Building construction water supply and drainage pipeline mounting structure
Through the combined design of the connecting pipeline structure and the precise engagement locking mechanism, the pipeline fixation and support problems are solved, stable connection and precise adjustment are achieved, and the efficiency and safety of the installation of water supply and drainage pipes are improved.
Patent Information
- Application Number
- CN202422451873.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-10-10
AI Technical Summary
The pipe cannot be effectively fixed and supported in the prior art, resulting in displacement and vibration of the pipe during use, affecting the normal function of the system and posing safety hazards.
The combination design of connecting pipe, fastening pipe, fastening ring, hinge block, rotating block, support rod and pressing plate is adopted. Combined with the precise engagement of the clamping rod, clamping groove, fastening sleeve, clamping block and locking sleeve, precise adjustment and locking are achieved through the control mechanism to enhance the fixing and support effect.
Improves the stability and reliability of pipeline installation, reduces vibration and displacement risks, extends the service life of the pipeline system, and ensures installation accuracy and safety.
Smart Images

Figure CN223063330U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction, and more specifically, it relates to an installation structure for building construction water supply and drainage pipes. Background Art
[0002] In the existing technology, the pipes cannot be effectively fixed and supported, and the accurate fixing of the position of the support rods cannot be achieved. These problems will significantly increase the risk of displacement or vibration of the pipes during use. The pipe system will be affected by various forces during operation, including water flow impact, expansion and contraction caused by temperature changes, and minor deformations of the building structure, etc.
[0003] If effective fixing and support are lacking, these forces may cause the pipes to displace, vibrate or even deform. Long-term vibration may cause the pipe joints to loosen and the seals to fail, ultimately leading to leakage problems. In addition, displacement may cause the pipes to collide with other building components, not only damaging the pipes themselves, but also affecting the integrity of the building structure. Especially in some occasions where precise positioning is required, such as pipes connected to precision equipment or drain pipes that need to maintain a specific slope, it will directly affect the normal function of the system. These problems will not only reduce the service life of the pipe system, but also may cause a series of safety hazards, such as water and mold growth, seriously affecting the use safety and living comfort of the building. Content of the Utility Model
[0004] (1) Technical Problems to be Solved
[0005] Aiming at the problems existing in the prior art, the utility model provides an installation structure for building construction water supply and drainage pipes to solve the technical problems mentioned in the background art that the pipes cannot be effectively fixed and supported and the lack of effective fixing and support.
[0006] (2) Technical Solutions
[0007] To achieve the above object, the present utility model provides the following technical solution: A building construction water supply and drainage pipeline installation structure, including an installation pipe, an installation mechanism is provided on the installation pipe, the installation mechanism includes a connecting pipe, a fastening pipe, a fastening ring, a fastening groove, a hinge block, a rotating block, a support rod and a pressing piece. The connecting pipe is arranged at the bottom end of the installation pipe, the fastening pipe is arranged on the outer wall of the installation pipe, the fastening ring is arranged outside the fastening pipe, multiple groups of fastening grooves are distributed on the outside of the fastening ring, multiple groups of hinge blocks are arranged on the outer wall of the connecting pipe, the rotating block is rotatably installed on multiple groups of the hinge blocks, the support rod is installed on multiple groups of the rotating blocks, the pressing piece is arranged at the top ends of multiple groups of the support rods, and a locking mechanism is arranged at the top ends of multiple groups of the support rods. The locking mechanism includes a clamping rod, a clamping groove, a fastening sleeve, an installation groove, a clamping block and a locking sleeve. The clamping rod is arranged at the top end of the support rod, multiple groups of clamping grooves are distributed on the outer wall of the clamping rod, the fastening sleeve is arranged outside the clamping rod, multiple groups of installation grooves are distributed on the outer wall of the fastening sleeve, the clamping block is rotatably installed in multiple groups of the installation grooves, and the locking sleeve is slidably installed on the outer wall of the fastening sleeve.
