CN114482478B - Plastering leveling method and sleeve set - Google Patents

Plastering leveling method and sleeve set Download PDF

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Publication number
CN114482478B
CN114482478B CN202011158647.9A CN202011158647A CN114482478B CN 114482478 B CN114482478 B CN 114482478B CN 202011158647 A CN202011158647 A CN 202011158647A CN 114482478 B CN114482478 B CN 114482478B
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China
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positioning
module
scraping
gear
displacement
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CN114482478A (en
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洪伟祐
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Individual
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Individual
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F21/00Implements for finishing work on buildings
    • E04F21/02Implements for finishing work on buildings for applying plasticised masses to surfaces, e.g. plastering walls
    • E04F21/16Implements for after-treatment of plaster or the like before it has hardened or dried, e.g. smoothing-tools, profile trowels

Abstract

The invention provides a plastering leveling method and a plastering set, which are used for solving the problems of high threshold and low construction efficiency of the existing plastering leveling technology. The plastering and leveling set comprises: the two end edge positioning assemblies are respectively provided with a first positioning module and a second positioning module which are opposite; the two lifting guide pieces are respectively fixed between the first positioning module and the second positioning module of the two end edge positioning assemblies; two displacement modules which are respectively connected with the two lifting guide pieces in a displaceable manner; and two scraping wires respectively wound around the two displacement modules. The plastering and leveling method can use the plastering and leveling kit.

Description

Plastering leveling method and sleeve set
Technical Field
The invention relates to a plastering and leveling method and a sleeve set, in particular to a plastering and leveling method and a sleeve set capable of leveling ceilings or wall surfaces.
Background
The materials used for the building partitions are various, and the designer or the owner can choose different construction schemes, such as brick walls, RC concrete walls or light partition walls, according to requirements or conditions of strength, sound insulation or field operation environment. In general, in the process of forming brick walls or RC concrete walls, plastering procedures such as coarse batch, fine batch and the like are needed, so that the wall surfaces can be leveled for subsequent procedures such as painting or tiling; wherein, the cement with high viscosity is firstly applied or sprayed on the substrate wall to a preset thickness in a rough batch mode, and then the surface of the cement layer is leveled.
At present, the method of 'coarse batch' is implemented by using a long leveling ruler to push back and forth on the surface of the cement layer after the cement layer is formed by applying or spraying so as to scrape the cement at the more convex part on the cement layer, and finally, the cement layer can be formed into a leveling shape. However, in the foregoing operation process, various factors such as the direction, uniformity, and force path of the leveling rod will affect the final leveling effect, so a highly experienced master must be used to operate the leveling rod; if the work before leveling is carried out by the master with limited physical strength and time, the work efficiency is reduced, the working period is prolonged, and the high labor cost is derived, so that one or two masters with shallow senior grades are required to operate the work before leveling at the present site.
In other words, the current "rough batch" requires many people to work, and the leveling method is simple in theory and easy in using tools, but requires experience accumulation in operation, otherwise the leveling effect cannot be expected, or long working time is required for repeated repair. And moreover, even if the leveling operation is performed by a senior master, a great deal of physical strength and time are still required to be consumed, so that the leveling operation efficiency is difficult to improve, and the labor cost relative to wages and the like is also difficult to reduce.
In addition, not only is it necessary to level the plastering after applying or spraying cement on the base wall, plastering prior to painting also faces similar problems as described above.
In view of this, there is a real need for improvement in the current methods of performing troweling.
Disclosure of Invention
In order to solve the problems, the invention aims to provide a plastering and leveling method which can automatically and rapidly finish large-area leveling operation, thereby improving construction efficiency and quality.
It is a further object of the present invention to provide a plastering levelling method which is easy to operate without relying excessively on working experience to reduce manpower costs.
It is a further object of the present invention to provide a plastering troweling kit that can improve the ease of use.
