CN212026458U - Seepage-proofing water-stopping structure based on water supply and drainage engineering - Google Patents
Seepage-proofing water-stopping structure based on water supply and drainage engineering Download PDFInfo
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- CN212026458U CN212026458U CN202020303560.5U CN202020303560U CN212026458U CN 212026458 U CN212026458 U CN 212026458U CN 202020303560 U CN202020303560 U CN 202020303560U CN 212026458 U CN212026458 U CN 212026458U
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- seepage
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Abstract
The utility model discloses an prevention of seepage stagnant water structure based on water supply and drainage engineering, including evenly installing for a plurality of groups drainage pipe on building wall, the stagnant water structure is installed to adjacent two sets of water supply and drainage pipe's junction port department fixed connection and junction, the stagnant water structure is including fixing the bottom plate on the wall body and fixing the sleeve pipe on the bottom plate, ring groove and bottom machine-shaping have evenly been seted up on the surface of bottom plate has the guide way, sheathed tube bottom machine-shaping has four group's card strips that cooperation ring groove used, four group's card strips are the ring setting and the buckle in ring groove and the junction periphery passes through the bolt fastening on the wall body, the sleeve pipe is ARC structure and inside infiltration chamber way of having seted. The utility model discloses be designed with matched with guiding mechanism in stagnant water structure, can in time arrange outward the infiltration through guiding mechanism when the infiltration condition appears, avoid corroding the wall body to reach the promptness of infiltration aftertreatment, reach better protecting effect.
Description
Technical Field
The utility model relates to a water supply and drainage engineering technical field specifically is an prevention of seepage stagnant water structure based on water supply and drainage engineering.
Background
Water supply and drainage engineering is researched to solve the problem of social circulation of water. "water supply": a modern water supply plant extracts natural water from rivers and lakes every day, purifies the water into tap water meeting the standards of production and domestic water by a series of physical and chemical means, and then delivers the tap water to thousands of households through a city water network of Tongtong and Ba Da. The method comprises the following steps: an advanced sewage treatment plant intensively treats sewage and wastewater which are produced and used in life, and then discharges the sewage and the wastewater into rivers and lakes cleanly. The process of water taking, treatment, conveying, retreatment and discharge is the main content to be researched in the water supply and drainage engineering, a water supply and drainage pipeline is installed in a building body for the purpose of water supply and drainage of the building body, and a plurality of pipelines are generally needed to be spliced and installed.
However, the existing water supply and drainage pipeline for building has the following problems in the process of installation and use: (1) the joint between the pipelines is affected by temperature to expand with heat and contract with cold, so that the joint is easy to generate the condition of gap water leakage for a long time, and the wall structure is easy to damage when the water seepage flows onto the building wall; (2) the existing seepage-proofing mode for the pipeline joint mainly improves the sealing performance of the joint, but a corresponding flow guide mechanism is lacked when water seepage occurs. For this reason, a corresponding technical scheme needs to be designed to solve the existing technical problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an prevention of seepage stagnant water structure based on for drainage engineering has solved the problem that proposes in the background art, satisfies the in-service use demand.
In order to achieve the above object, the utility model provides a following technical scheme: an anti-seepage water stop structure based on water supply and drainage engineering comprises a plurality of groups of water supply and drainage pipelines which are uniformly installed on a building wall body, wherein the port part of the joint of every two adjacent groups of water supply and drainage pipelines is fixedly connected, and the joint is provided with a water stop structure, the water stop structure comprises a bottom plate which is fixed on the wall body and a sleeve which is fixed on the bottom plate, the surface of the bottom plate is uniformly provided with an annular clamping groove, the bottom of the sleeve is machined and formed with a guide groove, the bottom of the sleeve is provided with four groups of clamping strips which are matched with the annular clamping groove for use, the four groups of clamping strips are annularly arranged and clamped in the annular clamping groove, the periphery of the joint is fixed on the wall body through bolts, the sleeve is of a cambered surface structure, the inner part of the sleeve is provided with a water seepage cavity channel, the two ends of the water seepage cavity, the outer end of water conservancy diversion mouth is fixed with the funnel pipe, there is the water conservancy diversion branch pipe terminal of funnel pipe through the pipe connection, the water conservancy diversion branch pipe is located the guide way.
As a preferred embodiment of the utility model, the end plate is two segmentation structures and includes that the inner has all seted up the curb plate one and the curb plate two of bayonet socket, sealing connection between curb plate one and the curb plate two, two sets of the bayonet socket forms wears the mouth, the inboard of wearing the mouth is provided with rubber seal ring.
