hole plate 28, a soft wire clamp bolt hole 29, a soft wire clamp pressure hole plate 30, and a wire clamp bolt 31;
[0049] The top of the flip positioning stud 19 is fixedly installed with a lower half hard wire clamp 26 which is arc-shaped and whose axis is perpendicular to the axis of the hardware flip arc plate 5. The upper half soft wire clamp 27 is detachably installed above the lower half hard wire clamp 26. The upper half soft wire clamp 27 can be made of a metal braided belt made of insulating metal, and a plurality of bolt holes are respectively arranged at both ends of the metal braided belt. The left and right ends of the lower half hard wire clamp 26 are fixedly connected with a hard wire clamp bolt hole plate 28, and a plurality of bolt holes are opened on the hard wire clamp bolt hole plate 28. The left and right ends of the upper half soft wire clamp 27 are respectively provided with a plurality of soft wire clamp bolt holes 29 equidistantly distributed along the length direction thereof. By using different soft wire clamp bolt holes 29, the busbars 01 of different diameters can be clamped and fixed, and there is no need to manufacture or prepare multiple types of wire clamps. Moreover, the upper half soft wire clamp 27 can not only clamp the busbars 01 The utility model has the function of fixing, and it has a certain flexibility, which can prevent the insulation layer from being broken, the metal layer from being dented, and other damages when the busbar 01 is shaken due to external factors. The busbar 01 can have a certain buffer space, and a plurality of upper half soft wire clamps 27 are placed above the left and right ends thereof with soft wire clamp pressure holes 30 penetrated by bolt holes, and a wire clamp bolt 31 is fixedly installed between the soft wire clamp pressure holes 30 and the hard wire clamp bolt hole plate 28. In order to prevent the soft wire clamp bolt hole 29 from being pulled and deformed for a long time, the soft wire clamp pressure holes 30 are prevented at both ends of the upper half soft wire clamp 27 and then fixed by the wire clamp bolt 31, so that the pulling force of the upper half soft wire clamp 27 will act on the soft wire clamp pressure holes 30, and no pulling deformation will occur between the wire clamp bolt 31 and the soft wire clamp bolt hole 29, and the busbar 01 is clamped and fixed between the lower half hard wire clamp 26 and the upper half soft wire clamp 27.
[0050] Embodiment 6, based on embodiment 2, as shown in the attached Fig.12 As shown, the hardware lifting assembly 8 includes a lifting telescopic rod 32, a hardware lifting screw 33, a hardware lifting sleeve 34, and a hardware lifting nut 35;
[0051] Two left-right symmetrical lifting and telescopic rods 32 are installed on the top surface of the hardware base plate 3, and the other ends of the two lifting and telescopic rods 32 are fixedly connected to the inner side surface of the hardware flip arc plate 5. A hardware lifting screw 33 is penetrated and rotatably installed in the middle part of the hardware base plate 3, and a hardware lifting sleeve 34 threadedly matched with the hardware lifting screw 33 is fixedly installed in the middle part of the inner side surface of the hardware flip arc plate 5. A hardware lifting nut 35 is coaxially fixedly installed on the bottom end of the hardware lifting screw 33. Rotating the hardware lifting nut 35 drives the hardware lifting screw 33 to rotate, which can drive the hardware lifting sleeve 34 to move up and down, thereby realizing the lifting and lowering adjustment of the hardware flip arc plate 5 and the wire clamp assembly 7. When the hardware flip arc plate 5 moves up and down, the two lifting and telescopic rods 32 are correspondingly extended and retracted, thereby providing a guiding effect on the lifting and lowering of the hardware flip arc plate 5.
