A new type of insulator curing equipment
By designing a new insulator curing equipment, the insulator inner core is stably clamped by using the height and spacing adjustment mechanism, the problems of single curing efficiency and deformation are solved, and efficient and stable insulator curing is achieved.
Patent Information
- Application Number
- CN202111451733.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-01
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2041-12-01
AI Technical Summary
The insulator inner core can only be cured in a single manner when post-curing, resulting in low curing efficiency. It is easy to deform due to unstable placement, resulting in defective products, affecting the fixing efficiency.
A new type of insulator curing equipment is designed, including a base, support plate, movable plate, clamping member and adjustment mechanism. Through the height adjustment and spacing adjustment mechanism, stable clamping of the insulator inner core is achieved, and curing quality and efficiency are improved.
The fixing stability of the insulator core is improved, deformation is avoided, the ability of multiple insulators is enhanced, the clamping range is expanded, and the curing efficiency and the applicability of the device is improved.
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Figure CN114141457B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of insulator processing, and specifically relates to a new type of insulator curing device. Background Art
[0002] At present, insulators have been widely used in the power industry. Generally, an insulator includes an insulator core, a skirt wrapped around the insulator core, and flanges connected to both ends of the insulator core. Among them, the insulator core is manufactured by methods such as winding molding, pultrusion molding, and vacuum impregnation molding. After this step, it generally undergoes two curing processes, namely primary curing and post-curing. During the post-curing process, the insulator core needs to be placed in a curing furnace and cured at a certain temperature.
[0003] However, when the insulator core undergoes single curing during post-curing, the curing efficiency is low. At the same time, due to the unstable placement of the insulator core, the insulator core will be deformed, resulting in defective products and low fixing efficiency. Summary of the Invention
[0004] In view of the above situation, in order to overcome the defects of the prior art, the present invention provides a new type of insulator curing device, which effectively solves the problems that the insulator core can only be singly cured during curing and the insulator is unstably placed and deformed in the above background art.
[0005] To achieve the above object, the present invention provides the following technical solution: A new type of insulator curing device includes a base. The bottom end of the base is symmetrically provided with moving wheels. On both sides of the top end of the base, support plates are symmetrically provided. On the top end of the base, movable plates are symmetrically provided between the two support plates. The two movable plates are connected by a spacing adjustment mechanism. On the side where the two movable plates are close to each other, fixing plates are provided. Between the side walls of adjacent fixing plates, a clamping member II is provided. On the side where the movable plate and the support plate are close to each other, a clamping member I is provided. Inside the support plate, a height adjustment mechanism connected to the clamping member I is provided. Inside the fixing plate, a length adjustment mechanism connected to the clamping member I is provided;
[0006] Both the clamping member I and the clamping member II include a fixed block, a clamping plate, a base, and a clamping wheel. The fixed block is located on one side of the support plate, the movable plate, and the fixing plate. One end of the fixed block is connected to the clamping plate. On one side of the clamping plate, bases are equidistantly provided. The bases are rotatably connected with clamping wheels;
[0007] Inside the base, a receiving groove I and a receiving groove II are opened. The receiving groove II is located above the receiving groove I. Inside both support plates, a receiving groove III is opened. The height adjustment mechanism is located inside the receiving groove III. The two height adjustment mechanisms are connected by a driver located inside the receiving groove I. The spacing adjustment mechanism is located inside the receiving groove II, and the spacing adjustment mechanism is connected to the driver.
[0008] Preferably, the height adjusting mechanism includes a rotating shaft, a lead screw cylinder, a first threaded block, a first sliding rod, and a first bevel gear. A rotating shaft is provided inside the third receiving groove. One end of the rotating shaft extends into the first receiving groove. A first bevel gear is provided at the bottom end of the rotating shaft. Two lead screw cylinders are fixedly connected to the outer part of the rotating shaft. A first threaded block is threadedly connected to the outer part of the lead screw cylinder. A first sliding rod is provided at one end of each first threaded block. A first slot communicating with the third receiving groove is formed on the closer side of the two support plates. The first sliding rod penetrates through the first slot and extends outside the third receiving groove. A sliding plate is provided at one end of the first sliding rod, and the sliding plate is connected to the side wall of the fixed block.
[0009] Preferably, the width of the sliding plate is greater than the width of the first slot. Stop rings are provided at the top and bottom ends of the lead screw cylinder.
