CN216587818U - Concatenation formula manger plate bank - Google Patents

Concatenation formula manger plate bank Download PDF

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Publication number
CN216587818U
CN216587818U CN202122246515.8U CN202122246515U CN216587818U CN 216587818 U CN216587818 U CN 216587818U CN 202122246515 U CN202122246515 U CN 202122246515U CN 216587818 U CN216587818 U CN 216587818U
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CN
China
Prior art keywords
water retaining
manger plate
plug
spliced
splicing
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Active
Application number
CN202122246515.8U
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Chinese (zh)
Inventor
韩智超
罗龙
刁旭东
杨颖谦
高天宇
江海涛
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Xinjiang Construction Engineering Group Co Ltd
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Xinjiang Construction Engineering Group Co Ltd
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Priority to CN202122246515.8U priority Critical patent/CN216587818U/en
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Publication of CN216587818U publication Critical patent/CN216587818U/en
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Abstract

The utility model provides a concatenation formula manger plate bank, includes manger plate bank body and mosaic structure, its characterized in that, this manger plate bank body is rectangular shape, is equipped with the mosaic structure of concatenation each other at the both ends of manger plate bank body. The spliced water retaining ridge is made of wear-resistant and durable rubber or PVC materials, is made into a standard 1.5m single piece, is spliced through a splicing structure, and is integrally connected for laying; before use, the ground is cleaned, after no dust is accumulated on the surface, glue is directly adhered to the ground for fixation, and the fixation can be firm within 5 minutes. Convenient to use and can recycle, and just can be used along with spreading, improve project efficiency.

Description

Concatenation formula manger plate bank
[ technical field ] A
The utility model relates to auxiliary equipment and a device in the building industry, in particular to a spliced water retaining ridge directly laid on a civil construction site.
[ background of the utility model ]
In the construction process of modern construction engineering, the process alternation and safe and civilized construction are gradually emphasized, and the manual construction cost is increased. In order to realize quick construction, masonry engineering, plastering engineering, ground engineering and finish decoration engineering are alternated with flow construction. During alternate construction, indoor wet water operation is inevitable in floors, so that accumulated water in the floors influences site construction and pollutes finished engineering which is constructed. For the safe and civilized construction on site and the protection of finished products, a water retaining bank is generally adopted for water retaining protection.
The manger plate bank of present on-spot construction is generally that elevator shaft periphery and stairwell limit position set up the manger plate bank, and the manger plate bank uses grey sand brick to build by laying bricks or stones, and the interior ponding of floor passes through bathroom or elevator shaft drain pipe and concentrates the drainage to outdoor sewer pipe in. The defects of the prior technical scheme are as follows: 1. the water retaining bank is built by using the mortar bricks and plastered on the surface, the plastering thickness is 15mm, the type is made of M15 cement mortar, the water retaining bank can be used only once, the requirement of repeated conversion and use on the site cannot be met, and the waste of materials and labor on the site is caused. 2. The mortar is used for building and collecting the surface, the strength can be improved only in a certain time, the protection is needed, and the emergency capacity is poor. 3. Because the water retaining ridges are arranged at the positions of the stairs, the materials are easy to damage during transportation and when people go up and down.
[ summary of the utility model ]
The utility model provides a splicing type water retaining bank which can be formed by a splicing structure and can be used for the vertical waiting aiming at the problems that the existing water retaining bank which is constructed by adopting lime-sand bricks and mortar has high labor cost, poor turnover capacity and incapability of emergency use.
The spliced water retaining ridge comprises a water retaining ridge body and a splicing structure and is characterized in that the water retaining ridge body is in a strip shape, and the two ends of the water retaining ridge body are provided with the splicing structures which are spliced with each other.
The cross section of the water retaining ridge body is triangular, the length of each water retaining ridge body is 1.5m, and the height of each water retaining ridge body is 20 cm.
The splicing structures at the two ends of the water retaining ridge body comprise splicing connectors and splicing holes, and the splicing structures are spliced in a mode that the splicing connector of one water retaining ridge is inserted into the splicing hole of the other water retaining ridge.
The plug is a conical plug, the plug hole is a conical plug hole, and the conical plug and the conical jack are matched in shape and size.
The splicing structure is a mortise and tenon structure plug connector and a plug hole
The plug connector and the plug hole of the splicing structure are spliced in an interference fit mode.
The water retaining ridge is made of rubber or PVC.
The spliced water retaining ridge is made of wear-resistant durable rubber or PVC materials and made into a standard 1.5m single piece, and is spliced through a splicing structure and connected into a whole to be laid; before use, the ground is cleaned, after no dust is accumulated on the surface, the glue is directly adhered to the ground for fixation, and the fixation can be firm within 5 minutes. The use is convenient, the recycling can be realized, and the efficiency of the project can be improved by paving the paving machine at any time.
[ description of the drawings ]
Fig. 1 is a schematic structural view of a spliced water retaining sill according to the present invention;
FIG. 2 is a schematic cross-sectional view of a spliced water dam according to the present invention;
fig. 3 is a schematic diagram of a splicing structure of the spliced water retaining ridge according to the utility model;
fig. 4 is a schematic view of another splicing structure of the spliced water retaining ridge according to the present invention;
in the figure: 10. a water retaining ridge body; 20. splicing structures; 21. a plug-in connector; 22. and (7) inserting holes.
[ detailed description ] embodiments
The utility model will be described in detail below with reference to the drawings, wherein examples of the embodiments are shown in the drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below with reference to the accompanying drawings are illustrative only for the purpose of explaining the present invention, and are not to be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.
Referring to fig. 1, a spliced water weir is shown, which includes a water weir body 10 and a splicing structure 20, wherein the water weir body 10 is a strip, and the splicing structures 20 spliced with each other are disposed at two ends of the water weir body 10.
The cross-sectional shape of the water blocking ridge body 10 is triangular, and the length of each water blocking ridge body 10 is 1.5m, and the height is 20 cm.
The splicing structures at the two ends of the water retaining sill body 10 comprise the inserting connectors 21 and the inserting holes 22, and the inserting connectors 21 of one water retaining sill are spliced in a mode of being inserted into the inserting holes 22 of the other water retaining sill.
The splicing structure is used for splicing different water retaining sills to form a continuous long-section water retaining sill, so that the water retaining sills can be spliced by adopting the splicing structure which is easy to butt and directly clamped and assembled.
The form of the splicing structure is various, and in fig. 3, the plug 21 is shown as a tapered plug, and the plug hole 22 is shown as a tapered plug hole, and the tapered plug hole are matched in shape and size.
The splicing joint can be a mortise and tenon structure splicing joint and a splicing hole according to the actual use requirement.
The plug connector and the plug hole of the splicing structure are spliced in an interference fit mode.
The water retaining ridge is made of rubber or PVC.
The spliced water retaining ridge is made of wear-resistant durable rubber or PVC materials and made into a standard 1.5m single piece, and is spliced through a splicing structure and connected into a whole to be laid; before use, the ground is cleaned, after no dust is accumulated on the surface, the glue is directly adhered to the ground for fixation, and the fixation can be firm within 5 minutes. The use is convenient, the recycling can be realized, and the efficiency of the project can be improved by paving the paving machine at any time.
Although the present invention has been described with reference to a preferred embodiment, it should be understood that various changes, substitutions and alterations can be made herein without departing from the spirit and scope of the utility model as defined by the appended claims.

