CN112523463A - Drainage installation structure and construction method of door-passing stone for toilet - Google Patents
Drainage installation structure and construction method of door-passing stone for toilet Download PDFInfo
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- CN112523463A CN112523463A CN202110015198.0A CN202110015198A CN112523463A CN 112523463 A CN112523463 A CN 112523463A CN 202110015198 A CN202110015198 A CN 202110015198A CN 112523463 A CN112523463 A CN 112523463A
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F15/00—Flooring
- E04F15/02—Flooring or floor layers composed of a number of similar elements
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- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03F—SEWERS; CESSPOOLS
- E03F5/00—Sewerage structures
- E03F5/04—Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F15/00—Flooring
- E04F15/02—Flooring or floor layers composed of a number of similar elements
- E04F15/02177—Floor elements for use at a specific location
- E04F15/02188—Floor elements for use at a specific location for use in wet rooms
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- Public Health (AREA)
- Water Supply & Treatment (AREA)
- Sanitary Device For Flush Toilet (AREA)
Abstract
The invention discloses a drainage installation structure of a door-crossing stone for a toilet, which comprises a pre-buried assembly and an installation assembly, wherein an operator fixedly installs leveling layers at two ends of a toilet door, high-strength cement mortar is connected with a water stop ridge in the leveling layers, and side grooves at two ends of a bearing plate are placed at the upper end of the water stop ridge and are level to the ground. The invention also discloses a construction method of the drainage installation structure of the door-crossing stone for the toilet, one end of the waterproof layer and one end of the base layer extend to the upper surface of the water stop ridge, the positioning block at the lower end of the horizontal plate is installed inside the positioning hole, so that the positioning function is conveniently realized, the installation of the pre-buried layer is conveniently completed, the horizontal plate can ensure the level of the two ends of the bearing plate, the deviation is prevented during the installation, the installation piece is installed at the upper end of the bearing plate by utilizing high-strength cement mortar, and the water outlet is matched with the water inlet groove; install the upper end at the installed part with the suspension to make sleeve and pivot phase-match, can accomplish the installation of crossing a stone.
Description
Technical Field
The invention relates to the technical field of toilet water prevention, in particular to a drainage installation structure of a door stone for a toilet and a construction method.
Background
The toilet is a combined name of a toilet, a washroom and a bath pool. Residential toilets are typically assigned to private and public use. Dedicated to serve only the master bedroom; the public is connected with the public walkway and is shared by other family members and guests. The method can be divided into an independent type, a dual-purpose type and a compromise type according to the layout. And can be classified into a semi-open type, an open type and a closed type according to forms. Semi-open type for distinguishing dry and wet sections is popular.
At the in-process to the bathroom use, because inside is comparatively moist, then need carry out waterproof work to inside, the height of current cross a stone installation is lower, only plays the effect of water proof, can't carry out the drainage, when the inside water of bathroom is more, the floor drain can't in time get rid of, and water is then walked through cross a stone and is taken to the bedroom inside, and the result of use is not good.
Aiming at the problems, the prior device is improved, and a drainage installation structure and a construction method of the door stone for the toilet are provided.
Disclosure of Invention
The invention aims to provide a drainage installation structure and a construction method of a door-crossing stone for a toilet, when accumulated water in the toilet overflows to a drainage port, the accumulated water can enter a lug along a baffle plate, the inner wall of the lug is provided with a thread groove, so that the water can rotate anticlockwise when flowing, hair or dust can be accumulated on the upper surface of the lug, the water is discharged to the inside of a water seepage cavity through a water outlet, the water can be discharged by connecting a pipeline with a water outlet pipe, when the impact force of the water is larger, the water rotates faster, a spring can rotate in the lug, the hair is convenient to wind, the blockage is prevented, the impact force is prevented from being overlarge, the hair directly rushes into the inside of the water outlet, the lower end of a suspension piece is provided with a foam plate, a rectangular groove is processed in the suspension piece, a fixture block is installed on the inner wall of the rectangular groove, and a through hole is processed at the lower end of the rectangular groove, when the ponding outlet, ponding gets into the inside of rectangular channel, and water has certain buoyancy, and the density of cystosepiment is less than water, can lift the cystosepiment, can make the suspension suspend on the surface of water, and upward movement raises the height of crossing a stone in the removal in-process, prevents that water from oozing, has solved the problem among the background art.
