Water and electricity installation structure for constructional engineering
By designing the shell protection mechanism, the clamping sealing mechanism and clamping auxiliary mechanism, the water meter and water pipe exposure and connection leakage in the hydropower installation structure of the construction project is solved, and the long-term stable operation and sealing of the equipment is achieved, reducing maintenance difficulty and resource waste.
Patent Information
- Application Number
- CN202422082154.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-27
AI Technical Summary
In the existing water and electricity installation structure of construction projects, the water meter and water pipes are directly exposed, which are susceptible to mechanical damage and environmental factors. There may be a risk of water leakage at the connection, resulting in waste of water resources and property losses.
A water and electricity installation structure for construction projects is designed, including water meter, shell protection mechanism, clamping sealing mechanism and clamping auxiliary mechanism. The outer shell protection mechanism protects the water pipe and water meter through the protective shell and the lateral shell. The clamping sealing mechanism is sealed through the sealing groove and rubber ring of the inner pipe and the clamping auxiliary mechanism is precisely adjusted through the cross lock frame and the lead screw.
Through the shell protection mechanism, the clamping sealing mechanism achieves sealing and stability. The clamping auxiliary mechanism improves adjustment accuracy, solves the problems of water meter and water pipe exposure and connection leakage, extends the equipment life, reduces maintenance difficulty and resource waste.
Smart Images

Figure CN223004674U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of hydropower installation, and more specifically, it relates to a hydropower installation structure for building engineering. Background Art
[0002] The hydropower installation structure for building engineering refers to a series of structures and components used for installing hydropower facilities in building engineering. These structures and components ensure the safety, reliability, and efficiency of the hydropower system of the building, and are particularly important in the field of water flow supply.
[0003] In the existing technology, firstly, in some devices, the water meter and water pipes are directly exposed, which are easily affected by environmental factors such as mechanical damage, dust, and moisture, reducing the service life. The installation of water pipes and water meters will become more difficult, and additional support structures may be required. The water pipes may vibrate during operation, affecting the accurate measurement of the water meter. Secondly, in some devices, there may be a risk of water leakage at the connection, resulting in waste of water resources and potential property losses. The connection between the inner pipe and the clamping pipe may not be firm enough, which may cause the connection to fall off or leak. Finally, in some devices, the adjustment may not be precise enough, affecting the sealing performance of the connection. Maintenance and replacement may become more difficult, and more labor and higher skill requirements may be needed. Summary of the Utility Model
[0004] (1) Technical Problems to be Solved
[0005] Aiming at the problems existing in the existing technology, the utility model provides a hydropower installation structure for building engineering to solve the technical problems such as the direct exposure of the water meter and water pipes and the possible risk of water leakage at the connection mentioned in the background art.
[0006] (2) Technical Solutions
[0007] To achieve the above object, the utility model provides the following technical solution: A hydropower installation structure for building engineering includes a water meter, a housing protection mechanism, a clamping and sealing mechanism, and a clamping auxiliary mechanism. The housing protection mechanism includes a protective shell, a sealing cover, a lateral shell, a water pipe, a mounting plate, and a fixing plate. The water meter is installed on the water pipe, the water pipe is installed inside the protective shell, the lateral shell is installed at both ends of the protective shell, both ends of the water pipe extend out of the lateral shell, and the fixing plate is installed on the side wall of the water pipe, and the mounting plate is arranged on the outer wall of the lateral shell, and the fixing plate is fixedly connected to the mounting plate. The connection and clamping mechanism includes a clamping pipe, an inner pipe, a sealing groove, a rubber ring, a cross lock frame, a stabilizing spring, and a multi-stage clamping groove. The inner pipe extends into the inner wall of the clamping pipe, the multi-stage clamping groove is arranged on the outer wall of the inner pipe, the cross lock frame is horizontally movably arranged on the side wall of the clamping pipe, the stabilizing spring is installed between the outer wall of the clamping pipe and the cross lock frame, the sealing groove is arranged on the inner wall of the clamping pipe, the rubber ring is installed at the top of the inner pipe, and the rubber ring is clamped and sealed with the sealing groove.
