Novel building drainage pipeline mounting and fixing structure and mounting process thereof

By combining lifting, adjusting, buffering, and clamping components, the problem of inconvenient adjustment of traditional drainage pipe fixing structures is solved, enabling flexible adjustment of height and angle and rapid and stable fixing, thus improving installation efficiency and structural stability.

CN120969588APending Publication Date: 2025-11-18TIANJIN ERJIAN WATER & ELECTRICAL INSTALLATION ENG
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Patent Information

Application Number
CN202511250459.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Traditional building drainage pipes have fixed structures that are inconvenient to adjust in terms of height and angle, are cumbersome to install and inefficient, rely on manual operation and have difficulty in ensuring accuracy.

Method used

The design incorporates a combination of lifting, adjusting, buffering, and clamping components to achieve flexible adjustment of height and angle, while a plug-in quick-fix structure simplifies the installation process.

Benefits of technology

It improves installation efficiency and structural stability, simplifies the height adjustment process, reduces the impact of vibration on pipes and fixed structures, and meets the requirements of different drainage slopes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a novel building drainage pipeline mounting and fixing structure and a mounting process thereof, and relates to the technical field of building drainage pipelines, the novel building drainage pipeline mounting and fixing structure comprises a lifting assembly, two adjusting assemblies and two clamping assemblies and buffering assemblies, and the two adjusting assemblies are both arranged at the tops of the adjusting assemblies; the two buffering assemblies are arranged at the tops of the two adjusting assemblies correspondingly, the clamping assembly is arranged at the tops of the two buffering assemblies, an upper arc-shaped plate and a lower arc-shaped plate are in rapid butt joint through cooperation of a clamping groove, a clamping block and an inserting rod, and after a through groove in the surface of the inserting rod is clamped to the clamping block, a limiting groove surrounds a half circle to be matched with the clamping block. And the inserting rods are fixed, the upper arc-shaped plate and the lower arc-shaped plate can be conveniently and rapidly fixed, the pipeline can be rapidly installed, the limiting frames abut against the tops of the inserting rods, the inserting rods can be prevented from falling off, and the fixing effect of the clamping assemblies on the pipeline is further enhanced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of building drainage pipeline, in particular to a novel building drainage pipeline installation fixing structure and its installation process. BACKGROUND

[0002] As a core component of building infrastructure, the installation quality of building drainage system is directly related to the use function, durability and residential comfort of the building. With the rapid development of the construction industry, modern buildings have put forward more stringent requirements for the installation precision, structural stability and construction efficiency of drainage pipelines, especially in complex scenes such as high-rise buildings and large complexes. The stable fixing and convenient installation of drainage pipelines have become the key to ensuring the long-term reliable operation of the system.

[0003] However, the traditional building drainage pipeline fixing structure has obvious limitations. The height and angle adjustment depends on manual on-site cutting and welding, which is tedious and difficult to ensure accuracy, resulting in high deviation rate of pipeline installation position. At the same time, the pipeline is fixed by traditional methods such as bolt connection, which requires the use of multiple tools for step-by-step operation, not only low installation efficiency, but also high requirements for the professional skills of construction personnel, which may affect the fixing effect due to improper operation.

[0004] To solve the above problems, the present application provides a novel building drainage pipeline installation fixing structure, which has the core innovation of realizing convenient adjustment of height and angle through optimized structure design, and adopting plug-in type quick fixing structure to greatly simplify the installation process, improve construction efficiency, reduce the dependence on personnel skills, and effectively solve the problems of inconvenient adjustment and tedious installation of traditional fixing structure. SUMMARY

[0005] 1. Technical problems solved The purpose of the present application is to provide a novel building drainage pipeline installation fixing structure and its installation process to solve the problems of inconvenient height and angle adjustment, tedious and low-efficiency installation and fixing operation of drainage pipeline fixing structure.

[0006] The novel building drainage pipeline installation fixing structure provided by the present application adopts the following technical solution: including a lifting assembly, two sets of adjusting assemblies, two sets of clamping assemblies and a buffer assembly, the two sets of adjusting assemblies are arranged at the top of the adjusting assembly, the two sets of buffer assemblies are arranged at the top of the two sets of adjusting assemblies, and the clamping assembly is arranged at the top of the two sets of buffer assemblies.