[0008] The present utility model is further provided such that a sealing ring is provided between the connecting pipe and the fastening pipe. This design significantly improves the sealing performance at the connection, reduces pipeline loosening caused by minor vibrations or temperature changes, and extends the service life of the pipeline system.
[0009] The present utility model is further provided such that teeth are provided at the bottom ends of multiple groups of the clamping blocks, and tooth grooves are formed on the inner wall of the locking sleeve. Multiple groups of the tooth grooves are provided and are all engaged with multiple groups of the teeth. This design of teeth and tooth grooves greatly improves the locking accuracy and stability. This precise engagement not only prevents accidental sliding but also allows for more precise position adjustment, improving the reliability and safety of the entire installation structure.
[0010] The present utility model is further provided such that a top spring is installed on the inner top surface of the fastening sleeve, and a top plate is installed at the bottom end of the top spring. This design provides additional buffering and support for the clamping rod, and this structure increases the durability and stability of the entire mechanism.
[0011] The present utility model is further provided such that a bottom spring is installed at the bottom end of the clamping rod, and a bottom plate is installed at the top end of the bottom spring. This design provides buffering and support for the bottom of the clamping rod. This structure not only increases the stability of the clamping rod but also improves the seismic resistance and service life of the entire mechanism.
[0012] The present utility model is further configured such that a positioning strip is provided on the outer wall of the clamping rod, and multiple groups of the positioning strips are provided. Positioning grooves are formed on the inner wall of the fastening sleeve, and multiple groups of the positioning grooves are provided and are adapted to the multiple groups of the positioning strips. This design ensures the precise positioning of the clamping rod within the fastening sleeve, which not only improves the stability of the entire mechanism but also ensures the precise control of the position of the support rod, enhancing the reliability of the entire installation structure.
[0013] The present utility model is further configured such that a control mechanism is provided on the outer wall of the fastening sleeve. The control mechanism includes a control sleeve, a main gear, a screw rod, a driven gear, and a transmission block. The control sleeve is rotatably installed at the top end of the fastening sleeve. The main gear is installed on the bottom surface of the control sleeve. Multiple groups of the screw rods are rotatably installed on the fastening sleeve. The driven gears are installed at the tops of the multiple groups of the screw rods and are all meshed with the main gear. Multiple groups of the transmission blocks are installed on the outer wall of the locking sleeve and are threadedly connected to the multiple groups of the screw rods. This design realizes the precise control of the position of the locking sleeve. This precise control mechanism greatly improves the adjustment accuracy and operation convenience of the entire installation structure.
[0014] The present utility model is further configured such that anti-slip lines are provided on the outer wall of the control sleeve. This design improves the grip and control accuracy during operation, which not only improves the comfort of operation but also indirectly increases the accuracy and efficiency of the entire adjustment process.
[0015] (III) Beneficial effects
[0016] Compared with the prior art, the present utility model provides an installation structure for building construction water supply and drainage pipes, having the following beneficial effects:
[0017] 1. Through the combination of the connecting pipe, the fastening pipe, the fastening ring, and the fastening groove, the stable connection of the pipes is realized, and the flexible adjustment is allowed. The design of the articulated block and the rotating block allows the support rod to be freely adjusted in multiple directions to adapt to complex installation environments. The cooperation between the support rod and the pressing piece provides effective fixation and support, reducing the risk of pipe vibration and displacement. The setting of multiple groups of fastening grooves increases the selectivity of the installation position, improving the flexibility and adaptability of the installation. The overall design greatly improves the efficiency and quality of the installation of water supply and drainage pipes, adapting to various complex building structures.
[0018] 2. The combination of the clamping rod, the clamping groove, the fastening sleeve, and the clamping block realizes the precise fixation of the position of the support rod. The sliding design of the locking sleeve in cooperation with the rotation of the clamping block provides a reliable locking effect. The meshing of the teeth and the tooth grooves enhances the firmness of the locking, preventing accidental loosening. The setting of the top spring and the top plate, and the abutting spring and the abutting plate provides additional buffering and pressure, ensuring the locking effect while increasing the flexibility of the system. The design of the positioning strip and the positioning groove ensures the precise positioning of the clamping rod within the fastening sleeve, improving the accuracy and reliability of the entire locking process.