[0008] The present utility model is further configured such that the clamping auxiliary mechanism includes a movable sleeve, a movement groove, a sliding groove, a sliding block, and a parallel locking frame. The movable sleeve is longitudinally movably arranged on the outer wall of the clamping pipe. The movement groove is arranged on the outer wall of the movable sleeve. The sliding groove is obliquely arranged on the side walls at both ends of the movement groove. The parallel locking frame is fixedly installed in the movement groove. The sliding blocks are arranged on both sides of the cross locking frame, and the sliding blocks can be embedded into the sliding groove for guiding cooperation.
[0009] The present utility model is further configured such that top fixing plates and bottom fixing plates are respectively installed at the top and bottom ends of the side wall of the outer wall of the clamping pipe, and a lead screw is rotatably arranged between the top fixing plate and the bottom fixing plate. The arrangement of the lead screw facilitates the control of the movable sleeve.
[0010] The present utility model is further configured such that an internal gear sleeve and a rotating gear are rotatably arranged on the top end face of the bottom fixing plate, and the rotating gear is fitted and installed on the lead screw. The arrangements of the internal gear sleeve and the rotating gear make the adjustment of the clamping pipe more precise and convenient.
[0011] The present utility model is further configured such that the rotating gear is meshed and connected with the internal gear sleeve, and the movable sleeve is threadedly fitted on the lead screw. The arrangement of the movable sleeve facilitates the control of the cross locking frame.
[0012] The present utility model is further configured such that one end of the clamping pipe is fixedly connected with one end of the water pipe in a matching manner. One end of the inner pipe is provided with a connecting pipe in a matching manner, and the connecting pipe is connected with the water demand and water supply equipment outside. The arrangements of the inner pipe and the clamping pipe achieve the sealing and stability of the pipeline connection.
[0013] The present utility model is further configured such that longitudinal grooves are formed on the side wall of the clamping pipe, and multiple groups of longitudinal grooves are provided. The cross locking frame extends into the clamping pipe through the longitudinal grooves and is clamped with multiple-level clamping grooves of the inner pipe in a matching manner. The arrangement of the cross locking frame facilitates the realization of the linkage setting with the inner pipe.
[0014] The present utility model is further configured such that the cross locking frame can move relatively up and down in the longitudinal groove, and drives the rubber ring and the sealing groove at the top of the inner pipe to be sealed and connected. The design of the longitudinal groove enables the cross locking frame to move smoothly, thereby driving the rubber ring and the sealing groove at the top of the inner pipe to achieve sealed connection, ensuring the sealing and stability of the connection.
[0015] (III) Beneficial effects
[0016] Compared with the prior art, the present utility model provides a water and electricity installation structure for building engineering, having the following beneficial effects:
[0017] The utility model is provided with a housing protection mechanism, which provides a protective cover for the water meter and the internal pipeline, can prevent external physical damages such as impacts and dust, ensures the long-term stable operation of the water meter, is installed at both ends of the protective housing, not only enhances the structural stability, but also enables both ends of the water pipe to extend out, facilitating connection with external devices, and provides a firm support for the whole structure through the connection between the fixing plate and the mounting plate, ensuring the stability of installation.
[0018] The utility model is provided with a clamping and sealing mechanism. Through the design of inserting the inner pipe into the clamping pipe, the connection of the pipeline is realized. The structure is compact, facilitating installation and maintenance. The installation of the rubber ring and its cooperation with the sealing groove ensure the sealing performance of the connection, effectively preventing water leakage. The design of the cross lock frame enables the inner pipe to be firmly connected with the clamping pipe, and the multi-stage clamping grooves provide flexible clamping positions, which can be adjusted according to actual needs, enhancing the stability of the connection.