[0010] Preferably, the driver includes a rotating shaft, a first turbine, a transmission shaft, a second bevel gear, a worm cylinder, a fourth bevel gear, and a fixing group. A rotating shaft is provided inside the first receiving groove. One end of the rotating shaft is connected to the fixing group. One end of the rotating shaft extends to the inner wall of the second receiving groove. A first turbine and a fourth bevel gear are provided on the rotating shaft. The first turbine is located inside the first receiving groove, and the fourth bevel gear is located inside the second worm. A transmission shaft is installed inside the first receiving groove. Symmetrically arranged second bevel gears meshing with the first bevel gear are provided on the transmission shaft. A moving wheel turbine meshing with the first turbine is fixedly connected to the middle position of the transmission shaft, and the fourth bevel gear is connected to the spacing adjusting mechanism.
[0011] Preferably, the fixing group includes a first groove, a knob, a locking opening, a shielding plate, a second groove, a locking rod, and a connecting member. A first groove is formed at the bottom end of the base. A shielding plate is provided inside the first groove. A second groove is formed on the shielding plate. A knob located inside the second groove is provided at one end of the rotating shaft. Locking openings are equidistantly formed at the bottom end of the knob. A locking rod engaging with the locking opening is provided inside the second groove. Third grooves symmetrically arranged on both sides of the second groove are formed at the top end of the shielding plate. The third groove and the first groove are connected by a connecting member.
[0012] Preferably, the connecting member includes a fixed cylinder, a spring, and a pull rod. A fixed cylinder is provided inside the third groove. A pull rod connected to the side wall of the first groove is inserted into the fixed cylinder. The pull rod has an inverted T-shaped structure. The bottom end of the pull rod is connected to the inner bottom end of the fixed cylinder through a spring.
[0013] Preferably, the spacing adjusting mechanism includes a second slot, a bidirectional lead screw, a third bevel gear, a second sliding rod, and a second threaded block. A second slot communicating with the second receiving groove is formed at the top end of the base. A bidirectional lead screw is installed inside the second receiving groove. A third bevel gear meshing with the fourth bevel gear is provided in the middle of the second bevel gear. Symmetrically arranged second threaded blocks are threadedly connected to the bidirectional lead screw. A second sliding rod penetrating through the second slot is provided at the top end of the second threaded block. The second sliding rod is connected to the bottom end of the movable plate.
[0014] Preferably, the length adjustment mechanism includes a moving group and a driving group. The driving group includes a second worm, an internally threaded cylinder, a third turbine, a third worm, and a second turbine. The second worms are equidistantly arranged inside the fixed plate. The tops of the second worms all extend to the top of the fixed plate, and the tops of the second worms are all connected to the third turbines. A third worm meshing with the third turbine is arranged at the top of the fixed plate. The internally threaded cylinders are equidistantly arranged inside the fixed plate. A second turbine meshing with the second worm is arranged on the internally threaded cylinder. The internally threaded cylinder is connected to the second clamping member through the moving group.
[0015] Preferably, the moving group includes a third threaded block, a connecting rod, an opening, a limiting block, and a worm cylinder. A third threaded block is threadedly connected inside the internally threaded cylinder. Openings are equidistantly formed on the side wall of the fixed plate. One end of the third threaded block is provided with a connecting rod passing through the opening, and the connecting rod is fixedly connected to the fixed block.
[0016] Preferably, limiting blocks are symmetrically arranged inside the opening, and limiting grooves slidably connected to the limiting blocks are symmetrically formed on the connecting rod.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0018] (1) During operation, by providing a base, moving wheels, a support plate, a movable plate, a fixed plate, a first clamping member, and a second clamping member, it is convenient to clamp the inner core of the insulator by the first clamping member on the support plate and the opposite second clamping member, thereby improving the fixing stability of the inner core of the insulator, avoiding deformation of the inner core of the insulator during curing, improving the curing quality of the insulator, and facilitating synchronous curing of multiple insulators, effectively improving the curing efficiency of the insulator;
[0019] (2) Through the design of a rotating shaft, a lead screw cylinder, a first threaded block, a first sliding rod, and a first bevel gear, it is convenient to adjust the position of the first clamping member on the support plate, and it is convenient to misalign the first clamping member on the support plate and the first clamping member on the movable plate to clamp the inner core of the insulator, thereby realizing clamping of inner cores of insulators with different lengths, effectively increasing the clamping range of the insulator, and improving the application range of the device;
[0020] (3) Through the design of a rotating shaft, a first turbine, a transmission shaft, a second bevel gear, a worm cylinder, a fourth bevel gear, and a fixing group, it is convenient to provide power for the height adjustment mechanism and the length adjustment mechanism, and it is convenient to realize height adjustment of the first clamping member on the support plate and movement of the movable plate, thereby increasing the clamping range of the insulator and improving the practicability of the device;
[0021] (4) Through the design of the second slot, the bidirectional lead screw, the third bevel gear, the second slide bar, and the second threaded block, it is convenient to adjust the movement of the first clamping member on the movable plate, and further facilitate the misaligned clamping of the first clamping member on the movable plate and the first clamping member on the support plate for the inner cores of insulators with different thicknesses, thereby improving the clamping stability of the inner cores of insulators and further improving the efficiency of the curing of insulators;
[0022] (5) Through the design of the drive group including the second worm, the internal thread cylinder, the third turbine, the third worm, the second turbine, the third threaded block, the connecting rod, the opening, the limit block, and the worm cylinder, it is convenient to adjust the distance between the two opposite second clamping members, and further facilitate the clamping of the inner cores of insulators with different thicknesses, and facilitate the synchronous curing of multiple insulators, effectively improving the curing amount of insulators. Description of the Drawings
[0023] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention, and do not constitute a limitation to the present invention.