In order to achieve the purpose, the invention provides the following technical scheme: a drainage installation structure of a door stone for a toilet comprises a pre-buried assembly and an installation assembly, wherein the installation assembly is arranged at the upper end of the pre-buried assembly, the pre-buried assembly comprises a bearing mechanism, a waterproof mechanism, a drainage mechanism and a water outlet pipe, the waterproof mechanism is arranged on two sides of the bearing mechanism, the drainage mechanism is arranged at the upper end of the bearing mechanism, and the water outlet pipe is arranged on one side of the bearing mechanism;
the installation component comprises an installation part, a suspension mechanism and a cover plate mechanism, the installation part is arranged at the upper end of the bearing mechanism, the suspension mechanism is arranged at the upper end of the installation part, and the cover plate mechanism is arranged at the upper end of the suspension mechanism.
Further, the bearing mechanism comprises a bearing plate, a water inlet tank, a separating mechanism, side tanks and an inner cavity, the water inlet tank is mounted on the upper surface of the bearing plate, the separating mechanism is arranged on one side of the water inlet tank and is machined on the upper surface of the bearing plate, the side tanks are machined at two ends of the bearing plate, and the inner cavity is machined inside the bearing plate.
Furthermore, waterproof mechanism includes horizontal plate, locating piece, screed-coat, locating hole and stagnant water bank, and the lower extreme fixed mounting of horizontal plate has the locating piece, and the screed-coat is installed at the lower extreme of horizontal plate, and the locating hole processing is at the upper surface of screed-coat, and stagnant water bank fixed mounting is in the one end of screed-coat.
Further, the screed-coat includes sealing layer, waterproof layer and basic unit, and sealing layer fixed mounting is in the upper end of screed-coat, and the waterproof layer setting is at the lower extreme of sealing layer, and the basic unit setting is at the lower extreme of waterproof layer, and the one end of waterproof layer and basic unit extends to the upper surface of stagnant water bank.
Furthermore, the inner cavity comprises an inclined block, a water seepage cavity, an inclined plate, a water outlet cavity and a through hole, the inclined block is arranged on one side of the inner cavity, one end of the inclined plate is connected with one side of the inclined block, the other end of the inclined block is connected with the inner wall of the inner cavity, the water seepage cavity is arranged at the upper end of the inclined plate, the water outlet cavity is arranged at the lower end of the inclined plate, and the through hole is processed at the upper end of the inclined plate.
Further, separating mechanism includes baffle, delivery port, bottom plate, lug, connecting rod, spring and pivot, and the baffle setting is in the both sides of intake chamber, and the delivery port processing is at the inner wall of baffle, and the bottom plate processing is at the lower extreme of baffle, and communicates with each other with the infiltration chamber, and lug fixed mounting is in the upper end of lug, and the pivot setting is in the upper end of lug, and the one end and the pivot of connecting rod are connected, and the other end and spring coupling.
Further, the mounting piece includes a water outlet and an inner groove, the water outlet is processed at one side of the mounting piece, and the inner groove is processed in the mounting piece.
Further, the suspension mechanism comprises a suspension piece, a foam board, a rectangular groove, a fixture block and a through hole, the foam board is arranged at the lower end of the suspension piece, the rectangular groove is machined in the suspension piece, the fixture block is installed on the inner wall of the rectangular groove, and the through hole is machined at the lower end of the rectangular groove.
Further, the apron mechanism includes upper cover, fixed block and sleeve, and the upper cover setting is in the upper end of fixture block, and fixed block fixed mounting is at the lower extreme of upper cover, sleeve fixed mounting at the lower extreme of fixed block, and with through-hole through connection.
The invention provides another technical scheme that: provided is a construction method of a drainage installation structure of a door stone for a toilet, comprising the steps of:
s1: an operator fixedly installs the leveling layer at two ends of the toilet door and utilizes high-strength cement mortar to connect with the water stopping ridge in the leveling layer;
s2: placing the side grooves at two ends of the bearing plate at the upper end of the water stop ridge and keeping the side grooves horizontal to the ground; mounting a positioning block at the lower end of the horizontal plate into the positioning hole, and tightly clamping the positioning block with the two sides of the bearing plate to finish the mounting of the pre-buried layer;
s3: placing the bottom plate on one side of the baffle plate, and enabling the lug to be matched with the through hole;
s4: mounting the mounting piece on the upper end of the bearing plate by using high-strength cement mortar, wherein the water outlet is matched with the water inlet groove;
s5: install the upper end at the installed part with the suspension to make sleeve and pivot phase-match, can accomplish the installation of crossing a stone.
