A pre-buried protection structure for mechanical and electrical pipeline installation

CN224746208UActive Publication Date: 2026-09-11CHINA CONSTR EIGHTH BUREAU TIANJIN CONSTR ENG CO LTD
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Patent Information

Application Number
CN202521844450.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-28
Publication Date
2026-09-11
Estimated Expiration
2035-08-28

AI Technical Summary

Technical Problem

[0004]为了克服现有技术的不足,本实用新型的目的是提供一种机电管线安装用预埋保护结构,解决了施工时管线因与设备意外触碰致偏移或破损,及调整检修时传统结构固定难拆卸、操作繁琐的问题

Benefits of technology

(1)本实用新型中,采用结构一致的第一防护基座、第二防护基座对称布置,结合定位块与缓冲板的卡接配合形成核心限位支架,配合基座连接处的密封件及闭合盖与基座的卡接封闭设计,提升整体结构的密封性;同时,限位架的凸起支柱与基座定位槽卡合、定位栓与限位筒螺纹连接,多维度强化了结构的固定效果,确保机电管线在预埋过程中位置稳定,最大程度上减少了偏移情况。

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Abstract

The utility model provides a kind of pre-buried protection structure for electromechanical pipeline installation belongs to electromechanical pipeline installation technical field, and includes: covering unit, bearing unit, limiting unit and positioning unit, the limiting unit is installed in the inside of bearing unit, the covering unit is installed on bearing unit, the positioning unit is respectively installed between limiting unit and bearing unit and between bearing unit and covering unit;Several wave-shaped grooves are evenly provided on the upper surface of buffer plate, and the both ends of the wave-shaped grooves are rotatably connected with rotating rings;The opening of the limiting frame connected with the first protective base and the second protective base is hingedly connected, and the both sides of the bottom of the closure cover are hingedly connected with the first protective base and the second protective base respectively.The utility model uses the pre-buried protection structure for electromechanical pipeline installation to solve the problem that pipeline is deviated or damaged due to accidental contact with equipment during construction, and the traditional structure is difficult to disassemble and operate complicatedly during adjustment and maintenance.
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Description

Technical Field

[0001] This utility model relates to the field of electromechanical pipeline installation technology, and in particular to a pre-embedded protective structure for electromechanical pipeline installation. Background Technology

[0002] As building construction continues to develop, electromechanical systems are becoming increasingly complex. The installation quality of electromechanical pipelines plays a decisive role in the functionality and safety of the entire building. With the increasing intelligence and integration of buildings, the number and types of electromechanical pipelines are increasing, and their layout is becoming more complex. During construction, many electromechanical pipelines need to be pre-embedded to ensure the normal operation of subsequent installation processes.

[0003] Traditional pre-embedded structures for electromechanical pipelines are placed directly in designated locations for positioning. During construction, these structures are prone to accidental contact with construction equipment, leading to pipeline displacement or even damage. Furthermore, whenever adjustments or maintenance are required for the pre-embedded pipelines, the fixed structure makes disassembly and adjustment difficult, resulting in low construction and maintenance efficiency and impacting the overall progress of the building project and the user experience in the later stages. Utility Model Content

[0004] In order to overcome the shortcomings of the existing technology, the purpose of this utility model is to provide a pre-embedded protective structure for the installation of electromechanical pipelines, which solves the problems of pipelines being misaligned or damaged due to accidental contact with equipment during construction, and the difficulty in disassembling and cumbersome operation of traditional fixed structures during adjustment and maintenance.

[0005] To achieve the above objectives, this utility model provides the following solution: An embedded protective structure for electromechanical pipeline installation includes: a covering unit, a supporting unit, a limiting unit, a first positioning unit, and a second positioning unit. The supporting unit includes a first protective base and a second protective base. The limiting unit is installed inside the supporting unit and includes a buffer plate and a rotating ring. The covering unit is installed on the supporting unit and includes a limiting frame, a closing cover, and a positioning bolt. A first positioning unit, including a limiting cylinder, is installed between the limiting unit and the supporting unit. A second positioning unit, including a positioning block, is installed between the supporting unit and the covering unit. The buffer plate has several wavy grooves evenly distributed on its upper surface, and the two ends of the wavy grooves are rotatably connected to the rotating rings. The limiting frame is connected to the opening formed by the first protective base and the second protective base, and the bottom sides of the closed cover are respectively connected to the first protective base and the second protective base.

[0006] Preferably, the second protective base has the same structure as the first protective base, both being side-opening frames; the first protective base and the second protective base are symmetrically arranged and a sealing element is provided at the connection between the first protective base and the second protective base; the openings of the first protective base and the second protective base are joined to form a convex sliding groove.