It is still another object of the present invention to provide a plastering leveling kit that can promote ease of assembly.
Throughout this disclosure, directional or approximate terms, such as "front", "back", "left", "right", "upper (top)", "lower (bottom)", "inner", "outer", "side", etc., refer primarily to the direction of the drawings and are used merely to aid in the description and understanding of various embodiments of the present invention and are not intended to be limiting.
The use of the terms "a" or "an" for the components and members described throughout this disclosure is for convenience only and provides a general sense of the scope of the invention; it should be understood that the present invention includes one or at least one, and that the singular concept also includes the plural unless it is obvious that it is meant otherwise.
The terms "coupled," "assembled," or "assembled" as used throughout this disclosure, mainly include those that are separated without damaging the components after connection, or that are not separated after connection, and may be selected by those skilled in the art according to the material or assembly requirements of the components to be connected.
The plastering leveling method of the invention comprises the following steps: a first positioning point, a second positioning point, a third positioning point and a fourth positioning point are arranged on the wall surface, the first positioning point is opposite to the second positioning point in a first reference direction, and the third positioning point is opposite to the fourth positioning point; a first lifting guide piece is fixed between the first positioning point and the second positioning point, and a second lifting guide piece is fixed between the third positioning point and the fourth positioning point; a first displacement module is connected with the first lifting guide part in a displaceable manner, and a second displacement module is connected with the second lifting guide part in a displaceable manner; one end of a first scraping wire is fixed at the first positioning point, and sequentially passes through the first displacement module and the second displacement module, and the other end of the first scraping wire is fixed at the fourth positioning point; one end of a second scraping wire is fixed at the third positioning point, and sequentially passes through the second displacement module and the first displacement module, and the other end of the second scraping wire is fixed at the second positioning point; and driving the first displacement module and the second displacement module to synchronously displace, so that the first scraping line and the second scraping line span the part between the first displacement module and the second displacement module to scrape the uneven part on the plastered wall surface, thereby achieving the effect of leveling the wall surface.
The plastering and leveling kit of the invention comprises: the two end edge positioning assemblies are respectively provided with a first positioning module and a second positioning module which are opposite in a first reference direction, the first positioning modules of the two end edge positioning assemblies are spaced in a second reference direction, and the second positioning modules of the two end edge positioning assemblies are spaced in the second reference direction; the two lifting guide pieces are respectively fixed between the first positioning module and the second positioning module of the two end edge positioning assemblies; two displacement modules which are respectively connected with the two lifting guide pieces in a displaceable manner; and two scraping wires respectively pass through the two displacement modules, wherein one scraping wire is fixed on the first positioning module of the end edge positioning assembly at the first side by the first end, is fixed on the second positioning module of the end edge positioning assembly at the second side by the second end, and the other scraping wire is fixed on the first positioning module of the end edge positioning assembly at the second side by the first end and is fixed on the second positioning module of the end edge positioning assembly at the first side by the second end.
Therefore, the plastering leveling method and the sleeve group can be used for displacing relative to the two lifting guide members by utilizing the two displacement modules, and the uneven part of the plastering area is scraped by the position, spanned between the first displacement module and the second displacement module, of the first scraping line and the second scraping line; therefore, the leveling operation in a large area can be automatically and quickly completed, the operation time can be saved, the labor cost is reduced due to no excessive dependence on the working experience, the problem of poor technology or physical weakness of operators can be avoided, and the efficiency and the quality of construction are improved.
The first positioning module and the second positioning module can be respectively provided with a threading device and a positioning column, the scraping wire can penetrate through the threading devices of the first positioning module and the second positioning module, the first positioning module is provided with a tensioning piece which is combined with the threading device, and the tensioning piece can tension the scraping wire. Therefore, the loose or falling of the scraping wire can be avoided, and the scraping wire has the effect of improving the scraping effect.