Compared with the prior art, the invention has the beneficial effects that:
1. the invention provides a drainage installation structure and a construction method of a door-crossing stone for a toilet.A leveling layer is fixedly installed at two ends of a toilet door by an operator, high-strength cement mortar is connected with a water stop ridge in the leveling layer, and side grooves at two ends of a bearing plate are placed at the upper end of the water stop ridge and are level to the ground; the positioning block at the lower end of the horizontal plate is installed inside the positioning hole, so that the positioning function is convenient to play, and the positioning block is clamped with the two sides of the bearing plate, so that the installation of the pre-buried layer is convenient to complete, the horizontal plate can ensure the level of the two ends of the bearing plate, the deviation is prevented during the installation, the sealing layer is fixedly installed at the upper end of the leveling layer, the waterproof layer is arranged at the lower end of the sealing layer, the base layer is arranged at the lower end of the waterproof layer, one ends of the waterproof layer and the base layer extend to the upper surface of the water stop ridge, the waterproof effect is good, the bottom plate; mounting the mounting piece on the upper end of the bearing plate by using high-strength cement mortar, wherein the water outlet is matched with the water inlet groove; mounting the suspension piece at the upper end of the mounting piece, and matching the sleeve with the rotating shaft to complete the mounting of the crossing gate stone;
2. the invention provides a drainage mounting structure and construction method of a door-crossing stone for a toilet, wherein an inclined block is arranged at one side of an inner cavity and can prevent accumulated water from seeping out to the outer end, one end of the inclined block is connected with one side of the inclined block, the other end of the inclined block is connected with the inner wall of the inner cavity, a water seepage cavity is arranged at the upper end of the inclined block, a water outlet cavity is arranged at the upper end of the inclined block, baffles are arranged at two sides of a water inlet groove, a water outlet is processed at the inner wall of the baffle, a bottom plate is processed at the lower end of the baffle and is communicated with the water seepage cavity, a lug is fixedly arranged at the upper end of the lug, a rotating shaft is arranged at the upper end of the lug, one end of a connecting rod is connected with the rotating shaft, the other end of the connecting rod is connected with a spring, when the accumulated water in the toilet overflows to the drainage port, the, the water is discharged into the water seepage cavity through the water outlet, the water can be discharged by connecting the pipeline with the water outlet pipe, when the impact force of the water is larger, the water rotates faster, the spring can rotate in the lug, the hair is convenient to wind, the blockage is prevented, the excessive impact force is prevented, and the hair is directly flushed into the water outlet;
3. the invention provides a drainage installation structure and a construction method of a door-crossing stone for a toilet, wherein a foam plate is arranged at the lower end of a suspension piece, a rectangular groove is processed inside the suspension piece, a clamping block is installed on the inner wall of the rectangular groove, a through hole is processed at the lower end of the rectangular groove, when a water accumulation water outlet is formed, accumulated water enters the rectangular groove, water has certain buoyancy, the density of the foam plate is smaller than that of the water, the foam plate can be lifted, the suspension piece can be suspended on the water surface and moves upwards, the height of the door-crossing stone is raised in the moving process, and water seepage is prevented;
4. the invention provides a drainage mounting structure and a construction method of a door stone for a toilet, wherein an upper cover is arranged at the upper end of a clamping block, a fixing block is fixedly mounted at the lower end of the upper cover, a sleeve is fixedly mounted at the lower end of the fixing block and is in through connection with a through hole, the sleeve is pulled to move upwards in the process of lifting a suspension piece upwards, the lower end of the sleeve is movably connected with a rotating shaft, a lug can be lifted, part of water enters the inside of a water outlet cavity through the through hole, the water outlet cavity is externally connected with a drainage pipeline, multi-channel drainage is facilitated, the suspension piece is restored to the original position after the water level is reduced, the lug can be restored to the original position, and.