[0024] In the drawings:
[0025] Figure 1 is a schematic structural diagram of the present invention;
[0026] Figure 2 is a schematic diagram of the internal structure of the present invention;
[0027] Figure 3 is the present invention Figure 1 an enlarged structural diagram of part A in;
[0028] Figure 4 is the present invention Figure 2 an enlarged structural diagram of part B in;
[0029] Figure 5 is a schematic structural diagram of the length adjustment mechanism of the present invention;
[0030] Figure 6 is the present invention Figure 5 an enlarged structural diagram of part C in;
[0031] In the figure: 1, base; 2, moving wheel; 3, support plate; 4, movable plate; 5, fixed plate; 6, clamping member 1; 7, length adjustment mechanism; 8, fixed block; 9, clamping plate; 10, base; 11, clamping wheel; 12, receiving groove 1; 13, receiving groove 2; 14, receiving groove 3; 15, slot 1; 16, rotating shaft; 17, screw rod cylinder; 18, thread block 1; 19, slide bar 1; 20, bevel gear 1; 21, rotating shaft; 22, turbine 1; 23, transmission shaft; 24, bevel gear 2; 25, worm cylinder; 26, slot 2; 27, bidirectional screw rod; 28, bevel gear 3; 29, bevel gear 4; 30, slide bar 2; 31, thread block 2; 32, sliding plate; 33, groove 1; 34, knob; 35, locking port; 36, shielding plate; 37, groove 2; 38, locking rod; 39, groove 3; 40, fixed cylinder; 41, spring; 42, pull rod; 43, worm 2; 44, internal thread cylinder; 45, turbine 3; 46, worm 3; 47, turbine 2; 48, thread block 3; 49, connecting rod; 50, opening; 51, limiting block; 52, limiting groove; 53, clamping member 2. Specific implementation mode
[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0033] Embodiment 1, consists of Figures 1 to 6Provided, the present invention includes a base 1. Symmetrically provided at the bottom end of the base 1 are moving wheels 2. Symmetrically provided on both sides of the top end of the base 1 are support plates 3. Symmetrically provided on the top end of the base 1 and located between the two support plates 3 is a movable plate 4. The two movable plates 4 are connected by a spacing adjustment mechanism. Through the design of the spacing adjustment mechanism, it is convenient to realize the movement of the movable plate 4, and further convenient to make the clamping member II 53 on the movable plate 4 and the clamping member I 6 on the support plate 3 clamp the inner core of the insulator. Thus, it can realize the clamping of the inner cores of insulators with different sizes, improve the usage range of the device, and improve the stability for the curing of the insulators. On the side where the two movable plates 4 are close to each other, fixing plates 5 are provided. Between the side walls of adjacent two fixing plates 5 is provided a clamping member II 53. On the side where the movable plate 4 and the support plate 3 are close to each other, clamping member I 6 is provided. Inside the support plate 3 is provided a height adjustment mechanism connected to the clamping member I 6. Through the design of the height adjustment mechanism, it is convenient to adjust the height of the clamping member I 6 on the support plate 3. Thus, in cooperation with the clamping member I 6 on the movable plate 4, it can realize the offset clamping of the inner core of the insulator. Inside the fixing plate 5 is provided a length adjustment mechanism 7 connected to the clamping member I 6. Through the design of the length adjustment mechanism 7, it is convenient to adjust the spacing between the two fixing plates 5, and further convenient for the spacing of the clamping member II 53. Thus, it is convenient for the clamping member II 53 to clamp the inner core of the insulator, and further increases the curing amount of the insulator;
