Piping network fixing device

The pipe network fixing device uses support structures with fixing members to stabilize underground pipes in soft ground, addressing position instability due to soil deformation and subsidence.

JP3253487UActive Publication Date: 2025-11-06CHINA CONSTR SCI & IND CORP LTD
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Patent Information

Application Number
JP2025001705U
Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Priority Date
2024-09-27
Filing Date
2025-05-28
Publication Date
2025-11-06
Estimated Expiration
2035-05-28

AI Technical Summary

Technical Problem

The position of underground pipes laid in soft ground areas becomes unstable due to soil support, deformation, and subsidence, leading to construction challenges.

Method used

A pipe network fixing device comprising support structures with fixing members that securely connect to the pipe, forming an integrated structure to maintain pipe position despite ground deformation or sinking.

Benefits of technology

The device stabilizes pipe position by integrating support structures with fixing members, preventing displacement and ensuring stable pipe placement even in soft ground conditions.

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Abstract

To provide a piping network fixing device which always maintains the position of piping so as not to change even when the ground is deformed or subsided. [Solution] The piping network fixing device comprises a plurality of support structures 1 fixedly provided in a trench, with adjacent support structures spaced apart and at least one pipe 2 connected to the support structures so that the support structures support the pipe, and a fixing structure fixedly provided on the support structures, which is fixedly connected to the pipe so that the pipe is fixedly connected to the support structure.
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Description

[Technical Field]

[0001] The present invention relates to the technical field of construction work, and more particularly to a pipe network fixing device. [Background technology]

[0002] Typically, the underground piping construction process involves first supporting a foundation pit in the area where the piping is to be buried, then excavating the soil, digging a trench, then lifting the piping, laying and installing the piping in the trench, and finally, after passing inspection, backfilling the soil in layers and compacting it. However, the above method is only suitable for areas with good soil quality. If the construction area is on soft ground, the soil quality will have an effect, and problems such as soil support, deformation, and subsidence can occur, causing the position of the piping to be laid to be unstable, which is disadvantageous to the construction of the piping. Summary of the Invention [Problem to be solved by the invention]

[0003] In view of this, the present invention provides a pipe network fixing device to solve the problem that the position of the pipe to be laid cannot be fixed due to the support, deformation, subsidence, etc. of the soil when the construction area is on soft ground. [Means for solving the problem]

[0004] In a first aspect, the invention provides a method for manufacturing a semiconductor device comprising: a plurality of support structures fixedly mounted within the trench, adjacent support structures being spaced apart, and at least one pipe being connected to the plurality of support structures such that the plurality of support structures support the pipe; A piping network fixing device is provided, comprising: a fixing structure fixedly provided on the support structure, the fixing structure being fixedly connected to the piping such that the piping is fixedly connected to the support structure.

[0005] The beneficial effects are as follows: By providing a plurality of support structures spaced apart in the trench and providing a fixing structure fixedly connected to the pipe on the support structures, the support structures can support the pipe after it is placed in the trench, and at the same time, because the support structures are fixedly connected to the pipe via the fixing structures and the pipe is placed in the trench via the plurality of support structures, the problem of the position of the pipe becoming unfixed due to the mutual combination of the plurality of support structures can be avoided when the ground deforms or sinks. This ensures that the position of the pipe is always maintained so that it does not change, which is advantageous for subsequent construction.

[0006] In one alternative embodiment, the fixing structure includes at least two fixing members, the two fixing members being spaced apart on the support structure, and the piping being provided between the two fixing members and fixedly connected to the two fixing members.

[0007] The beneficial effects are as follows: By providing at least two fixing members spaced apart and placing the pipe between the two fixing members, the two fixing members can regulate and fix the pipe, and at the same time, different numbers of fixing members can be provided depending on the number of pipes that need to be buried in advance. The two fixing members, in combination with a support structure, can stably fix the pipe in the trench.

[0008] In one alternative embodiment, each of the plurality of support structures is fixedly provided with at least two of the fixing members.

[0009] The beneficial effects are as follows: Each support structure has at least two fixing members, which can more firmly fix the piping and prevent the problem of the piping being unfixed in position.

[0010] In one alternative embodiment, a fixing member is fixedly connected to a plurality of said support structures in turn, and the plurality of said support structures are connected to one another via said fixing member.

[0011] The beneficial effects are as follows: The fixing members can penetrate the plurality of support structures in sequence and be fixedly connected to each of the plurality of support structures, and the fixing members can be used to connect the plurality of support structures together to form an integrated structure, which effectively improves the overall strength, and when the ground of one or some of the support structures is deformed or sinks, the remaining support structures can provide support through the fixing members, preventing the position of the support structures from changing and advantageously maintaining the position of the piping.