The lifting guide piece can be a wire rod, penetrates through the threading devices of the first positioning module and the second positioning module, the first positioning module can be provided with another tensioning piece which is combined with the threading devices, and the tensioning piece can tension the lifting guide piece. Therefore, the lifting guide piece can be prevented from loosening or falling, and the displacement smoothness of the two displacement modules is improved.
The first positioning module and the second positioning module can be respectively provided with an elastic sheet, the elastic sheet is combined with the threading device, a screw penetrates through the threading device and the elastic sheet and is in threaded connection with the positioning column, and a plurality of tips of the elastic sheet can be abutted against a wall surface to push the threading device to contact with the head of the screw. Therefore, the threading device can be selected to be closer to the wall surface or farther away from the wall surface, and the distance between the scraping line and the wall surface can be adjusted, so that the use convenience is improved.
The displacement module may have a body, where the body has a first combining groove and a second combining groove that are communicated, the opening directions of the first combining groove and the second combining groove may not be located on the same plane, and the lifting guide combines the first combining groove and the second combining groove. Therefore, the lifting guide piece can be prevented from being separated from the body, so that the body can smoothly move between the first positioning module and the second positioning module relative to the lifting guide piece, and the effect of improving the smoothness of the displacement is achieved.
The displacement module can be provided with a first gear and a second gear, the first gear and the second gear are arranged on a body of the displacement module, one scraping wire can pass through the first gear of the end edge positioning assembly positioned on the first side and the second gear of the end edge positioning assembly positioned on the second side, and the other scraping wire can pass through the first gear of the end edge positioning assembly positioned on the second side and the second gear of the end edge positioning assembly positioned on the first side. Therefore, the structure is simple and convenient to assemble, and has the effect of improving the convenience of assembly.
The first gear and the second gear can be respectively provided with a ring groove, and the two scraping wires can be limited in the two ring grooves. Therefore, the structure is simple and convenient to manufacture, and has the effect of reducing the manufacturing cost.
The displacement module can be provided with a power piece, and a rotary gear of the power piece can be meshed with the first gear and the second gear. Therefore, the rotary gear can drive the first gear and the second gear to rotate, and the effect of improving the smoothness of the operation is achieved.
The line segments of the two scraping lines between the first positioning module and the displacement module and the line segments between the second positioning module and the displacement module can be parallel to a first reference direction. Therefore, when the first displacement module and the second displacement module synchronously displace upwards or downwards, the two scraping lines can easily scrape uneven parts, and the effect of improving the scraping effect is achieved.
Drawings
Fig. 1: a flow chart of a preferred embodiment of the present invention;
fig. 2: a combined perspective view of a preferred embodiment of the present invention;
fig. 3: a combined perspective view of a displacement module according to a preferred embodiment of the present invention;
fig. 4: a combined front view of a preferred embodiment of the present invention;
fig. 5: as shown in the action scenario diagram of fig. 4.
Description of the reference numerals
[ present invention ]
1 end edge positioning assembly
1a first positioning module
1b second positioning module
11 positioning column
12 threading device
13 tensioning piece
14 spring piece
141 tip portion
2 lifting guide
2a first lifting guide
2b second lifting guide
3 displacement module
3a first displacement module
3b second displacement module
31 body
311 first combining groove
312 second combining groove
32 first gear
321 ring groove
33 second gear
331 ring groove
34:power piece
341 rotating gear
4 scraping line
4a first scraping line
4b second scraping line
41 first end
42 second end
A1 first side
A2 second side
F, screw
P1:first positioning site
P2:
p3:third positioning site
P4 fourth positioning point
T-wall surface
T1 plastering area
Y1 first reference direction
And Y2, a second reference direction.