[0034] Both the clamping member I 6 and the clamping member II 53 include a fixed block 8, a clamping plate 9, a base 10 and a clamping wheel 11. The fixed block 8 is located on one side of the support plate 3, the movable plate 4 and the fixing plate 5. One end of the fixed block 8 is connected to the clamping plate 9. On one side of the clamping plate 9, bases 10 are equidistantly provided. Rotatably connected to the bases 10 are clamping wheels 11. Through the clamping wheels 11 to clamp the inner core of the insulator, it realizes the rolling clamping of the insulator. Thus, it is convenient to take out the inner core of the insulator and avoid repeatedly adjusting the spacing of the clamping wheels 11. Thus, it improves the efficiency for the curing of the insulator;
[0035] Inside the base 1 are provided a receiving groove I 12 and a receiving groove II 13. The receiving groove II 13 is located above the receiving groove I 12. Inside both of the two support plates 3 are provided receiving grooves III 14. The height adjustment mechanism is located inside the receiving grooves III 14. The two height adjustment mechanisms are connected by a driver located inside the receiving groove I 12. The spacing adjustment mechanism is located inside the receiving groove II 13, and the spacing adjustment mechanism is connected to the driver.
[0036] Embodiment 2, on the basis of Embodiment 1, by Figure 2 and Figure 3Given that the height adjustment mechanism includes a rotating shaft 16, a lead screw cylinder 17, a first threaded block 18, a first sliding rod 19, and a first bevel gear 20. A rotating shaft 16 is provided inside the third receiving groove 14, and one end of the rotating shaft 16 extends into the first receiving groove 12. A first bevel gear 20 is provided at the bottom end of the rotating shaft 16. Two lead screw cylinders 17 are fixedly connected to the outer part of the rotating shaft 16. A first threaded block 18 is threadedly connected to the outer part of the lead screw cylinder 17. A first sliding rod 19 is provided at one end of each first threaded block 18. A first slot 15 communicating with the third receiving groove 14 is formed on the closer side of the two support plates 3. The first sliding rod 19 penetrates through the first slot 15 and extends outside the third receiving groove 14. A sliding plate 32 is provided at one end of the first sliding rod 19, and the sliding plate 32 is connected to the side wall of the fixed block 8. The width of the sliding plate 32 is greater than the width of the first slot 15. Stop rings are provided at the top and bottom ends of the lead screw cylinder 17;
[0037] When the driver is started, it will cause the driver to drive the first bevel gear 20 to rotate. The first bevel gear 20 drives the rotating shaft 16 to rotate. The rotating shaft 16 will drive the lead screw cylinder 17 to rotate. Through the threaded connection relationship between the clamping wheel 11 and the first threaded block 18 and the sliding connection relationship between the first sliding rod 19 and the first slot 15, the first threaded block 18 can stably move outside the lead screw cylinder 17. Furthermore, the first threaded block 18 will drive the first sliding rod 19 to move. The first sliding rod 19 drives the sliding plate 32 to slide on the outer wall of the support plate 3. Furthermore, the sliding plate 32 drives the first clamping member 6 to adjust the height. Furthermore, in cooperation with the first clamping member 6 on the movable plate 4, the misaligned clamping of the inner core of the insulator is realized, and at the same time, the clamping stability of the inner core of the insulator is improved, and thus the fixing quality of the insulator is improved.
