Insulating insulator cradle
By designing an adjustable length insulated bottle holder, combined with the connection mechanism and the fixing mechanism, the problem that the fixed-length bottle holder is difficult to meet the diverse needs, and efficient space utilization is achieved to meet different occasions and uses, and to ensure the stable fixation and safety of the bottle.
Patent Information
- Application Number
- CN202422101358.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Fixed-length insulated bottle holders are difficult to meet the diverse needs of different occasions and uses, and inappropriate lengths lead to inefficient space utilization when space is limited or large.
An insulated bottle holder rack including a connecting mechanism and a fixing mechanism is designed. Through the connecting mechanism, the length of the bottle holder can be adjusted according to actual needs and adapted to different occasions and uses; through the fixing mechanism, the bottle can be flexibly adjusted according to the actual size of the bottle to ensure that the bottle is firmly fixed to the rack.
It realizes flexible adjustment of the length of the bottle holder, adapts to different occasions and uses, improves space utilization efficiency, ensures the stable fixation of the bottle and the safety of the use process.
Smart Images

Figure CN223007235U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of bottle holders, and particularly relates to an insulating bottle holder. Background Art
[0002] The insulating bottle holder is an important tool in the overhaul of transmission lines, mainly used to hold the insulator string to be overhauled or replaced. During the overhaul process, the insulating bottle holder plays a supporting role, enabling the insulator string to always maintain a straight state under its own weight, which greatly facilitates the orderly progress of the overhaul work. The design of the insulating bottle holder usually takes into account the needs of on-site operations and includes two types: integral and sectional. For scenarios with higher voltages, due to the longer insulator string, a sectional bottle holder is usually selected. When in use, the rollers on both sides of the bottle holder will fall into the track, and each section of the bottle holder maintains its corresponding position and has excellent connection to ensure that there will be no impact or left-right sway when dragging the bottle holder.
[0003] The insulating bottle holder with high stability, with the publication number "CN210860650U", includes a base. One side of the top of the base is provided with a support rod, and auxiliary rods are evenly installed at the edge of the top of the base. An arc-shaped rod is arranged outside the support rod, and the arc-shaped rod is connected to each group of auxiliary rods. An anti-slip layer is arranged inside the arc-shaped rod. L-shaped connecting rods are symmetrically installed at both ends of the arc-shaped rod, and internal threaded holes are formed in the L-shaped connecting rods. The utility model is provided with a base, a support rod, auxiliary rods, an arc-shaped rod and an anti-slip layer, which is convenient for placing the bottle body on the base to avoid collision, resulting in the bottle body tipping over or even being damaged. Combining the L-shaped connecting rod, the internal threaded hole, the lead screw shaft, the bearing, the pressing block and the holding block, hold the holding block and rotate it, so as to drive the lead screw shaft to rotate inside the internal threaded hole through the holding block. Since the internal threaded hole and the lead screw shaft cooperate with each other, the lead screw shaft is thus pushed to move horizontally left and right and rotates through the bearing.
[0004] Although the above-mentioned utility model can be applicable to bottle bodies with various inner diameters, improving the applicability of the device, and facilitating the stable pressing of various bottle bodies by internal pressure to improve the stability of the device when supporting the bottle body, it can only be applicable to bottle bodies with various inner diameters. However, in different occasions and uses, bottle holders of different lengths may be required, and a bottle holder with a fixed length is difficult to meet such diverse needs. Moreover, for places with limited space, an overly long bottle holder may occupy too much space, resulting in low space utilization efficiency; while for places with a large space, an overly short bottle holder may not be able to make full use of the space height. Summary of the Utility Model
[0005] Aiming at the problems mentioned in the background art, the purpose of the present utility model is to provide an insulating bottle holder to solve the problem that bottle holders of different lengths may be required in different occasions and uses, while a bottle holder with a fixed length is difficult to meet such diverse needs.