Detailed Description
In order to make the above and other objects, features and advantages of the present invention more comprehensible, preferred embodiments accompanied with figures are described in detail below:
referring to fig. 1 and 2, a preferred embodiment of the plastering and leveling method of the present invention is shown, which can be used for a wall or a ceiling, but the present invention is not limited thereto, and in this embodiment, the plastering and leveling method is used for a wall surface T. The plastering leveling method of the invention comprises the following steps: the wall surface T is provided with a first positioning point P1, a second positioning point P2, a third positioning point P3 and a fourth positioning point P4, the first positioning point P1 and the second positioning point P2 are opposite in a first reference direction Y1, the third positioning point P3 and the fourth positioning point P4 are opposite up and down, and the first positioning point P1 and the third positioning point P3 can be opposite in a second reference direction Y2, and the second positioning point P2 and the fourth positioning point P4 can be opposite.
Next, a first lifting guide 2a is fixed between the first positioning point P1 and the second positioning point P2, and a second lifting guide 2b is fixed between the third positioning point P3 and the fourth positioning point P4; the first lifting guide 2a and the second lifting guide 2b may be rails or wires, and the first lifting guide 2a may be parallel to the second lifting guide 2b.
Then, a first displacement module 3a is connected to the first lifting guide 2a, so that the first displacement module 3a can displace along the first lifting guide 2a, so that the first displacement module 3a can displace between the first positioning point P1 and the second positioning point P2, and a second displacement module 3b is connected to the second lifting guide 2b, so that the second displacement module 3b can displace along the second lifting guide 2b, so that the second displacement module 3b can displace between the third positioning point P3 and the fourth positioning point P4.
Next, fixing the first end 41 of a first scraping wire 4a at the first positioning point P1, and sequentially winding around the first displacement module 3a and the second displacement module 3b, and fixing the second end 42 of the first scraping wire 4a at the fourth positioning point P4, so that the first scraping wire 4a spans between the first displacement module 3a and the second displacement module 3b and can contact the wall surface T; and fixing the first end 41 of the second scraping wire 4b at the third positioning point P3, and sequentially winding the second displacement module 3b and the first displacement module 3a, and fixing the second end 42 of the second scraping wire 4b at the second positioning point P2, so that the second scraping wire 4b spans between the first displacement module 3a and the second displacement module 3b and can contact the wall surface T.
Finally, a constructor can plaster on the wall surface T to form a plaster zone T1 and drive the first displacement module 3a and the second displacement module 3b, so that the first displacement module 3a and the second displacement module 3b can synchronously displace along the first reference direction Y1 (i.e. upwards or downwards) as shown in fig. 5, and the first scraping line 4a and the second scraping line 4b span the part between the first displacement module 3a and the second displacement module 3b to scrape the uneven part of the plaster zone T1, thereby automatically and quickly completing large-area leveling operation without depending on working experience to reduce labor cost.
In particular, in other embodiments, the first lifting guide 2a may be fixed between the first positioning point P1 and the third positioning point P3, and the second lifting guide 2b may be fixed between the second positioning point P2 and the fourth positioning point P4; and the first displacement module 3a is connected to the first lifting guide 2a in a displaceable manner, and the second displacement module 3b is connected to the second lifting guide 2b in a displaceable manner, so that the first displacement module 3a and the second displacement module 3b can synchronously displace along the second reference direction Y2, and the first displacement module 3a and the second displacement module 3b can displace leftwards or rightwards; thus, the wall surface can be applied to a strip-shaped wall surface.
Referring to fig. 2, a plastering and leveling set for implementing the plastering and leveling method according to the present embodiment includes two end edge positioning assemblies 1, two lifting guide members 2, two displacement modules 3 and two scraping wires 4, wherein the two lifting guide members 2 are respectively fixed on the two end edge positioning assemblies 1, the two displacement modules 3 are respectively movably connected to the two lifting guide members 2, and the two scraping wires 4 respectively pass around the two displacement modules 3.