Drawings
FIG. 1 is a schematic view of a drainage installation structure of a door stone for a toilet and an installation structure of a construction method according to the present invention;
FIG. 2 is a schematic view showing an overall structure of a drainage installation structure for a door stone for a toilet and a construction method according to the present invention;
FIG. 3 is a schematic structural view of a load-bearing mechanism of a drainage installation structure and a construction method of a door stone for a toilet according to the present invention;
FIG. 4 is a schematic view of a leveling layer structure of a drainage installation structure and a construction method of a door stone for a toilet according to the present invention;
FIG. 5 is a schematic view showing an inner cavity structure of a drainage installation structure and a construction method of a door stone for a toilet according to the present invention;
FIG. 6 is a sectional view of a load bearing mechanism of a drainage installation structure of a door stone for a toilet and a construction method thereof according to the present invention;
FIG. 7 is an enlarged view of a portion A of FIG. 5 illustrating a drainage installation structure for a door stone for a toilet according to the present invention;
FIG. 8 is a view illustrating a structure of a mounting member for a drainage installation structure of a door stone for a toilet and a construction method thereof according to the present invention;
fig. 9 is a schematic structural view of a suspension mechanism of a drainage installation structure and a construction method of a door stone for a toilet according to the present invention.
In the figure: 1. pre-burying the assembly; 11. a load bearing mechanism; 111. a bearing plate; 112. a water inlet groove; 113. a separating mechanism; 1131. a baffle plate; 1132. a water outlet; 1133. a base plate; 1134. a bump; 1135. a connecting rod; 1136. a spring; 1137. a rotating shaft; 114. a side groove; 115. an inner cavity; 1151. a sloping block; 1152. a water seepage cavity; 1153. a sloping plate; 1154. a water outlet cavity; 1155. a through hole; 12. a waterproof mechanism; 121. a horizontal plate; 122. positioning blocks; 123. leveling layer; 1231. a sealing layer; 1232. a waterproof layer; 1233. a base layer; 124. positioning holes; 125. sealing the water bank; 13. a drainage mechanism; 14. a water outlet pipe; 2. mounting the component; 21. a mounting member; 211. a water outlet; 212. an inner tank; 22. a suspension mechanism; 221. a suspension member; 222. a foam board; 223. a rectangular groove; 224. a clamping block; 225. a through hole; 23. a cover plate mechanism; 231. an upper cover; 232. a fixed block; 233. a sleeve.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 and 2, a drainage installation structure for a toilet stone, comprising a pre-buried component 1 and an installation component 2, wherein the installation component 2 is arranged at the upper end of the pre-buried component 1, the pre-buried component 1 comprises a bearing mechanism 11, a waterproof mechanism 12, a drainage mechanism 13 and a water outlet pipe 14, the waterproof mechanism 12 is arranged at two sides of the bearing mechanism 11, the drainage mechanism 13 is arranged at the upper end of the bearing mechanism 11, and the water outlet pipe 14 is arranged at one side of the bearing mechanism 11; the mounting assembly 2 comprises a mounting member 21, a suspension mechanism 22 and a cover mechanism 23, wherein the mounting member 21 is arranged at the upper end of the bearing mechanism 11, the suspension mechanism 22 is arranged at the upper end of the mounting member 21, and the cover mechanism 23 is arranged at the upper end of the suspension mechanism 22.
Referring to fig. 3, 4 and 5, the bearing mechanism 11 includes a bearing plate 111, a water inlet tank 112, a separating mechanism 113, a side tank 114 and an inner cavity 115, the water inlet tank 112 is installed on the upper surface of the bearing plate 111, the separating mechanism 113 is disposed on one side of the water inlet tank 112 and is processed on the upper surface of the bearing plate 111, the side tank 114 is processed on both ends of the bearing plate 111, the inner cavity 115 is processed inside the bearing plate 111, the waterproof mechanism 12 includes a horizontal plate 121, a positioning block 122, a leveling layer 123, a positioning hole 124 and a water stop sill 125, the lower end of the horizontal plate 121 is fixedly installed with the positioning block 122, the leveling layer 123 is installed on the lower end of the horizontal plate 121, the positioning hole 124 is processed on the upper surface of the leveling layer 123, the water stop sill 125 is fixedly installed on one end of the leveling layer 123, an operator fixedly installs the leveling layer 123 on both ends of the bathroom door, and connects the water stop, place the side channel 114 at bearing plate 111 both ends in the upper end of stagnant water bank 125, and with ground level, install the locating piece 122 of horizontal plate 121 lower extreme to the inside of locating hole 124, be convenient for play the effect of location, and with the both sides chucking of bearing plate 111, be convenient for accomplish the installation of buried layer in advance, the level at bearing plate 111 both ends can be ensured to horizontal plate 121, produce the skew when preventing to install, screed-coat 123 includes sealing layer 1231, waterproof layer 1232 and basic unit 1233, sealing layer 1231 fixed mounting is in the upper end of screed-coat 123, waterproof layer 1232 sets up the lower extreme at sealing layer 1231, basic unit 1233 sets up the lower extreme at waterproof layer 1232, and the one end of waterproof layer 1232 and basic unit 1233 extends to the upper surface of stagnant water bank 125, water-proof effects is good.