As a preferred embodiment of the present invention, the whole end plate located below is inclined and is close to the diversion opening and is lower than the other side.
As an optimized embodiment of the utility model, waterproof shock insulator has been laid to ring groove's inside, waterproof shock insulator adopts silica gel material and is multilayer structure.
As a preferred embodiment of the present invention, the diversion branch pipe is located inside the water supply and drainage pipeline and is arranged in parallel with the water supply and drainage pipeline.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the design of this scheme has the stagnant water structure in the outside of water supply and drainage pipe's junction, can improve the leakproofness of junction, reaches the purpose of prevention to simple structure is convenient for install and use.
2. The water stopping structure is internally provided with the matched flow guide mechanism, and the water seepage can be timely discharged outside through the flow guide mechanism when the water seepage condition occurs, so that the erosion of a wall body is avoided, the timeliness of water seepage post-treatment is achieved, and a better protection effect is achieved.
Drawings
Fig. 1 is a schematic view of the overall installation of the present invention;
FIG. 2 is a side view of the overall installation of the present invention;
fig. 3 is a bottom structure view of the water stopping structure of the present invention;
fig. 4 is a structural diagram of the water stop structure of the present invention;
fig. 5 is a bottom plate structure view of the present invention.
In the figure, 1-drainage pipeline, 2-bottom plate, 3-sleeve, 4-annular clamping groove, 5-guide groove, 6-clamping strip, 7-water seepage cavity channel, 8-end plate, 9-penetrating port, 10-flow guide port, 11-funnel pipe, 12-flow guide branch pipe, 13-side plate I, 14-side plate II, 15-rubber sealing ring and 16-waterproof spacer.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: an anti-seepage water stop structure based on water supply and drainage engineering comprises a plurality of groups of water supply and drainage pipelines 1 which are uniformly arranged on a building wall, the end part of the joint of two adjacent groups of water supply and drainage pipelines 1 is fixedly connected, and the joint is provided with a water stop structure, the water stop structure comprises a bottom plate 2 which is fixed on the wall and a sleeve 3 which is fixed on the bottom plate 2, the surface of the bottom plate 2 is uniformly provided with an annular clamping groove 4, the bottom of the bottom plate 2 is processed and formed with a guide groove 5, the bottom of the sleeve 3 is processed and formed with four groups of clamping strips 6 which are matched with the annular clamping groove 4, the four groups of clamping strips 6 are annularly arranged and clamped in the annular clamping groove 4, the periphery of the joint is fixed on the wall through bolts, the sleeve 3 is of a cambered surface structure, the inside of the sleeve is provided with a water seepage, a diversion port 10 is formed in one side corner of the end plate 8 at the lower end, a funnel pipe 11 is fixed to the outer end of the diversion port 10, a diversion branch pipe 12 is connected to the tail end of the funnel pipe 11 through a pipeline, and the diversion branch pipe 12 is located in the guide groove 5.
Further improved, as shown in fig. 4: end plate 8 is two segmentation structures and includes that the inner all sets up the curb plate 13 and the curb plate two 14 of bayonet socket, sealing connection between curb plate 13 and the curb plate two 14, and two sets of bayonet sockets form and wear a mouthful 9, and the inboard of wearing a mouthful 9 is provided with rubber seal ring 15, is convenient for carry out the split with end plate 8 and with whole sleeve pipe 3 from drainage pipe 1 separation, conveniently dismantles and maintains for two segmentation structures with end plate 8 design.
And (4) supplementary notes: the inner walls of the two ends of the sleeve 3 can be provided with groove bodies of annular structures, so that the first side plate 13 and the second side plate 14 can be conveniently buckled in the groove bodies, and the connection parts can be fixed through screws.
Further improved, as shown in fig. 4: the end plate 8 positioned below is integrally arranged in an inclined shape, one side of the end plate close to the diversion port 10 is lower than the other side of the end plate, the design mode is convenient for water seepage at the joint of the water supply and drainage pipeline 1 to achieve the purpose of diversion to one side, and the purpose of outward diversion is achieved through the diversion port 10.
Further improved, as shown in fig. 5: waterproof shock insulator 16 has been laid to ring groove 4's inside, and waterproof shock insulator 16 adopts silica gel material and is multilayer structure, and the design of waterproof shock insulator 16 for multilayer silica gel structure can reach better sealed effect to the junction at the extruded in-process of card strip 6.
Specifically, the diversion branch pipes 12 are located on the inner side of the water supply and drainage pipeline 1 and are arranged in parallel with the water supply and drainage pipeline 1, the diversion branch pipes 12 can be laid in a hidden mode through the design mode, on one hand, the safety of the diversion branch pipes 12 is improved, and on the other hand, the overall attractiveness of a water supply and drainage project can be guaranteed.