[0007] By integrating the lifting assembly, adjusting assembly, buffer assembly and clamping assembly, the present application realizes flexible adjustment of height and angle, quick and stable fixing of pipeline and vibration buffering, effectively solves the problems of inconvenient adjustment and tedious installation of traditional fixing structure, and improves the installation efficiency and structural stability.

[0008] Preferably, the lifting assembly comprises two groups of bases, the inner part of each of the two groups of bases is slidably connected with a sliding plate, a plurality of insertion slots are formed in the inner part of each of the sliding plate and the base, and a clamping rod is inserted into each of the insertion slots; By adopting the above technical scheme, the overall height can be conveniently adjusted according to requirements through the sliding cooperation of the base and the sliding plate and the insertion design of the plurality of insertion slots and the clamping rod, without the need for on-site cutting or welding, the height adjustment process is simplified, and the stability of the adjusted structure is ensured.

[0009] Preferably, the two groups of bases are fixedly connected with vertical plates on both sides, and threaded rods are threadedly connected to the top of each of the two groups of vertical plates. By adopting the above technical scheme, the vertical plates on both sides of the base cooperate with the threaded rods, and the sliding plate is clamped by tightening the threaded rods, which can further reinforce the height fixing effect of the lifting assembly.

[0010] Preferably, the two groups of buffer assemblies comprise a cylinder, a connecting cylinder is slidably connected to the inner wall of the cylinder, a damping shock absorber is fixedly connected to the bottom of the inner wall of the cylinder, the top end of the damping shock absorber is fixedly connected to the bottom end of the connecting cylinder, two groups of first sliding grooves are formed in the inner wall of the cylinder, a first sliding block is slidably connected in each of the two groups of first sliding grooves, and the two groups of first sliding blocks are fixedly connected to the surface of the connecting cylinder. By adopting the above technical scheme, the sliding connection of the cylinder and the connecting cylinder cooperates with the damping shock absorber, which can effectively buffer the vibration generated during the operation of the drainage pipeline and reduce the impact of the vibration on the pipeline and the fixed structure; the guiding effect of the first sliding groove and the first sliding block can ensure the stable sliding of the connecting cylinder along the cylinder, avoid the structural deviation caused by the vibration, and protect the service life of the pipeline and the fixed structure.

[0011] Preferably, the adjusting assembly comprises a frame, a recess is formed in the top of the frame, a bidirectional screw rod is arranged on the inner wall of the recess, a first threaded block and a second threaded block are threadedly connected to the surface of the bidirectional screw rod, a movable rod is movably connected to the top of each of the first threaded block and the second threaded block through a pin shaft, the top of each of the two groups of movable rods is movably connected to the surface of the cylinder through a pin shaft, a sliding cylinder is arranged on the top of the frame, the cylinder is slidably connected in the sliding cylinder, a protection groove is formed in one side of each of the two groups of frames, a knob is arranged in each of the two groups of protection grooves, and the knob is fixedly connected to the shaft end of the bidirectional screw rod through a rotating shaft. By adopting the above technical scheme, the bidirectional screw rod drives the first threaded block and the second threaded block to move in opposite directions or in the same direction under the drive of the knob, the cylinder is pushed along the sliding cylinder by the movable rod, the angle of the pipeline is conveniently adjusted, the operation is simple, and the adjustment precision is high; the limiting effect of the sliding cylinder on the cylinder ensures the stability during the angle adjustment process, meets the different drainage slope requirements, and the adjustment can be completed without relying on professional skills.

[0012] Preferably, the second sliding groove is arranged on both sides of the inner wall of the frame, and the second sliding block is slidably connected in the second sliding groove and fixedly connected to one side of the first threaded block and the second threaded block; By adopting the above technical scheme, the second sliding groove of the inner wall of the frame cooperates with the second sliding block to guide the first threaded block and the second threaded block to move stably along the bidirectional screw rod, so that the threaded blocks are prevented from deviating or being stuck during movement, and the stability of the operation of the adjusting assembly is ensured.