Referring to fig. 5, 6 and 7, the inner chamber 115 includes a sloped block 1151, a water permeating chamber 1152, a sloped plate 1153, a water outlet chamber 1154 and a through hole 1155, the sloped block 1151 is disposed at one side of the inner chamber 115, one end of the sloped plate 1153 is connected to one side of the sloped block 1151, the other end is connected to an inner wall of the inner chamber 115, the water permeating chamber 1152 is disposed at an upper end of the sloped plate 1153, the water outlet chamber 1154 is disposed at a lower end of the sloped plate 1153, the through hole 1155 is formed at an upper end of the sloped plate 1153, the separating mechanism 113 includes a baffle 1131, a water outlet 1132, a bottom plate 1133, a protrusion 1134, a connecting rod 1135, a spring 1136 and a rotating shaft 1137, the baffle 1131 is disposed at two sides of the water inlet channel 112, the water outlet 1132 is formed at an inner wall of the baffle 1131, the bottom plate 1133 is formed at a lower end of the baffle 1131 and is communicated with the water permeating chamber 1152, the protrusion 1134 is fixedly installed at an upper, place bottom plate 1133 in one side of baffle 1131, and make lug 1134 and through-hole 1155 phase-match, can accomplish separating mechanism 113's installation, ponding when bathroom overflows to outlet 211 department, ponding can get into lug 1134 department along baffle 1131, the thread groove is installed to the inner wall of lug 1134, make water can carry out anticlockwise rotation when flowing, can make hair or dust amass the upper surface at lug 1134, and water is then discharged to the inside of infiltration chamber 1152 through delivery port 1132, through being connected pipeline and outlet pipe 14, can make water be discharged, when the impact force of water is great, the water is rotatory faster, can make spring 1136 rotatory in lug 1134, be convenient for twine the hair, prevent the jam, prevent that the impact force is too big, and make the hair directly rush into the inside of delivery port 1132.
Referring to fig. 8 and 9, the mounting member 21 includes a water discharge port 211 and an inner groove 212, the water discharge port 211 is formed at one side of the mounting member 21, the inner groove 212 is formed inside the mounting member 21, the suspension mechanism 22 includes a suspension member 221, a foam plate 222, a rectangular groove 223, a block 224 and a through hole 225, the foam plate 222 is disposed at a lower end of the suspension member 221, the rectangular groove 223 is formed inside the suspension member 221, the block 224 is mounted on an inner wall of the rectangular groove 223, the through hole 225 is formed at a lower end of the rectangular groove 223, when the accumulated water discharge port 211 is formed, accumulated water enters the rectangular groove 223, the water has a certain buoyancy, the density of the foam plate 222 is less than that of water, the foam plate 222 can be lifted up, the suspension member 221 can be suspended on the water surface and moved upward, the accumulated water is lifted up to the height of the door stone during movement, and water seepage is prevented, the cover mechanism 23 includes upper covers 231, 232 and a sleeve 233, the fixing block 232 is fixedly installed at the lower end of the upper cover 231, the sleeve 233 is fixedly installed at the lower end of the fixing block 232 and is in through connection with the through hole 225, the installation member 21 is installed at the upper end of the bearing plate 111 by using high-strength cement mortar, and the water outlet 211 is matched with the water inlet groove 112; the suspension piece 221 is installed at the upper end of the installation piece 21, the sleeve 233 is matched with the rotating shaft 1137, and installation of the cover plate mechanism 23 can be completed, in the process that the suspension piece 221 is lifted upwards, the sleeve 233 is pulled to move upwards, the lower end of the sleeve 233 is movably connected with the rotating shaft 1137, the bump 1134 can be lifted, part of water enters the inside of the water outlet cavity 1154 through the through hole 1155, the water outlet cavity 1154 is externally connected with a drainage pipeline, multi-channel drainage is facilitated, after the water level is reduced, the suspension piece 221 restores to the original position, the bump 1134 can restore to the original position, and automatic drainage is facilitated.
