CN212176412U - Dampproofing floor structure - Google Patents

Dampproofing floor structure Download PDF

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Publication number
CN212176412U
CN212176412U CN202020451948.XU CN202020451948U CN212176412U CN 212176412 U CN212176412 U CN 212176412U CN 202020451948 U CN202020451948 U CN 202020451948U CN 212176412 U CN212176412 U CN 212176412U
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CN
China
Prior art keywords
moisture
dampproofing
box
belt
holding tank
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN202020451948.XU
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Chinese (zh)
Inventor
李召飞
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Shenzhen Pinshang Engineering Co Ltd
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Shenzhen Pinshang Engineering Co Ltd
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Priority to CN202020451948.XU priority Critical patent/CN212176412U/en
Application granted granted Critical
Publication of CN212176412U publication Critical patent/CN212176412U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a dampproofing floor structure relates to the floor field, and it is including setting up in a plurality of wooden purlin on subaerial and setting up in a plurality of plate bodys of wooden purlin upper end, the holding tank has been seted up to wooden purlin upper end, be provided with in the holding tank and carry out absorbent dampproofing mechanism to moisture, dampproofing mechanism is including setting up a plurality of dampproofing boxes in the holding tank and setting up the charcoal in the dampproofing box, dampproofing box outer wall runs through has a plurality of holes that absorb moisture, the downthehole gauze that all is provided with of moisture absorption, a plurality of inlet ports that communicate with the holding tank are all seted up to the lateral wall. The charcoal in the moisture-proof box is utilized to adsorb the moisture in the environment where the board body is located, so that the content of the moisture in the environment is reduced, the absorbable moisture of the board is reduced, the wood board rotting speed is reduced, and the service life of the board body is prolonged.

Description

Dampproofing floor structure
Technical Field
The utility model relates to a floor especially relates to a dampproofing floor structure.
Background
The board body is a structure laid on the ground for decorating the ground, the board body is made of various materials,
the combined wooden board disclosed in chinese patent CN210049528U has the technical essential that: comprises a wooden plate body, a fastening pin and a filling block, wherein the bottom of the wooden plate body is provided with a strengthening groove, two adjacent side surfaces of the wooden plate body are provided with an upper slot, two opposite side surfaces of the wooden plate body and the upper slot are provided with a lower slot, the upper slot comprises a convex part and an upper concave part, the convex part extends towards the direction far away from the wooden plate body, a groove is arranged at the joint of one end of the convex part far away from the wooden plate body and the upper plane of the wooden plate body, an upper concave part is arranged between the convex part and the side surface of the wooden plate body, the lower concave part comprises an upper buckle and a lower buckle, the lower groove is sunken from the upper plane of the wooden plate body to the bottom, the top of the lower groove is provided with an upper buckle close to the side surface of the wooden plate body, the lower groove is provided with a lower buckle at one end far away from the wooden plate body, the upper buckle protrudes towards the outer side of the wooden plate body, and an inner concave part is arranged between the upper buckle and the bottom of the lower groove.
When the wood plate body is used in a region with high humidity, the wood plate body can absorb a large amount of moisture in the environment to be damped and decomposed due to high environment humidity, so that the service life of the plate body is influenced.
Therefore, a new technical solution is needed to solve the above problems.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims to provide a dampproofing floor structure reduces the content of the moisture in the environment to reduce the absorbent moisture of plate body, and then increase the life of plate body.
In order to achieve the above purpose, the utility model provides a following technical scheme: the utility model provides a dampproofing floor structure, is including setting up in a plurality of wooden tree in columns on the ground and setting up in a plurality of plate bodies of wooden tree in columns upper end, the holding tank has been seted up to wooden tree in columns upper end, be provided with in the holding tank and carry out absorbent dampproofing mechanism to moisture, dampproofing mechanism is including setting up a plurality of dampproofing boxes in the holding tank and setting up the charcoal in dampproofing box, dampproofing box outer wall runs through there are a plurality of holes that absorb moisture, the downthehole gauze that all is provided with of moisture absorption, a plurality of inlet ports that communicate with the holding tank are all seted up to the.
