A splashing slurry trowel capable of improving the bonding degree between the splashing slurry points and the wall plaster layer and its splashing slurry method

Through the three-layer stacked steel wire mesh slurry beater, the problem of not being closely integrated with the wall is solved, and the plastering mortar layer and the wall are uniformly combined, improving the bonding degree and avoiding hollowing and falling off.

CN113107167BActive Publication Date: 2025-07-25SHANXI NO 3 CONSTR ENG
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
CN202110486818.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-02
Publication Date
2025-07-25
Estimated Expiration
2041-05-02

AI Technical Summary

Technical Problem

The existing slurry throwing points are not closely combined with the wall plastering layer, resulting in the unsolid bond between the plastering mortar layer and the wall, which is prone to hollowing and falling off.

Method used

The slurry beater is adopted with a three-layer stacked steel wire mesh structure. The first layer is a square mesh, the second layer is a regular triangle mesh, and the third layer is an inverted triangle mesh. It is fixed by binding wires and connecting belts to form a fan-shaped slurry point to improve bonding.

Benefits of technology

Burrs form on the outer surface of the slurry point to ensure that the plaster mortar layer is uniformly combined with the wall, improve the bonding rate, and avoid hollowing and falling off.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN113107167B_ABST
    Figure CN113107167B_ABST
Patent Text Reader

Abstract

The present invention discloses a slurry slapping paddle capable of improving the bonding degree between slurry slapping points and a wall plastering layer and a slurry slapping method thereof, which solves the problem that the existing slurry slapping points are not tightly bonded to the wall plastering layer. It includes a first-layer rectangular wire mesh sheet (1), a second-layer rectangular wire mesh sheet (3) and a third-layer rectangular wire mesh sheet (5) of the same size. The second-layer rectangular wire mesh sheet (3) is stacked on the first-layer rectangular wire mesh sheet (1), and the third-layer rectangular wire mesh sheet (5) is stacked on the second-layer rectangular wire mesh sheet (3). After the three-layer wire mesh sheets are stacked together, there is formed: directly above the square mesh hole (2) on the first-layer wire mesh sheet (1), there is provided an equilateral triangle mesh hole (4) of the second-layer wire mesh sheet (3), and directly above the equilateral triangle mesh hole (4), there is provided an inverted triangle mesh hole (6) of the third-layer wire mesh sheet (5); the plastering mortar can be well bonded to the wall.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a plastering tool, and particularly to a slurry slinging paddle and a slurry slinging method used for plastering the inner wall surface. Background Art

[0002] After the masonry of the building engineering wall is completed and before the inner wall is plastered, it is necessary to first perform a slurry slinging treatment on the inner wall surface to form slurry slinging points distributed in a dot pattern on the wall surface. This process is mainly to ensure that the plaster mortar layer and the wall body can be fully combined together; the slurry used for slinging is evenly mixed by cement and 108 glue and is in a colloidal state; during construction, a broom is usually used as the slurry slinging tool. After dipping the broom into the slurry, the slurry is slung and slapped on the inner wall surface by waving the broom on the inner wall surface. Since the broom will stick together after dipping in the slurry, the slurry slinging points slapped on the wall surface are uneven, and no burrs can be formed on the outer surface of the slurry slinging points. During the subsequent inner wall plastering process, the combination between the plaster mortar layer and the smooth slurry slinging points on the surface is not firm, resulting in quality problems such as hollowing and peeling on the wall surface in the later stage; how to solve this problem and make the plaster mortar layer and the wall surface better combined together is a major technical problem in the slurry slinging construction. Summary of the Invention

[0003] The present invention provides a slurry slinging paddle and a slurry slinging method that can improve the bonding degree between the slurry slinging points and the wall plastering layer, and solves the technical problem that the existing slurry slinging points are not tightly bonded to the wall plastering layer.