[0019] 3. The combination of the control sleeve, main gear, screw, driven gear, and transmission block realizes fine adjustment of the position of the locking sleeve. The gear transmission system converts rotational motion into linear motion of the locking sleeve, providing precise control capabilities. The design of multiple groups of screws and transmission blocks ensures the smoothness and uniformity of the movement of the locking sleeve. The anti-slip threads on the outer wall of the control sleeve increase the friction during operation and improve the accuracy of control. The design of the entire control mechanism not only simplifies the operation process but also greatly improves the accuracy and efficiency of adjustment, facilitating later maintenance and fine-tuning. Description of the Drawings
[0020] Figure 1 Fig. is the overall structural schematic diagram of a building construction water supply and drainage pipeline installation structure in the present utility model;
[0021] Figure 2 Fig. is the sectional structural schematic diagram of the installation mechanism in the present utility model;
[0022] Figure 3 Fig. is the structural schematic diagram of the locking mechanism in the disassembled state in the present utility model;
[0023] Figure 4 Fig. is the sectional structural schematic diagram of the locking mechanism in the present utility model;
[0024] Figure 5 Fig. is the structural schematic diagram of the control mechanism in the present utility model.
[0025] In the figure: 1, installation pipe; 2, connecting pipe; 3, fastening pipe; 4, fastening ring; 5, fastening groove; 6, hinge block; 7, rotating block; 8, support rod; 9, pressing piece; 10, clamping rod; 11, clamping groove; 12, fastening sleeve; 13, installation groove; 14, clamping block; 15, locking sleeve; 16, sealing ring; 17, tooth; 18, tooth groove; 19, top spring; 20, top plate; 21, abutment spring; 22, abutment plate; 23, positioning strip; 24, positioning groove; 25, control sleeve; 26, main gear; 27, screw; 28, driven gear; 29, transmission block; 30, anti-slip thread. Detailed Embodiment
[0026] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. The present utility model will be described in detail below with reference to the drawings and in combination with the embodiments.
[0027] It should be pointed out that, unless otherwise specified, all technical and scientific terms used in the present application have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present application belongs.
[0028] In the present utility model, unless otherwise stated, the directions such as "upper" and "lower" are usually relative to the directions shown in the drawings, or relative to the vertical, perpendicular or gravitational directions; similarly, for the convenience of understanding and description, "left" and "right" are usually relative to the left and right shown in the drawings; "inner" and "outer" refer to the inner and outer of the contour of each component itself. However, the above orientation terms are not used to limit the present utility model.
[0029] Please refer to Figures 1-5 , a building construction water supply and drainage pipeline installation structure, including an installation pipe 1, an installation mechanism is provided on the installation pipe 1. The installation mechanism includes a connecting pipe 2, a fastening pipe 3, a fastening ring 4, a fastening groove 5, a hinge block 6, a rotating block 7, a support rod 8 and a pressing piece 9. The connecting pipe 2 is arranged at the bottom end of the installation pipe 1, the fastening pipe 3 is arranged on the outer wall of the installation pipe 1, the fastening ring 4 is arranged on the outer side of the fastening pipe 3, multiple groups of fastening grooves 5 are distributed on the outer side of the fastening ring 4, multiple groups of hinge blocks 6 are installed on the outer wall of the connecting pipe 2, the rotating block 7 is rotatably installed on multiple groups of hinge blocks 6, the support rod 8 is installed on multiple groups of rotating blocks 7, the pressing piece 9 is arranged at the top ends of multiple groups of support rods 8, and locking mechanisms are arranged at the top ends of multiple groups of support rods 8. The locking mechanisms include a clamping rod 10, a clamping groove 11, a fastening sleeve 12, an installation groove 13, a clamping block 14 and a locking sleeve 15. The clamping rod 10 is arranged at the top end of the support rod 8, multiple groups of clamping grooves 11 are distributed on the outer wall of the clamping rod 10, the fastening sleeve 12 is arranged on the outer side of the clamping rod 10, multiple groups of installation grooves 13 are distributed on the outer wall of the fastening sleeve 12, the clamping block 14 is rotatably installed in multiple groups of installation grooves 13, and the locking sleeve 15 is slidably installed on the outer wall of the fastening sleeve 12.
