Heating and ventilation pipe heat preservation structure for heating and ventilation engineering
Through the design of flip-up bases, flip-up shafts, and splicing blocks, flexible installation and modular combination of HVAC pipe insulation structures are achieved, solving the problems of inflexible installation and limited functionality, and improving protective performance and service life.
Patent Information
- Application Number
- CN202520463021.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-03-17
AI Technical Summary
The existing HVAC pipe insulation structure used in HVAC engineering has poor installation flexibility, cannot be used in a modular manner, has limited functionality, and is inconvenient to use.
The system employs a flip base and a flip shaft to achieve flip adjustment of the sleeve blocks, quick fixing of splicing inserts and fixing bolts, modular combination of splicing slots and inserts, and protective design with rubber material, flame-retardant material inner lining blocks, waterproof coating and adhesive blocks, enabling flexible installation and quick disassembly of the sleeve blocks.
It improves installation flexibility and modularity, enhances protective performance, reduces costs, and extends service life.
Smart Images

Figure CN223754995U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of heating pipe heat preservation, specifically to a heating pipe heat preservation structure for heating engineering. BACKGROUND
[0002] When the heating pipe is used, rainwater and sandstorm will cause more or less corrosion to the outer wall of the heating pipe due to the influence of the outdoor environment. Long-term use will reduce the heat preservation performance of the heating pipe, which will affect the heating transmission efficiency, thus resulting in the need for personnel to replace the heating pipe.
[0003] The existing heating pipe heat preservation structure for heating engineering CN202420532070.0 is convenient to realize the quick positioning and installation after placement by setting the positioning groove and the positioning rod, but has the following disadvantages: the existing equipment has poor installation flexibility, cannot be used in a modular manner, has a single function, and is inconvenient to use, thus the need for a heating pipe heat preservation structure for heating engineering to solve the above problems. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a heating pipe heat preservation structure for heating engineering to solve the problems of poor installation flexibility, inability to use in a modular manner, single function, and inconvenience to use of the heating pipe heat preservation structure for heating engineering mentioned in the background.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a heating pipe heat preservation structure for heating engineering, comprising a heating pipe, a first sleeve block is installed on one side of the outer wall of the heating pipe, and a second sleeve block is installed on the other side of the outer wall of the heating pipe, a turnover seat is fixedly connected to the upper end edge of the second sleeve block, a turnover shaft is rotatably installed in the inner wall of the turnover seat, the other side of the turnover shaft is fixedly connected to the upper end edge of the first sleeve block, and splicing plug blocks are fixedly connected to the upper and lower end edges of one side of the first sleeve block and the second sleeve block, fixed bolts are inserted and combined into the inner wall of the splicing plug blocks, splicing slots are formed in the upper and lower end edges of the other side of the first sleeve block and the second sleeve block, inner lining blocks are inlaid in the inner walls of the first sleeve block and the second sleeve block, a waterproof coating is applied to the inner side of the first sleeve block and the second sleeve block, adhesion blocks are fixedly connected to the inner side of the waterproof coating, positioning buckle grooves are formed in the upper and lower end edges of the inner side of the adhesion blocks, positioning buckle blocks are inserted and combined into the inner walls of the positioning buckle grooves, heat preservation pads are fixedly connected to one end of the positioning buckle blocks, sealing rings are fixedly connected to the rear side edges of the heat preservation pads on the inner side of the first sleeve block, sealing grooves are formed in the front side edges of the heat preservation pads on the inner side of the second sleeve block, and the sealing rings and the sealing grooves are inserted and combined.
[0006] Preferably, the first set of blocks, the second set of blocks are installed by the turnover seat and the turnover shaft and the heating and ventilation pipeline is turned over, and the first set of blocks and the second set of blocks are locked and fixed by the splicing insert block and the fixing bolt.