[0006] The above technical object of the utility model is achieved by the following technical solutions:
[0007] An insulating bottle support frame includes a base. A first arc-shaped baffle is fixedly connected to the outer side wall of the base. A first arc-shaped block is installed at the upper end of the first arc-shaped baffle. One end of the first arc-shaped block is rotatably connected to a rotating column. A second arc-shaped block is fixedly connected to the outer side wall of the rotating column. A second arc-shaped baffle is installed at the upper end of the first arc-shaped block. Positioning blocks are symmetrically and fixedly connected to the outer side wall of the first arc-shaped block. Connecting mechanisms are symmetrically installed inside the positioning blocks. A fixing block is fixedly connected to the end of the second arc-shaped block away from the rotating column. A fixing mechanism is installed inside the fixing block;
[0008] The connecting mechanism includes a second return spring, a moving plate, a sliding block, a pressing block and a clamping column. Second accommodation cavities are symmetrically formed inside the positioning blocks. Second return springs are symmetrically and fixedly connected to one end inside the second accommodation cavities. The other end of the second return spring is fixedly connected to the moving plate. A pressing block is fixedly connected to the end of the moving plate away from the second return spring. The end of the pressing block away from the moving plate extends out of one end of the positioning block. A sliding block is fixedly connected to one end of the moving plate. The end of the sliding block away from the moving plate extends out of one end of the first arc-shaped block. A clamping column is fixedly connected to the end of the sliding block away from the second return spring. Chutes are symmetrically formed at both ends of the first arc-shaped block. The chutes communicate with the second accommodation cavities. The chutes are in sliding connection with the sliding blocks. Installation rings are fixedly connected to the upper end of the first arc-shaped baffle and both ends of the second arc-shaped baffle. Slots are symmetrically formed at the upper end of the installation ring on the upper end of the first arc-shaped baffle. Slots are symmetrically formed at both ends of the installation rings at both ends of the second arc-shaped baffle. The slots are in plug-in connection with the sliding blocks. A clamping groove is formed at one end inside the slot. The clamping groove is in clamping connection with the clamping column. The length can be easily adjusted according to actual needs to adapt to different occasions and uses. Moreover, by adjusting the length, the bottle rack can more precisely adapt to the size of the storage space, avoiding space waste.
[0009] As a preferred technical solution, the fixing mechanism includes a first return spring, a pressing plate, a pressing block and a locking block. The fixing block is symmetrically provided with first receiving cavities inside. At one end inside the first receiving cavity, the first return springs are symmetrically and fixedly connected. The other ends of the first return springs are fixedly connected with the pressing plate. The pressing plate is fixedly connected with the pressing block and the locking block at one end away from the first return spring. The end of the pressing block away from the pressing plate extends out of one end of the second arc-shaped block. The end of the locking block away from the pressing plate extends out of one end of the fixing block. A fixing groove is provided at one end of the first arc-shaped block close to the fixing block. The fixing groove is inserted into the fixing block. Locking grooves are symmetrically provided at both ends inside the fixing groove. The locking grooves are clamped with the locking blocks. A threaded hole is provided on the outer side wall of the second arc-shaped block. The threaded hole penetrates through the second arc-shaped block. An adjusting bolt is threadedly connected inside the threaded hole. An arc-shaped clamping plate is installed at one end of the adjusting bolt close to the first arc-shaped block. An anti-slip pad is adhered to one side of the first arc-shaped block close to the second arc-shaped block. An anti-slip pad is adhered to one side of the arc-shaped clamping plate close to the first arc-shaped block. It can be flexibly adjusted according to the actual size of the bottle to ensure that the bottle can be firmly fixed on the shelf after being placed. At the same time, it can effectively prevent the bottle from shaking or tipping when subjected to external force or vibration, thus ensuring the safety during use.
[0010] In summary, the present utility model mainly has the following beneficial effects:
[0011] First, through the connecting mechanism of the present utility model, when it is necessary to adjust the length of the bottle support, the user presses the pressing block, so that the moving plate drives the slider to move, and then combines the second arc-shaped baffle with the first arc-shaped block, inserts the slider into the slot, and then releases the pressing block. The second return spring resets, and the moving plate drives the slider to rebound, so that the clamping column is clamped and fixed with the clamping slot. At the same time, the reverse operation can complete the disassembly of the second arc-shaped baffle, and complete the adjustment of the length of the bottle support. The length can be easily adjusted according to actual needs to adapt to different occasions and uses. Moreover, by adjusting the length, the bottle rack can more precisely adapt to the size of the storage space, avoiding waste of space.
