Large-diameter insulating tube protection reinforcing structure
The split structure composed of supporting buckles and isolation frames solves the problem that a single bracket structure of the insulating tube cannot meet the installation requirements of multiple specifications. It achieves convenient installation and adaptability to multiple specifications, and improves the stability and protection effect of the insulating tube.
Patent Information
- Application Number
- CN202423048601.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-12-11
AI Technical Summary
When installing existing insulating pipes, a single bracket structure cannot meet the installation requirements of pipes of various specifications, resulting in incomplete protection and affecting safety.
The split structure consisting of support buckle blocks, installation side blocks, extrusion screws and isolation frames is adopted, and stable installation and isolation protection of pipes of various specifications are achieved through bolt fixation and threaded connection.
The convenient installation and multi-specification adaptability of the insulating tube are realized, and the installation stability and protection effect are improved.
Smart Images

Figure CN223360121U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of insulating tubes, in particular to a protective reinforcement structure for large-diameter insulating tubes. Background Art
[0002] Insulation tubing is a general term for insulation tubing. It includes fiberglass insulation tubing, PVC tubing, heat shrink tubing, Teflon tubing, ceramic tubing, etc.
[0003] When using current insulating tubes, when installing large-diameter tubes, a single bracket structure is used to assist the installation operation, which makes the support installation unable to meet the installation operations of tubes of various specifications, limiting its installation. The single bracket structure does not provide comprehensive protection for the insulating tube, affecting its safety in use. Summary of the Invention
[0004] The purpose of the present utility model is to provide a protective reinforcement structure for large-diameter insulating tubes, so as to solve the problem raised in the above-mentioned background technology that when the existing insulating tubes are used, when the large-diameter tube body is installed, the supporting installation is assisted by a single bracket structure, which makes it impossible to meet the installation operation of tube bodies of various specifications, so that the installation is limited, and the single bracket structure makes the protection of the insulating tube not comprehensive, affecting the safety of its use.
[0005] To achieve the above objectives, the present invention provides the following technical solutions:
[0006] A large-diameter insulating tube protection reinforcement structure includes a support buckle block, both sides of the support buckle block are symmetrically welded with mounting side blocks, the top surface of the mounting side block is evenly provided with fixing through holes, the top and bottom surfaces of the support buckle block are symmetrically welded with docking top blocks, one side of the support buckle block is threadedly connected with an extrusion screw, the side of the support buckle block is symmetrically provided with through holes, the inner side of the through hole is horizontally plugged with a supporting connecting rod, the side edges of the support buckle blocks are horizontally docked with an isolation frame, the inner side of the isolation frame is fixedly connected with an isolation net, the top and bottom surfaces of the support buckle block are A top connecting screw is symmetrically threaded, and the side of the support buckle block is clamped with an extruded inner block. The main pipeline is horizontally inserted between the sides of the extruded inner blocks. One side of the support buckle block is symmetrically provided with a matching clip. The side of the docking top block is provided with a fixing hole. The inner side of the extruded inner block is fixedly bonded with a side glue layer. One end of the extrusion screw is fixedly welded with an end clamping block. The side of the support buckle block is symmetrically provided with a side clamping groove. The inner side of the side clamping groove is horizontally clamped with an extrusion spring. The outer side of the isolation frame is symmetrically provided with a matching groove, and the inner side of the matching groove is plugged with a connecting block.
[0007] As a preferred embodiment of the present invention: the number of the supporting buckle blocks is four, and the four supporting buckle blocks are arranged in pairs and buckled with each other, the installation side blocks are symmetrically fixed in pairs at the two ends of the side edges of the supporting buckle blocks, and the side edges of the docking top blocks are arranged to dock with each other.
[0008] As a preferred embodiment of the present invention: the extrusion screw is horizontally threadedly connected and arranged at the center screw hole position on the side of the support buckle block, and the extended end is docked and arranged at the center position of the outer arc surface of the extruded inner block, and the through holes are horizontally and symmetrically opened on the side of the support buckle block near the four corners, and multiple support rods are fixedly connected to each other by threads, and the two ends of the extended support rods are horizontally inserted and arranged on the inner side of the through holes.