[0038] Embodiment 3, on the basis of Embodiment 1, by Figure 2 and Figure 4Given that the driver includes a rotating shaft 21, a first turbine 22, a transmission shaft 23, a second bevel gear 24, a worm barrel 25, a fourth bevel gear 29 and a fixing group. Inside the first receiving groove 12, there is a rotating shaft 21. One end of the rotating shaft 21 is connected to the fixing group, and one end of the rotating shaft 21 extends to the inner wall of the second receiving groove 13. On the rotating shaft 21, there are a first turbine 22 and a fourth bevel gear 29. The first turbine 22 is located inside the first receiving groove 12, and the fourth bevel gear 29 is located inside the second worm 43. Inside the first receiving groove 12, a transmission shaft 23 is installed. On the transmission shaft 23, symmetrically arranged second bevel gears 24 meshingly connected with the first bevel gear 20 are provided. At the middle position of the transmission shaft 23, a moving wheel 2 meshingly connected with the first turbine 22 is fixedly connected, and the fourth bevel gear 29 is connected to the spacing adjustment mechanism. The fixing group includes a first groove 33, a knob 34, a locking port 35, a shielding plate 36, a second groove 37, a locking rod 38 and a connecting member. At the bottom end of the base 1, a first groove 33 is opened. Inside the first groove 33, there is a shielding plate 36. On the shielding plate 36, a second groove 37 is opened. At one end of the rotating shaft 21, there is a knob 34 located inside the second groove 37. At the bottom end of the knob 34, locking ports 35 are equidistantly opened. Inside the second groove 37, a locking rod 38 engaging with the locking ports 35 is provided. At the top end of the shielding plate 36, third grooves 39 symmetrically opened on both sides of the second groove 37 are provided. The third grooves 39 and the first groove 33 are connected through a connecting member. The connecting member includes a fixed cylinder 40, a spring 41 and a pull rod 42. Inside the third groove 39, there is a fixed cylinder 40. Inside the fixed cylinder 40, a pull rod 42 connected to the side wall of the first groove 33 is inserted. The pull rod 42 is of an inverted T-shaped structure. The bottom end of the pull rod 42 is connected to the inner bottom end of the fixed cylinder 40 through a spring 41. The spacing adjustment mechanism includes a second slot 26, a bidirectional lead screw 27, a third bevel gear 28, a second slide bar 30 and a second threaded block 31. At the top end of the base 1, a second slot 26 communicating with the second receiving groove 13 is opened. Inside the second receiving groove 13, a bidirectional lead screw 27 is installed. In the middle of the second bevel gear 24, there is a third bevel gear 28 meshingly connected with the fourth bevel gear 29. On the bidirectional lead screw 27, symmetrically arranged second threaded blocks 31 are threadedly connected. At the top end of the second threaded block 31, a second slide bar 30 penetrating through the inside of the second slot 26 is provided. The second slide bar 30 is connected to the bottom end of the movable plate 4;
[0039] By pulling down the baffle 36, the baffle 36 drives the fixed cylinder 40 and the locking rod 38 to move downward. As a result, the fixed cylinder 40 is in a stretched state, and at the same time, the locking rod 38 is disengaged from the locking port 35. Then, the staff rotates the knob 34, and the knob 34 drives the rotating shaft 21 to rotate. The rotating shaft 21 drives the first turbine 22 to rotate. Through the meshing connection relationship between the first turbine 22 and the worm cylinder 25, the rotation of the worm cylinder 25 is realized. Then, the worm cylinder 25 drives the transmission shaft 23 to rotate, and the transmission shaft 23 drives the second bevel gear 24 to rotate. Through the meshing connection relationship between the second bevel gear 24 and the first bevel gear 20, the rotation of the first bevel gear 20 is realized, and then the rotation of the rotating shaft 16 is realized, which effectively facilitates the height adjustment of the first clamping member 6. At the same time, the rotating shaft 21 drives the fourth bevel gear 29 to rotate. Through the meshing connection relationship between the third bevel gear 28 and the fourth bevel gear 29, the rotation of the third bevel gear 28 is realized. Then, the third bevel gear 28 drives the bidirectional lead screw 27 to rotate. Through the threaded connection relationship between the bidirectional lead screw 27 and the second threaded block 31 and in cooperation with the sliding connection relationship between the second slide bar 30 and the second slot 26, the second slide bar 30 can slide inside the second slot 26. Then, the second slide bar 30 drives the two movable plates 4 to move relative to each other, thereby adjusting the distance between the movable plate 4 and the support plate 3. Thus, it is convenient to clamp the inner core of the insulator by the first clamping member 6 on the support plate 3 and the first clamping member 6 on the movable plate 4. Furthermore, it is convenient to adjust the distance between the movable plate 4 and the support plate 3 according to the size of the inner core, effectively improving the usage range of the device. When the distance between the support plate 3 and the movable plate 4 is adjusted, release the pull on the baffle 36. Under the reverse acting force of the spring 41, the baffle 36 drives the third threaded block 48 to extend into the locking port 35, realizing the fastening of the knob 34, and then fixing the position of the movable plate 4, thereby improving the clamping stability of the inner core of the insulator.