The two end edge positioning assemblies 1 are located on the wall surface T, the two end edge positioning assemblies 1 respectively have a first positioning module 1a and a second positioning module 1b opposite to each other in the first reference direction Y1, the first positioning modules 1a of the two end edge positioning assemblies 1 are spaced apart in the second reference direction Y2, the first positioning modules 1a of the two end edge positioning assemblies 1 can respectively form the first positioning point P1 and the third positioning point P3, the second positioning modules 1b of the two end edge positioning assemblies 1 are spaced apart in the second reference direction Y2, and the second positioning modules 1b of the two end edge positioning assemblies 1 can respectively form the second positioning point P2 and the fourth positioning point P4.
Referring to fig. 1 and 2, the first positioning module 1a and the second positioning module 1b are not limited by the present invention, in this embodiment, the first positioning module 1a and the second positioning module 1b may each have a threading device 12 combined with a positioning column 11, the positioning column 11 may be fixedly arranged on the wall surface T as shown in fig. 1, so that the positioning column 11 may be combined between the wall surface T and the threading device 12, and the threading device 12 may be penetrated by the lifting guide 2 and the scraping wire 4; the first positioning module 1a may have two tensioning members 13, where the two tensioning members 13 may be combined with the threader 12 and located at an end far away from the second positioning module 1b, the two tensioning members 13 may be used for penetrating the lifting guide 2 and the scraping wire 4, and the two tensioning members 13 may be used for tensioning the lifting guide 2 and the scraping wire 4.
In addition, the first positioning module 1a and the second positioning module 1b may have a spring 14 respectively, the spring 14 may be combined with the threader 12, the spring 14 is located between the positioning post 11 and the threader 12, the plurality of tips 141 of the spring 14 may face the wall surface T, a screw F may penetrate through the threader 12 and the spring 14 and be screwed with the positioning post 11, and the plurality of tips 141 of the spring 14 may abut against the wall surface T to make the spring 14 push against the threader 12 to contact the head of the screw F; thus, the threading device 12 can be selected to be closer to the wall surface T or further away from the wall surface T, and the distance between the scraping wire 4 and the wall surface T can be adjusted.
The two lifting guides 2 are respectively fixed between the first positioning module 1a and the second positioning module 1b of the two end edge positioning assemblies 1, and the two lifting guides 2 are the first lifting guide 2a and the second lifting guide 2b. The first lifting guide 2a and the second lifting guide 2b may be rails or wires; in this embodiment, the first lifting guide 2a and the second lifting guide 2b may be selected as wires, and the first lifting guide 2a and the second lifting guide 2b may penetrate through the threader 12 of the first positioning module 1a and the second positioning module 1b, so that the first lifting guide 2a may be fixed between the first positioning point P1 and the second positioning point P2, and the second lifting guide 2b may be fixed between the third positioning point P3 and the fourth positioning point P4. In addition, the first lifting guide 2a and the second lifting guide 2b can penetrate through one of the tensioning members 13 of the first positioning module 1a, so that the one tensioning member 13 can tension the first lifting guide 2a and the second lifting guide 2b, and the first lifting guide 2a and the second lifting guide 2b can be prevented from loosening or sagging.
Referring to fig. 2 and 3, the two displacement modules 3 are respectively movably connected to the first lifting guide 2a and the second lifting guide 2b, and the two displacement modules 3 are the first displacement module 3a and the second displacement module 3b. The displacement module 3 may have a body 31, where the body 31 has a first combining groove 311 and a second combining groove 312 that are communicated, the lifting guide 2 may combine with the first combining groove 311 and the second combining groove 312, and the opening directions of the first combining groove 311 and the second combining groove 312 are preferably not located on the same plane, so that the lifting guide 2 is prevented from being separated from the body 31, and the body 31 may be smoothly displaced between the first positioning module 1a and the second positioning module 1b relative to the lifting guide 2.