[0030] A sealing ring 16 is provided between the connecting pipe 2 and the fastening pipe 3. The sealing ring 16 can effectively prevent moisture or other liquids from leaking at the connection, enhancing the reliability and durability of the entire pipeline system. At the same time, it can also reduce the loosening of the pipeline caused by minor vibrations or temperature changes, extending the service life of the pipeline system.
[0031] Tooth teeth 17 are provided at the bottom ends of multiple groups of clamping blocks 14, and tooth grooves 18 are formed on the inner wall of the locking sleeve 15. Multiple groups of tooth grooves 18 are provided and are all meshed with multiple groups of tooth teeth 17. The setting of multiple groups of tooth teeth 17 and tooth grooves 18 increases the contact area and improves the locking strength. This precise meshing can not only prevent accidental sliding but also allow for more precise position adjustment, improving the reliability and safety of the entire installation structure.
[0032] A top spring 19 is installed on the inner top surface of the fastening sleeve 12, and a top plate 20 is installed at the bottom end of the top spring 19. The top spring 19 can absorb sudden impact forces and protect the clamping rod 10 and the fastening sleeve 12. The top plate 20 disperses the pressure, preventing the top spring 19 from directly contacting the clamping rod 10 and reducing wear. This structure increases the durability and stability of the entire mechanism.
[0033] At the bottom end of the clamping rod 10, a counter spring 21 is installed, and at the top end of the counter spring 21, a counter plate 22 is installed. The counter spring 21 can absorb the impact force from the bottom, while the counter plate 22 disperses the pressure to protect the clamping rod 10. This structure not only increases the stability of the clamping rod 10, but also improves the seismic resistance and service life of the entire mechanism.
[0034] On the outer wall of the clamping rod 10, positioning strips 23 are provided. There are multiple groups of positioning strips 23. On the inner wall of the fastening sleeve 12, positioning grooves 24 are provided. There are multiple groups of positioning grooves 24 and they are adapted to the multiple groups of positioning strips 23. The setting of the multiple groups of positioning strips 23 and positioning grooves 24 increases the stability of positioning, prevents the rotation and deviation of the clamping rod 10. This not only improves the stability of the entire mechanism, but also ensures the precise control of the position of the support rod 8, enhancing the reliability of the entire installation structure.
[0035] In this embodiment, when installing the water supply and drainage pipeline, first, the connecting pipe 2 is installed at the bottom end of the installation pipe 1, the fastening pipe 3 is installed on the outer wall of the installation pipe 1, the fastening ring 4 is sleeved outside the fastening pipe 3, the fastening grooves 5 are distributed on the outer side of the fastening ring 4, multiple hinge blocks 6 are installed on the outer wall of the connecting pipe 2, and the rotating block 7 can rotate on the hinge block 6. Then, by adjusting the angle of the rotating block 7, the support rod 8 and the pressing piece 9 reach the positions of the multiple fastening grooves 5 provided on the fastening ring 4. When locking is required, the lock sleeve 15 is driven to slide downward through the control mechanism, so that the tooth grooves 18 provided on the inner side of the lock sleeve 15 are engaged with the teeth 17 provided at the bottom ends of the multiple clamping blocks 14, causing the multiple clamping blocks 14 to rotate in the installation groove 13 to drive the clamping blocks 14 to be engaged with the clamping grooves 11. At the same time, the top spring 19 and the counter spring 21 in the fastening sleeve 12 provide additional pressure to ensure the locking effect.