[0013] Preferably, the clamping assembly comprises an upper arc-shaped plate and a lower arc-shaped plate, the top of the upper arc-shaped plate and the top of the lower arc-shaped plate are provided with clamping grooves, two groups of clamping blocks are arranged on the inner walls of the clamping grooves, and an insertion rod is clamped in each clamping groove; a limiting groove is arranged on the surface of the insertion rod and surrounds one half of the surface of the insertion rod, the limiting groove is matched with the clamping blocks, two groups of through grooves are arranged on the surface of the insertion rod close to the bottom, and the two groups of through grooves are matched with the two groups of clamping blocks; By adopting the above technical scheme, the upper arc-shaped plate and the lower arc-shaped plate are quickly connected through the cooperation of the clamping grooves, the clamping blocks and the insertion rod, the through grooves on the surface of the insertion rod are clamped with the clamping blocks, the limiting groove surrounds half of the clamping blocks and is matched with the clamping blocks, the insertion rod is fixed, the upper arc-shaped plate and the lower arc-shaped plate are quickly fixed, the pipeline is quickly installed, the limiting frame abuts against the top of the insertion rod, the insertion rod is prevented from falling off, and the fixing effect of the clamping assembly on the pipeline is further enhanced.

[0014] Preferably, the inner walls of the upper arc-shaped plate and the lower arc-shaped plate are provided with a plurality of groups of springs, the other ends of the plurality of groups of springs are provided with clamping plates, the surface of the upper arc-shaped plate is rotatably connected with a limiting frame through a rotating shaft, and the limiting frame abuts against the top of the insertion rod. By adopting the above technical scheme, the springs in the inner walls of the upper arc-shaped plate and the lower arc-shaped plate cooperate with the clamping plates, can adapt to drainage pipelines with different diameters through elastic deformation of the springs, realize elastic clamping, and avoid damage to the pipeline caused by hard extrusion.

[0015] Preferably, the opposite surfaces of the two groups of frames are provided with the same reinforcing rib, and the reinforcing rib is in the shape of a Chinese character'mi'. The reinforcing rib is made of stainless steel.

[0016] By adopting the above technical scheme, the Chinese character'mi' shaped stainless steel reinforcing rib between the two groups of frames can significantly enhance the anti-deformation ability of the overall structure and improve the structural strength; the stainless steel material has good corrosion resistance and is suitable for complex building environments.

[0017] The application also provides an installation process of the above-mentioned novel building drainage pipeline installation and fixing structure: S1. Preparation and inspection; Confirm that the fixed structure has been installed stably, clean up the inside of the clamping assembly, and check the functions of each component: the sliding plate of the lifting assembly slides smoothly, the clamping rod and the insertion slot are matched, the bidirectional screw rod of the adjusting assembly rotates flexibly, the connecting cylinder of the buffer assembly can slide smoothly along the cylinder body, and the clamping block, the insertion rod and the limiting frame of the clamping assembly are not damaged. S2 pipeline placement and preliminary fixation; Lift the drainage pipeline to the inside of the lower arc-shaped plate, adjust the position of the pipeline to make it centered, buckle the upper arc-shaped plate on the lower arc-shaped plate, align the clamping slots of the two, insert the insertion rod into the clamping slot, make the through slot on the surface of the insertion rod clamped with the clamping block in the clamping slot, and ensure that the clamping block is embedded in the limiting slot of the insertion rod, one round, complete the preliminary fixation, rotate the limiting frame on the surface of the upper arc-shaped plate to make its end abut against the top of the insertion rod to prevent the insertion rod from falling, at this time the pipeline is preliminarily fixed by the clamping assembly; S3 height and angle adjustment; Adjust the height according to the drainage path requirement, loosen the stud of the lifting assembly, slide the sliding plate to the target height, align the insertion slots of the base and the sliding plate and insert the clamping rod, and then tighten the stud to press the sliding plate tightly to fix the height; Adjust the angle, rotate the bidirectional screw rod knob of the adjusting assembly to drive the first and second threaded blocks to move in opposite directions or in the same direction, drive the cylinder body of one buffer assembly to move downward or upward along the sliding cylinder through the movable rod, and simultaneously drive the clamping assembly and the pipeline to adjust the angle until the drainage slope requirement is met, and stop rotating the knob; S4 stable confirmation and buffer check; Check the clamping assembly, confirm that the spring tightly adheres to the surface of the pipeline through the arc-shaped plate to achieve elastic clamping, test the buffer function, gently push the pipeline, and observe whether the damping shock absorber plays a buffering role when the connecting cylinder of the buffer assembly slides along the cylinder body, ensure that the pipeline can be unloaded through the buffer assembly when it vibrates, all adjustment parts are not loose, the position and angle of the pipeline are stable, and the use process is completed.