[0004] The present invention solves the above technical problems through the following technical solutions:

[0005] The general idea of the present invention is: stack three square wire mesh sheets together to make a slurry slinging paddle. The mesh holes of the first layer of wire mesh sheet are square, the mesh holes of the second layer of wire mesh sheet are equilateral triangle, and the mesh holes of the third layer of wire mesh are inverted triangle. After the three layers of wire mesh sheets are stacked together, the corresponding mesh holes should form the following relationship: directly above the square mesh hole on the first layer of wire mesh sheet, there is an equilateral triangle mesh hole of the second layer of wire mesh sheet, and directly above this equilateral triangle mesh hole, there is an inverted triangle mesh hole of the third layer of wire mesh sheet; after the three layers of wire mesh are stacked together, fix their bottom ends together with binding wire, and connect a paddle rod at the center of the bottom edge. At the lower parts on the left and right sides of the three stacked layers of wire mesh sheets, connect a connecting band that is tight at the top and loose at the bottom. When holding the paddle rod and waving the paddle body, a fan shape will be formed at the upper ends of the sides of the three layers of wire mesh sheets, so that the slurry points slung and slapped on the wall surface by the slurry slinging paddle will be pulled out with surface burrs, thereby improving the bonding degree between the slurry points and the wall plastering layer.

[0006] A slurry slapping tool that can improve the bonding degree between slurry slapping points and the wall plastering layer, including a first-layer rectangular wire mesh sheet, a second-layer rectangular wire mesh sheet, and a third-layer rectangular wire mesh sheet that are of the same size. The mesh holes of the first-layer rectangular wire mesh sheet are square, the mesh holes of the second-layer rectangular wire mesh sheet are equilateral triangular, and the mesh holes of the third-layer rectangular wire mesh sheet are inverted triangular. The second-layer rectangular wire mesh sheet is stacked on the first-layer rectangular wire mesh sheet, and the third-layer rectangular wire mesh sheet is stacked on the second-layer rectangular wire mesh sheet. After the three-layer wire mesh sheets are stacked together, there is formed: directly above the square mesh holes on the first-layer wire mesh sheet, there are equilateral triangular mesh holes of the second-layer wire mesh sheet, and directly above the equilateral triangular mesh holes, there are inverted triangular mesh holes of the third-layer wire mesh sheet; on the lower edge of the body of the tool composed of the three stacked wire mesh sheets, there is a binding wire that connects the three-layer wire mesh sheets together, and on the lower part of the left side edge and the lower part of the right side edge of the three stacked wire mesh sheets, there is a connecting belt between the three-layer wire mesh sheets that is loose at the top and tight at the bottom; at the center of the lower edge of the three stacked wire mesh sheets, there is a connecting rod of the tool.

[0007] The side lengths of the first-layer rectangular wire mesh sheet, the second-layer rectangular wire mesh sheet, and the third-layer rectangular wire mesh sheet are all 300 millimeters; the side length of the square mesh holes is 10 millimeters; the side lengths of the equilateral triangular mesh holes and the inverted triangular mesh holes are both 10 millimeters.

[0008] A slurry slapping method for the slurry slapping tool that can improve the bonding degree between slurry slapping points and the wall plastering layer, including a wall surface and slurry slapping liquid, and is characterized by the following steps:

[0009] Step 1: Respectively manufacture a first-layer rectangular wire mesh sheet, a second-layer rectangular wire mesh sheet, and a third-layer rectangular wire mesh sheet that are of the same size. The mesh holes of the first-layer rectangular wire mesh sheet are squares with a side length of 10 millimeters, the mesh holes of the second-layer rectangular wire mesh sheet are equilateral triangles with a side length of 10 millimeters, and the mesh holes of the third-layer rectangular wire mesh sheet are inverted triangles with a side length of 10 millimeters;