To further better explain the above examples, the present invention provides an embodiment of a method for constructing a drainage installation structure of a toilet door stone, comprising the steps of:
the method comprises the following steps: an operator fixedly installs the leveling layer 123 at two ends of the toilet door, and the high-strength cement mortar is connected with the water stop sill 125 in the leveling layer 123;
step two: placing the side grooves 114 at the two ends of the bearing plate 111 at the upper end of the water stop ridge 125 and making the side grooves level with the ground; mounting the positioning block 122 at the lower end of the horizontal plate 121 into the positioning hole 124, and tightly clamping the positioning block and the two sides of the bearing plate 111 to complete the mounting of the pre-buried layer;
step three: placing the bottom plate 1133 on one side of the baffle 1131 and matching the protrusion 1134 with the through hole 1155;
step four: mounting the mounting member 21 on the upper end of the bearing plate 111 by using high-strength cement mortar, and matching the water outlet 211 with the water inlet tank 112;
step five: the installation of the curbstone is completed by installing the suspension 221 on the upper end of the installation member 21 and matching the sleeve 233 with the rotation shaft 1137.
In summary, the following steps: the invention provides a drainage installation structure and a construction method of a door-crossing stone for a toilet.A leveling layer 123 is fixedly installed at two ends of a toilet door by an operator, high-strength cement mortar is connected with a water stop sill 125 in the leveling layer 123, and side grooves 114 at two ends of a bearing plate 111 are placed at the upper end of the water stop sill 125 and are level to the ground; the positioning block 122 at the lower end of the horizontal plate 121 is installed inside the positioning hole 124, so that the positioning function is facilitated, the horizontal plate 121 can ensure that the two ends of the bearing plate 111 are horizontal, the deviation is prevented during installation, the sealing layer 1231 is fixedly installed at the upper end of the leveling layer 123, the waterproof layer 1232 is arranged at the lower end of the sealing layer 1231, the base layer 1233 is arranged at the lower end of the waterproof layer 1232, one ends of the waterproof layer 1232 and the base layer 1233 extend to the upper surface of the water stop sill 125, the waterproof effect is good, the bottom plate 1133 is placed on one side of the baffle 1131, and the protruding block 1134 is matched with the through hole 1155; mounting the mounting member 21 on the upper end of the bearing plate 111 by using high-strength cement mortar, and matching the water outlet 211 with the water inlet tank 112; the suspended piece 221 is arranged at the upper end of the mounting piece 21, the sleeve 233 is matched with the rotating shaft 1137, and the mounting of the passerby stone can be completed, the sloping block 1151 is arranged at one side of the inner cavity 115 to prevent accumulated water from seeping out to the outer end, one end of the sloping block 1153 is connected with one side of the sloping block 1151, the other end is connected with the inner wall of the inner cavity 115, the water seepage cavity 1152 is arranged at the upper end of the sloping block 1153, the water outlet cavity 1154 is arranged at the upper end of the sloping block 1153, the baffle 1131 is arranged at two sides of the water inlet groove 112, the water outlet 1132 is processed at the inner wall of the baffle 1131, the bottom plate 1133 is processed at the lower end of the baffle 1131 and is communicated with the water seepage cavity 1152, the bump 1134 is fixedly arranged at the upper end of the bump 1134, the rotating shaft 1137 is arranged at the upper end of the bump 1134, one end of the connecting rod 1135 is connected with the rotating shaft 1137, the other end, when the impact force of water is large, the water rotates faster, namely, the spring 1136 rotates in the lug 1134, so that the hair is convenient to wind, blockage is prevented, the impact force is prevented from being too large, the hair is directly flushed into the water outlet 1132, the lower end of the suspension piece 221 is provided with the foam plate 222, the rectangular groove 223 is processed in the suspension piece 221, the fixture block 224 is installed on the inner wall of the rectangular groove 223, the through hole 225 is processed at the lower end of the rectangular groove 223, when the accumulated water enters the rectangular groove 223 when the accumulated water outlet 211 is formed, the water has certain buoyancy, the density of the foam plate 222 is smaller than that of the water, the foam plate 222 can be lifted, namely, the suspension piece 221 can be suspended on the water surface, upward movement, raise the height of crossing the door stone in the removal process, prevent that water from oozing, upper cover 231 sets up the upper end at fixture block 224, fixed block 232 fixed mounting is at the lower extreme of upper cover 231, sleeve 233 fixed mounting is at the lower extreme of fixed block 232, and with through-hole 225 through connection, in the upwards process of lifting up of suspension 221, pulling sleeve 233 upwards moves, the lower extreme and the pivot 1137 swing joint of sleeve 233, can make lug 1134 lifted up, partial water then gets into the inside of a play water cavity 1154 through-hole 1155, go out the external drainage pipe of water cavity 1154, the multichannel drainage of being convenient for, after the water level reduces, suspension 221 restores to the normal position, can make lug 1134 restore to the normal position, be convenient for automatic drainage.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be able to cover the technical solutions and the inventive concepts of the present invention within the technical scope of the present invention.