[0007] Preferably, the first set of blocks, the second set of blocks are installed by the turnover seat and the turnover shaft and the heating and ventilation pipeline is turned over, and the first set of blocks and the second set of blocks are locked and fixed by the splicing insert block and the fixing bolt.
[0008] Preferably, the first set of blocks, the second set of blocks are installed by the splicing insert block in the splicing slot and the first set of blocks and the second set of blocks are positioned and spliced.
[0009] Preferably, the heat preservation pad is positioned and spliced with the first set of blocks and the second set of blocks by the positioning buckle slot and the positioning buckle, and the heat preservation pad is adhesively spliced with the first set of blocks and the second set of blocks by the adhesion block, and the adhesion block is a magic tape structure.
[0010] Preferably, the heat preservation pad and the waterproof coating are stacked and distributed, and the heat preservation pads are sealed and installed by the sealing ring and the sealing groove.
[0011] Compared with the prior art, the heat preservation structure for heating and ventilation engineering can drive the first set of blocks and the second set of blocks to turn over and adjust by the turnover seat and the turnover shaft, can be quickly fixed by the splicing insert block and the fixing bolt, can be modularly combined and installed by the splicing slot and the splicing insert block, is more flexible, and can play the roles of protection, flame retardation, waterproofing and heat preservation by the rubber material of the first set of blocks, the flame-retardant material of the inner lining block, the waterproof coating and the heat preservation pad. Moreover, the heat preservation pad can be quickly positioned, disassembled, replaced independently, has lower cost and longer service life. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a front view of the heat preservation structure for heating and ventilation engineering of the utility model;
[0013] Figure 2 It is a front view of the heat preservation structure for heating and ventilation engineering of the utility model;
[0014] Figure 3 It is a front view of the heat preservation structure for heating and ventilation engineering of the utility model;
[0015] Figure 4 It is a front view of the heat preservation structure for heating and ventilation engineering of the utility model; Figure 2 It is an enlarged view of A in the middle;
[0016] Figure 5 It is a front view of the heat preservation structure for heating and ventilation engineering of the utility model;Figure 2 Enlarged view at B;
[0017] Figure 6 The utility model relates to a heating and ventilation pipe heat preservation structure for heating and ventilation engineering Figure 3 Enlarged view at C.
[0018] In the figure: 1, heating and ventilation pipeline, 2, first sleeve block, 3, second sleeve block, 4, heat preservation cushion block, 5, waterproof coating, 6, adhesion block, 7, splicing slot, 8, splicing plug, 9, lining block, 10, turnover seat, 11, fixed bolt, 12, turnover shaft, 13, positioning buckle groove, 14, positioning buckle block, 15, sealing ring, 16, sealing groove. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0020] Please refer to Figures 1-6 The utility model provides a technical scheme: a heating and ventilation pipe heat preservation structure for heating and ventilation engineering, including heating and ventilation pipeline 1, first sleeve block 2, second sleeve block 3, heat preservation cushion block 4, waterproof coating 5, adhesion block 6, splicing slot 7, splicing plug 8, lining block 9, turnover seat 10, fixed bolt 11, turnover shaft 12, positioning buckle groove 13, positioning buckle block 14, sealing ring 15 and sealing groove 16, heating and ventilation pipeline 1 outer wall one side sleeve installation has first sleeve block 2, and heating and ventilation pipeline 1 outer wall other side sleeve installation has second sleeve block 3, first sleeve block 2, second sleeve block 3 are installed by turnover seat 10 and turnover shaft 12 and heating and ventilation pipeline 1 are overturned and are wrapped, and first sleeve block 2, second sleeve block 3 are locked and fixed by splicing plug 8 and fixed bolt 11, so that first sleeve block 2, second sleeve block 3 can be overturned and adjusted, and locking and fixing are more stable, and installation effect is better.