[0010] Step 2: Stack the three rectangular wire mesh sheets manufactured in Step 1 together to form the body of the tool, and use a binding wire to bind and fix the lower edges of the three-layer wire mesh sheets together, and bind and connect a connecting rod at the center of the lower edge of the three-layer wire mesh sheets;

[0011] Step 3: Take a connecting belt and thread it through the side of the lower one-third of the left side edge of the three-layer wire mesh sheets of the body of the tool, and make the connecting belt in a state of being loose at the top and tight at the bottom; take another connecting belt and thread it through the side of the lower one-third of the right side edge of the three-layer wire mesh sheets of the body of the tool, and make the connecting belt in a state of being loose at the top and tight at the bottom;

[0012] Step 3: Hold the connecting rod (8) and dip the body of the tool (7) into the slurry slapping liquid;

[0013] Step 4: Hold the rod of the trowel, wave the trowel body, and swing the trowel towards the wall to form splashing slurry dots with burrs on the wall.

[0014] Step 5: Water-cure the splashing slurry dots with burrs formed on the wall.

[0015] Step 6: After the splashing slurry dots are firmly bonded to the wall, carry out the plastering construction of the plaster mortar layer on the wall.

[0016] The burr forming rate of the splashing slurry dots thrown by the present invention is high, and the splashing slurry dots formed on the wall are uniform, ensuring that in the later construction, the plaster mortar can be well combined with the wall. Description of the Drawings

[0017] Figure 1 is a schematic structural diagram of the present invention;

[0018] Figure 2 is a schematic structural diagram of the first-layer rectangular wire mesh sheet 1 of the present invention;

[0019] Figure 3 is a schematic structural diagram of the second-layer rectangular wire mesh sheet 3 of the present invention;

[0020] Figure 4 is a schematic structural diagram of the third-layer rectangular wire mesh sheet 5 of the present invention;

[0021] Figure 5 is a schematic structural diagram of the trowel body 7 of the present invention;

[0022] Figure 6 is a schematic structural diagram of the splashing slurry dots 12 on the wall 11 of the present invention. Detailed Embodiments

[0023] The present invention will be described in detail below with reference to the drawings:

[0024] A slurry slapping paddle that can improve the bonding degree between the slurry slapping points and the wall plastering layer, comprising a first-layer rectangular wire mesh sheet 1, a second-layer rectangular wire mesh sheet 3, and a third-layer rectangular wire mesh sheet 5 that are of the same size. The mesh of the first-layer rectangular wire mesh sheet 1 is square, the mesh of the second-layer rectangular wire mesh sheet 3 is equilateral triangular, and the mesh of the third-layer rectangular wire mesh sheet 5 is inverted triangular. The second-layer rectangular wire mesh sheet 3 is stacked on the first-layer rectangular wire mesh sheet 1, and the third-layer rectangular wire mesh sheet 5 is stacked on the second-layer rectangular wire mesh sheet 3. After the three-layer wire mesh sheets are stacked together, there are formed: directly above the square mesh 2 on the first-layer wire mesh sheet 1, there is provided an equilateral triangular mesh 4 of the second-layer wire mesh sheet 3, and directly above the equilateral triangular mesh 4, there is provided an inverted triangular mesh 6 of the third-layer wire mesh sheet 5; on the lower edge of the paddle body 7 composed of the three-layer wire mesh sheets stacked together, there is provided a binding wire 9 that connects the three-layer wire mesh sheets together, and on the lower parts of the left side edge and the right side edge of the three-layer wire mesh sheets stacked together, there is respectively provided a connecting belt 10 between the three-layer wire mesh sheets that is loose at the top and tight at the bottom; at the center of the lower edge of the three-layer wire mesh sheets stacked together, there is connected a paddle rod 8.

[0025] The side lengths of the first-layer rectangular wire mesh sheet 1, the second-layer rectangular wire mesh sheet 3, and the third-layer rectangular wire mesh sheet 5 are all 300 millimeters; the side length of the square mesh 2 is 10 millimeters; the side lengths of the equilateral triangular mesh 4 and the inverted triangular mesh 6 are both 10 millimeters.