When in use: when the water supply and drainage pipeline 1 is installed, the diversion branch pipe 12 made of rubber is laid on the inner side of the water supply and drainage pipeline 1, the bottom of the joint of the adjacent water supply and drainage pipelines 1 is inserted into the bottom plate 2, the guide groove 5 of the bottom plate 2 is buckled on the diversion branch pipe 12, then the sleeve 3 outside the bottom plate 2 is buckled outside the joint of the water supply and drainage pipeline 1, so that the clamping strip 6 at the bottom of the sleeve 3 is buckled into the annular clamping groove 4 and fixed on the wall body through bolts, after the installation is finished, the upper and the lower end plates 8 are buckled into the two ends of the sleeve 3 to achieve the fixing purpose, and the formed through opening 9 is buckled at the outer side of the joint of the water supply and drainage pipeline 1 and a rubber sealing ring 15 is arranged in the through opening to achieve the purpose of sealing the joint, when water seepage occurs at the joint of the water supply and drainage pipeline 1, the water seepage cavity channel 7 flows downwards into the flow guide port 10, and the flow guide port 10 flows water into the flow guide branch pipe 12 through the pipeline to achieve the purpose of discharging.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (5)
1. The utility model provides an prevention of seepage stagnant water structure based on water supply and drainage engineering, includes a plurality of groups water supply and drainage pipe (1) of evenly installing on building wall, its characterized in that: the junction port department fixed connection and the junction of two sets of adjacent water supply and drainage pipelines (1) install the stagnant water structure, the stagnant water structure is including fixing bottom plate (2) on the wall body and fixing sleeve pipe (3) on bottom plate (2), ring groove (4) and bottom machine-shaping have been evenly seted up on the surface of bottom plate (2) have guide way (5), the bottom machine-shaping of sleeve pipe (3) has four group card strips (6) that cooperation ring groove (4) used, four groups card strip (6) are the annular and set up and buckle in ring groove (4) and the junction periphery passes through the bolt fastening on the wall body, sleeve pipe (3) are ARC structure and inside has seted up infiltration chamber way (7), the both ends of infiltration chamber way (7) are fixed with end plate (8), all seted up on end plate (8) and have worn mouthful (9), it is connected with inboard infiltration chamber way (7) to wear mouthful (9), a diversion port (10) is formed in one side corner of an end plate (8) located at the lower end, a funnel pipe (11) is fixed to the outer end of the diversion port (10), the tail end of the funnel pipe (11) is connected with a diversion branch pipe (12) through a pipeline, and the diversion branch pipe (12) is located in a guide groove (5).
2. An anti-seepage water stop structure based on water supply and drainage engineering according to claim 1, characterized in that: the end plate (8) is two segmentation structures and includes that the inner all sets up curb plate one (13) and curb plate two (14) of bayonet socket, sealing connection between curb plate one (13) and curb plate two (14), two sets of bayonet socket forms and wears mouth (9), the inboard of wearing mouth (9) is provided with rubber seal ring (15).
3. An anti-seepage water stop structure based on water supply and drainage engineering according to claim 2, characterized in that: the end plate (8) positioned below is integrally arranged in an inclined shape, and one side close to the diversion port (10) is lower than the other side.
4. An anti-seepage water stop structure based on water supply and drainage engineering according to claim 1, characterized in that: waterproof shock insulator (16) have been laid to the inside of ring channel (4), waterproof shock insulator (16) adopt silica gel material and are multilayer structure.
5. An anti-seepage water stop structure based on water supply and drainage engineering according to claim 1, characterized in that: the diversion branch pipes (12) are positioned on the inner side of the water supply and drainage pipeline (1) and are arranged in parallel with the water supply and drainage pipeline (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020303560.5U CN212026458U (en) | 2020-03-12 | 2020-03-12 | Seepage-proofing water-stopping structure based on water supply and drainage engineering |
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CN202020303560.5U CN212026458U (en) | 2020-03-12 | 2020-03-12 | Seepage-proofing water-stopping structure based on water supply and drainage engineering |
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CN212026458U true CN212026458U (en) | 2020-11-27 |
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CN202020303560.5U Expired - Fee Related CN212026458U (en) | 2020-03-12 | 2020-03-12 | Seepage-proofing water-stopping structure based on water supply and drainage engineering |
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2020
- 2020-03-12 CN CN202020303560.5U patent/CN212026458U/en not_active Expired - Fee Related
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20201127 |
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CF01 | Termination of patent right due to non-payment of annual fee |