Pipeline mounting structure for building engineering construction

The combined structure of the arc-shaped gusset plate and the resistance spring solves the problem of time-consuming high-altitude operations in existing pipeline installations, achieves convenient and stable pipeline fixation, and reduces safety risks.

CN223348304UActive Publication Date: 2025-09-16GUANGDONG ZHUSHAN TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422628681.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-09-16
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

In existing pipeline installations, high-altitude work when clamping with bolts takes a long time, increasing the risk of safety accidents.

Method used

It adopts a combined structure of arc-shaped gusset plates and resistance springs, uses elastic force to fasten and fix pipelines, simplifies the high-altitude operation process, and improves stability through the bottom support design of the arc-shaped gusset plates.

Benefits of technology

It simplifies the time of high-altitude operations, improves the convenience and stability of the pipeline fixing process, and reduces the risk of safety accidents.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223348304U_ABST
    Figure CN223348304U_ABST
Patent Text Reader

Abstract

The utility model discloses a pipeline mounting structure for building engineering construction, and relates to the technical field of pipeline mounting. The device comprises a mounting plate used for being fixed to an indoor roof; the multiple wire fixing pieces are arranged at the bottom of the mounting plate, each wire fixing piece comprises a shell, a penetrating groove is formed in the bottom of each shell in a penetrating mode, two supporting rods are hinged to the opposite sides of the inner wall of each penetrating groove, one end of each supporting rod is provided with an arc-shaped buckle plate, and the other end of each supporting rod is connected with an abutting spring; the two arc-shaped buckle plates are buckled to form a pipe sleeve under the elastic contact of the contact spring; the two supporting rods are hinged to the shell, one ends of the two supporting rods are connected with the arc-shaped buckle plates, the other ends of the two supporting rods are connected with the abutting spring, and the two arc-shaped buckle plates are buckled through the elastic force of the abutting spring to form the pipe sleeve, so that a pipeline is buckled and fixed, and the mode of fixing and unfixing the pipeline is simple and convenient; and the convenience of high-altitude operation is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the technical field of pipeline installation, and in particular to a pipeline installation structure for building engineering construction. Background Art

[0002] Modern large-scale public buildings, office buildings, commercial office buildings, hotels and other buildings have many equipment and cables. The layout and installation of cables is a very important link and needs to be arranged reasonably.

[0003] Existing pipelines are usually divided into pre-buried underground or suspended ceilings. Among them, the suspended ceiling generally has an installation frame set on the top of the corridor, and a clamp for clamping the pipeline is set on the installation frame. The existing clamps have certain shortcomings in use. When the pipeline is installed in the pipeline clamp, it is necessary to tighten the adjusting bolt to lock the pipeline clamp. However, since the pipeline installation is a high-altitude operation, it takes a long time to tighten the adjusting bolt, that is, the workers spend a long time working at high altitude, which increases the probability of safety accidents. Therefore, the present application proposes a pipeline installation structure for building engineering construction. Utility Model Content

[0004] The purpose of this application is to solve the problem that existing pipelines are clamped by bolts and it takes a long time to tighten the adjusting bolts during high-altitude operations. This application provides a pipeline installation structure for building engineering construction.

[0005] In order to achieve the above-mentioned purpose, this application specifically adopts the following technical solutions:

[0006] A pipeline installation structure for building engineering construction, comprising:

[0007] A mounting plate for fixing to an indoor roof;

[0008] Several wire fixing parts are arranged at the bottom of the mounting plate. The wire fixing parts include a shell. A through slot is opened through the bottom of the shell. Two support rods are hinged on opposite sides of the inner wall of the through slot. One end of the two support rods is provided with an arc-shaped buckle plate. The other end of the two support rods is connected to a resistance spring. The two arc-shaped buckle plates are buckled together to form a pipe sleeve under the elastic force of the resistance spring.

[0009] Furthermore, a plurality of avoidance grooves are provided on one end of the two arc-shaped gusset plates away from the support rod, and the avoidance grooves on the two arc-shaped gusset plates are staggered.

[0010] Furthermore, a through slot is formed through one end of the two support rods away from the arc-shaped gusset plate, and a guide rod movably passing through the through slot is connected to the opposite side of the inner wall of the shell, and the resistance spring is movably sleeved on the guide rod.

[0011] Furthermore, an adjustment slot is formed through one side of the shell, and an adjustment rod is provided on each of the two support rods, and the free ends of the two adjustment rods slide through the adjustment slot.