[0040] Embodiment 4, on the basis of Embodiment 1, by Figure 2 、 Figure 5 and Figure 6Given that the length adjustment mechanism 7 includes a moving group and a driving group, the driving group includes a second worm 43, an internally threaded cylinder 44, a third turbine 45, a third worm 46 and a second turbine 47. The second worm 43 is equidistantly arranged inside the fixing plate 5. The tops of the second worm 43 all extend to the top of the fixing plate 5, and the tops of the second worm 43 are all connected with the third turbine 45. A third worm 46 meshed with the third turbine 45 is arranged at the top of the fixing plate 5. The internally threaded cylinder 44 is equidistantly arranged inside the fixing plate 5. A second turbine 47 meshed with the second worm 43 is arranged on the internally threaded cylinder 44. The internally threaded cylinder 44 is connected with the second clamping member 53 through the moving group. The moving group includes a third threaded block 48, a connecting rod 49, an opening 50, a limiting block 51 and a worm cylinder 25. A third threaded block 48 is in threaded connection inside the internally threaded cylinder 44. Openings 50 are equidistantly formed in the side wall of the fixing plate 5. One end of the third threaded block 48 is provided with a connecting rod 49 penetrating through the opening 50, and the connecting rod 49 is fixedly connected with the fixed block 8. Limiting blocks 51 are symmetrically arranged inside the opening 50. Limiting grooves 52 slidably connected with the limiting blocks 51 are symmetrically formed on the connecting rod 49;
[0041] When the staff rotates the third worm 46, due to the meshing connection relationship between the third worm 46 and the third turbine 45, the third turbine 45 will rotate. The third turbine 45 will drive the second worm 43 to rotate. Due to the meshing connection relationship between the second worm 43 and the second turbine 47, the rotation of the internally threaded cylinder 44 will be realized. Due to the threaded connection relationship between the internally threaded cylinder 44 and the third threaded block 48 and the sliding connection relationship between the limiting block 51 and the limiting groove 52, the third threaded block 48 will push the connecting rod 49 to move. Further, the connecting rod 49 will push the second clamping member 53 to move, which is convenient for adjusting the distance between the two opposite second clamping members 53 according to the size of the insulator inner core, and then clamping the insulator inner core, thereby improving the fixing stability of the insulator and the curing efficiency.
[0042] Working principle: During operation, the staff place the insulator on the top of the base 1 and on one side of the first clamping member 6 on the support plate 3, and make the clamping wheel 11 on the first clamping member 6 in close contact with the inner core of the insulator. Then, according to the size of the inner core of the insulator, the position of the first clamping member 6 on the movable plate 4 is adjusted, and then the baffle 36 is pulled downward. The baffle 36 drives the fixed cylinder 40 and the locking rod 38 to move downward, and then the fixed cylinder 40 is in a stretched state. At the same time, the locking rod 38 is disconnected from the locking port 35. Then, the staff rotate the knob 34, and the knob 34 drives the rotating shaft 21 to rotate. The rotating shaft 21 drives the first turbine 22 to rotate. Through the meshing connection relationship between the first turbine 22 and the worm barrel 25, the rotation of the worm barrel 25 is realized. Then, the worm barrel 25 drives the transmission shaft 23 to rotate. The transmission shaft 23 drives the second bevel gear 24 to rotate. Through the meshing connection relationship between the second bevel gear 24 and the first bevel gear 20, the rotation of the first bevel gear 20 is realized. Then, the rotation of the rotating shaft 16 is realized. The rotating shaft 16 drives the screw barrel 17 to rotate. Through the threaded connection relationship between the clamping wheel 11 and the first threaded block 18 and the sliding connection relationship between the first slide bar 19 and the first slot 15, the first threaded block 18 can stably move outside the screw barrel 17. Then, the first threaded block 18 drives the first slide bar 19 to move. The first slide bar 19 drives the slide plate 32 to slide on the outer wall of the support plate 3. Then, the slide plate 32 drives the first clamping member 6 to adjust the height. Then, the clamping wheel 11 slides on the outer wall of the insulator. At the same time, the rotating shaft 21 drives the fourth bevel gear 29 to rotate. Through the meshing connection relationship between the third bevel gear 28 and the fourth bevel gear 29, the rotation of the third bevel gear 28 is realized. Then, the third bevel gear 28 drives the bidirectional screw 27 to rotate. Through the threaded connection relationship between the bidirectional screw 27 and the second threaded block 31 and the sliding connection relationship between the second slide bar 30 and the second slot 26, the second slide bar 30 can slide inside the second slot 26. Then, the second slide bar 30 drives the two movable plates 4 to move relative to each other. Then, according to the size of the inner core, the first clamping member 6 on the support plate 3 and the first clamping member 6 on the movable plate 4 clamp the inner core of the insulator, effectively improving the application range of the device. When the distance between the support plate 3 and the movable plate 4 is adjusted, the misaligned clamping of the inner core of the insulator can be realized, improving the clamping stability of the inner core of the insulator, and then improving the fixing quality of the insulator. Then, release the pulling force on the baffle 36. Under the reverse acting force of the spring 41, the baffle 36 drives the third threaded block 48 to extend into the locking port 35 to realize the fastening of the knob 34, and then fix the position of the movable plate 4, and then improve the clamping stability of the inner core of the insulator;