Through adopting above-mentioned technical scheme, the air passes through in inlet port and the moisture absorption hole gets into dampproofing box, and the moisture absorption in the in-process that the air flows this moment in the air has reduced the moisture in the environment this moment to make the difficult production of plate body wet and damage.
The utility model discloses further set up to: be provided with in the holding tank and drive the actuating mechanism that dampproofing box removed in the holding tank, actuating mechanism connects a plurality of band pulleys in the holding tank and cup joints the belt in the band pulley including rotating, the axis of band pulley is vertical setting, a plurality of fixed magic subsides of terminal surface fixedly connected with of gyro wheel are kept away from to the belt, the equal fixedly connected with activity magic subsides of lateral wall of dampproofing box, fixed magic subsides are pasted with the bonding of activity magic.
Through adopting above-mentioned technical scheme, when changing the dampproofing box in the wooden tree, utilize dampproofing box to remove to the one end of holding tank and change between actuating mechanism, only need dismantle a bottom plate and just can change the dampproofing box in a whole wooden tree this moment to it is more convenient to make the change process of dampproofing box.
The utility model discloses further set up to: be provided with the separation piece that makes dampproofing box of separation and belt in the holding tank, the separation piece is located the one end of wooden tree, just the separation piece is met the one end orientation of keeping away from dampproofing box towards the terminal surface of dampproofing box and is kept away from the direction slope of dampproofing box, a lateral wall and the belt of separation piece are contradicted.
Through adopting above-mentioned technical scheme, thereby when rotating the dampproofing box that the gyro wheel drove the belt to be connected and moving towards the spacer, utilize the spacer to be the lateral wall that the slope set up and apply the power that the department placed in this lateral wall to dampproofing box, make dampproofing box and belt disconnection, dampproofing box and the process of breaking away from of belt are more convenient this moment.
The utility model discloses further set up to: the dampproofing box of holding tank inner wall fixedly connected with drive pastes tight installation piece with the belt, leave the clearance through dampproofing box between installation piece and the belt, the installation piece is close to the terminal surface of separation piece and has seted up the direction wedge face, the direction wedge face is close to the one end orientation of belt and keeps away from the direction slope of separation piece.
Through adopting above-mentioned technical scheme, after will prevent damp box and belt preliminary fixed, thereby rotate the belt and drive the dampproofing box and move towards the direction of keeping away from the separation piece, this moment prevent damp box with the installation piece contact time, the installation piece exerts the power towards the belt to prevent damp box and makes dampproofing box and belt paste tightly to the steadiness that dampproofing box is connected has been increased.
The utility model discloses further set up to: the terminal surface that the installation piece is close to the belt rotates and is connected with a plurality of gyro wheels, the axis of gyro wheel is vertical setting, the lateral wall butt of belt is kept away from with dampproofing box to the gyro wheel lateral wall.
Through adopting above-mentioned technical scheme, utilize the gyro wheel to change damp-proof box and the sliding friction between the installation piece into rolling friction, reduced the frictional force between installation piece and the damp-proof box this moment, make damp-proof box be difficult for receiving the influence from the process of passing through between installation piece and the damp-proof box.
The utility model discloses further set up to: the upper end of the moisture-proof box is provided with a replacing hole communicated with the inner cavity of the moisture-proof box, and the charcoal is placed in the moisture-proof box through the replacing hole.
Through adopting above-mentioned technical scheme, take out dampproofing box after from holding the inslot, change the charcoal in with dampproofing box through changing the hole, later can place dampproofing box again and continue to use in the holding tank.
The utility model discloses further set up to: the dampproofing box upper end is provided with and will changes hole confined baffle, the baffle lower extreme is fixed with a plurality of absorption pieces, dampproofing box upper end is fixed with a plurality of magnets, magnet and absorption piece actuation.
Through adopting above-mentioned technical scheme, after changing the charcoal and accomplishing, arrange the baffle in dampproofing box upper end, utilize the cooperation between magnet and the absorption piece to make the relative position between baffle and the dampproofing box obtain confirming to it seals to make the baffle will change the hole, makes the charcoal can not follow and change downthehole dropping.