[0012] In one optional embodiment, the support structure includes a support portion and an abutment portion, the abutment portions are provided on both sides of the support portion, the support portion is fixedly provided at the bottom of the groove, the fixing member and the piping are fixedly connected to the support portion, and the abutment portion abuts against the inner wall of the groove.

[0013] The beneficial effects are as follows: The abutment portions are provided on both sides of the support portion and abut against the inner wall of the trench. The abutment portions apply force to the inner wall of the trench, preventing the inner wall of the trench from collapsing due to the soil quality of the ground and affecting subsequent construction.

[0014] In one alternative embodiment, the support structure and the fastening member have a highly weather resistant polyester coating.

[0015] The beneficial effects are as follows: Since the support structure and the fixing members have a highly weather-resistant polyester coating, the corrosion resistance of the support structure and the fixing members is effectively improved, which is advantageous in extending the service life of the support structure and the fixing members.

[0016] In one alternative embodiment, the securing member is welded to the support structure.

[0017] In one alternative embodiment, the fastening member is an angle iron.

[0018] In one alternative embodiment, the support structure is a U-shaped structure, with an opening at the top of the support structure, and the piping is disposed within the support structure through the opening. [Brief explanation of the drawings]

[0019] In order to more clearly explain the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings necessary for explaining the specific embodiments or the prior art. Obviously, the drawings described below are only some embodiments of the present invention, and those skilled in the art can further derive other drawings based on these drawings without any creative work.

[0020] [Figure 1] 1 is a schematic diagram of a piping network fixing device according to an embodiment of the present invention; [Figure 2] 1 is a schematic diagram of a support structure according to an embodiment of the present invention; DETAILED DESCRIPTION OF THE INVENTION

[0021] In order to clarify the objectives, technical solutions and advantages of the embodiments of the present invention, the technical solutions of the embodiments of the present invention will be described below clearly and completely with reference to the drawings in the embodiments of the present invention, but it is obvious that the described embodiments are not all embodiments but only some embodiments of the present invention. All other embodiments that a person skilled in the art can obtain based on the embodiments of the present invention without any creative work fall within the scope of protection of the present invention.

[0022] Hereinafter, an embodiment of the present invention will be described with reference to FIGS.

[0023] According to an embodiment of the present invention, in one aspect, a piping network fixing device is provided, which includes a plurality of support structures 1 and a fixing structure.

[0024] Specifically, a plurality of support structures 1 are fixedly provided in the trench, adjacent support structures 1 are provided at intervals, and at least one pipe 2 is connected to the plurality of support structures 1 such that the plurality of support structures 1 supports the pipe 2. A fixing structure is fixedly provided to the support structures 1, and the fixing structure is fixedly connected to the pipe 2 such that the pipe 2 is fixedly connected to the support structures 1.

[0025] In this embodiment, a trench is excavated at the construction site according to requirements, and then multiple support structures 1 are placed at intervals in the trench, with the interval between two adjacent support structures 1 being determined according to the construction requirements, and at the same time, the number of support structures 1 is determined based on the length of the trench, the length of the pipe 2, and the interval between adjacent support structures 1. A fixed structure is fixedly provided on the support structure 1, and the pipe 2 is lifted above the trench with a lifting device, and then the pipe 2 is lifted onto the support structure 1 with the lifting device, whereby the pipe 2 is connected to each of the multiple support structures 1. The multiple support structures 1 can support the pipes 2, and the fixed structure is fixedly connected to the pipes 2, whereby the pipes 2 are fixedly provided on the support structure 1.

[0026] Specifically, the support structure 1 is fixedly provided in the trench, a fixing structure is provided on the support structure 1, and the pipe 2 is fixedly connected to the fixing structure so that the pipe 2 is fixed to the support structure 1, so that the pipe 2 has a fixed point in the trench. This can avoid the problem of the position of the pipe 2 not being fixed due to soil support, deformation, subsidence, etc.

[0027] The relative positional relationship between the support structure 1 and the fixing structures in this embodiment, as well as the specific structure and distribution method of the fixing structures, will be described in detail below.

[0028] 1 and 2, in some embodiments, the fixing structure includes at least two fixing members 3, which are spaced apart on the support structure 1. The piping 2 is disposed between the two fixing members 3 and fixedly connected to the two fixing members 3.

[0029] In this embodiment, the fixing structure includes at least two fixing members 3, which are provided on the end surface of the support structure 1 that abuts against the pipe 2. The two fixing members 3 are provided at a distance from each other, and the pipe 2 is lifted onto the support structure 1 by a lifting device and positioned between the two fixing members 3. The two fixing members 3 apply a pressing force to the pipe 2, thereby fixing the pipe 2 to the support structure 1.