[0019] The utility model is provided with a clamping auxiliary mechanism. The design of these components enables the cross lock frame to move smoothly up and down in the clamping pipe, facilitating the adjustment of the position of the inner pipe to achieve flexible clamping. The setting of these components makes the adjustment of the clamping pipe more precise and convenient. By rotating the lead screw, fine control of the movable sleeve and the cross lock frame can be achieved, thus ensuring the accuracy of the pipeline connection. Description of the Drawings
[0020] Figure 1 It is a schematic structural diagram of the whole device of the utility model in the unused state;
[0021] Figure 2 It is a schematic structural diagram of the inside of the protective housing of the utility model;
[0022] Figure 3 It is a schematic structural diagram of the installation method of the clamping and sealing mechanism of the utility model;
[0023] Figure 4 It is a schematic structural diagram of the clamping and sealing mechanism and the clamping auxiliary mechanism of the utility model;
[0024] Figure 5 It is a schematic structural diagram of the inside of the clamping and sealing mechanism and the clamping auxiliary mechanism of the utility model.
[0025] In the figure: 1, water meter; 2, protective shell; 3, sealing cover; 4, lateral shell; 5, water pipe; 6, mounting plate; 7, fixing plate; 8, clamping pipe; 9, inner pipe; 10, sealing groove; 11, rubber ring; 12, cross lock frame; 13, stabilizing spring; 14, multi-stage clamping groove; 15, movable sleeve; 16, movement groove; 17, sliding groove; 18, slider; 19, parallel lock frame; 20, top fixing plate; 21, bottom fixing plate; 22, lead screw; 23, inner gear sleeve; 24, rotating gear; 25, connecting pipe; 26, longitudinal groove. Detailed implementation manners
[0026] It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The following will describe the present utility model in detail with reference to the drawings and in combination with the embodiments.
[0027] It should be pointed out that, unless otherwise specified, all the technical and scientific terms used in this application have the same meanings as those commonly understood by those of ordinary skill in the technical field to which this application belongs.
[0028] In the present utility model, unless otherwise stated, the orientations such as "upper and lower" are usually in the directions shown in the drawings, or in the vertical, perpendicular or gravitational directions; similarly, for the convenience of understanding and description, "left and right" are usually the left and right shown in the drawings; "inner and outer" refer to the inner and outer of the contours of each component itself, but the above orientation terms are not used to limit the present utility model.
[0029] Please refer to Figures 1-5 , a water and electricity installation structure for construction engineering, including a water meter 1, an outer shell protection mechanism, a clamping and sealing mechanism, and a clamping assistance mechanism. The outer shell protection mechanism includes a protective shell 2, a sealing cover 3, a lateral shell 4, a water pipe 5, a mounting plate 6, and a fixing plate 7. The water meter 1 is installed on the water pipe 5, the water pipe 5 is installed inside the protective shell 2, the lateral shell 4 is installed at both ends of the protective shell 2, both ends of the water pipe 5 extend out of the lateral shell 4, and the fixing plate 7 is installed on the side wall of the water pipe 5. The mounting plate 6 is arranged on the outer wall of the lateral shell 4, and the fixing plate 7 is fixedly connected to the mounting plate 6. The connection clamping mechanism includes a clamping pipe 8, an inner pipe 9, a sealing groove 10, a rubber ring 11, a cross lock frame 12, a stabilizing spring 13, and a multi-stage clamping groove 14. The inner pipe 9 extends into the inner wall of the clamping pipe 8, the multi-stage clamping groove 14 is arranged on the outer wall of the inner pipe 9, the cross lock frame 12 is horizontally movably arranged on the side wall of the clamping pipe 8, the stabilizing spring 13 is installed between the outer wall of the clamping pipe 8 and the cross lock frame 12, the sealing groove 10 is arranged on the inner wall of the clamping pipe 8, the rubber ring 11 is installed at the top of the inner pipe 9, and the rubber ring 11 is cooperatively clamped and sealed with the sealing groove 10.