[0052] Embodiment 7, based on embodiment 6, as shown in the attached Fig.12 , Fig.13 As shown, the hardware rotating assembly 9 includes a hardware rotating arc groove 36, a hardware rotating slider 37, a hardware rotating positioning hole 38, a hardware rotating positioning plate 39, and a rotating positioning bolt 40;
[0053] The top surface of the hardware base plate 3 is provided with two hardware rotation arc grooves 36 located on the left and right sides of the hardware lifting screw 33 and extending in the clockwise direction thereof, respectively. A hardware rotation slider 37 is slidably installed in each of the hardware rotation arc grooves 36, and the bottom ends of the two lifting telescopic rods 32 are respectively fixedly installed on the tops of the two hardware rotation sliders 37. The top surface of the hardware base plate 3 located outside the two hardware rotation arc grooves 36 is provided with a plurality of hardware rotation positioning holes 38 equidistantly distributed in the arc direction, respectively. Each of the hardware rotation sliders 37 is fixedly connected with a hardware rotation positioning plate 39, and each of the hardware rotation positioning plates 39 is penetrated with a threaded hole and is installed with a rotation positioning bolt 40 that can be plugged and matched with the hardware rotation positioning hole 38;
[0054] When the horizontal angle of the wire clamp assembly 7 needs to be adjusted, the two rotating positioning bolts 40 can be screwed out from the hardware rotating positioning holes 38, and the two hardware rotating sliders 37 can be driven to slide in the arc direction inside the two hardware rotating arc grooves 36. The two hardware rotating sliders 37 simultaneously drive the two lifting and telescopic rods 32 to move synchronously, and the two lifting and telescopic rods 32 drive the hardware flip arc plate 5 to rotate horizontally, thereby realizing the adjustment of the horizontal angle of the wire clamp assembly 7. When the hardware flip arc plate 5 rotates horizontally, it will drive the hardware lifting sleeve 34 to rotate a certain angle, so that it and the hardware lifting screw 33 are threadedly transmitted, so that the height of the hardware flip arc plate 5 and the wire clamp assembly 7 changes to a certain extent. However, when the horizontal angle is adjusted, the two rotating positioning bolts 40 can be screwed into the corresponding two hardware rotating positioning holes 38 to position the horizontal angle of the wire clamp assembly 7, and then the hardware lifting nut 35 can be rotated to drive the hardware lifting screw 33 to rotate, so as to adjust the height of the wire clamp assembly 7.
[0055] It should be noted that in the description of the present invention, the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicating directions or positional relationships are based on the directions or positional relationships shown in the drawings, which are only for the convenience of description, and do not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.
[0056] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0057] So far, the technical solutions of the present invention have been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.
Claims
1. An electric power suspension hardware, comprising a U-shaped hardware suspension frame (1), wherein both ends of the hardware suspension frame (1) are fixedly mounted with hanger bolt plates (2), characterized in that: A plurality of hardware base plates (3) are slidably mounted on the hardware suspension frame (1), a hardware moving assembly (4) is mounted between each of the hardware base plates (3) and the hardware suspension frame (1), a hardware flip arc plate (5) is mounted on the top of the hardware base plate (3), a hardware flip assembly (6) is slidably mounted circumferentially on the outer side surface of the hardware flip arc plate (5), a wire clamp assembly (7) is mounted on the top of the hardware flip assembly (6), the wire clamp assembly (7) is capable of clamping and fixing the tube busbar (01), the hardware flip assembly (6) is capable of adjusting the angle of the wire clamp assembly (7) on the hardware flip arc plate (5), a hardware lifting assembly (8) capable of moving the hardware flip arc plate (5) up and down is mounted on the top surface of the hardware base plate (3), and a hardware rotating assembly (9) capable of rotating the hardware flip arc plate (5) circumferentially is arranged on the top surface of the hardware base plate (3); The hardware turning assembly (6) comprises a hardware turning sliding sleeve (16), a hardware turning sliding rail (17), a hardware turning pin (18), a turning positioning stud (19), and a turning positioning assembly; A hardware flip sleeve (16) is coaxially slidably mounted on the outer surface of the hardware flip arc plate (5); hardware flip rails (17) are provided on the left and right sides of the hardware flip arc plate (5); the left and right ends of the hardware flip sleeve (16) are bent to the left and right sides of the hardware flip arc plate (5), and hardware flip pins (18) located inside the hardware flip rails (17) are respectively fixedly mounted; a flip positioning stud (19) is fixedly mounted in the middle of the outer side of the hardware flip sleeve (16); the wire clamp assembly (7) is fixedly mounted on the top of the flip positioning stud (19); and a flip positioning assembly is installed between the flip positioning stud (19), the hardware flip sleeve (16) and the hardware flip arc plate (5).
2. The electric suspension fitting according to claim 1, characterized in that: The hardware moving assembly (4) comprises a hardware moving slide rail (10), a hardware moving bracket (11), a pulley hollow shaft (12), a hardware moving pulley (13), a moving positioning screw hole (14), and a moving positioning bolt (15); The front and rear side surfaces of the hardware suspension frame (1) are provided with U-shaped hardware movable slide rails (10); the front and rear ends of the bottom surface of each hardware base plate (3) are fixedly installed with two hardware movable brackets (11); the bottom end of each hardware movable bracket (11) is penetrated and fixedly installed with a pulley hollow shaft (12); the outer side of each pulley hollow shaft (12) is coaxially rotatably installed with a hardware movable pulley (13) located inside the hardware movable slide rail (10); a plurality of movable positioning screw holes (14) equidistantly distributed along the length direction thereof are penetrated between the two hardware movable slide rails (10); a movable positioning bolt (15) is penetrated and installed between the insides of each two pulley hollow shafts (12) corresponding to the front and rear positions; each movable positioning bolt (15) can be threadedly engaged with one of the movable positioning screw holes (14).