[0018] 2. Beneficial effects In summary, the present application includes at least one of the following beneficial technical effects: 1. The present application provides a novel building drainage pipeline installation and fixation structure and its installation process, which realizes quick docking through the cooperation of the clamping slot, clamping block and insertion rod of the upper arc-shaped plate and the lower arc-shaped plate, the through slot on the surface of the insertion rod is clamped with the clamping block after the cooperation, the limiting slot is adapted with the clamping block for half a circle, the insertion rod is fixed, the upper arc-shaped plate and the lower arc-shaped plate are quickly fixed, the pipeline is quickly installed, the limiting frame is abutted against the top of the insertion rod to prevent the insertion rod from falling, and the fixation effect of the clamping assembly on the pipeline is further enhanced.

[0019] 2.The application provides a novel building drainage pipeline installation fixing structure and an installation process thereof, through the sliding connection of the cylinder and the connecting cylinder with the damping shock absorber, the vibration generated during the operation of the drainage pipeline can be effectively buffered, and the impact of the vibration on the pipeline and the fixing structure is reduced; the guiding effect of the first sliding groove and the first sliding block can ensure the stable sliding of the connecting cylinder along the cylinder, avoid the structural deviation caused by the vibration, and guarantee the service life of the pipeline and the fixing structure.

[0020] 3.The application provides a novel building drainage pipeline installation fixing structure and an installation process thereof, through the bidirectional screw rod driven by the knob to drive the first threaded block and the second threaded block to move in opposite directions or in the same direction, the cylinder is pushed along the sliding cylinder by the movable rod to realize the convenient adjustment of the angle of the pipeline, the operation is simple, and the adjustment precision is high; the limiting effect of the sliding cylinder on the cylinder guarantees the stability during the angle adjustment process, meets the different drainage slope requirements, and the adjustment can be completed without relying on professional skills. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a front view of the structure of the application; Figure 2 It is a sectional view of the clamping assembly in the application; Figure 3 It is a structure diagram of the insertion rod in the application; Figure 4 It is a structure diagram of the insertion rod in the application; Figure 2 It is a structure diagram of the insertion rod in the application; Figure 5 It is a structure diagram of the insertion rod in the application; Figure 6 It is a structure diagram of the insertion rod in the application; Figure 7 It is a structure diagram of the insertion rod in the application.

[0022] Among them, 1, the lifting assembly; 101, the base; 102, the insertion groove; 103, the clamping rod; 104, the sliding plate; 105, the vertical plate; 106, the stud; 2, the adjustment assembly; 201, the frame; 202, the bidirectional screw rod; 203, the groove; 204, the first threaded block; 205, the second sliding block; 206, the second sliding groove; 207, the second threaded block; 208, the movable rod; 209, the sliding cylinder; 210, the protection groove; 211, the knob; 3, the buffer assembly; 301, the cylinder; 302, the damping shock absorber; 303, the connecting cylinder; 304, the first sliding groove; 305, the first sliding block; 4, the clamping assembly; 401, the upper arc plate; 402, the lower arc plate; 403, the spring; 404, the clamping plate; 405, the limiting frame; 406, the clamping block; 407, the clamping groove; 408, the insertion rod; 409, the limiting groove; 410, the through groove; 5, the reinforcing rib. DETAILED DESCRIPTION

[0023] The application will be further described below in conjunction with the accompanying drawings. Figure 1 - The drawings Figure 7 The application will be further described below in conjunction with the accompanying drawings.