[0026] A slurry slapping method for a slurry slapping paddle that can improve the bonding degree between the slurry slapping points and the wall plastering layer, comprising a wall 11 and slurry slapping liquid, and is characterized by the following steps:

[0027] First step: respectively manufacture a first-layer rectangular wire mesh sheet 1, a second-layer rectangular wire mesh sheet 3, and a third-layer rectangular wire mesh sheet 5 that are of the same size. The mesh of the first-layer rectangular wire mesh sheet 1 is a square with a side length of 10 millimeters, the mesh of the second-layer rectangular wire mesh sheet 3 is an equilateral triangle with a side length of 10 millimeters, and the mesh of the third-layer rectangular wire mesh sheet 5 is an inverted triangle with a side length of 10 millimeters;

[0028] Second step: stack the three rectangular wire mesh sheets manufactured in the first step together to form a paddle body 7, use a binding wire 9 to bind and fix the lower edges of the three-layer wire mesh sheets together, and bind and connect a paddle rod 8 at the center of the lower edge of the three-layer wire mesh sheets;

[0029] Third step: take a connecting belt 10 and thread it through the side of the lower one-third of the left side edge of the three-layer wire mesh sheets of the paddle body 7, and make the connecting belt 10 in a state of being loose at the top and tight at the bottom; take another connecting belt 10 and thread it through the side of the lower one-third of the right side edge of the three-layer wire mesh sheets of the paddle body 7, and make the connecting belt 10 in a state of being loose at the top and tight at the bottom;

[0030] Step 3: Hold the rod 8 of the trowel in hand, and dip the trowel body 7 into the slurry for flicking.

[0031] Step 4: Hold the rod 8 of the trowel in hand, wave the trowel body 7, and flick the trowel towards the wall surface 11; since the slurry for flicking adheres between the three-layer steel wire mesh sheets of the trowel body, after the trowel body 7 with the slurry for flicking is slapped onto the wall surface 11 while holding the rod 8 of the trowel, the slurry on the first-layer rectangular steel wire mesh sheet 1 adheres to the wall surface 11. Subsequently, the operator will withdraw the trowel body 7 in the direction away from the wall surface 11, and the three-layer steel wire mesh sheets of the trowel body 7 will form a sector with the lower end of the rod 8 of the trowel as the center of the circle, so that the three-layer steel wire mesh sheets are separated in a sector form. Through the corresponding mesh holes on the three-layer steel wire mesh sheets, the slurry dots formed are flicked onto the wall surface 11. Since each slurry dot passes through the corresponding square mesh hole 2, equilateral triangle mesh hole 4, and inverted triangle mesh hole 6 in sequence, its outer surface is irregularly cut by the side edges of the square mesh hole 2, the side edges of the equilateral triangle mesh hole 4, and the side edges of the inverted triangle mesh hole 6, thereby forming burrs on the outer surface of the slurry dots.

[0032] Step 5: Water-cure the slurry dots 12 with burrs formed on the wall surface 11.

[0033] Step 6: After the slurry dots 12 are firmly bonded to the wall surface 11, perform the plastering construction of the plaster mortar layer on the wall surface 11; achieving the purpose of greatly improving the bonding rate between the two.