[0036] Please refer to Figure 5 As an implementation manner of the control mechanism: a control mechanism is provided on the outer wall of the fastening sleeve 12. The control mechanism includes a control sleeve 25, a main gear 26, a screw 27, a slave gear 28 and a transmission block 29. The control sleeve 25 is rotatably installed at the top end of the fastening sleeve 12, the main gear 26 is installed on the bottom surface of the control sleeve 25, multiple groups of screws 27 are provided and are all rotatably installed on the fastening sleeve 12, the slave gears 28 are installed at the top ends of the multiple groups of screws 27 and are all meshed with the main gear 26, and multiple groups of transmission blocks 29 are installed on the outer wall of the lock sleeve 15 and are threadedly connected with the multiple groups of screws 27. By rotating the control sleeve 25, the entire gear transmission system can be driven, and finally the position of the lock sleeve 15 can be accurately adjusted through screw transmission. The setting of the multiple groups of screws 27 and the transmission blocks 29 ensures the smoothness and uniformity of the movement of the lock sleeve 15.
[0037] The outer wall of the control sleeve 25 is provided with anti-slip lines 30. The anti-slip lines 30 can prevent the fingers from slipping during operation, especially in a wet or greasy environment, and can ensure the stability and accuracy of the operation.
[0038] More specifically, by rotating the control sleeve 25, the main gear 26 can be driven to rotate, so that the main gear 26 and the driven gear 28 engage and rotate. Further, a plurality of driven gears 28 drive a plurality of screw rods 27 to rotate, enabling the transmission block 29 to be in threaded engagement with the plurality of screw rods 27, thereby driving the lock sleeve 15 to move up and down, and thus controlling the plurality of clamping blocks 14 to lock the clamping rod 10.
[0039] In summary, when the overall device is in use or operation: when installing the water supply and drainage pipes, first, the connecting pipe 2 is installed at the bottom end of the installation pipe 1, the fastening pipe 3 is installed on the outer wall of the installation pipe 1, the fastening ring 4 is sleeved outside the fastening pipe 3, the fastening grooves 5 are distributed outside the fastening ring 4, a plurality of hinge blocks 6 are installed on the outer wall of the connecting pipe 2, and the rotating block 7 can rotate on the hinge block 6. Then, by adjusting the angle of the rotating block 7, the support rod 8 and the pressing piece 9 reach the positions of the plurality of fastening grooves 5 provided on the fastening ring 4. When locking is required, the lock sleeve 15 is driven to slide downward through the control mechanism, so that the tooth grooves 18 provided inside the lock sleeve 15 engage with the teeth 17 provided at the bottom ends of the plurality of clamping blocks 14, causing the plurality of clamping blocks 14 to rotate in the installation grooves 13 to drive the clamping blocks 14 to engage with the clamping grooves 11. At the same time, the top spring 19 and the abutting spring 21 inside the fastening sleeve 12 provide additional pressure to ensure the locking effect.
[0040] By rotating the control sleeve 25, the main gear 26 can be driven to rotate, so that the main gear 26 and the driven gear 28 engage and rotate. Further, a plurality of driven gears 28 drive a plurality of screw rods 27 to rotate, enabling the transmission block 29 to be in threaded engagement with the plurality of screw rods 27, thereby driving the lock sleeve 15 to move up and down, and thus controlling the plurality of clamping blocks 14 to lock the clamping rod 10.