[0024] Embodiment 1: A new building drainage pipeline installation fixing structure, referring to Figure 1 , including lifting assembly 1, two groups of adjusting assembly 2 and two groups of clamping assembly 4 and buffer assembly 3, two groups of adjusting assembly 2 are arranged at the top of adjusting assembly 2, two groups of buffer assembly 3 are arranged at the top of two groups of adjusting assembly 2, clamping assembly 4 is arranged at the top of two groups of buffer assembly 3, through the integration of lifting assembly 1, adjusting assembly 2, buffer assembly 3 and clamping assembly 4, flexible adjustment of height and angle, quick and stable fixation of pipeline and vibration buffering are realized, the problem of inconvenient adjustment and complicated installation of traditional fixing structure is effectively solved, and the installation efficiency and structural stability are improved.

[0025] Embodiment 2: A new building drainage pipeline installation fixing structure, referring to Figure 4 Figure 5 Figure 6The lifting assembly 1 comprises two groups of bases 101, the inner sides of the two groups of bases 101 are slidably connected with sliding plates 104, a plurality of groups of insertion grooves 102 are formed in the inner sides of the bases 101 and the sliding plates 104, clamping rods 103 are inserted into the insertion grooves 102, the sliding cooperation of the bases 101 and the sliding plates 104 and the insertion cooperation of the plurality of groups of insertion grooves 102 and the clamping rods 103 can conveniently adjust the overall height according to the requirements, without the need of on-site cutting or welding, the height adjustment process is simplified, the stability of the adjusted structure is ensured, the two sides of the two groups of bases 101 are fixedly connected with vertical plates 105, the top parts of the two groups of vertical plates 105 are threadedly connected with studs 106, the vertical plates 105 on the two sides of the base 101 are matched with the studs 106, the sliding plate 104 is pressed by tightening the stud 106, the height fixing effect of the lifting assembly 1 can be further reinforced, the two groups of buffer assemblies 3 comprise a cylinder body 301, the inner wall of the cylinder body 301 is slidably connected with a connecting cylinder 303, the bottom part of the inner wall of the cylinder body 301 is fixedly connected with a damping shock absorber 302, the top end of the damping shock absorber 302 is fixedly connected to the bottom end of the connecting cylinder 303, two groups of first sliding grooves 304 are formed in the inner wall of the cylinder body 301, two groups of first sliding blocks 305 are slidably connected in the two groups of first sliding grooves 304, the two groups of first sliding blocks 305 are fixedly connected to the surface of the connecting cylinder 303, the sliding connection cooperation of the cylinder body 301 and the connecting cylinder 303 and the damping shock absorber 302 can effectively buffer the vibration generated when the drainage pipeline operates, and reduce the impact of the vibration on the pipeline and the fixed structure; the guiding effect of the first sliding groove 304 and the first sliding block 305 can ensure that the connecting cylinder 303 slides stably along the cylinder body 301, avoid structural deviation caused by vibration, and ensure the service life of the pipeline and the fixed structure, the adjusting assembly 2 comprises a frame 201, a recess 203 is formed in the top part of the frame 201, a bidirectional screw rod 202 is arranged on the inner wall of the recess 203, a first threaded block 204 and a second threaded block 207 are threadedly connected to the surface of the bidirectional screw rod 202, an activity rod 208 is movably connected to the top part of the first threaded block 204 and the second threaded block 207 through a pin shaft, the top parts of the two groups of activity rods 208 are movably connected to the surface of the cylinder body 301 through a pin shaft, a sliding cylinder 209 is arranged on the top part of the frame 201, the cylinder body 301 is slidably connected in the sliding cylinder 209, a protection groove 210 is formed in one side of the two groups of frames 201, a knob 211 is arranged in the two groups of protection grooves 210, the knob 211 is fixedly connected to the shaft end of the bidirectional screw rod 202 through a rotating shaft, the bidirectional screw rod 202 drives the first threaded block 204 and the second threaded block 207 to move in opposite directions or in the same direction under the drive of the knob 211, the cylinder body 301 is pushed along the sliding cylinder 209 by the activity rod 208, the angle of the pipeline is conveniently adjusted, the operation is simple and the adjustment precision is high; the limiting effect of the sliding cylinder 209 on the cylinder body 301 ensures the stability during the angle adjustment process, meets the different drainage slope requirements, and can complete the adjustment without relying on professional skills.