[0009] As a preferred embodiment of the present invention: the isolation frames are horizontally docked with each other at the side positions between the support buckle blocks, one end of the top screw extends to the inner side of the through hole, and the extended end is docked at the outer side of the support connecting rod, and the extruded inner block is vertically clamped in the side arc groove position of the support buckle block.
[0010] As a preferred embodiment of the present invention: one end of the mating clip is correspondingly inserted into the inner side edge of the side clip groove, and the other end of the mating clip is correspondingly inserted into the inner side edge of the mating groove, the side edge of the side rubber layer is docked with the outer side edge of the main pipe, and one end of the end clip block is clipped into the center clip hole position of the outer arc surface of the extruded inner block.
[0011] As a preferred embodiment of the present invention: the side card slots are symmetrically arranged on the side of the support buckle block near the edge, one end of the extrusion spring is docked with the plug-in end of the end card block, and the isolation frames are connected to each other through a connecting block.
[0012] Compared with the prior art, the beneficial effects of the present invention are:
[0013] The utility model is to buckle the support buckle blocks in pairs to each other and arrange them on the outer side of the main pipe, and then stably arrange the support buckle blocks on the outer side of the main pipe after the bolts pass through the fixing holes. After the bolts pass through the fixing through holes, the installation side blocks are fixedly installed and arranged at the specified position. After the extrusion screw is rotated, the end clamping block at one end squeezes the extrusion inner block to move toward the outer side of the main pipe, so that the extrusion inner block is squeezed and fixed to the outer side of the main pipe. Under the extrusion of the side rubber layer on the inner side, the main pipe is fixed and installed. After the support connecting rods are fixedly connected to each other, the two ends of the extended support connecting rods are horizontally plugged in and arranged on the penetration holes. Inside the through hole, after the top connecting screw is rotated, the bottom end is extruded and set on the outer side of the supporting connecting rod. Then, after multiple isolation frames are fixedly connected through the connecting blocks, the spliced isolation frames are horizontally set between the supporting buckle blocks. Under the top connection of the extrusion spring, one end of the end clamp block is extended and inserted into the inside of the matching groove and fixed, so that the supporting connecting rod and the isolation net form an isolation and protection effect on the main pipeline in the center position. The split structure makes it more convenient to install and use. At the same time, the extrusion stable structure allows its pipeline installation to adapt to the use of multiple specifications, and the multiple isolation and protection structures make its protection effect better. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Other features, objects and advantages of the present invention will become more apparent from the detailed description of the non-limiting embodiments with reference to the following drawings:
[0015] Figure 1 A schematic diagram of the three-dimensional structure of a large-diameter insulating tube protection reinforcement structure;
[0016] Figure 2 This is a structural diagram of the three-dimensional connection details of the support buckle blocks of a large-diameter insulating pipe protection reinforcement structure;
[0017] Figure 3 A schematic diagram showing the structural details of the side cross-section connection of a support buckle block of a large-diameter insulating pipe protection reinforcement structure;
[0018] Figure 4 A schematic diagram showing the top view and cross-sectional connection details of a support buckle block of a large-diameter insulating pipe protection reinforcement structure;
[0019] Figure 5 This is a structural schematic diagram of the three-dimensional connection details of an isolation frame for a large-diameter insulating tube protection reinforcement structure.