The utility model discloses further set up to: the holding tank is internally provided with two connecting grooves for respectively installing the separating block and the installing block, the connecting grooves penetrate through the upper end face of the wood purlin, the separating block and the installing block are fixedly connected with connecting blocks, and the connecting blocks are inserted into the connecting grooves.
Through adopting above-mentioned technical scheme, make installation piece and separation block can dismantle and be connected, directly demolish separation block and installation piece after the change of accomplishing dampproofing box this moment to make both can not exert an influence to the flow of air in the holding tank.
To sum up, the utility model discloses a following at least one useful technological effect:
1. the charcoal in the moisture-proof box is used for absorbing the moisture in the environment of the board body, so that the moisture content in the environment is reduced, the moisture absorbable by the board is reduced, the wood board rotting speed is reduced, and the service life of the board body is prolonged;
2. utilize actuating mechanism to drive the plank and remove, only need dismantle a plate body this moment and just can realize the change of dampproofing box and inside charcoal to make the change process of charcoal more convenient.
Drawings
FIG. 1 is a perspective view of the present embodiment;
FIG. 2 is a schematic view of the present embodiment showing the structure of the moisture-proof box;
FIG. 3 is an enlarged view of portion A of FIG. 1;
fig. 4 is a schematic diagram for showing a mounting block structure according to the present embodiment.
In the figure, 1, wood purlin; 11. a limiting rod; 12. an air inlet; 13. connecting grooves; 14. accommodating grooves; 2. a plate body; 3. a moisture-proof mechanism; 31. a moisture-proof box; 311. a moisture-absorbing aperture; 312. replacing the hole; 32. charcoal; 33. a screen; 34. a movable magic tape; 35. a baffle plate; 36. an adsorption block; 37. a magnet; 4. a drive mechanism; 41. a pulley; 42. a belt; 43. fixing a magic tape; 5. separating the blocks; 51. connecting blocks; 6. mounting blocks; 61. a guide wedge surface; 62. a rotating groove; 63. and a roller.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1, the moisture-proof floor structure disclosed by the present invention includes a plurality of wood purlin 1 disposed on the ground and a plurality of plate bodies 2 laid on the upper ends of the wood purlin 1, a limiting rod 11 for limiting the distance between the adjacent wood purlin 1 is disposed between the adjacent wood purlin 1, two ends of the limiting rod 11 are both bonded to the wood purlin 1, and the upper end of the limiting rod 11 is abutted to the lower ends of the plate bodies 2. As shown in fig. 2, holding tank 14 has been seted up along its length direction in the upper end of wooden tree 1, is provided with the dampproofing mechanism 3 that adsorbs the moisture in the environment in the holding tank 14, and dampproofing mechanism 3 is including setting up a plurality of dampproofing boxes 31 in holding tank 14 and setting up the charcoal 32 in dampproofing box 31. The moisture-proof box 31 is hollow, a plurality of moisture absorption holes 311 communicated with the inner cavity of the moisture-proof box 31 penetrate through the outer wall of the moisture-proof box 31, gauze 33 for sealing the moisture absorption holes 311 is adhered in the moisture absorption holes 311, and air flows into the moisture-proof box 31 through the gauze 33. The lateral wall that wooden santalum album 1 is vertical setting all runs through have a plurality ofly and the inlet port 12 of holding tank 14 intercommunication, and the air passes through inlet port 12 and moisture absorption hole 311 and gets into dampproofing box 31 in, and the moisture with in the air in the in-process that the air flows this moment adsorbs, has reduced the moisture in the environment this moment to make the difficult production of plate body 2 wet and damage.