Claims

1. A slapping paddle that can improve the bonding degree between the splashing points and the wall plastering layer, comprising a first-layer rectangular wire mesh sheet (1), a second-layer rectangular wire mesh sheet (3) and a third-layer rectangular wire mesh sheet (5) of the same size. The mesh of the first-layer rectangular wire mesh sheet (1) is square, the mesh of the second-layer rectangular wire mesh sheet (3) is equilateral triangle, and the mesh of the third-layer rectangular wire mesh sheet (5) is inverted triangle. It is characterized in that, The second-layer rectangular wire mesh sheet (3) is stacked on the first-layer rectangular wire mesh sheet (1), and the third-layer rectangular wire mesh sheet (5) is stacked on the second-layer rectangular wire mesh sheet (3). After the three-layer wire mesh sheets are stacked together, there is formed: directly above the square mesh opening (2) on the first-layer rectangular wire mesh sheet (1), there is provided an equilateral triangular mesh opening (4) of the second-layer rectangular wire mesh sheet (3), and directly above the equilateral triangular mesh opening (4), there is provided an inverted triangular mesh opening (6) of the third-layer rectangular wire mesh sheet (5); at the lower end edge of the racket body (7) composed of the three-layer wire mesh sheets stacked together, there is provided a binding wire (9) for connecting the three-layer wire mesh sheets together, and at the lower part of the left side edge and the lower part of the right side edge of the three-layer wire mesh sheets stacked together, there is provided a connecting belt (10) between the three-layer wire mesh sheets with the upper part loose and the lower part tight; the connecting belt (10) is in the state of being loose at the upper part and tight at the lower part; at the center of the lower end edge of the three-layer wire mesh sheets stacked together, a racket handle (8) is connected.

2. The slurry slapping paddle according to claim 1, which can improve the bonding degree between the slurry slapping points and the wall plaster layer, is characterized in that The side lengths of the first-layer rectangular wire mesh sheet (1), the second-layer rectangular wire mesh sheet (3), and the third-layer rectangular wire mesh sheet (5) are all 300 millimeters; the side length of the square mesh opening (2) is 10 millimeters; the side lengths of the equilateral triangular mesh opening (4) and the inverted triangular mesh opening (6) are both 10 millimeters.

3. A slurry slinging method using the slurry slinging racket capable of improving the bonding degree between the slurry slinging points and the wall plastering layer as described in claim 2, including a wall surface (11) and slurry slinging liquid, characterized by the following steps: The first step: respectively manufacture the first-layer rectangular wire mesh sheet (1), the second-layer rectangular wire mesh sheet (3), and the third-layer rectangular wire mesh sheet (5) with the same size. The mesh opening of the first-layer rectangular wire mesh sheet (1) is a square with a side length of 10 millimeters, the mesh opening of the second-layer rectangular wire mesh sheet (3) is an equilateral triangle with a side length of 10 millimeters, and the mesh opening of the third-layer rectangular wire mesh sheet (5) is an inverted triangle with a side length of 10 millimeters; The second step: stack the three rectangular wire mesh sheets manufactured in the first step together to form a racket body (7), and use a binding wire (9) to bind and fix the lower end edges of the three-layer wire mesh sheets together, and bind and connect a racket handle (8) at the center of the lower end edge of the three-layer wire mesh sheets; The third step: take a connecting belt (10) and thread it through the side of one-third of the lower part of the left side edge of the three-layer wire mesh sheets of the racket body (7); take another connecting belt (10) and thread it through the side of one-third of the lower part of the right side edge of the three-layer wire mesh sheets of the racket body (7); The third step: hold the racket handle (8) and dip the racket body (7) into the slurry slinging liquid; The fourth step: hold the racket handle (8) and wave the racket body (7), and sling the racket towards the wall surface (11) to form burr-like slurry slinging points (12) on the wall surface (11); The fifth step: water-cure the burr-like slurry slinging points (12) formed on the wall surface (11); The sixth step: after the slurry slinging points (12) are firmly bonded to the wall surface (11), carry out the plastering construction of the plastering mortar layer of the wall surface (11).

Citation Information

Patent Citations

  • Simple and easy thick liquid instrument that gets rid of

    CN206987313U

  • Mortar throwing tool for plastering

    CN209011503U

  • Cement paste hair sweeping tool

    CN211058238U

  • Slurry throwing bat capable of improving combination degree of slurry throwing point and wall plastering layer

    CN215802977U