[0030] In this embodiment, the water meter 1 is installed on the water pipe 5. The water pipe 5 is located inside the protective shell 2. The side shells 4 are installed at both ends of the protective shell 2. Both ends of the water pipe 5 extend out of the side shells 4. The fixing plate 7 is installed on the side wall of the water pipe 5. The mounting plate 6 is arranged on the outer wall of the side shell 4. The fixing plate 7 is fixedly connected to the mounting plate 6 to provide support and protection for the water pipe 5 and the water meter 1. The inner pipe 9 extends into the inner wall of the clamping pipe 8. Multiple-stage clamping grooves 14 are arranged on the outer wall of the inner pipe 9. The cross-shaped lock frame 12 is horizontally movably arranged on the side wall of the clamping pipe 8. One end of the stabilizing spring 13 extends the cross-shaped lock frame 12 into the multiple-stage clamping grooves 14. The sealing groove 10 is arranged on the inner wall of the clamping pipe 8. The rubber ring 11 is installed at the top of the inner pipe 9. The rubber ring 11 is clamped and sealed in cooperation with the sealing groove 10.
[0031] The clamping auxiliary mechanism includes a movable sleeve 15, a movement groove 16, a sliding groove 17, a sliding block 18 and a parallel lock frame 19. The movable sleeve 15 is longitudinally movably arranged on the outer wall of the clamping pipe 8. The movement groove 16 is arranged on the outer wall of the movable sleeve 15. The sliding groove 17 is obliquely arranged on the side walls at both ends of the movement groove 16. The parallel lock frame 19 is fixedly installed in the movement groove 16. The sliding blocks 18 are arranged on both sides of the cross-shaped lock frame 12, and the sliding blocks 18 can be embedded into the sliding grooves 17 for guiding cooperation.
[0032] In this embodiment, the parallel lock frame 19 is fixedly installed in the movement groove 16. The sliding blocks 18 are arranged on both sides of the cross-shaped lock frame 12. The sliding blocks 18 can be embedded into the sliding grooves 17 for guiding cooperation. Through the longitudinal movement of the movable sleeve 15, the parallel lock frame 19 and the cross-shaped lock frame 12 move relative to each other, so that the cross-shaped lock frame 12 moves upward in the longitudinal groove 26, driving one end of the inner pipe 9 to further extend into the clamping pipe 8, realizing the clamping and sealing of the inner pipe 9 and the clamping pipe 8, and further enabling the rubber ring 11 to be clamped and sealed in cooperation with the sealing groove 10 to ensure the sealing performance of the connection.
[0033] Please refer to Figures 1-5, as a supplementary implementation method of a building engineering water and electricity installation structure for the shell protection mechanism, the clamping and sealing mechanism, and the clamping auxiliary mechanism: At the top and bottom ends of the side wall of the outer wall of the clamping pipe 8, a top fixing plate 20 and a bottom fixing plate 21 are respectively installed. Between the top fixing plate 20 and the bottom fixing plate 21, a lead screw 22 is rotatably provided. On the top end face of the bottom fixing plate 21, an internal gear sleeve 23 and a rotating gear 24 are rotatably provided. The rotating gear 24 is fitted and installed on the lead screw 22, and the rotating gear 24 is meshed and connected with the internal gear sleeve 23. The movable sleeve 15 is threadedly fitted on the lead screw 22. One end of the clamping pipe 8 is fixedly connected with one end of the water pipe 5 in a matching manner. One end of the inner pipe 9 is provided with a connecting pipe 25 in a matching manner, and the connecting pipe 25 is connected with the external water demand and water supply equipment. On the side wall of the clamping pipe 8, a longitudinal groove 26 is opened. There are multiple groups of longitudinal grooves 26. The cross-shaped lock frame 12 extends into the clamping pipe 8 through the longitudinal groove 26 and is clamped with the multi-stage clamping grooves 14 of the inner pipe 9 in a matching manner. The cross-shaped lock frame 12 can move relatively up and down in the longitudinal groove 26 and drive the rubber ring 11 and the sealing groove 10 at the top of the inner pipe 9 to be hermetically connected.