As shown in fig. 3, since the charcoal 32 can not absorb moisture in the air after absorbing a certain amount of moisture, and at this time, the charcoal 32 in the accommodating groove 14 needs to be replaced, a driving mechanism 4 for driving the moisture-proof box 31 to move is provided in the accommodating groove 14, and the driving mechanism 4 includes a plurality of pulleys 41 rotatably connected in the accommodating groove 14 and a belt 42 sleeved on the pulleys 41. The axis of band pulley 41 is vertical setting, and its both ends that are close to wooden purlin 1 respectively, and the terminal surface that band pulley 41 was kept away from to belt 42 is glued even has a plurality of fixed magic subsides 43, and fixed magic subsides 43 are the public subsides of magic subsides. An outer wall of the moisture-proof box 31 is adhered with a movable magic tape 34 (see fig. 2), the movable magic tape 34 is a female magic tape, and the fixed magic tape 43 is adhered with the movable magic tape 34. When dampproofing box 31 in wood santalum album 1 is changed this moment, utilize dampproofing box 31 to remove to the one end of holding tank 14 and change between actuating mechanism 4, only need dismantle a bottom plate and just can change dampproofing box 31 in a whole wood santalum album 1 this moment to it is more convenient to make dampproofing box 31's change process.
As shown in fig. 3, when the moisture-proof box 31 is in the accommodating groove 14, the gap between the outer wall of the moisture-proof box 31 and the inner wall of the accommodating groove 14 is small, and the belt 42 is deformed when being stressed, so that the process of separating the moisture-proof box 31 from the belt 42 is troublesome. Therefore, a separating block 5 for separating the moisture-proof box 31 from the belt 42 is arranged in the accommodating groove 14, the separating block 5 is located at a position, close to the end of the wood balk 1, of the inner wall of the accommodating groove 14, the end face of the separating block is close to the end face of the moisture-proof box 31, one end, far away from the belt 42, of the end face is inclined towards the direction far away from the moisture-proof box 31, and the end face, close to the belt 42, of the separating. Thereby when the dampproofing box 31 that rotates gyro wheel 63 and drive belt 42 and connect moves towards separation block 5 this moment, utilize separation block 5 to be the lateral wall that the slope set up and exert the power that the department placed in this lateral wall to dampproofing box 31, make dampproofing box 31 and belt 42 break away from the connection, the separation process of dampproofing box 31 and belt 42 this moment is more convenient.
As shown in fig. 1 and 4, when the moisture-proof box 31 is connected to the belt 42, the moisture-proof box 31 needs to be applied with a force toward the belt 42 to make the connection between the two parts stable, and the application of a force directly to the moisture-proof box 31 needs to insert a finger between the end of the moisture-proof box 31 away from the belt 42 and the accommodating groove 14, which is troublesome. Therefore, the inner wall of the accommodating groove 14 is also connected with the mounting block 6 which enables the moisture-proof box 31 to be attached to the belt 42, a gap which passes through the moisture-proof box 31 is reserved between the mounting block 6 and the outer wall of the belt 42, and the moisture-proof box 31 passes through the mounting block 6 and the belt 42. The end surface of the mounting block 6 close to the separating block 5 is provided with a guide wedge surface 61, and one end of the guide wedge surface 61 close to the belt 42 inclines towards the direction far away from the separating block 5. At this moment, after preliminarily fixing the moisture-proof box 31 and the belt 42, the belt 42 is rotated to drive the moisture-proof box 31 to move towards the direction away from the separation block 5, at this moment, when the moisture-proof box 31 is in contact with the installation block 6, the installation block 6 applies a force towards the belt 42 to the moisture-proof box 31 to make the moisture-proof box 31 attach to the belt 42, so that the connection stability of the moisture-proof box 31 is increased.
As shown in fig. 4, the moisture-proof box 31 is difficult to pass through since the moisture-proof box 31 passes between the straps 42 of the mounting block 6, and the moisture-proof box 31 may generate a large friction with the mounting block 6. Therefore, the end face, close to the belt 42, of the mounting block 6 is provided with a plurality of rotating grooves 62, a plurality of rollers 63 are rotatably connected in the rotating grooves 62, and the axis of each roller 63 is vertically arranged and the side wall of each roller is abutted against the side wall of the moistureproof box 31. Sliding friction between the moisture-proof box 31 and the mounting block 6 is changed into rolling friction by the roller 63, so that friction between the mounting block 6 and the moisture-proof box 31 is reduced, and the moisture-proof box 31 is not easily influenced in the process of passing between the mounting block 6 and the moisture-proof box 31.