[0030] In another embodiment, the two fixing members 3 are movably mounted on the support structure 1. The distance between the two fixing members 3 may be adjusted according to the diameter of the pipe 2. After the two fixing members 3 are respectively abutted against the pipe 2, the fixing members 3 can be fixed by a fixing structure such as a bolt to prevent the fixing members 3 from moving. In this way, the pipe 2 is fixed to the support structure 1.

[0031] In another embodiment, the two fixing members 3 are rotatably mounted on the support structure 1. Opposing sides of the two fixing members 3 are configured with mating surfaces that match the outer circumferential contour of the pipe 2. After the pipe 2 is lifted onto the support structure 1 by a lifting device and positioned between the two fixing members 3, the two fixing members 3 are rotated to align the mating surfaces of the two fixing members 3 with the outer circumferential contour of the pipe 2, and the fixing members 3 are fixed by a fixing structure such as a bolt, thereby fixing the pipe 2 to the support structure 1.

[0032] 2, the support structure 1 is provided with four fixing members 3 for fixing two pipes 2. In other alternative embodiments, the support structure 1 may be provided with six, eight, etc. fixing members 3 for fixing three, four, etc. pipes 2. The number of fixing members 3 may be determined according to the number of pipes 2 that need to be buried in advance.

[0033] As shown in FIGS. 1 and 2, in some embodiments, the fixing member 3 is fixedly connected to multiple support structures 1 in sequence, and the multiple support structures 1 are connected to each other via the fixing member 3.

[0034] In this embodiment, the fixing member 3 passes through the multiple support structures 1 in sequence and is fixedly connected to each of the multiple support structures 1. The multiple support structures 1 may be connected to each other via the fixing member 3. The fixing member 3 can connect the multiple support structures 1 together to form an integrated structure, which can effectively improve strength. At the same time, if the ground under one or some of the support structures 1 deforms or sinks, the remaining support structures 1 can provide support through the fixing member 3, preventing the position of the support structures 1 from changing, which is advantageous for maintaining the position of the pipe 2.

[0035] In some embodiments, each of the plurality of support structures 1 is fixedly provided with at least two fixing members 3. Each of the support structures 1 is provided with two fixing members 3.

[0036] As shown in Figures 1 and 2, in some embodiments, the fixing member 3 is an angle iron.

[0037] In this embodiment, the angle steel provided along the entire length passes through the plurality of support structures 1 in sequence and is fixedly connected to each of the plurality of support structures 1. The opening direction of the angle steel is away from the pipe 2. The pipe 2 is provided between two angle steels provided along the entire length. The two angle steels provided along the entire length apply a pressing force to the pipe 2, thereby fixing the pipe 2 in place.

[0038] As shown in Figures 1 and 2, in some embodiments, the fixing member 3 is welded to the support structure 1.

[0039] In this embodiment, the angle steels provided along the entire length are fixed to the plurality of support structures 1 by welding.

[0040] As shown in Figure 2, in some embodiments, the support structure 1 includes a support portion 4 and an abutment portion 5, and the abutment portions 5 are provided on both sides of the support portion 4. The support portion 4 is fixed to the bottom of the groove. The fixing member 3 and the pipe 2 are fixedly connected to the support portion 4, and the abutment portions 5 abut against the inner wall of the groove.

[0041] In this embodiment, the support structure 1 includes a support portion 4 and an abutment portion 5, and the abutment portion 5 is provided on both sides of the support portion 4. The support portion 4 is fixedly provided at the bottom of the trench, and the fixing member 3 is fixedly connected to the support portion 4. The abutment portions 5 on both sides abut against the inner walls on both sides of the trench, respectively, and the abutment portions 5 apply force to the inner walls of the trench, preventing the inner walls of the trench from collapsing due to the soil quality of the ground and affecting subsequent construction work.

[0042] In some embodiments, the support structure 1 and the fixing member 3 have a highly weather resistant polyester coating (not shown).

[0043] In this embodiment, the surfaces of the support structure 1 and the fixing member 3 are coated with a highly weather-resistant polyester, which can improve the corrosion resistance of the support structure 1 and the fixing member 3 and is advantageous in extending the service life of the support structure 1 and the fixing member 3.

[0044] 1 and 2, in some embodiments, the support structure 1 is a U-shaped structure, and has an opening at the top end of the support structure 1. The piping 2 is disposed within the support structure 1 through the opening.