[0034] More specifically, one end of the clamping pipe 8 is fixedly connected with one end of the water pipe 5 in a matching manner. One end of the inner pipe 9 is provided with a connecting pipe 25 in a matching manner with the connecting pipe 25, and the connecting pipe 25 is connected with the external water demand and water supply equipment. By rotating the lead screw 22 between the top fixing plate 20 and the bottom fixing plate 21, the internal gear sleeve 23 and the rotating gear 24 are driven to rotate, and then the movable sleeve 15 is driven to move longitudinally, adjusting the position of the cross-shaped lock frame 12 to achieve the clamping and sealing of the inner pipe 9 and the clamping pipe 8. Through the cooperation of the rubber ring 11 and the sealing groove 10, the sealing performance of the connection is ensured, preventing water leakage and protecting the water pipe 5 and the water meter 1. Water enters the inner pipe 9 through the connecting pipe 25, passes through the clamping and sealing connection of the clamping pipe 8 and the inner pipe 9, and flows through the water pipe 5 and the water meter 1 to achieve water supply and metering.
[0035] In summary, when the overall equipment is in use or operation: When the operation of the shell protection mechanism is required, the water meter 1 is installed on the water pipe 5. The water pipe 5 is located inside the protection shell 2. The side shells 4 are installed at both ends of the protection shell 2. Both ends of the water pipe 5 extend out of the side shells 4. The fixing plate 7 is installed on the side wall of the water pipe 5. The mounting plate 6 is arranged on the outer wall of the side shell 4. The fixing plate 7 is fixedly connected with the mounting plate 6 to provide support and protection for the water pipe 5 and the water meter 1.
[0036] When the operation of the clamping and sealing mechanism is required, the inner pipe 9 extends into the inner wall of the clamping pipe 8. The multi-stage clamping grooves 14 are arranged on the outer wall of the inner pipe 9. The cross-shaped lock frame 12 is horizontally movably arranged on the side wall of the clamping pipe 8. One end of the stable spring 13 extends the cross-shaped lock frame 12 into the multi-stage clamping grooves 14. The sealing groove 10 is arranged on the inner wall of the clamping pipe 8. The rubber ring 11 is installed at the top end of the inner pipe 9. The rubber ring 11 is hermetically connected with the sealing groove 10 in a matching manner.
[0037] When the operation of the clamping auxiliary mechanism is required, the parallel lock frame 19 is fixedly installed in the movement groove 16. The slider 18 is arranged on both sides of the cross lock frame 12. The slider 18 can be embedded in the chute 17 for guiding. Through the longitudinal movement of the movable sleeve 15, the parallel lock frame 19 and the cross lock frame 12 move relative to each other, causing the cross lock frame 12 to move upward in the longitudinal groove 26, driving one end of the inner tube 9 to further extend into the clamping tube 8, realizing the clamping and sealing of the inner tube 9 and the clamping tube 8. Furthermore, the rubber ring 11 is clamped and sealed in cooperation with the sealing groove 10 to ensure the sealing performance of the connection.
[0038] One end of the clamping tube 8 is fixedly connected in cooperation with one end of the water pipe 5. One end of the inner tube 9 is provided with a connecting tube 25 in cooperation with the connecting tube 25. The connecting tube 25 is connected to the external water demand and water supply equipment. By rotating the lead screw 22 between the top fixing plate 20 and the bottom fixing plate 21, the inner gear sleeve 23 and the rotating gear 24 are driven to rotate, and then the movable sleeve 15 is driven to move longitudinally to adjust the position of the cross lock frame 12, realizing the clamping and sealing of the inner tube 9 and the clamping tube 8. Through the cooperation of the rubber ring 11 and the sealing groove 10, the sealing performance of the connection is ensured, preventing water leakage and protecting the water pipe 5 and the water meter 1. Water enters the inner tube 9 through the connecting tube 25, flows through the clamping and sealed connection of the clamping tube 8 and the inner tube 9, and flows through the water pipe 5 and the water meter 1 to realize water supply and metering.