[0012] Second, through the fixing mechanism of the present utility model, when it is necessary to fix the bottle, the user places the bottle on the base, then presses the pressing block, and then combines the second arc-shaped block with the first arc-shaped block. The fixing block is inserted into the fixing groove. At the same time, the pressing block is released, the first return spring resets, and the moving plate drives the locking block to pop out and be clamped and fixed with the locking groove. Then the adjusting bolt is rotated to make the arc-shaped clamping plate move forward to fix the bottle, and the fixing of the bottle is completed. It can be flexibly adjusted according to the actual size of the bottle to ensure that the bottle can be firmly fixed on the shelf after being placed. At the same time, it can effectively prevent the bottle from shaking or tipping when subjected to external force or vibration, thus ensuring the safety during use. Description of the Drawings
[0013] Figure 1It is a three-dimensional structural schematic diagram of the present utility model;
[0014] Figure 2 It is a sectional three-dimensional structural schematic diagram of the connecting mechanism of the present utility model;
[0015] Figure 3 It is a sectional three-dimensional structural schematic diagram of the fixing mechanism of the present utility model;
[0016] Figure 4 It is a three-dimensional structural schematic diagram of the first arc-shaped block of the present utility model.
[0017] Reference numerals: 1, base; 2, first arc-shaped baffle; 3, first arc-shaped block; 4, rotating column; 5, second arc-shaped block; 6, fixing block; 7, first accommodating cavity; 8, fixing mechanism; 81, first return spring; 82, pressing plate; 83, pressing block; 84, locking block; 9, fixing groove; 10, locking groove; 11, threaded hole; 12, adjusting bolt; 13, arc-shaped clamping plate; 14, anti-slip pad; 15, second arc-shaped baffle; 16, mounting ring; 17, positioning block; 18, second accommodating cavity; 19, connecting mechanism; 191, second return spring; 192, moving plate; 193, slider; 194, pressing block; 195, clamping column; 20, slot; 21, clamping groove; 22, sliding groove. Detailed implementation manners
[0018] Refer to Figures 1 to 4 , a kind of insulating bottle holder described in this embodiment includes a base 1, a first arc-shaped baffle 2 is fixedly connected to the outer side wall of the base 1, a first arc-shaped block 3 is installed at the upper end of the first arc-shaped baffle 2, one end of the first arc-shaped block 3 is rotatably connected to a rotating column 4, a second arc-shaped block 5 is fixedly connected to the outer side wall of the rotating column 4, a second arc-shaped baffle 15 is installed at the upper end of the first arc-shaped block 3, positioning blocks 17 are symmetrically and fixedly connected to the outer side wall of the first arc-shaped block 3, a connecting mechanism 19 is symmetrically installed inside the positioning blocks 17, a fixing block 6 is fixedly connected to the end of the second arc-shaped block 5 far away from the rotating column 4, and a fixing mechanism 8 is installed inside the fixing block 6;
[0019] The connecting mechanism 19 includes a second return spring 191, a moving plate 192, a slider 193, a pressing block 194 and a clamping post 195. Second accommodation cavities 18 are symmetrically formed inside the positioning block 17. At one end inside the second accommodation cavities 18, the second return springs 191 are symmetrically and fixedly connected. The other ends of the second return springs 191 are fixedly connected with the moving plate 192. One end of the moving plate 192 away from the second return spring 191 is fixedly connected with the pressing block 194. One end of the pressing block 194 away from the moving plate 192 extends out of one end of the positioning block 17. One end of the moving plate 192 is fixedly connected with the slider 193. One end of the slider 193 away from the moving plate 192 extends out of one end of the first arc-shaped block 3. One end of the slider 193 away from the second return spring 191 is fixedly connected with the clamping post 195. Chutes 22 are symmetrically formed at both ends of the first arc-shaped block 3. The chutes 22 communicate with the second accommodation cavities 18. The chutes 22 are in sliding connection with the slider 193. Mounting rings 16 are fixedly connected to the upper ends of the first arc-shaped baffle 2 and both ends of the second arc-shaped baffle 15. Slots 20 are symmetrically formed at the upper ends of the mounting rings 16 at the upper end of the first arc-shaped baffle 2. Slots 20 are symmetrically formed at both ends of the mounting rings 16 at both ends of the second arc-shaped baffle 15. The slots 20 are in plug connection with the slider 193. A clamping groove 21 is formed at one end inside the slot 20. The clamping groove 21 is in clamping connection with the clamping post 195. The user presses the pressing block 194 to drive the moving plate 192 to drive the slider 193 to move. Then, the second arc-shaped baffle 15 and the first arc-shaped block 3 are combined, so that the slider 193 is inserted into the slot 20. Then, the pressing block 194 is released, and the second return spring 191 resets. The moving plate 192 drives the slider 193 to rebound. The slider 193 slides inside the slot 20, so that the clamping post 195 is clamped and fixed with the clamping groove 21. At the same time, reverse operation can complete the disassembly of the second arc-shaped baffle 15, and complete the adjustment of the length of the bottle support rack.