[0012] Furthermore, a mounting bar is provided at the bottom of the mounting plate, a slide groove is provided at the bottom of the mounting bar, and a slider is constructed on the housing, and the slider is slidably inserted in the slide groove.

[0013] Furthermore, the mounting bar is provided with a plurality of sockets connected to the slide groove in an array along its length direction, the slider is provided with a slot, a rod is movably inserted into the slot and is engaged with the sockets, and a limiting spring is installed between the rod and the inner wall of the slot.

[0014] Furthermore, the longitudinal section of the mounting plate is U-shaped, and a sealing plate is detachably mounted on the bottom of the mounting plate.

[0015] Furthermore, the mounting plate has arcuate ridges on both opposite sides, and the sealing plate has ribs on both ends. The opposite sides of the two ribs are provided with arcuate slots that are plugged into the arcuate ridges.

[0016] The beneficial effects of this application are as follows:

[0017] 1. In the present application, two support rods are hinged on the outer shell, one end of each support rod is connected to an arc-shaped buckle plate, and the other end of each support rod is connected to a resistance spring. The two arc-shaped buckle plates are buckled together by the elastic force of the resistance spring to form a pipe sleeve, thereby buckling and fixing the pipeline, making the method of fixing and releasing the pipeline simpler and more convenient, thereby improving the convenience of high-altitude operations.

[0018] 2. In the present application, by opening an avoidance groove on the arc-shaped gusset plate, the avoidance grooves of the two arc-shaped gusset plates are staggered to form a bottom support structure. The pipeline will not be separated from the two arc-shaped gusset plates due to its own gravity or downward pulling stress. Only by actively moving the two arc-shaped gusset plates can the fixation of the pipeline be released, thereby improving the stability of the pipeline fixation. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a three-dimensional structural diagram of this application;

[0020] Figure 2 This is an exploded view of the three-dimensional structure of this application;

[0021] Figure 3 It is a partial three-dimensional structural diagram of this application;

[0022] Figure 4 It is a sectional view of the three-dimensional structure of part of this application;

[0023] Figure 5 This is a three-dimensional structural diagram of the wire fixing member of this application;

[0024] Figure 6 This is a cross-sectional view of the three-dimensional structure of the wire fixing member of the present application;

[0025] Figure 7 This application Figure 4 Enlarged view of point A in the middle;

[0026] Figure numerals: 1, mounting plate; 2, wire fixing member; 3, avoidance groove; 4, through groove; 5, guide rod; 6, adjustment groove; 7, adjustment rod; 8, mounting strip; 9, slide groove; 10, slider; 11, plug hole; 12, slot; 13, plug rod; 14, limit spring; 15, arc-shaped convex strip; 16, arc-shaped slot; 17, sealing plate; 201, housing; 202, through groove; 203, support rod; 204, arc-shaped buckle plate; 205, resistance spring. DETAILED DESCRIPTION

[0027] In order to make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application.

[0028] like Figure 1-Figure 7 As shown, an embodiment of the present application provides a pipeline installation structure for building engineering construction, comprising:

[0029] Mounting plate 1, which is used to be fixed on the indoor roof. The mounting plate 1 can be fixed on the indoor (corridor) roof with screws;

[0030] Several wire fixing members 2 are all arranged at the bottom of the mounting plate 1. The wire fixing member 2 includes a shell 201. A through slot 202 is provided at the bottom of the shell 201. Two support rods 203 are hinged on opposite sides of the inner wall of the through slot 202. Preferably, the support rod 203 includes a vertical section and an oblique end connected to each other. The vertical section is hinged on the through slot 202. One end of the two support rods 203 is provided with an arc-shaped gusset 204. The arc-shaped gusset 204 is connected to the vertical section of the support rod 203. The other end of the two support rods 203 is connected to a resistance spring 205. The resistance spring 205 is connected to the oblique end of the support rod 203. The two arc-shaped gussets 204 are elastic in the resistance spring 205. The two arc-shaped gussets 204 are fastened together to form a pipe sleeve under the interference. In the initial state, the oblique ends of the two support rods 203 are opposed to each other by the elastic force of the interference spring 205, and the two arc-shaped gussets 204 are close to each other to buckle together to form a pipe sleeve. When the pipeline needs to be fixed, the two arc-shaped gussets 204 are toggled, so that the two support rods 203 rotate synchronously in opposite directions around the hinge point, and the oblique ends of the two support rods 203 squeeze the interference spring 205. At this time, the two arc-shaped gussets 204 are in an open and closed state, and the pipeline is placed between the two arc-shaped gussets 204. The arc-shaped gussets 204 are then pushed in. Under the elastic force of the interference spring 205, the two arc-shaped gussets 204 buckle and fix the pipeline.