[0007] Preferably, a second buffer pad and a first buffer pad are fixedly and symmetrically installed on the upper end face of the opening of the first protective base and the second protective base, respectively; positioning grooves are symmetrically opened on the upper surface of the first protective base and the second protective base.

[0008] Preferably, the buffer plate is installed in the convex groove formed by the opening of the first protective base and the second protective base, and the buffer plate is installed below the first buffer pad and the second buffer pad.

[0009] Preferably, the rotating ring has a C-shaped tube opening and rotates at the groove of the buffer plate.

[0010] Preferably, the positioning block is installed at the bottom of the buffer plate, and the first protective base and the second protective base are respectively engaged on both sides of the positioning block, and the positioning block, the first buffer pad and the second buffer pad form a U-shaped structure; the limiting cylinder is symmetrically installed inside the positioning groove, and the inner surface of the limiting cylinder is provided with threads.

[0011] Preferably, the limiting frame is a rectangular frame structure, and a connecting groove is provided on the top of the limiting frame, the connecting groove passing through the limiting frame; the lower surface of the limiting frame is provided with protruding support columns matching the number of limiting cylinders, and the center of each protruding support column is provided with a through hole matching the outer diameter of the limiting cylinder, the through hole passing through the limiting frame; the protruding support column is engaged with the limiting cylinder through the through hole.

[0012] Preferably, the closing cover matches the shape of the connecting groove, and the closing cover is installed through the limiting frame; the number and inner diameter of the positioning bolts match the limiting cylinders, and the outer surface of the positioning bolts is provided with threads that match the limiting cylinders; the positioning bolts pass through the protruding support column and are threadedly connected to the limiting cylinders.

[0013] According to the specific embodiments provided by this utility model, the following technical effects are disclosed: (1) In this utility model, the first protective base and the second protective base with the same structure are symmetrically arranged. The core limiting bracket is formed by the snap-fit ​​of the positioning block and the buffer plate. The sealing of the base connection and the snap-fit ​​of the closing cover with the base improve the sealing performance of the overall structure. At the same time, the protruding support of the limiting bracket is snapped with the positioning groove of the base, and the positioning bolt is threaded with the limiting cylinder. The fixing effect of the structure is strengthened in multiple dimensions, ensuring that the position of the electromechanical pipeline is stable during the pre-embedding process and minimizing the displacement.

[0014] (2) The wave-shaped grooves on the surface of the buffer plate of this utility model and the rotating rings at both ends can buffer the impact of external forces through deformation and rotation. Combined with the U-shaped structure formed by the first buffer pad, the second buffer pad and the positioning block, it forms a three-dimensional protection from the top and the side, which can more effectively absorb external pressure, vibration, etc., thereby reducing the direct effect of external forces on the pipeline and reducing the risk of pipeline damage due to external forces.

[0015] (3) In this utility model, the limiting frame is connected to the first protective base and the second protective base, the positioning bolt is connected to the limiting cylinder by thread, and the closing cover is connected to the limiting frame by snap-fit. All of these are convenient snap-fit ​​connections. This assembly method is not only convenient for quick installation, but also facilitates disassembly and reassembly when the electromechanical pipeline is inspected or maintained in the later stage, thereby improving construction and maintenance efficiency. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 A schematic diagram of the overall structure of a pre-embedded protective structure for electromechanical pipeline installation according to this utility model; Figure 2 This is a disassembly diagram of a pre-embedded protective structure for electromechanical pipeline installation provided by this utility model; Figure 3 This is a schematic diagram of the internal side section structure of a pre-embedded protective structure for electromechanical pipeline installation according to the present invention; Figure 4 A schematic diagram of the internal orthogonal section structure of a pre-embedded protective structure for electromechanical pipeline installation according to this utility model; Figure 5 A schematic diagram of the installation structure of the second protective base and buffer plate provided for the pre-embedded protective structure for electromechanical pipeline installation according to this utility model; Figure 6This is a three-dimensional structural diagram showing the buffer plate, first buffer pad, and second buffer pad provided by the present utility model for a pre-embedded protective structure for electromechanical pipeline installation.