Claims (10)
1. The utility model provides a bathroom is with drainage mounting structure of crossing a stone, includes pre-buried subassembly (1) and installation component (2), installation component (2) set up the upper end at pre-buried subassembly (1), its characterized in that: the embedded assembly (1) comprises a bearing mechanism (11), a waterproof mechanism (12), a drainage mechanism (13) and a water outlet pipe (14), wherein the waterproof mechanism (12) is arranged on two sides of the bearing mechanism (11), the drainage mechanism (13) is arranged at the upper end of the bearing mechanism (11), and the water outlet pipe (14) is arranged on one side of the bearing mechanism (11);
the mounting assembly (2) comprises a mounting piece (21), a suspension mechanism (22) and a cover plate mechanism (23), the mounting piece (21) is arranged at the upper end of the bearing mechanism (11), the suspension mechanism (22) is arranged at the upper end of the mounting piece (21), and the cover plate mechanism (23) is arranged at the upper end of the suspension mechanism (22).
2. A drainage installation structure of a toilet door stone according to claim 1, wherein: the bearing mechanism (11) comprises a bearing plate (111), a water inlet groove (112), a separating mechanism (113), a side groove (114) and an inner cavity (115), the water inlet groove (112) is installed on the upper surface of the bearing plate (111), the separating mechanism (113) is arranged on one side of the water inlet groove (112) and is machined on the upper surface of the bearing plate (111), the side groove (114) is machined at two ends of the bearing plate (111), and the inner cavity (115) is machined inside the bearing plate (111).
3. A drainage installation structure of a toilet door stone according to claim 1, wherein: the waterproof mechanism (12) comprises a horizontal plate (121), a positioning block (122), a leveling layer (123), a positioning hole (124) and a water stop sill (125), the positioning block (122) is fixedly mounted at the lower end of the horizontal plate (121), the leveling layer (123) is mounted at the lower end of the horizontal plate (121), the positioning hole (124) is machined in the upper surface of the leveling layer (123), and the water stop sill (125) is fixedly mounted at one end of the leveling layer (123).
4. A drainage installation structure of a toilet door stone according to claim 3, wherein: screed-coat (123) include sealing layer (1231), waterproof layer (1232) and basic unit (1233), sealing layer (1231) fixed mounting is in the upper end of screed-coat (123), and waterproof layer (1232) set up the lower extreme at sealing layer (1231), and basic unit (1233) set up the lower extreme at waterproof layer (1232), and the one end of waterproof layer (1232) and basic unit (1233) extends to the upper surface of stagnant water bank (125).
5. A drainage installation structure of a toilet door stone according to claim 2, wherein: the inner cavity (115) comprises an inclined block (1151), a water seepage cavity (1152), an inclined plate (1153), a water outlet cavity (1154) and a through hole (1155), the inclined block (1151) is arranged on one side of the inner cavity (115), one end of the inclined plate (1153) is connected with one side of the inclined block (1151), the other end of the inclined plate is connected with the inner wall of the inner cavity (115), the water seepage cavity (1152) is arranged at the upper end of the inclined plate (1153), the water outlet cavity (1154) is arranged at the lower end of the inclined plate (1153), and the through hole (1155) is processed at the upper end of the inclined plate (1153).