[0031] In this solution, two arc-shaped buckle plates 204 are set up, and the elastic force of the resistance spring 205 is used to fasten and fix the pipeline. Compared with the existing method of tightening the adjusting bolts, this solution takes less time and is more convenient to install, thereby improving practicality.

[0032] like Figure 5 and Figure 6 As shown, in some embodiments, a plurality of avoidance grooves 3 are provided at one end of the two arc-shaped gusset plates 204 away from the support rod 203, and the avoidance grooves 3 on the two arc-shaped gusset plates 204 are staggered. By providing the avoidance grooves 3 at the ends of the two arc-shaped gusset plates 204, both arc-shaped gusset plates 204 have claws, and the two arc-shaped gusset plates 204 are inserted into each other through the claws, thereby forming a bottom support structure, so that when the pipeline is placed in the two arc-shaped gusset plates 204, even if it is fixed by the elastic force of the resisting spring 205, the pipeline will not open due to its own gravity or downward pulling stress, and the pipeline will not detach from the two arc-shaped gusset plates 204. Only by actively moving the two arc-shaped gusset plates 204 can the fixation of the pipeline be released, thereby improving the stability of the pipeline fixation.

[0033] like Figure 6 As shown, in some embodiments, a through slot 4 is formed at one end of the two support rods 203 away from the arc-shaped buckle plate 204, and a guide rod 5 that movably passes through the through slot 4 is connected to the opposite side of the inner wall of the shell 201, and the resistance spring 205 is movably sleeved on the guide rod 5. The guide rod 5 is provided to guide the resistance spring 205 when it is deformed, and the elasticity of the resistance spring 205 can be maximized to ensure that the two arc-shaped buckle plates 204 effectively fix the pipeline under the elastic force of the resistance spring 205.

[0034] like Figure 5 As shown, in some embodiments, an adjustment slot 6 is provided through one side of the housing 201, and an adjustment rod 7 is provided on each of the two support rods 203. The free ends of the two adjustment rods 7 slide through the adjustment slot 6. Preferably, the adjustment slot 6 includes two arc-shaped slots connected to each other, and the two arc-shaped slots are respectively centered on the hinge points of the two support rods 203. Through the opened adjustment slot 6 and the set adjustment rod 7, when installing or removing the pipeline, it is only necessary to press the two adjustment rods 7 with two fingers of one hand, thereby further improving the convenience of installation.

[0035] like Figure 3 、 Figure 4 and Figure 7As shown, in some embodiments, a mounting bar 8 is provided at the bottom of the mounting plate 1, a slide groove 9 is provided at the bottom of the mounting bar 8, a slider 10 is constructed on the shell 201, and the slider 10 is slidably inserted in the slide groove 9. By providing the mounting bar 8, the shell 201 is slidably set on the mounting bar 8 through the cooperation of the slider 10 and the slide groove 9, so that in actual use, not only the distance between two adjacent pipelines can be adjusted, but also the line fixing parts 2 can be correspondingly increased or decreased according to the fixed number of pipelines, thereby improving practicality.

[0036] like Figure 6 and Figure 7 As shown, in some embodiments, a plurality of jacks 11 connected to the chute 9 are arranged in an array along the length direction of the mounting bar 8. Preferably, the bottom opening of the jack 11 is designed with a conical expansion, and the slider 10 is provided with a slot 12. A plug rod 13 that is movably inserted into the slot 12 and is plugged into and matched with the jack 11 is provided. The top of the plug rod 13 is also conical in structure, and a limit spring 14 is installed between the plug rod 13 and the inner wall of the slot 12. When the slider 10 is inserted into the chute 9, the plug rod 13 is first pressed to squeeze the limit spring 14, so that the plug rod 13 is The top is flush with the top of the slider 10, and then the slider 10 is slid and inserted into the slide groove 9, and then the slider 10 is slid to adjust the position. When the slider 10 slides to make the insertion rod 13 align with the socket 11, under the elastic force of the limit spring 14, the insertion rod 13 is movably inserted into the socket 11, thereby fixing the slider 10. When the slider 10 needs to be released, press the insertion rod 13, and use the tapered structure of the top of the insertion rod 13 and the tapered expansion structure of the bottom of the socket 11 to apply a certain force to slide the slider 10, thereby releasing the fixation of the slider 10.