[0020] In the figure: 1. Support buckle block; 2. Installing side block; 3. Fixing through hole; 4. Docking top block; 5. Extrusion screw; 6. Through hole; 7. Support connecting rod; 8. Isolation frame; 9. Isolation net; 10. Top screw; 11. Extrusion inner block; 12. Main pipeline; 13. Matching strip; 14. Fixing hole; 15. Side rubber layer; 16. End clamp block; 17. Side clamp slot; 18. Extrusion spring; 19. Matching slot; 20. Connecting block. DETAILED DESCRIPTION
[0021] See also Figure 1-2 The cam 24 is provided with a plurality of holes 36 on the top of the support block 1, and the holes 37 are connected to the top and bottom of the support block 1. The cam 24 has two holes 36 on the bottom and the holes 38 are connected to the support block 1. The cam 24 has two holes 36 on the top and the bottom. The cam 24 has two holes 36 on the bottom and the holes 38 are connected to the support block 1. The holes 6 are horizontally and symmetrically opened on the sides of the support buckle block 1 near the four corners. A plurality of support links 7 are fixedly connected to each other by threads, and the two ends of the extended support links 7 are horizontally inserted in the inner sides of the through-holes 6. The sides of the support buckle blocks 1 are horizontally butted with an isolation frame 8, and the inner sides of the isolation frame 8 are fixedly clamped with an isolation net 9. The top and bottom surfaces of the support buckle block 1 are symmetrically threaded with top screws 10. The sides of the support buckle block 1 are clamped with extruded inner blocks 11. The isolation frames 8 are horizontally butted against each other at the side positions between the support buckle blocks 1. One end of the top screw 10 extends to the inner side of the through-hole 6, and the extended end is butt-jointed with the outer side of the support link 7. The extruded inner block 11 is vertically clamped in the side arc groove position of the support buckle block 1. The sides of the extruded inner blocks 11 are horizontally inserted with a main pipe 12, and one side of the support buckle block 1 is symmetrically provided with a matching card strip 13.
[0022] See also Figure 3-5In the embodiment of the present invention, a large diameter insulating pipe protection reinforcement structure is provided, wherein a fixing hole 14 is opened on the side of the docking top block 4, a side glue layer 15 is fixedly bonded to the inner side of the extruded inner block 11, and an end clamping block 16 is fixedly welded to one end of the extruded screw 5. One end of the matching card strip 13 is correspondingly plugged into the inner side of the side card groove 17, and the other end of the matching card strip 13 is correspondingly plugged into the inner side of the matching groove 19. The side of the side glue layer 15 is docked and arranged on the outer side of the main pipe 12, and one end of the end clamping block 16 is clamped. The connection is arranged at the center card hole position of the outer arc surface of the extrusion inner block 11, and the side of the support buckle block 1 is symmetrically provided with a side card slot 17, and the inner side of the side card slot 17 is horizontally connected with an extrusion spring 18. The outer side of the isolation frame 8 is symmetrically provided with a matching slot 19, and the inner side of the matching slot 19 is plugged with a connecting block 20. The side card slot 17 is symmetrically opened on the side of the support buckle block 1 near the edge position, and one end of the extrusion spring 18 is docked at the plug-in end of the end card block 16. The isolation frames 8 are connected to each other through the connecting block 20.
[0023] The working principle of this utility model is:
[0024] The support buckle blocks 1 are buckled and set on the outer side of the main pipe 12 in pairs, and then the support buckle blocks 1 are stably set on the outer side of the main pipe 12 after the bolts pass through the fixing holes 14. After the bolts pass through the fixing through holes 3, the installation side blocks 2 are fixedly installed and set in the specified position. After the extrusion screw 5 is rotated, the end clamping block 16 at one end squeezes the extrusion inner block 11 to move to the outside of the main pipe 12, so that the extrusion inner block 11 is squeezed and fixed on the outer side of the main pipe 12. Under the extrusion of the side glue layer 15 on the inner side, the main pipe 12 is fixed and installed. After the rods 7 are fixedly connected to each other, the two ends of the extended support connecting rod 7 are horizontally inserted and set inside the through hole 6. After the top screw 10 is rotated, the bottom end is extruded and set on the outer side of the support connecting rod 7. Then, after multiple isolation frames 8 are fixedly connected through the connecting blocks 20 in between, the spliced isolation frames 8 are horizontally set between the support buckle blocks 1. Under the top connection of the extrusion spring 18, one end of the end clamping block 16 is extended and inserted into the inside of the matching groove 19 and fixed, so that the support connecting rod 7 and the isolation net 9 form an isolation and protection effect on the main pipeline 12 at the center position.