[0026] Embodiment 3: A novel building drainage pipeline installation and fixing structure,Figure 2 Figure 3 Figure 7 The inner wall of the frame 201 has two sides with second sliding grooves 206. A second slider 205 is slidably connected within the second sliding groove 206. The second slider 205 is fixedly connected to one side of the first threaded block 204 and the second threaded block 207. The second sliding groove 206 and the second slider 205 on the inner wall of the frame 201 cooperate to guide the first threaded block 204 and the second threaded block 207 to move smoothly along the bidirectional lead screw 202, preventing the threaded blocks from shifting or jamming during movement, thus ensuring the stability of the adjustment assembly 2. The clamping assembly 4 includes an upper arc-shaped plate 401. The upper and lower arc-shaped plates 401 and 402 each have a slot 407 at their tops. Two sets of locking blocks 406 are provided on the inner wall of each slot 407. A rod 408 is engaged within the slot 407. A limiting groove 409 is formed on the surface of the rod 408, circumferentially located around its surface and matching the locking blocks 406. Two through slots 410 are formed near the bottom of the rod 408, matching the locking blocks 406. The upper arc-shaped plate 401 and the lower arc-shaped plate 402 are connected by a locking mechanism. The slot 407, the locking block 406, and the insertion rod 408 cooperate to achieve quick docking. After the through slot 410 on the surface of the insertion rod 408 engages with the locking block 406, the limiting slot 409 surrounds half a circumference and matches the locking block 406 to fix the insertion rod 408, facilitating quick fixation of the upper arc plate 401 and the lower arc plate 402, and rapid installation of the pipeline. The limiting bracket 405, by pressing against the top of the insertion rod 408, can prevent the insertion rod 408 from falling off, further enhancing the fixing effect of the clamping assembly 4 on the pipeline. The inner walls of both the upper arc plate 401 and the lower arc plate 402 are provided with There are multiple sets of springs 403, and each set of springs 403 has a clamping plate 404 at its other end. The surface of the upper arc plate 401 is rotatably connected to a limit frame 405 via a pivot. The limit frame 405 abuts against the top of the insertion rod 408. The springs 403 on the inner walls of the upper arc plate 401 and the lower arc plate 402 cooperate with the clamping plates 404, which can adapt to drainage pipes of different diameters through the elastic deformation of the springs 403, achieving elastic clamping and avoiding damage to the pipes caused by hard compression. The opposite surfaces of the two sets of frames 201 are provided with the same reinforcing rib 5, which is in the shape of a star. The reinforcing rib 5 is made of stainless steel. The star-shaped stainless steel reinforcing rib 5 between the two sets of frames 201 can significantly enhance the deformation resistance of the overall structure and improve the structural strength. Stainless steel has good corrosion resistance and is suitable for complex building environments.