Claims (6)

1. The utility model provides a concatenation formula manger plate bank, includes manger plate bank body and mosaic structure, its characterized in that, this manger plate bank body is rectangular shape, is equipped with the mosaic structure of concatenation each other at the both ends of manger plate bank body, and the material of this manger plate bank is rubber or PVC material.
2. The splicing type water blocking sill according to claim 1, wherein the cross-sectional shape of the water blocking sill body is triangular, and each water blocking sill body has a length of 1.5m and a height of 20 cm.
3. The splicing type water retaining sill according to claim 2, wherein the splicing structures at the two ends of the water retaining sill body comprise a plug connector and a plug hole, and the plug connector of one water retaining sill is spliced by being inserted into the plug hole of the other water retaining sill.
4. The spliced water retaining sill of claim 3 wherein the plug is a tapered plug, and the tapered plug are adapted to each other.
5. The splicing type water retaining sill according to claim 3, wherein the splicing structure is a mortise and tenon plug and a mortise and tenon plug hole.
6. The spliced water retaining sill according to claim 4 or 5, wherein the plug and the plug hole of the splicing structure are spliced in an interference fit manner.
CN202122246515.8U 2021-09-16 2021-09-16 Concatenation formula manger plate bank Active CN216587818U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122246515.8U CN216587818U (en) 2021-09-16 2021-09-16 Concatenation formula manger plate bank

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122246515.8U CN216587818U (en) 2021-09-16 2021-09-16 Concatenation formula manger plate bank

Publications (1)

Publication Number Publication Date
CN216587818U true CN216587818U (en) 2022-05-24

Family

ID=81636100

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122246515.8U Active CN216587818U (en) 2021-09-16 2021-09-16 Concatenation formula manger plate bank

Country Status (1)

Country Link
CN (1) CN216587818U (en)

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