[0041] In all the above-mentioned solutions, for the connection between two components, welding, bolt and nut connection, bolt or screw connection, or other well-known connection methods can be selected according to the actual situation, which will not be elaborated here one by one. For those mentioned above involving fixed connection, welding is preferably considered. Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A building construction water supply and drainage pipeline installation structure, including an installation pipe (1), characterized in that: An installation mechanism is provided on the installation pipe (1). The installation mechanism includes a connecting pipe (2), a fastening pipe (3), a fastening ring (4), a fastening groove (5), a hinge block (6), a rotating block (7), a support rod (8), and a pressing piece (9). The connecting pipe (2) is arranged at the bottom end of the installation pipe (1), the fastening pipe (3) is arranged on the outer wall of the installation pipe (1), the fastening ring (4) is arranged on the outer side of the fastening pipe (3), multiple groups of fastening grooves (5) are distributed on the outer side of the fastening ring (4), multiple groups of hinge blocks (6) are arranged on the outer wall of the connecting pipe (2), the rotating block (7) is rotatably installed on multiple groups of the hinge blocks (6), the support rod (8) is installed on multiple groups of the rotating blocks (7), the pressing piece (9) is arranged at the top ends of multiple groups of the support rods (8), and locking mechanisms are arranged at the top ends of multiple groups of the support rods (8). The locking mechanisms include a clamping rod (10), a clamping groove (11), a fastening sleeve (12), an installation groove (13), a clamping block (14), and a locking sleeve (15). The clamping rod (10) is arranged at the top end of the support rod (8), multiple groups of clamping grooves (11) are distributed on the outer wall of the clamping rod (10), the fastening sleeve (12) is arranged on the outer side of the clamping rod (10), multiple groups of installation grooves (13) are distributed on the outer wall of the fastening sleeve (12), the clamping block (14) is rotatably installed in multiple groups of the installation grooves (13), and the locking sleeve (15) is slidably installed on the outer wall of the fastening sleeve (12).
2. The installation structure of a building construction water supply and drainage pipeline according to claim 1, characterized in that: A sealing ring (16) is provided between the connecting pipe (2) and the fastening pipe (3).
3. The installation structure of the water supply and drainage pipeline for building construction according to claim 2, wherein: multiple groups Tooth teeth (17) are provided at the bottom ends of the clamping blocks (14), and tooth grooves (18) are formed in the inner wall of the locking sleeve (15). Multiple groups of the tooth grooves (18) are provided and are all meshed with multiple groups of the tooth teeth (17).
4. A building construction water supply and drainage pipeline installation structure according to claim 3, characterized in that: A top spring (19) is installed on the inner top surface of the fastening sleeve (12), and a top plate (20) is installed at the bottom end of the top spring (19).
5. The installation structure of the water supply and drainage pipeline for building construction according to claim 4, characterized in that: An abutting spring (21) is installed at the bottom end of the clamping rod (10), and an abutting plate (22) is installed at the top end of the abutting spring (21).
6. The installation structure of a building construction water supply and drainage pipeline according to claim 5, characterized in that: Positioning strips (23) are provided on the outer wall of the clamping rod (10). Multiple groups of the positioning strips (23) are provided, and positioning grooves (24) are formed in the inner wall of the fastening sleeve (12). Multiple groups of the positioning grooves (24) are provided and are adapted to multiple groups of the positioning strips (23).
7. The installation structure of a building construction water supply and drainage pipeline according to claim 6, characterized in that: A control mechanism is arranged on the outer wall of the fastening sleeve (12). The control mechanism includes a control sleeve (25), a main gear (26), a screw rod (27), a slave gear (28), and a transmission block (29). The control sleeve (25) is rotatably installed at the top end of the fastening sleeve (12), the main gear (26) is installed on the bottom surface of the control sleeve (25), multiple groups of the screw rods (27) are rotatably installed on the fastening sleeve (12), the slave gears (28) are installed at the top ends of multiple groups of the screw rods (27) and are all meshed with the main gear (26), and multiple groups of the transmission blocks (29) are installed on the outer wall of the locking sleeve (15) and are threadedly connected with multiple groups of the screw rods (27).
8. The installation structure of a building construction water supply and drainage pipeline according to claim 7, characterized in that: Anti-slip lines (30) are provided on the outer wall of the control sleeve (25).