As shown in fig. 2, in order to replace the charcoal 32 in the moisture-proof box 31, a replacing hole 312 communicating with the inner cavity of the moisture-proof box 31 is formed through the upper end of the moisture-proof box 31, and at this time, after the moisture-proof box 31 is taken out from the accommodating groove 14, the charcoal 32 in the moisture-proof box 31 is replaced through the replacing hole 312, and then the moisture-proof box 31 can be placed in the accommodating groove 14 again for continuous use.
As shown in fig. 2, after the charcoal 32 is placed in the moisture-proof box 31, the charcoal 32 may drop from the replacement hole 312, so that a baffle 35 for closing the replacement hole 312 is disposed at the upper end of the moisture-proof box 31, a plurality of adsorption blocks 36 are adhered to the lower end of the baffle 35, the adsorption blocks 36 sink into the baffle 35, and the lower end surfaces of the adsorption blocks 36 and the lower end surface of the baffle 35 are in the same plane. The upper end of the moisture-proof box 31 is adhered with a plurality of magnets 37, the magnets 37 are all sunk into the moisture-proof box 31, the upper end face of each magnet 37 and the upper end face of the moisture-proof box 31 are located on the same plane, and the magnets 37 are attracted with the adsorption blocks 36. After the charcoal 32 is replaced, the baffle 35 is placed on the upper end of the moisture-proof box 31, and the relative position between the baffle 35 and the moisture-proof box 31 is determined by the cooperation between the magnet 37 and the adsorption block 36, so that the baffle 35 closes the replacement hole 312, and the charcoal 32 does not fall out of the replacement hole 312.
As shown in fig. 3 and 4, when the mounting block 6 and the separating block 5 are disposed in the accommodating groove 14, the flow of air is obstructed, so the mounting block 6 and the separating block 5 are both detachably connected to the wood beam 1, when the inner wall of the accommodating groove 14 is opened, there are two connecting grooves 13 for respectively mounting the separating block 5 and the mounting block 6, the connecting grooves 13 penetrate through the upper end surface of the wood beam 1, the separating block 5 and the mounting block 6 are integrally formed with a connecting block 51, and the connecting block 51 is inserted into the connecting grooves 13. By detachably connecting mounting block 6 to separating block 5, separating block 5 is now directly removed from mounting block 6 after the replacement of moisture-proof box 31 is completed, so that both do not affect the flow of air in accommodating groove 14.
The implementation principle of the embodiment is as follows: when needing to change charcoal 32, demolish a plate body 2 that will be located 1 tip in wood tree, place separation block 5 and installation piece 6 in holding tank 14, thereby later rotate band pulley 41 and drive dampproofing box 31 and remove towards separation block 5, utilize separation block 5 to make dampproofing box 31 and belt 42 break away from the connection, every dampproofing box 31 breaks away from with belt 42 and just takes off one, later separate baffle 35 and dampproofing box 31, place dampproofing box 31 in holding tank 14 again after changing the charcoal 32 in the dampproofing box 31, it makes dampproofing box 31 pass through between installation piece 6 and belt 42 to rotate band pulley 41, accomplish the fixed of dampproofing box 31 this moment, dismantle separation block 5 and installation piece 6 after will dampproofing box 31 all installs on belt 42, reinstall plate body 2.
The embodiments of the present invention are preferred embodiments of the present invention, and the scope of the present invention is not limited by these embodiments, so: all equivalent changes made according to the structure, shape and principle of the invention are covered by the protection scope of the invention.

Claims (8)

1. A moisture-proof floor structure, characterized in that: including setting up in a plurality of wooden tree in a tree in the ground (1) and setting up in a plurality of plate bodies (2) of wooden tree in the ground (1) upper end, holding tank (14) have been seted up to wooden tree in the ground (1) upper end, be provided with in holding tank (14) and carry out absorbent dampproofing mechanism (3) to moisture, dampproofing mechanism (3) are including setting up in a plurality of dampproofing box (31) in holding tank (14) and set up charcoal (32) in dampproofing box (31), dampproofing box (31) outer wall runs through has a plurality of holes of absorbing humidity (311), all be provided with gauze (33) in the hole of absorbing humidity (311), a plurality of inlet ports (12) that communicate with holding tank (14) are all seted up to the lateral wall that wooden tree.