In addition, the displacement module 3 may have a first gear 32 and a second gear 33, the first gear 32 and the second gear 33 are disposed on the body 31, the first gear 32 and the second gear 33 may have a ring groove 321, 331, respectively, and the two scraping wires 4 may be limited in the two ring grooves 321, 331 of the first gear 32 and the second gear 33. The displacement module 3 has a power member 34, the power member 34 may be a stepper motor, and a rotating gear 341 of the power member 34 may be engaged with the first gear 32 and the second gear 33, so that the rotating gear 341 may drive the first gear 32 and the second gear 33 to rotate; preferably, the power member 34 may also have a vibration function.
The two scraping wires 4 can wind around the first displacement module 3a and the second displacement module 3b, and the two scraping wires 4 are the first scraping wire 4a and the second scraping wire 4b. In detail, the first scraping wire 4a may be wound around the first gear 32 of the first displacement module 3a and the second gear 33 of the second displacement module 3b, and the first scraping wire 4a may be fixed to the first positioning module 1a of the edge positioning assembly 1 of the first side A1 by the first end 41, and the first scraping wire 4a may be fixed to the second positioning module 1b of the edge positioning assembly 1 of the second side A2 by the second end 42, so that a portion of the first scraping wire 4a crossing between the first displacement module 3a and the second displacement module 3b may contact the plastering area T1.
In addition, the second scraping wire 4b may wind around the first gear 32 of the second displacement module 3b and the second gear 33 of the first displacement module 3a, and the second scraping wire 4b may be fixed to the first positioning module 1a of the end edge positioning assembly 1 of the second side A2 by the first end 41, and the second scraping wire 4b may be fixed to the second positioning module 1b of the end edge positioning assembly 1 of the first side A1 by the second end 42, so that a portion of the second scraping wire 4b crossing between the first displacement module 3a and the second displacement module 3b may contact the plastering area T1, and a portion of the first scraping wire 4a crossing between the first displacement module 3a and the second scraping wire 4b may form a crossing.
The first scraping wire 4a and the second scraping wire 4b can penetrate through the other tensioning member 13 of the first positioning module 1a, so that the other tensioning member 13 can tension the first scraping wire 4a and the second scraping wire 4b, and the first scraping wire 4a and the second scraping wire 4b can be prevented from loosening or sagging. In addition, the line segments of the two scraping lines 4 between the first positioning module 1a and the displacement module 3 and the line segments between the second positioning module 1b and the displacement module 3 are preferably parallel to a first reference direction Y1; thus, when the first displacement module 3a and the second displacement module 3b displace synchronously, the two scraping wires 4 can easily scrape the uneven part.
Referring to fig. 4 and 5, after the plastering and leveling kit of the present invention is assembled, a constructor may firstly plastering to form the plastering area T1 and then leveling the plastering area T1 by using the plastering and leveling kit; or, the construction personnel can also perform the operations of plastering at one side and leveling by using the plastering and leveling sleeve group at one side, and the invention is not limited. When the plastering leveling set of the present invention is used, the power member 34 drives the first gear 32 and the second gear 33 to rotate, so that the first displacement module 3a and the second displacement module 3b can synchronously displace along the first reference direction Y1, and the first scraping line 4a and the second scraping line 4b span the position between the first displacement module 3a and the second displacement module 3b to level the plastering area T1, thereby automatically and quickly completing a large-area leveling operation without depending on working experience to reduce labor cost.
In addition, since the power member 34 can have a vibration function, the first scraping line 4a and the second scraping line 4b can generate micro vibration while scraping, so that the smoothness of scraping can be improved. In addition, after finishing the leveling work, the aforementioned members may be removed from the wall surface T and the peripheral edge of the plastering area T1 may be manually leveled so that the entire plastering area T1 may be formed in a flat form.
In summary, according to the plastering leveling method and the sleeve set of the invention, the two displacement modules can be used for displacing relative to the two lifting guide members, and the uneven part of the plastering area is scraped by the position, between the first displacement module and the second displacement module, of the first scraping line and the second scraping line; therefore, the leveling operation in a large area can be automatically and quickly completed, the operation time can be saved, the labor cost is reduced due to no excessive dependence on the working experience, the problem of poor technology or physical weakness of operators can be avoided, and the efficiency and the quality of construction are improved.