6. A drainage installation structure of a toilet door stone according to claim 2, wherein: separating mechanism (113) includes baffle (1131), delivery port (1132), bottom plate (1133), lug (1134), connecting rod (1135), spring (1136) and pivot (1137), baffle (1131) sets up the both sides in intake antrum (112), delivery port (1132) processing is at the inner wall of baffle (1131), bottom plate (1133) processing is at the lower extreme of baffle (1131), and communicate with each other with infiltration chamber (1152), lug (1134) fixed mounting is in the upper end of lug (1134), pivot (1137) set up the upper end at lug (1134), the one end and the pivot (1137) of connecting rod (1135) are connected, the other end is connected with spring (1136).
7. A drainage installation structure of a toilet door stone according to claim 1, wherein: the mounting member (21) includes a water discharge port (211) and an inner tank (212), the water discharge port (211) is formed on one side of the mounting member (21), and the inner tank (212) is formed inside the mounting member (21).
8. A drainage installation structure of a toilet door stone according to claim 1, wherein: suspension mechanism (22) are including suspension (221), cystosepiment (222), rectangular channel (223), fixture block (224) and through-hole (225), and the lower extreme of suspension (221) is provided with cystosepiment (222), and rectangular channel (223) processing is in the inside of suspension (221), and the inner wall in rectangular channel (223) is installed in fixture block (224), and through-hole (225) processing is at the lower extreme of rectangular channel (223).
9. A drainage installation structure of a toilet door stone according to claim 8, wherein: the cover plate mechanism (23) comprises an upper cover (231), a fixing block (232) and a sleeve (233), the upper cover (231) is arranged at the upper end of the fixing block (224), the fixing block (232) is fixedly installed at the lower end of the upper cover (231), and the sleeve (233) is fixedly installed at the lower end of the fixing block (232) and is in through connection with the through hole (225).
10. A construction method of a drainage installation structure of a toilet room door stone according to any one of claims 1 to 9, wherein: the method comprises the following steps:
s1: an operator fixedly installs the leveling layer (123) at two ends of the toilet door and utilizes high-strength cement mortar to connect the leveling layer (123) with the water stop sill (125);
s2: placing side grooves (114) at two ends of a bearing plate (111) at the upper end of a water stop ridge (125) and keeping the side grooves horizontal to the ground; mounting a positioning block (122) at the lower end of the horizontal plate (121) into the positioning hole (124), and tightly clamping the positioning block and the two sides of the bearing plate (111) to finish mounting of the pre-buried layer;
s3: placing the bottom plate (1133) on one side of the baffle plate (1131) and enabling the lug (1134) to be matched with the through hole (1155);
s4: mounting the mounting piece (21) at the upper end of the bearing plate (111) by using high-strength cement mortar, wherein the water outlet (211) is matched with the water inlet groove (112);
s5: and (3) installing the suspension piece (221) at the upper end of the installation piece (21) and matching the sleeve (233) with the rotating shaft (1137) to finish the installation of the passerby.
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN114046016A (en) * | 2021-11-18 | 2022-02-15 | 海玉梅 | Epoxy grindstone terrace application structure |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111441553A (en) * | 2020-03-24 | 2020-07-24 | 苏州江南建设项目管理有限公司 | Bathroom prevention of seepage water structure |
CN212001425U (en) * | 2020-03-26 | 2020-11-24 | 广东利多邦卫浴有限公司 | Washbasin with overflow and standby drainage mechanism |
-
2021
- 2021-01-06 CN CN202110015198.0A patent/CN112523463A/en not_active Withdrawn
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111441553A (en) * | 2020-03-24 | 2020-07-24 | 苏州江南建设项目管理有限公司 | Bathroom prevention of seepage water structure |
CN212001425U (en) * | 2020-03-26 | 2020-11-24 | 广东利多邦卫浴有限公司 | Washbasin with overflow and standby drainage mechanism |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114046016A (en) * | 2021-11-18 | 2022-02-15 | 海玉梅 | Epoxy grindstone terrace application structure |
CN114046016B (en) * | 2021-11-18 | 2023-08-22 | 上海伯栎新材料科技有限公司 | Epoxy grindstone terrace application structure |
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