[0020] Reference Figure 3, the fixing mechanism 8 includes a first return spring 81, a pressing plate 82, a pressing block 83 and a locking block 84. Symmetrically arranged first receiving cavities 7 are formed inside the fixing block 6. At one end inside the first receiving cavity 7, the first return springs 81 are symmetrically fixedly connected. The other ends of the first return springs 81 are fixedly connected to the pressing plate 82. One end of the pressing plate 82 away from the first return spring 81 is fixedly connected to the pressing block 83 and the locking block 84. One end of the pressing block 83 away from the pressing plate 82 extends out of one end of the second arc-shaped block 5, and one end of the locking block 84 away from the pressing plate 82 extends out of one end of the fixing block 6. A fixing groove 9 is formed at one end of the first arc-shaped block 3 close to the fixing block 6. The fixing groove 9 is inserted into the fixing block 6. At both ends inside the fixing groove 9, locking grooves 10 are symmetrically formed. The locking grooves 10 are clamped with the locking blocks 84. The user presses the pressing block 83, then combines the second arc-shaped block 5 with the first arc-shaped block 3, inserts the fixing block 6 into the fixing groove 9, and at the same time releases the pressing block 83. The first return spring 81 resets, and the moving plate 192 drives the locking block 84 to pop out and engage with the locking groove 10 for fixing, completing the fixation between the first arc-shaped block 3 and the second arc-shaped block 5.
[0021] Reference Figure 4 , a threaded hole 11 is formed in the outer side wall of the second arc-shaped block 5. The threaded hole 11 penetrates through the second arc-shaped block 5. An adjusting bolt 12 is threadedly connected inside the threaded hole 11. One end of the adjusting bolt 12 close to the first arc-shaped block 3 is provided with an arc-shaped clamping plate 13. The user places the bottle on the base 1, then fixes the first arc-shaped block 3 and the second arc-shaped block 5 through the fixing mechanism 8, and then rotates the adjusting bolt 12. The adjusting bolt 12 rotates threadedly with the threaded hole 11, so that the arc-shaped clamping plate 13 advances to fix the bottle, completing the fixation of the bottle.
[0022] Reference Figure 3 , an anti-slip pad 14 is glued to one side of the first arc-shaped block 3 close to the second arc-shaped block 5, and an anti-slip pad 14 is glued to one side of the arc-shaped clamping plate 13 close to the first arc-shaped block 3. When the arc-shaped clamping plate 13 fixes the bottle, the anti-slip pad 14 fits with the outer side wall of the bottle. The anti-slip pad 14 can prevent the bottle from sliding or shifting when the bottle holder is subjected to external forces or vibrations.
[0023] Principle of use and advantages: First, according to the length of the bottle, the user presses the pressing block 194, causing the moving plate 192 to drive the slider 193 to move. Then, the second arc-shaped baffle 15 is combined with the first arc-shaped block 3, and the slider 193 is inserted into the slot 20. Then, the pressing block 194 is released, and the second return spring 191 returns to its original position, driving the slider 193 to rebound by the moving plate 192, so that the clamping post 195 is clamped and fixed with the clamping groove 21, adjusting the length of the bottle support. Then, the user places the bottle on the base 1, presses the pressing block 83, combines the second arc-shaped block 5 with the first arc-shaped block 3, and the fixing block 6 is inserted into the fixing groove 9. At the same time, the pressing block 83 is released, and the first return spring 81 returns to its original position, driving the locking block 84 to pop out by the moving plate 192 and be clamped and fixed with the locking groove 10. Then, the adjusting bolt 12 is rotated to make the arc-shaped clamping plate 13 move forward to fix the bottle, completing the fixation of the bottle.
[0024] The utility model can easily adjust the length according to actual needs to adapt to different occasions and uses. Moreover, by adjusting the length, the bottle rack can more precisely adapt to the size of the storage space, avoiding space waste. At the same time, it can be flexibly adjusted according to the actual size of the bottle to ensure that the bottle can be firmly fixed on the rack after being placed, and can also effectively prevent the bottle from shaking or toppling when subjected to external forces or vibrations, thus ensuring the safety during use.