[0027] This application also provides an installation process using the above-mentioned novel building drainage pipe installation and fixing structure: S1 Preparation and Inspection; Confirm that the fixed structure has been installed firmly, clean up the inside of the clamping assembly 4, check the function of each component: the sliding plate 104 of the lifting assembly 1 slides smoothly, the clamping rod 103 is matched with the slot 102, the bidirectional screw rod 202 of the adjusting assembly 2 rotates flexibly; the connecting cylinder 303 of the buffer assembly 3 can slide smoothly along the cylinder body 301, the clamping block 406, the inserting rod 408, and the limiting frame 405 of the clamping assembly 4 are not damaged; S2 pipeline placement and preliminary fixation; Lift the drain pipeline to the inside of the lower arc-shaped plate 402, adjust the position of the pipeline to make it centered, buckle the upper arc-shaped plate 401 on the lower arc-shaped plate 402, align the clamping slots 407 of the two, insert the inserting rod 408 into the clamping slot 407, make the through slot 410 on the surface of the inserting rod 408 clamped with the clamping block 406 in the clamping slot 407, and ensure that the clamping block 406 is embedded in the limiting slot 409 of the inserting rod 408, one round, complete the preliminary fixation, rotate the limiting frame 405 on the surface of the upper arc-shaped plate 401 to make its end abut against the top of the inserting rod 408 to prevent the inserting rod 408 from falling, at this time the pipeline is preliminarily fixed by the clamping assembly 4; S3 height and angle adjustment; According to the requirement of the drainage path, loosen the stud 106 of the lifting assembly 1, slide the sliding plate 104 to the target height, align the slot 102 of the base 101 and the sliding plate 104 and insert the clamping rod 103, then tighten the stud 106 to press the sliding plate 104, and fix the height; Adjust the angle, rotate the bidirectional screw rod 202 knob 211 of the adjusting assembly 2, drive the first threaded block 204 and the second threaded block 207 to move in opposite directions or in the same direction, drive the cylinder body 301 of one buffer assembly 3 to move downward or upward along the sliding cylinder 209 through the movable rod 208, synchronously drive the clamping assembly 4 and the pipeline to adjust the angle, until the requirement of the drainage slope is met, stop rotating the knob 211; S4 stable confirmation and buffer check; Check the clamping assembly 4, confirm that the spring 403 tightly adheres to the surface of the pipeline through the arc-shaped plate to realize elastic clamping, test the buffer function, push the pipeline gently, observe whether the damping shock absorber 302 plays a buffering role when the connecting cylinder 303 of the buffer assembly 3 slides along the cylinder body 301, ensure that the pipeline can be unloaded by the buffer assembly 3 when it vibrates, all adjustment parts are not loose, the position and angle of the pipeline are stable, and the use process is completed.

Claims

1. A novel building drainage pipe installation fixing structure, comprising a lifting assembly (1), two sets of adjusting assemblies (2) and two sets of clamping assemblies (4) and a buffer assembly (3), characterized in that: The adjusting assembly (2) is arranged on the top of the adjusting assembly (2), the buffer assembly (3) is arranged on the top of the adjusting assembly (2), and the clamping assembly (4) is arranged on the top of the buffer assembly (3).

2. A new building drainage pipe installation fixing structure according to claim 1, characterized in that: The lifting assembly (1) comprises two groups of bases (101), and the sliding plates (104) are slidably connected to the bases (101).

3. A novel building drain pipe installation fixing structure according to claim 2, characterized in that: The two groups of bases (101) are fixedly connected with the vertical plates (105) on the two sides.

4. A new building drainage pipe installation fixing structure according to claim 1, characterized in that: The two groups of buffer assemblies (3) comprise a cylinder body (301), the inner wall of the cylinder body (301) is slidably connected with a connecting cylinder (303), the bottom of the inner wall of the cylinder body (301) is fixedly connected with a damping shock absorber (302), the top end of the damping shock absorber (302) is fixedly connected to the bottom end of the connecting cylinder (303), and the inner wall of the cylinder body (301) is provided with two groups of first sliding grooves (304).

5. A novel building drain pipe installation fixing structure according to claim 4, characterized in that: The adjusting assembly (2) comprises a frame (201), the top of the frame (201) is provided with a recess (203), the inner wall of the recess (203) is provided with a bidirectional screw rod (202), the surface of the bidirectional screw rod (202) is threadedly connected with a first threaded block (204) and a second threaded block (207), the top of the first threaded block (204) and the second threaded block (207) is movably connected with a movable rod (208) through a pin shaft, the top of the two groups of movable rods (208) is movably connected to the surface of the cylinder body (301) through a pin shaft, the top of the frame (201) is provided with a sliding cylinder (209), the cylinder body (301) is slidably connected in the sliding cylinder (209), one side of the two groups of frames (201) is provided with a protection groove (210), and the protection groove (210) is provided with a knob (211).

6. A novel building drain pipe installation fixing structure according to claim 5, characterized in that: The two sides of the inner wall of the frame (201) are provided with second sliding grooves (206), the second sliding grooves (206) are slidably connected with second sliding blocks (205), and the second sliding blocks (205) are fixedly connected to one side of the first threaded block (204) and the second threaded block (207).