[0045] In this embodiment, the support structure 1 includes two angle steels arranged along the gravity direction and one angle steel arranged along the horizontal direction. The two angle steels arranged along the gravity direction are arranged on both sides of the angle steel arranged along the horizontal direction. The three angle steels are welded together to form a U-shaped structure. The two angle steels arranged along the gravity direction are abutment parts 5, and the angle steel arranged along the horizontal direction is support part 4. The angle steels arranged along the entire length and the angle steels arranged along the horizontal direction are welded together. The angle steels arranged along the entire length and the angle steels arranged along the horizontal direction are perpendicular to each other. A lifting device can lift the pipe 2 into the U-shaped structure through the opening of the U-shaped structure. As a result, the horizontal angle steel supports the pipe 2, and the pipe 2 is arranged between the two angle steels arranged along the entire length. The two angle steels arranged along the entire length apply a pressing force to the pipe 2, fixing it in place.

[0046] In another aspect, the present application further provides a method for constructing a piping network in soft ground, the method comprising the steps of: excavating a trench; Thereafter, providing several support structures 1 at intervals in the groove and providing a fixing structure fixed to the support structures 1; placing the pipe 2 in the trench by lifting, and providing the pipe 2 on the upper end of the support structure 1 so that the support structure 1 supports the pipe 2, and then fixedly connecting the pipe 2 to a fixed structure; backfilling the trench with sandy soil and compacting the backfilled sandy soil.

[0047] Specifically, before excavating the trench, it is necessary to determine the length and width of the trench in the construction section according to the construction requirements and install a fence.

[0048] Specifically, after excavating a trench, the trench is first verified to meet the construction requirements. If the trench meets the requirements, the bottom of the trench is reinforced. After that, several support structures 1 are installed and fixed at intervals within the trench. The spacing between two adjacent support structures 1 needs to be determined according to the construction requirements, and the number of support structures 1 is determined based on the length of the trench, the length of the pipe 2, and the spacing between adjacent support structures 1. The support structure 1 is a U-shaped structure formed by welding two angle steels installed along the gravity direction and one angle steel installed along the horizontal direction. The fixing structure includes at least two fixing members 3, which are angle steels installed along the entire length. The angle steel installed along the entire length is sequentially passed through the multiple U-shaped structures and welded to each of the multiple U-shaped structures.

[0049] Specifically, the pipe 2 is lifted above the groove and U-shaped structure by a lifting structure, and then lifted into the U-shaped structure through the opening of the U-shaped structure. The pipe 2 is located between two angle steels provided along its entire length, and the two angle steels provided along its entire length can fix the pipe 2.

[0050] Specifically, after the placement of the piping 2 is completed, the piping 2 is inspected to see if it meets the requirements, and if it does, the trench is backfilled with sandy soil, and after the backfilling is completed, the backfilled sandy soil is compacted.

[0051] Although the embodiments of the present invention have been described with reference to the drawings, those skilled in the art may make various changes and modifications without departing from the spirit and scope of the present invention, and all such changes and modifications are included within the scope defined by the appended claims. [Explanation of symbols]

[0052] 1 Support structure 2 Piping 3 Fixing member 4 Support part 5 Contact part

Claims

1. A piping network fixing device, a plurality of support structures (1) fixedly provided in the groove, the adjacent support structures (1) being provided at intervals, and at least one pipe (2) being connected to the plurality of support structures (1) so as to support the pipe (2); A piping network fixing device comprising: a fixing structure fixed to the support structure (1), the fixing structure being fixedly connected to the piping (2) so that the piping (2) is fixedly connected to the support structure (1).

2. 2. The piping network fixing device according to claim 1, wherein the fixing structure includes at least two fixing members (3), the two fixing members (3) being spaced apart from each other on the support structure (1), and the piping (2) being arranged between the two fixing members (3) and fixedly connected to the two fixing members (3).

3. The piping network fixing device according to claim 2, characterized in that at least two of the fixing members (3) are fixedly mounted on each of the plurality of support structures (1).

4. The piping network fixing device according to claim 2, characterized in that the fixing member (3) is fixedly connected to a plurality of the support structures (1) in sequence, and the plurality of the support structures (1) are connected to each other via the fixing member (3).

5. 5. The piping network fastening device according to claim 2, wherein the support structure (1) includes a support portion (4) and an abutment portion (5), the abutment portions (5) are provided on both sides of the support portion (4), the support portion (4) is fixed to the bottom of the groove, the fixing member (3) and the piping (2) are fixedly connected to the support portion (4), and the abutment portion (5) abuts against the inner wall of the groove.

6. 6. The piping network fastening device according to claim 5, wherein the support structure (1) and the fastening members (3) have a highly weather-resistant polyester coating.

7. 7. The piping network fastening device according to claim 6, wherein the fastening element (3) is welded to the support structure (1).

8. The piping network fixing device according to claim 2, characterized in that the fixing member (3) is an angle steel.

9. 9. The piping network fastening device according to claim 6, wherein the support structure (1) is a U-shaped structure, the upper end of the support structure (1) has an opening, and the piping (2) is placed in the support structure (1) through the opening.