Claims
1. An insulating bottle support, comprising a base (1), characterized in that: The outer wall of the base (1) is fixedly connected to a first arc-shaped baffle (2); a first arc-shaped block (3) is installed on the upper end of the first arc-shaped baffle (2); one end of the first arc-shaped block (3) is rotatably connected to a rotating column (4); a second arc-shaped block (5) is fixedly connected to the outer wall of the rotating column (4); a second arc-shaped baffle (15) is installed on the upper end of the first arc-shaped block (3); a positioning block (17) is symmetrically fixedly connected to the outer wall of the first arc-shaped block (3); a connecting mechanism (19) is symmetrically installed inside the positioning block (17); an end of the second arc-shaped block (5) away from the rotating column (4) is fixedly connected to a fixing block (6); a fixing mechanism (8) is installed inside the fixing block (6); The connecting mechanism (19) comprises a second return spring (191), a movable plate (192), a slider (193), a pressing block (194) and a clamping column (195); a second accommodating chamber (18) is symmetrically provided inside the positioning block (17); one end of the second accommodating chamber (18) is symmetrically fixedly connected to the second return spring (191); the other end of the second return spring (191) is fixedly connected to the movable plate (192); one end of the movable plate (192) away from the second return spring (191) is fixedly connected to the pressing block (194); one end of the pressing block (194) away from the movable plate (192) extends out of one end of the positioning block (17); one end of the movable plate (192) is fixedly connected to the slider (193); one end of the slider (193) away from the movable plate (192) extends out of one end of the first arc block (3); and one end of the slider (193) away from the second return spring (191) is fixedly connected to the clamping column (195).
2. The insulating bottle support according to claim 1, characterized in that: Both ends of the first arc-shaped block (3) are symmetrically provided with sliding grooves (22), the sliding grooves (22) are communicated with the second accommodating cavity (18), and the sliding grooves (22) are slidably connected with the sliding block (193).
3. The insulating bottle support according to claim 1, characterized in that: The upper end of the first arc-shaped baffle (2) and both ends of the second arc-shaped baffle (15) are fixedly connected with a mounting ring (16); the upper end of the mounting ring (16) at the upper end of the first arc-shaped baffle (2) is symmetrically provided with a slot (20); the mounting rings (16) at both ends of the second arc-shaped baffle (15) are symmetrically provided with slots (20); the slots (20) are plug-connected with the slider (193); a clamping slot (21) is provided at one end inside the slot (20); and the clamping slot (21) is clamped with the clamping column (195).
4. The insulating bottle support according to claim 1, characterized in that: The fixing mechanism (8) comprises a first return spring (81), a pressing plate (82), a pressing block (83) and a locking block (84); a first accommodating cavity (7) is symmetrically provided inside the fixing block (6); one end of the first accommodating cavity (7) is symmetrically fixedly connected with the first return spring (81); the other end of the first return spring (81) is fixedly connected with the pressing plate (82); the end of the pressing plate (82) away from the first return spring (81) is fixedly connected with the pressing block (83) and the locking block (84); the end of the pressing block (83) away from the pressing plate (82) extends out of one end of the second arc block (5); the end of the locking block (84) away from the pressing plate (82) extends out of one end of the fixing block (6).
5. The insulating bottle support according to claim 1, characterized in that: A fixing groove (9) is provided at one end of the first arc-shaped block (3) close to the fixing block (6), and the fixing groove (9) and the fixing block (6) are plug-connected. Locking grooves (10) are symmetrically provided at both ends of the fixing groove (9), and the locking grooves (10) and the locking block (84) are snap-connected.
6. The insulating bottle support according to claim 1, characterized in that: A threaded hole (11) is provided on the outer wall of the second arc-shaped block (5), the threaded hole (11) passes through the second arc-shaped block (5), an adjusting bolt (12) is threadedly connected inside the threaded hole (11), and an arc-shaped clamping plate (13) is installed at one end of the adjusting bolt (12) close to the first arc-shaped block (3).
7. The insulating bottle support according to claim 6, characterized in that: A non-slip pad (14) is glued to one side of the first arc block (3) close to the second arc block (5), and a non-slip pad (14) is glued to one side of the arc clamping plate (13) close to the first arc block (3).
Citation Information
Patent Citations
High-stability insulating insulator cradle
CN210860650U