[0043] Next, place the inner core of the insulator between the opposite clamping members II 53 and at the top of the base 1, and rotate the third worm 46 according to the size of the inner core. Due to the meshing connection relationship between the third worm 46 and the third turbine 45, the third turbine 45 will rotate. The third turbine 45 will drive the second worm 43 to rotate. Due to the meshing connection relationship between the second worm 43 and the second turbine 47, the rotation of the internal thread cylinder 44 will be achieved. Due to the threaded connection relationship between the internal thread cylinder 44 and the third threaded block 48 and the sliding connection relationship between the limiting block 51 and the limiting groove 52, the third threaded block 48 will be pushed to move the connecting rod 49. Furthermore, the connecting rod 49 will push the clamping member II 53 to move, facilitating the adjustment of the distance between the two opposite clamping members II 53 according to the size of the inner core of the insulator, thereby clamping the inner core of the insulator, improving the fixing stability of the insulator, and improving the curing efficiency.
[0044] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article or device.
[0045] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A new type of insulator curing device, comprising a base (1), characterized in that: The bottom end of the base (1) is symmetrically provided with moving wheels (2). On both sides of the top end of the base (1), support plates (3) are symmetrically provided. On the top end of the base (1), a movable plate (4) is symmetrically provided between the two support plates (3). The two movable plates (4) are connected by a spacing adjustment mechanism. On the side of the two movable plates (4) close to each other, fixing plates (5) are provided. Between the side walls of two adjacent fixing plates (5), a second clamping member (53) is provided. On the side of the movable plate (4) close to the support plate (3), a first clamping member (6) is provided. Inside the support plate (3), a height adjustment mechanism connected to the first clamping member (6) is provided. Inside the fixing plate (5), a length adjustment mechanism (7) connected to the first clamping member (6) is provided; Both the first clamping member (6) and the second clamping member (53) include a fixed block (8), a clamping plate (9), a base (10) and a clamping wheel (11). The fixed block (8) is located on one side of the support plate (3), the movable plate (4) and the fixing plate (5). One end of the fixed block (8) is connected to the clamping plate (9). On one side of the clamping plate (9), bases (10) are equidistantly provided. On the base (10), a clamping wheel (11) is rotatably connected; An accommodation groove one (12) and an accommodation groove two (13) are formed inside the base (1). The accommodation groove two (13) is located above the accommodation groove one (12). Inside both support plates (3), an accommodation groove three (14) is formed. The height adjustment mechanism is located inside the accommodation groove three (14). The two height adjustment mechanisms are connected by a driver located inside the accommodation groove one (12). The spacing adjustment mechanism is located inside the accommodation groove two (13), and the spacing adjustment mechanism is connected to the driver.
2. The novel insulator curing device according to claim 1, characterized in that: The height adjustment mechanism includes a rotating shaft (16), a lead screw cylinder (17), a first threaded block (18), a first slide bar (19) and a first bevel gear (20). The rotating shaft (16) is provided inside the accommodation groove three (14). One end of the rotating shaft (16) extends to the inside of the accommodation groove one (12). At the bottom end of the rotating shaft (16), the first bevel gear (20) is provided. On the outside of the rotating shaft (16), two lead screw cylinders (17) are fixedly connected. The outside of the lead screw cylinder (17) is threadedly connected with the first threaded block (18). At one end of the first threaded block (18), a first slide bar (19) is provided. On both sides of the two support plates (3) close to each other, a first slot (15) communicating with the accommodation groove three (14) is formed. The first slide bar (19) penetrates through the inside of the first slot (15) and extends outside the accommodation groove three (14). At one end of the first slide bar (19), a slide plate (32) is provided, and the slide plate (32) is connected to the side wall of the fixed block (8).
3. A novel insulator curing device according to claim 2, characterized in that: The width of the slide plate (32) is greater than the width of the first slot (15). Stop rings are provided at the top and bottom ends of the lead screw cylinder (17).