2. A moisture resistant floor construction as claimed in claim 1, wherein: be provided with drive actuating mechanism (4) that drive dampproofing box (31) removed in holding tank (14), actuating mechanism (4) are including rotating a plurality of band pulleys (41) of connecting in holding tank (14) and cup joint in belt (42) of band pulley (41), the axis of band pulley (41) is vertical setting, a plurality of fixed magic subsides (43) of terminal surface fixedly connected with of gyro wheel (63) are kept away from in belt (42), the equal fixedly connected with activity magic subsides (34) of the lateral wall of dampproofing box (31), fixed magic subsides (43) and activity magic subsides (34) bonding.
3. A moisture resistant floor construction as claimed in claim 2, wherein: be provided with in holding tank (14) and make separation piece (5) of the dampproofing box of separation (31) and belt (42), separation piece (5) are located the one end of wooden tree (1), just separation piece (5) meet the one end that belt (42) were kept away from to the terminal surface of dampproofing box (31) and incline towards the direction of keeping away from dampproofing box (31), a lateral wall and belt (42) of separation piece (5) are contradicted.
4. A moisture resistant floor construction as claimed in claim 3, wherein: holding tank (14) inner wall fixedly connected with drive dampproofing box (31) and belt (42) paste tight installation piece (6), leave the clearance through dampproofing box (31) between installation piece (6) and belt (42), direction wedge face (61) have been seted up to the terminal surface that installation piece (6) are close to separation block (5), the one end orientation that direction wedge face (61) are close to belt (42) inclines away from the direction of separation block (5).
5. A moisture resistant floor construction as claimed in claim 4, wherein: the terminal surface that installation piece (6) are close to belt (42) rotates and is connected with a plurality of gyro wheels (63), the axis of gyro wheel (63) is vertical setting, the lateral wall butt of belt (42) is kept away from with dampproofing box (31) to gyro wheel (63) lateral wall.
6. A moisture resistant floor construction as claimed in claim 1, wherein: the upper end of the moisture-proof box (31) is provided with a replacing hole (312) communicated with the inner cavity of the moisture-proof box, and the charcoal (32) is placed in the moisture-proof box (31) through the replacing hole (312).
7. A moisture resistant floor construction as claimed in claim 6, wherein: the utility model discloses a dampproofing box, including dampproofing box (31), baffle (35), magnet (37) and adsorption piece (36), the dampproofing box (31) upper end is provided with and will changes hole (312) confined baffle (35), baffle (35) lower extreme is fixed with a plurality of adsorption pieces (36), dampproofing box (31) upper end is fixed with a plurality of magnet (37), magnet (37) and adsorption piece (36) actuation.
8. A moisture resistant floor construction as claimed in claim 7, wherein: two connecting grooves (13) for respectively installing a separating block (5) and an installing block (6) are formed in the accommodating groove (14), the upper end face of the wood balk (1) is penetrated through the connecting grooves (13), the separating block (5) and the installing block (6) are fixedly connected with connecting blocks (51), and the connecting blocks (51) are inserted into the connecting grooves (13).
CN202020451948.XU 2020-03-31 2020-03-31 Dampproofing floor structure Expired - Fee Related CN212176412U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020451948.XU CN212176412U (en) 2020-03-31 2020-03-31 Dampproofing floor structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020451948.XU CN212176412U (en) 2020-03-31 2020-03-31 Dampproofing floor structure

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Publication Number Publication Date
CN212176412U true CN212176412U (en) 2020-12-18

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Application Number Title Priority Date Filing Date
CN202020451948.XU Expired - Fee Related CN212176412U (en) 2020-03-31 2020-03-31 Dampproofing floor structure

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114541683A (en) * 2022-02-23 2022-05-27 深圳市品尚工程有限公司 Large-size thin plate paving structure and construction method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114541683A (en) * 2022-02-23 2022-05-27 深圳市品尚工程有限公司 Large-size thin plate paving structure and construction method thereof

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Granted publication date: 20201218