3. The electric suspension fitting according to claim 1, characterized in that: The flip positioning assembly comprises a flip positioning hole (20), a flip positioning screw sleeve (21), a positioning rod turntable (02), a positioning rod guide hole (22), a positioning rod slide groove (23), a positioning rod slider (24), and a flip positioning rod (25); The outer surface of the hardware flip arc plate (5) is provided with a plurality of flip positioning holes (20) equidistantly distributed in the circumferential direction; the outer thread of the flip positioning stud (19) is installed with a flip positioning screw sleeve (21); the bottom of the flip positioning screw sleeve (21) is coaxially rotatably connected with a positioning rod turntable (02); two positioning rod guide holes (22) located on the front and rear sides of the flip positioning stud (19) are penetrated between the inner and outer side surfaces of the hardware flip sleeve (16); when the hardware flip sleeve (16) moves, the two positioning rod guide holes (22) can be coaxial with any two flip positioning holes (20); the bottom surface of the positioning rod turntable (02) is provided with two front-to-back symmetrical positioning rod sliding grooves (23); a positioning rod slider (24) is slidably installed in each of the positioning rod sliding grooves (23); and a flip positioning rod (25) located in the positioning rod guide hole (22) is fixedly installed at the bottom of each of the positioning rod sliders (24).
4. The electric suspension fitting according to claim 1, characterized in that: The wire clamp assembly (7) comprises a lower hard wire clamp (26), an upper soft wire clamp (27), a hard wire clamp bolt hole plate (28), a soft wire clamp bolt hole (29), a soft wire clamp pressure hole plate (30), and a wire clamp bolt (31); The top of the flip positioning stud (19) is fixedly mounted with an arc-shaped lower hard wire clamp (26) whose axis is perpendicular to the axis of the hardware flip arc plate (5), and an upper soft wire clamp (27) is detachably mounted above the lower hard wire clamp (26). The left and right ends of the lower hard wire clamp (26) are fixedly connected with a hard wire clamp bolt hole plate (28), and a plurality of bolt holes are opened on the hard wire clamp bolt hole plate (28). The upper soft wire clamp (27) is detachably mounted above the lower hard wire clamp (26). ) are respectively provided with a plurality of flexible wire clamp bolt holes (29) equidistantly distributed along the length direction thereof, and a flexible wire clamp pressure hole plate (30) having bolt holes passing through it is placed above the left and right ends of the plurality of upper flexible wire clamps (27), and a wire clamp bolt (31) is fixedly installed between the flexible wire clamp pressure hole plate (30) and the hard wire clamp bolt hole plate (28), and the tube busbar (01) is clamped and fixed between the lower hard wire clamp (26) and the upper flexible wire clamp (27).
5. The electric suspension fitting according to claim 1, characterized in that: The hardware lifting assembly (8) comprises a lifting telescopic rod (32), a hardware lifting screw (33), a hardware lifting sleeve (34), and a hardware lifting nut (35); Two left-right symmetrical lifting and telescopic rods (32) are installed on the top surface of the hardware base plate (3), and the other ends of the two lifting and telescopic rods (32) are fixedly connected to the inner side surface of the hardware flip arc plate (5). A hardware lifting screw (33) passes through and is rotatably installed in the middle of the hardware base plate (3), and a hardware lifting sleeve (34) threadably matched with the hardware lifting screw (33) is fixedly installed in the middle of the inner side surface of the hardware flip arc plate (5), and a hardware lifting nut (35) is coaxially fixedly installed on the bottom end of the hardware lifting screw (33).
6. The electric power suspension fitting according to claim 5, characterized in that: The hardware rotating assembly (9) comprises a hardware rotating arc groove (36), a hardware rotating slide block (37), a hardware rotating positioning hole (38), a hardware rotating positioning plate (39), and a rotating positioning bolt (40); The top surface of the hardware base plate (3) is provided with two hardware rotation arc grooves (36) located on the left and right sides of the hardware lifting screw rod (33) and extending in the clockwise direction thereof, respectively; a hardware rotation slider (37) is slidably installed in each of the hardware rotation arc grooves (36); the bottom ends of the two lifting telescopic rods (32) are respectively fixedly installed on the tops of the two hardware rotation sliders (37); the top surface of the hardware base plate (3) located outside the two hardware rotation arc grooves (36) is provided with a plurality of hardware rotation positioning holes (38) equidistantly distributed in the arc direction; each of the hardware rotation sliders (37) is fixedly connected to a hardware rotation positioning plate (39); each of the hardware rotation positioning plates (39) is penetrated by a threaded hole and is provided with a rotation positioning bolt (40) capable of plugging and cooperating with the hardware rotation positioning hole (38).
Citation Information
Patent Citations
Clamp for U-shaped electric power fitting mechanical test tensile test
CN111829873A
Device for fitting cables to supporting wires or the like
DE3313425A1