[0039] In all the above-mentioned solutions, for the connection between two components, welding, the cooperation connection of bolts and nuts, bolt or screw connection, or other well-known connection methods can be selected according to the actual situation, which will not be elaborated one by one here. For those mentioned as fixed connections above, 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 principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A water and electricity installation structure for a construction project, comprising a water meter (1), a housing protection mechanism, a clamping sealing mechanism and a clamping auxiliary mechanism, wherein: The housing protection mechanism comprises a protection shell (2), a sealing cover (3), a lateral shell (4), a water pipe (5), a mounting plate (6) and a fixing plate (7); the water meter (1) is mounted on the water pipe (5); the water pipe (5) is mounted inside the protection shell (2); the lateral shell (4) is mounted at both ends of the protection shell (2); both ends of the water pipe (5) extend out of the lateral shell (4); the fixing plate (7) is mounted on the side wall of the water pipe (5); the mounting plate (6) is arranged on the outer wall of the lateral shell (4); the fixing plate (7) is fixedly connected to the mounting plate (6); the connection clamping mechanism comprises a clamping A pipe (8), an inner pipe (9), a sealing groove (10), a rubber ring (11), a cross lock frame (12), a stabilizing spring (13) and a multi-stage clamping groove (14); the inner pipe (9) extends into the inner wall of the clamping pipe (8); the multi-stage clamping groove (14) is arranged on the outer wall of the inner pipe (9); the cross lock frame (12) is arranged on the side wall of the clamping pipe (8) in a transversely movable manner; the stabilizing spring (13) is installed between the outer wall of the clamping pipe (8) and the cross lock frame (12); the sealing groove (10) is arranged on the inner wall of the clamping pipe (8); and the rubber ring (11) is installed on the top of the inner pipe (9).
2. A construction engineering water and electricity installation structure according to claim 1, characterized in that: The clamping auxiliary mechanism comprises a movable sleeve (15), a moving groove (16), a sliding groove (17), a slider (18) and a parallel lock frame (19); the movable sleeve (15) is longitudinally movable and arranged on the outer wall of the clamping tube (8); the moving groove (16) is arranged on the outer wall of the movable sleeve (15); the sliding groove (17) is obliquely arranged on the side walls at both ends of the moving groove (16); the parallel lock frame (19) is fixedly installed in the moving groove (16); the slider (18) is arranged on both sides of the cross lock frame (12), and the slider (18) can be embedded in the sliding groove (17) to cooperate with the guide arrangement.
3. A construction engineering water and electricity installation structure according to claim 1, characterized in that: A top fixing plate (20) and a bottom fixing plate (21) are respectively installed at the top and bottom ends of the side wall of the outer wall of the clamping tube (8), and a lead screw (22) is rotatably arranged between the top fixing plate (20) and the bottom fixing plate (21).
4. A construction engineering water and electricity installation structure according to claim 3, characterized in that: An internal gear sleeve (23) and a rotating gear (24) are rotatably provided on the top end surface of the bottom fixing plate (21), and the rotating gear (24) is mounted on the lead screw (22).
5. A construction engineering water and electricity installation structure according to claim 4, characterized in that: The rotating gear (24) is meshedly connected with the internal gear sleeve (23), and the movable sleeve (15) is threadedly arranged on the lead screw (22).
6. A construction engineering water and electricity installation structure according to claim 1, characterized in that: One end of the clamping pipe (8) is fixedly connected to one end of the water pipe (5), and one end of the inner pipe (9) is provided with a connecting pipe (25), and the connecting pipe (25) is connected to external water demand and water supply equipment.
7. A construction engineering water and electricity installation structure according to claim 1, characterized in that: The side wall of the clamping tube (8) is provided with a longitudinal groove (26), and a plurality of longitudinal grooves (26) are provided. The cross lock frame (12) extends into the clamping tube (8) through the longitudinal groove (26) and is clamped and connected with the multi-stage clamping grooves (14) of the inner tube (9).
8. A construction engineering water and electricity installation structure according to claim 1, characterized in that: The cross lock frame (12) can move up and down relatively in the longitudinal groove (26), and drive the rubber ring (11) at the top of the inner tube (9) and the sealing groove (10) to be sealed and connected.