[0021] The inner and outer sides of first sleeve block 2 and second sleeve block 3 are rubber material, lining block 9 is clamped and inlaid on the inner walls of first sleeve block 2 and second sleeve block 3, and lining block 9 is flame-retardant material, so that first sleeve block 2 and second sleeve block 3 can be internally and externally buffered and protected, and can be effectively flame-retardant through lining block 9, first sleeve block 2 and second sleeve block 3 are positioned and inserted and spliced in splicing slot 7 through splicing plug 8, so that first sleeve block 2 and second sleeve block 3 can be quickly inserted and combined, which is convenient for extension adjustment and more flexible in use.
[0022] The upper end edge of the second set of blocks 3 is fixedly connected with a turnover seat 10, and the inner wall of the turnover seat 10 is rotatably installed with a turnover shaft 12, the other side of the turnover shaft 12 is fixedly connected with the upper end edge of the first set of blocks 2, and the upper and lower end edges of one side of the first set of blocks 2 and the second set of blocks 3 are protrusively fixedly connected with a splicing plug-in block 8, the inner wall of the splicing plug-in block 8 is through-plug-in installed with a fixed bolt 11, the upper and lower end edges of the other side of the first set of blocks 2 and the second set of blocks 3 are provided with a splicing slot 7, and the inner walls of the first set of blocks 2 and the second set of blocks 3 are inlaid with lining blocks 9, the inner sides of the first set of blocks 2 and the second set of blocks 3 are coated with a waterproof coating 5, and the inner side of the waterproof coating 5 is fixedly connected with a sticking block 6.
[0023] The upper and lower end edges of the inner side of the sticking block 6 are provided with a positioning buckle groove 13, and the inner wall of the positioning buckle groove 13 is plug-in installed with a positioning buckle 14, one end of the positioning buckle 14 is fixedly connected with a heat preservation pad 4, the heat preservation pad 4 is positioned and spliced with the first set of blocks 2 and the second set of blocks 3 through the positioning buckle groove 13 and the positioning buckle 14, and the heat preservation pad 4 is adhesively spliced with the first set of blocks 2 and the second set of blocks 3 through the sticking block 6, the sticking block 6 is a magic tape structure, so that the heat preservation pad 4 is conveniently and quickly positioned and adhesively installed, is conveniently and independently replaced, has low use cost, the heat preservation pad 4 and the waterproof coating 5 are in superposed distribution, and the heat preservation pad 4 is in buckling and sealing installation through a sealing ring 15 and a sealing groove 16, so that the heat preservation pad 4 can be in buckling and sealing installation, has better wrapping and heat preservation effects, and can play a waterproof role through the waterproof coating 5, the rear side edge of the heat preservation pad 4 on the inner side of the first set of blocks 2 is protrusively fixedly connected with the sealing ring 15, the front side edge of the heat preservation pad 4 on the inner side of the second set of blocks 3 is provided with the sealing groove 16, and the sealing ring 15 is plug-in installed with the sealing groove 16.
[0024] Working principle: when the heat preservation structure for heating and ventilation pipe is used, first, the first set of blocks 2 and the second set of blocks 3 of the device are turned over and opened through the turnover seat 10 and the turnover shaft 12, then the first set of blocks 2 and the second set of blocks 3 are sleeved on the outer wall of the heating and ventilation pipe 1 and are closed, and can be in buckling and sealing installation through the sealing ring 15 and the sealing groove 16, then are locked and fixed through the splicing plug-in block 8 and the fixed bolt 11, then can be extended and sleeved according to the length of the heating and ventilation pipe 1, and can be in plug-in splicing between the first set of blocks 2 and the second set of blocks 3 through the splicing slot 7 and the splicing plug-in block 8, for combined installation, so as to wrap and heat preserve through the heat preservation pad 4, when impacted, can be elastically buffered through the outer wall of the first set of blocks 2 and the second set of blocks 3, and can be effectively flame-retarded through the lining block 9, when the heat preservation pad 4 is damaged, can be quickly positioned and adhesively installed and quickly replaced through the sticking block 6, the positioning buckle groove 13 and the positioning buckle 14, this is the use process of the heat preservation structure for heating and ventilation pipe.