[0018] Figure Labels 1. First protective base; 2. Second protective base; 3. Buffer plate; 4. Positioning block; 5. Rotating ring; 6. First buffer pad; 7. Second buffer pad; 8. Positioning groove; 9. Limiting cylinder; 10. Limiting frame; 11. Connecting groove; 12. Closing cover; 13. Positioning bolt. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0021] Example 1 like Figures 1-6 As shown, this utility model provides a pre-embedded protection structure for electromechanical pipeline installation. The supporting unit consists of a first protective base 1 and a second protective base 2, used to support each unit and ensure overall stability. A limiting unit, installed inside the supporting unit, consists of a buffer plate 3 and a rotating ring 5, used to limit the position of the line and maintain line stability. A covering unit, assembled above the supporting unit, consists of a limiting frame 10, a closing cover 12, and a positioning bolt 13, used to protect the internal environment of the supporting unit. A first positioning unit, including a limiting cylinder 9, is installed between the limiting unit and the supporting unit, used to cooperate with the positioning bolt 13 to fix the position of the limiting frame 10; a second positioning unit, including a positioning block 4, is installed between the supporting unit and the covering unit, used to cooperate with the first and second protective bases to fix the position of the buffer plate 3.

[0022] The second protective base 2 has the same structure as the first protective base 1, both being side-opening frames. Both the first and second protective bases 1 and 2 are made of high-strength, corrosion-resistant metal alloy material. The first and second protective bases 1 and 2 are symmetrically arranged, with sealing elements at the connection points to prevent the intrusion of moisture, dust, and corrosive substances, protecting internal electromechanical pipelines, extending their service life, and increasing overall practicality. The initial connection between the two forms a convex sliding groove after the main support openings are joined. A second buffer pad 7 and a first buffer pad 6 are symmetrically fixed to the upper inner surfaces of the openings of the first and second protective bases 1 and 2, respectively. Positioning grooves 8 are also symmetrically formed on the upper surfaces of the first and second protective bases 1 and 2.

[0023] The buffer plate 3 is installed in the convex groove formed by the docking of the openings of the two protective bases, and is located below the first buffer pad 6 and the second buffer pad 7. The first protective base 1, the second protective base 2 and the buffer plate 3 are engaged and connected, and the main support structure is completed.

[0024] The upper surface of the buffer plate 3 has several wavy grooves evenly distributed. The two ends of the grooves are rotatably connected to rotating rings 5. The rotating rings 5 ​​have a C-shaped tube structure and can rotate at the grooves of the buffer plate 3. By utilizing the rotatable characteristic of the rotating rings 5, the angle of the pipeline can be flexibly adjusted to confine the pipeline within the grooves.

[0025] The positioning block 4 is installed at the bottom of the buffer plate 3, and its two sides are respectively engaged with the first protective base 1 and the second protective base 2. Together with the first buffer pad 6 and the second buffer pad 7, it forms a U-shaped structure, which can further buffer and dampen from above, protecting the electromechanical pipeline from external damage. The limiting cylinder 9 is symmetrically installed inside the positioning groove 8, and its inner surface is threaded for use with the positioning bolt for fixation.

[0026] The limiting frame 10 is a rectangular frame with a connecting groove 11 on its upper surface and protruding support columns on its lower surface corresponding to the number of limiting cylinders 9. Each protruding support column has a through hole at its center that matches the outer diameter of the limiting cylinder 9, and this through hole penetrates the limiting frame 10. The limiting frame 10 forms a snap-fit ​​engagement with the first protective base 1 and the second protective base 2 through an opening connecting the first protective base 1 and the second protective base 2, and the protruding support columns of the limiting frame 10 are snap-fitted with the limiting cylinders 9.

[0027] The closing cover 12 is shaped to fit the connecting groove 11 and penetrates the limiting frame 10, and its bottom two sides are respectively engaged with the first protective base 1 and the second protective base 2. The number and inner diameter of the positioning bolts 13 correspond to those of the limiting cylinders 9, and the outer surface is provided with threads that fit the limiting cylinders 9. After the positioning bolts 13 penetrate the protruding support, they form a threaded connection with the limiting cylinders 9.

[0028] Align the protruding support column at the bottom of the limiting frame 10 with the positioning groove 8 opened at the upper end of the first protective base 1 and the second protective base 2, and slowly press down to make the protruding support column snap into the positioning groove 8 and engage with the limiting cylinder 9. Insert the positioning bolt 13 through the protruding support column of the limiting frame 10 and thread it into the limiting cylinder 9. Tighten the positioning bolt 13 through the limiting frame 10 and into the limiting cylinder 9 with a tool torque to fix the limiting frame 10 and enhance the stability of the entire structure. The closing cover 12 penetrates the connecting groove 11 in the limiting frame 10, and its bottom two sides are engaged with the first protective base 1 and the second protective base 2 respectively to seal the pre-embedded protective structure and complete the installation, thereby achieving the overall protection of the device.