[0037] like Figure 1 and Figure 2 As shown, in some embodiments, the longitudinal section of the mounting plate 1 is constructed into a U shape, and a sealing plate 17 is detachably installed at the bottom of the mounting plate 1. By constructing the longitudinal section of the mounting plate 1 into a U shape, the pipeline and the wire fixing member 2 are located inside the mounting plate 1. When the pipeline is fixed, the sealing plate 17 blocks the open end of the mounting plate 1, thereby hiding the pipeline and the wire fixing member 2 as a whole, thereby improving the aesthetics. At the same time, it can also protect the pipeline.

[0038] like Figure 2As shown, in some embodiments, the mounting plate 1 has arc-shaped ridges 15 on both sides facing each other, and the two ends of the sealing plate 17 are constructed with ribs, and the opposite sides of the two ribs are provided with arc-shaped card grooves 16 that are plugged into and cooperate with the arc-shaped ridges 15. Preferably, the mounting plate 1 and the sealing plate 17 are both made of stainless steel, and the sealing plate 17 can be thinly constructed so that it has a certain deformation ability. When installing the sealing plate 17, the two ribs of the sealing plate 17 are aligned with the two side edges of the mounting plate 1, and the sealing plate 17 is pushed upward. The deformation ability of the sealing plate 17 material is used to clamp the arc-shaped ridge 15 in the arc-shaped card groove 16, thereby fixing the sealing plate 17 on the mounting plate 1, and the method of fixing or releasing the fixation is relatively simple and convenient.

[0039] The above description of the disclosed embodiments is intended to enable one skilled in the art to implement or use the present application. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application is not limited to the embodiments shown herein, but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A pipeline installation structure for building engineering construction, characterized in that: include: A mounting plate (1) for fixing to an indoor roof; A plurality of wire fixing members (2) are arranged at the bottom of the mounting plate (1), the wire fixing members (2) comprising a shell (201), a through slot (202) being provided through the bottom of the shell (201), two support rods (203) being hingedly connected to opposite sides of the inner wall of the through slot (202), one end of each of the two support rods (203) being provided with an arc-shaped buckle plate (204), the other end of each of the two support rods (203) being connected with a resisting spring (205), and the two arc-shaped buckle plates (204) being buckled together to form a pipe sleeve under the elastic force of the resisting spring (205).

2. The pipeline installation structure for building engineering construction according to claim 1, characterized in that: A plurality of avoidance grooves (3) are provided at one end of the two arc-shaped gusset plates (204) away from the support rod (203), and the avoidance grooves (3) on the two arc-shaped gusset plates (204) are staggered.

3. The pipeline installation structure for building engineering construction according to claim 1, characterized in that: A through slot (4) is provided through one end of the two support rods (203) away from the arc-shaped buckle plate (204); a guide rod (5) movably passing through the through slot (4) is connected to the opposite side of the inner wall of the housing (201); and a resisting spring (205) is movably sleeved on the guide rod (5).

4. The pipeline installation structure for building engineering construction according to claim 1, characterized in that: An adjustment slot (6) is provided through one side of the housing (201), and an adjustment rod (7) is provided on each of the two support rods (203), and the free ends of the two adjustment rods (7) slide through the adjustment slot (6).

5. The pipeline installation structure for building engineering construction according to claim 1, characterized in that: The bottom of the mounting plate (1) is provided with a mounting bar (8), the bottom of the mounting bar (8) is provided with a slide groove (9), and the housing (201) is provided with a slider (10), which is slidably inserted into the slide groove (9).

6. The pipeline installation structure for building engineering construction according to claim 5, characterized in that: The mounting bar (8) is provided with a plurality of insertion holes (11) in array along its length direction and connected to the slide groove (9); the slider (10) is provided with a slot (12); a plug rod (13) is movably inserted into the slot (12) and is plugged into and matched with the insertion hole (11); a limit spring (14) is installed between the plug rod (13) and the inner wall of the slot (12).

7. The pipeline installation structure for building engineering construction according to claim 1, characterized in that: The longitudinal section of the mounting plate (1) is U-shaped, and a sealing plate (17) is detachably mounted on the bottom of the mounting plate (1).

8. The pipeline installation structure for building engineering construction according to claim 7, characterized in that: The mounting plate (1) is provided with arc-shaped convex strips (15) on both opposite sides, and the sealing plate (17) is provided with retaining edges on both ends. The opposite sides of the two retaining edges are provided with arc-shaped slots (16) that are plugged into and matched with the arc-shaped convex strips (15).