7. A new building drainage pipe installation fixing structure according to claim 1, characterized in that: The clamping assembly (4) includes an upper arc plate (401) and a lower arc plate (402). The top of the upper arc plate (401) and the lower arc plate (402) are provided with slots (407). The inner wall of the slot (407) is provided with two sets of blocks (406). A rod (408) is clamped in the slot (407). A limiting groove (409) is provided on the surface of the rod (408). The limiting groove (409) is located around the surface of the rod (408). The limiting groove (409) is adapted to the blocks (406). Two sets of through grooves (410) are provided on the surface of the rod (408) near the bottom. The two sets of through grooves (410) are adapted to the two sets of blocks (406).

8. A novel building drain pipe installation fixing structure according to claim 7, characterized in that: The inner walls of the upper arc plate (401) and the lower arc plate (402) are provided with multiple sets of springs (403), and the other end of each set of springs (403) is provided with a clamping plate (404). The surface of the upper arc plate (401) is rotatably connected to a limiting frame (405) via a rotating shaft, and the limiting frame (405) abuts against the top of the insertion rod (408).

9. A new building drainage pipe installation fixing structure according to claim 5, characterized in that: The two sets of frames (201) have the same reinforcing rib (5) on their opposite sides. The reinforcing rib (5) is in the shape of a cross. The reinforcing rib (5) is made of stainless steel.

10. A process for installing a new building drain pipe fixing structure using the new building drain pipe fixing structure according to any one of claims 1 to 9, characterized by Includes the following steps: S1 Preparation and Inspection; After confirming that the fixed structure is installed securely, clean the debris inside the clamping assembly (4) and check the function of each component: the sliding plate (104) of the lifting assembly (1) slides smoothly, the locking rod (103) and the slot (102) are compatible, the double-acting screw (202) of the adjusting assembly (2) rotates flexibly; the connecting cylinder (303) of the buffer assembly (3) can slide smoothly along the cylinder (301), and the locking block (406), the insert rod (408), and the limit frame (405) of the clamping assembly (4) are undamaged; S2 pipe placement and initial fixation; Lift the drainage pipe to the inside of the lower arc plate (402), adjust the position of the pipe to center it, and fasten the upper arc plate (401) onto the lower arc plate (402). Align the slots (407) of the two, insert the rod (408) into the slot (407), so that the through groove (410) on the surface of the rod (408) engages with the locking block (406) in the slot (407). At the same time, ensure that the locking block (406) is embedded in the limiting groove (409) of the rod (408). After circling around, the initial fixation is completed. Rotate the limiting bracket (405) on the surface of the upper arc plate (401) so that its end is pressed against the top of the rod (408) to prevent the rod (408) from falling. At this time, the pipe is initially fixed by the clamping assembly (4). S3 height and angle adjustment; Adjust the height according to the drainage path requirements, loosen the stud (106) of the lifting assembly (1), slide the slide plate (104) to the target height, align the slot (102) of the base (101) and the slide plate (104) and insert the locking rod (103), then tighten the stud (106) to press the slide plate (104) to fix the height; Adjust the angle, rotate the two-way screw rod (202) knob (211) of the adjusting assembly (2), drive the first threaded block (204) and the second threaded block (207) to move in opposite directions or in the same direction, drive the cylinder (301) of a buffer assembly (3) to move downward or upward along the slide cylinder (209) through the movable rod (208), and synchronously drive the clamping assembly (4) and the pipeline to adjust the angle until the drainage slope requirement is met, stop rotating the knob (211); S4 stable confirmation and buffer check; Check the clamping assembly (4), confirm that the spring (403) tightly adheres to the surface of the pipeline through the arc plate (404) to achieve elastic clamping, test the buffer function, and gently push the pipeline to observe whether the damping shock absorber (302) plays a buffering role when the connecting cylinder (303) of the buffer assembly (3) slides along the cylinder (301), ensure that the pipeline can be unloaded through the buffer assembly (3) when it vibrates, all adjusting parts are not loose, the pipeline position and angle are stable, and the use process is completed.