4. A novel insulator curing device according to claim 1, characterized in that: The driver includes a rotating shaft (21), a first turbine (22), a transmission shaft (23), a second bevel gear (24), a worm barrel (25), a fourth bevel gear (29), and a fixing group. The rotating shaft (21) is arranged inside the first accommodating groove (12). One end of the rotating shaft (21) is connected to the fixing group, and one end of the rotating shaft (21) extends to the inner wall of the second accommodating groove (13). The rotating shaft (21) is provided with the first turbine (22) and the fourth bevel gear (29). The first turbine (22) is located inside the first accommodating groove (12), and the fourth bevel gear (29) is located inside the second worm (43). The transmission shaft (23) is installed inside the first accommodating groove (12). Symmetrically arranged on the transmission shaft (23) are second bevel gears (24) meshed and connected with the first bevel gear (20). At the middle position of the transmission shaft (23), a moving wheel (2) meshed and connected with the first turbine (22) is fixedly connected, and the fourth bevel gear (29) is connected to the spacing adjustment mechanism.
5. A novel insulator curing device according to claim 4, characterized in that: The fixing group includes a first groove (33), a knob (34), a locking opening (35), a shielding plate (36), a second groove (37), a locking rod (38), and a connecting member. A first groove (33) is formed at the bottom end of the base (1). The shielding plate (36) is arranged inside the first groove (33). A second groove (37) is formed on the shielding plate (36). One end of the rotating shaft (21) is provided with a knob (34) located inside the second groove (37). At the bottom end of the knob (34), locking openings (35) are equidistantly formed. Inside the second groove (37), a locking rod (38) engaged with the locking openings (35) is arranged. At the top end of the shielding plate (36), third grooves (39) symmetrically formed on both sides of the second groove (37) are provided. The third grooves (39) and the first groove (33) are connected through the connecting member.
6. The novel insulator curing device according to claim 5, characterized in that: The connecting member includes a fixing cylinder (40), a spring (41), and a pull rod (42). The fixing cylinder (40) is arranged inside the third groove (39). The pull rod (42) connected to the side wall of the first groove (33) is inserted through the fixing cylinder (40). The pull rod (42) has an inverted T-shaped structure. The bottom end of the pull rod (42) is connected to the inner bottom end of the fixing cylinder (40) through the spring (41).
7. A novel insulator curing device according to claim 1, characterized in that: The spacing adjustment mechanism includes a second slot (26), a bidirectional lead screw (27), a third bevel gear (28), a second slide bar (30), and a second threaded block (31). A second slot (26) communicating with the second accommodating groove (13) is formed at the top end of the base (1). The bidirectional lead screw (27) is installed inside the second accommodating groove (13). In the middle of the second bevel gear (24), a third bevel gear (28) meshed and connected with the fourth bevel gear (29) is provided. Symmetrically arranged second threaded blocks (31) are threadedly connected to the bidirectional lead screw (27). The top ends of the second threaded blocks (31) are provided with second slide bars (30) penetrating through the second slot (26). The second slide bars (30) are connected to the bottom end of the movable plate (4).
8. A novel insulator curing device according to claim 1, characterized in that: The length adjustment mechanism (7) includes a moving group and a driving group. The driving group includes a second worm (43), an internally threaded cylinder (44), a third turbine (45), a third worm (46) and a second turbine (47). The second worms (43) are equidistantly arranged inside the fixed plate (5). The tops of the second worms (43) all extend to the top of the fixed plate (5), and the tops of the second worms (43) are all connected to the third turbines (45). A third worm (46) meshing with the third turbines (45) is arranged at the top of the fixed plate (5). The internally threaded cylinders (44) are equidistantly arranged inside the fixed plate (5). A second turbine (47) meshing with the second worm (43) is arranged on the internally threaded cylinder (44). The internally threaded cylinder (44) is connected to the second clamping member (53) through the moving group.
9. A novel insulator curing device according to claim 1, characterized in that: The moving group includes a third threaded block (48), an adapter rod (49), an opening (50), a limiting block (51) and a worm cylinder (25). A third threaded block (48) is threadedly connected inside the internally threaded cylinder (44). Openings (50) are equidistantly formed in the side wall of the fixed plate (5). One end of the third threaded block (48) is provided with an adapter rod (49) penetrating through the opening (50), and the adapter rod (49) is fixedly connected to the fixed block (8).
10. A novel insulator curing device according to claim 9, characterized in that: Limiting blocks (51) are symmetrically arranged inside the opening (50), and limiting grooves (52) slidably connected to the limiting blocks (51) are symmetrically formed on the adapter rod (49).
Citation Information
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