[0025] Although the utility model has been explained in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A heat-preservation structure for a heating and ventilation pipe, comprising a heating and ventilation pipe (1), a first sleeve block (2) is sleeved and mounted on one side of the outer wall of the heating and ventilation pipe (1), and a second sleeve block (3) is sleeved and mounted on the other side of the outer wall of the heating and ventilation pipe (1), characterized in that: The upper end edge of the second set of blocks (3) is fixedly connected with a turnover seat (10), and a turnover shaft (12) is rotatably installed on the inner wall of the turnover seat (10). The other side of the turnover shaft (12) is fixedly connected with the upper end edge of the first set of blocks (2), and the upper and lower end edges of one side of the first set of blocks (2) and the second set of blocks (3) are protrusively fixedly connected with a splicing plug-in block (8). A fixing bolt (11) is inserted and combined and installed in the inner wall of the splicing plug-in block (8). Splicing slots (7) are formed in the upper and lower end edges of the other side of the first set of blocks (2) and the second set of blocks (3), and lining blocks (9) are inlaid in the inner walls of the first set of blocks (2) and the second set of blocks (3). A waterproof coating (5) is brushed on the inner side of the first set of blocks (2) and the second set of blocks (3), and a sticking block (6) is fixedly connected to the inner side of the waterproof coating (5). Positioning buckle grooves (13) are formed in the upper and lower end edges of the inner side of the sticking block (6), and positioning buckle blocks (14) are inserted and combined and installed in the inner walls of the positioning buckle grooves (13). The one end of the positioning buckle block (14) is fixedly connected with a heat preservation pad block (4). The rear side edge of the heat preservation pad block (4) on the inner side of the first set of blocks (2) is protrusively fixedly connected with a sealing ring (15). The front side edge of the heat preservation pad block (4) on the inner side of the second set of blocks (3) is provided with a sealing groove (16). The sealing ring (15) and the sealing groove (16) are inserted and combined.
2. The heating and ventilation pipe heat preservation structure for heating and ventilation engineering according to claim 1, characterized in that: The first set of blocks (2) and the second set of blocks (3) are rotatably wrapped and installed with the heating and ventilation pipeline (1) through the turnover seat (10) and the turnover shaft (12), and the first set of blocks (2) and the second set of blocks (3) are locked and fixed through the splicing plug-in block (8) and the fixing bolt (11).
3. The heating and ventilation pipe heat preservation structure for heating and ventilation engineering according to claim 2, characterized in that: The inner and outer sides of the first set of blocks (2) and the second set of blocks (3) are made of rubber material. The lining blocks (9) are clamped and inlaid in the inner walls of the first set of blocks (2) and the second set of blocks (3), and the lining blocks (9) are made of flame-retardant material.
4. The heating and ventilation pipe heat preservation structure according to claim 3, characterized in that: The first set of blocks (2) and the second set of blocks (3) are positioned and combined and installed with the first set of blocks (2) and the second set of blocks (3) in the splicing slots (7) through the splicing plug-in blocks (8).
5. The heating and ventilation pipe heat preservation structure according to claim 4, characterized in that: The heat preservation pad blocks (4) are positioned and combined and installed with the first set of blocks (2) and the second set of blocks (3) through the positioning buckle grooves (13) and the positioning buckle blocks (14), and the heat preservation pad blocks (4) are combined and installed with the first set of blocks (2) and the second set of blocks (3) through the sticking blocks (6). The sticking blocks (6) are magic tape structures.
6. The heating and ventilation pipe heat preservation structure according to claim 5, characterized in that: The heat preservation pad blocks (4) and the waterproof coating (5) are stacked and distributed, and the heat preservation pad blocks (4) are buckled and sealed through the sealing rings (15) and the sealing grooves (16).
Citation Information
Patent Citations
Heating and ventilation pipe heat preservation structure for heating and ventilation engineering
CN221780276U