[0029] Working principle: In use, the first protective base 1 and the second protective base 2 with the same structure are symmetrically connected. The sealing element at the connection point ensures a tight fit, forming a convex groove as a bearing base. Then, the buffer plate 3 with a wavy groove and a rotating ring 5 is installed in the groove, so that the positioning block 4 at the bottom of the buffer plate 3 engages with the bases on both sides, and forms a U-shaped space with the first buffer pad 6 and the second buffer pad 7 in the base opening. Then, the electromechanical pipeline is placed in the groove, and the rotating ring 5 is used to fit the pipeline surface. Next, the limiting frame 10 is engaged with the opening formed by connecting the first protective base 1 and the second protective base 2, so that the protruding support on the lower surface of the limiting frame 10 is embedded into the limiting cylinder 9 in the positioning groove 8 on the upper surface of the first protective base 1 and the second protective base 2. Then, the closing cover 12 is inserted through the connecting groove 11 of the limiting frame 10. Finally, the positioning bolt 13 is inserted through the through hole of the protruding support and threadedly connected to the limiting cylinder 9, completing the sealing and fixing of the overall structure. The protection of the pipeline is achieved through the engagement and threaded cooperation of each component.

[0030] Therefore, the above-mentioned pre-embedded protection structure for electromechanical pipeline installation solves the problems of pipeline displacement or damage due to accidental contact with equipment during construction, as well as the difficulty in disassembling and cumbersome operation of traditional fixed structures during adjustment and maintenance.

[0031] This document uses specific examples to illustrate the principles and implementation methods of this utility model. The descriptions of the above embodiments are only for the purpose of helping to understand the method and core ideas of this utility model. Furthermore, those skilled in the art will recognize that, based on the ideas of this utility model, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. A pre-embedded protective structure for electromechanical pipeline installation, characterized in that, include: The system comprises a covering unit, a supporting unit, a limiting unit, a first positioning unit, and a second positioning unit. The supporting unit includes a first protective base and a second protective base. The limiting unit is installed inside the supporting unit and includes a buffer plate and a rotating ring. The covering unit is installed on the supporting unit and includes a limiting frame, a closing cover, and a positioning bolt. A first positioning unit, including a limiting cylinder, is installed between the limiting unit and the supporting unit. A second positioning unit, including a positioning block, is installed between the supporting unit and the covering unit. The buffer plate has several wavy grooves evenly distributed on its upper surface, and the two ends of the wavy grooves are rotatably connected to the rotating ring. The limiting frame is connected to the opening formed by the first protective base and the second protective base, and the bottom sides of the closed cover are respectively connected to the first protective base and the second protective base.

2. The embedded protection structure for electromechanical pipeline installation according to claim 1, characterized in that, The second protective base has the same structure as the first protective base, both being side-opening frames; the first and second protective bases are symmetrically arranged and a sealing element is provided at the connection between the first and second protective bases; the openings of the first and second protective bases are joined to form a convex sliding groove.

3. The embedded protection structure for electromechanical pipeline installation according to claim 2, characterized in that, A second buffer pad and a first buffer pad are respectively fixedly and symmetrically installed on the upper end face of the opening of the first protective base and the second protective base; positioning grooves are symmetrically opened on the upper surface of the first protective base and the second protective base.

4. The embedded protection structure for electromechanical pipeline installation according to claim 1, characterized in that, The buffer plate is installed in the convex groove formed by the opening of the first protective base and the second protective base, and the buffer plate is installed below the first buffer pad and the second buffer pad.

5. The embedded protection structure for electromechanical pipeline installation according to claim 1, characterized in that, The rotating ring has a C-shaped tube opening and rotates at the groove of the buffer plate.

6. A pre-embedded protection structure for mechanical and electrical utility line installations according to claim 1, wherein, The positioning block is installed at the bottom of the buffer plate, and the first protective base and the second protective base are respectively engaged on both sides of the positioning block. The positioning block, the first buffer pad and the second buffer pad form a U-shaped structure. The limiting cylinder is symmetrically installed inside the positioning groove, and the inner surface of the limiting cylinder is provided with threads.

7. The embedded protection structure for electromechanical pipeline installation according to claim 1, characterized in that, The limiting frame is a rectangular frame structure. A connecting groove is provided on the top of the limiting frame, and the connecting groove passes through the limiting frame. The lower surface of the limiting frame is provided with protruding support columns that match the number of limiting cylinders. The center of each protruding support column is provided with a through hole that matches the outer diameter of the limiting cylinder, and the through hole passes through the limiting frame. The protruding support column is engaged with the limiting cylinder through the through hole.

8. The embedded protection structure for electromechanical pipeline installation according to claim 7, characterized in that, The closing cover matches the shape of the connecting groove and is installed through the limiting frame; the number and inner diameter of the positioning bolts match the limiting cylinders, and the outer surface of the positioning bolts is provided with threads that match the limiting cylinders; the positioning bolts pass through the protruding support and are threadedly connected to the limiting cylinders.