[0025] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A large diameter insulating tube protection reinforcement structure, comprising a support buckle block (1), characterized in that: The two sides of the support buckle block (1) are symmetrically welded with mounting side blocks (2), the top surface of the mounting side block (2) is evenly provided with fixing through holes (3), the top and bottom surfaces of the support buckle block (1) are symmetrically welded with docking top blocks (4), one side of the support buckle block (1) is threadedly connected with an extrusion screw (5), the side of the support buckle block (1) is symmetrically provided with a through hole (6), the inner side of the through hole (6) is horizontally plugged with a support connecting rod (7), the side of the support buckle blocks (1) is horizontally docked with an isolation frame (8), the inner side of the isolation frame (8) is fixedly connected with an isolation net (9), the top and bottom surfaces of the support buckle block (1) are symmetrically threadedly connected with a top screw (10), the support buckle block (1) ) is clamped with an extruded inner block (11) on its side, a main pipe (12) is horizontally inserted between the sides of the extruded inner blocks (11), a matching clamping strip (13) is symmetrically opened on one side of the support buckle block (1), a fixing hole (14) is opened on the side of the docking top block (4), a side glue layer (15) is fixedly bonded to the inner side of the extruded inner block (11), an end clamping block (16) is fixedly welded to one end of the extrusion screw (5), a side clamping groove (17) is symmetrically opened on the side of the support buckle block (1), an extrusion spring (18) is horizontally clamped on the inner side of the side clamping groove (17), a matching groove (19) is symmetrically opened on the outer side of the isolation frame (8), and a connecting block (20) is inserted on the inner side of the matching groove (19).
2. A large diameter insulating tube protection reinforcement structure according to claim 1, characterized in that: The number of the support buckle blocks (1) is four, and the four support buckle blocks (1) are buckled and arranged in pairs, and the mounting side blocks (2) are symmetrically fixed in pairs at the two ends of the side edges of the support buckle blocks (1), and the sides of the docking top blocks (4) are docked and arranged.
3. The large diameter insulating tube protection reinforcement structure according to claim 1, characterized in that: The extrusion screw (5) is horizontally threadedly connected and arranged at the central screw hole position of the side of the support buckle block (1), and the extended end is docked and arranged at the central position of the outer arc surface of the extrusion inner block (11). The through holes (6) are horizontally and symmetrically opened at the side of the support buckle block (1) near the four corners. Multiple support connecting rods (7) are fixedly connected to each other by threads, and the two ends of the extended support connecting rods (7) are horizontally inserted and arranged at the inner side of the through holes (6).
4. The large diameter insulating tube protection reinforcement structure according to claim 1, characterized in that: The isolation frames (8) are horizontally butted against each other at the side positions between the support buckle blocks (1), one end of the top screw (10) extends to the inner side of the through hole (6), and the extended end is butted against the outer side of the support connecting rod (7), and the extruded inner block (11) is vertically clamped at the side arc groove position of the support buckle block (1).
5. The large diameter insulating tube protection reinforcement structure according to claim 1, characterized in that: One end of the matching card strip (13) is correspondingly inserted and arranged on the inner side edge of the side card slot (17), and the other end of the matching card strip (13) is correspondingly inserted and arranged on the inner side edge of the matching slot (19). The side edge of the side rubber layer (15) is butt-jointed and arranged on the outer side edge of the main pipe (12). One end of the end card block (16) is clamped and arranged at the center card hole position of the outer arc surface of the extruded inner block (11).
6. The large diameter insulating tube protection reinforcement structure according to claim 1, characterized in that: The side card slots (17) are symmetrically arranged on the side of the support buckle block (1) near the edge, one end of the extrusion spring (18) is docked with the plug-in end of the end card block (16), and the isolation frames (8) are connected to each other via the connection block (20).