Claims (10)

1. A plastering leveling method, characterized by comprising the following steps:
a first positioning point, a second positioning point, a third positioning point and a fourth positioning point are arranged on the wall surface, the first positioning point is opposite to the second positioning point in a first reference direction, and the third positioning point is opposite to the fourth positioning point;
a first lifting guide piece is fixed between the first positioning point and the second positioning point, and a second lifting guide piece is fixed between the third positioning point and the fourth positioning point;
a first displacement module is connected with the first lifting guide part in a displaceable manner, and a second displacement module is connected with the second lifting guide part in a displaceable manner;
one end of a first scraping wire is fixed at the first positioning point, and sequentially passes through the first displacement module and the second displacement module, and the other end of the first scraping wire is fixed at the fourth positioning point;
one end of a second scraping wire is fixed at the third positioning point, and sequentially passes through the second displacement module and the first displacement module, and the other end of the second scraping wire is fixed at the second positioning point; a kind of electronic device with high-pressure air-conditioning system
The first displacement module and the second displacement module are driven to synchronously displace, so that the first scraping line and the second scraping line span the part between the first displacement module and the second displacement module to scrape the uneven part on the plastered wall surface, thereby achieving the effect of leveling the wall surface.
2. A plastering troweling kit comprising:
the two end edge positioning assemblies are respectively provided with a first positioning module and a second positioning module which are opposite in a first reference direction, the first positioning modules of the two end edge positioning assemblies are spaced in a second reference direction, and the second positioning modules of the two end edge positioning assemblies are spaced in the second reference direction;
the two lifting guide pieces are respectively fixed between the first positioning module and the second positioning module of the two end edge positioning assemblies;
the two displacement modules are respectively connected with the two lifting guide pieces in a displaceable manner; a kind of electronic device with high-pressure air-conditioning system
The two scraping wires are respectively wound around the two displacement modules, one scraping wire is fixed on the first positioning module of the end edge positioning assembly on the first side through the first end, the other scraping wire is fixed on the second positioning module of the end edge positioning assembly on the second side through the first end, and the other scraping wire is fixed on the second positioning module of the end edge positioning assembly on the second side through the second end.
3. The plastering leveling kit as claimed in claim 2, wherein the first positioning module and the second positioning module have a threader combined with a positioning column, respectively, the scraping wire penetrates the threaders of the first positioning module and the second positioning module, the first positioning module has a tensioning member combined with the threader, and the tensioning member tensions the scraping wire.
4. A plastering leveling kit as claimed in claim 3, wherein the elevation guide is a wire, the elevation guide extends through the threader of the first positioning module and the second positioning module, the first positioning module has another tensioning member coupled to the threader, the tensioning member tensioning the elevation guide.
5. The plastering leveling set as set forth in claim 3 wherein the first positioning module and the second positioning module each have a spring plate, the spring plates are combined with the threader, a screw penetrates the threader and the spring plates and is screwed with the positioning column, and a plurality of tips of the spring plates are abutted against a wall surface to push the threader to contact the head of the screw.
6. The plastering leveling kit as claimed in claim 2, wherein the displacement module has a body having a first coupling groove and a second coupling groove which are communicated, the opening directions of the first coupling groove and the second coupling groove are not located on the same plane, and the elevation guide couples the first coupling groove and the second coupling groove.
7. The plastering leveling kit as claimed in claim 2, wherein the displacement module has a first gear and a second gear, the first gear and the second gear being disposed on a body of the displacement module, wherein one of the scraping wires is routed through the first gear of the end edge positioning assembly on the first side and the second gear of the end edge positioning assembly on the second side, and the other scraping wire is routed through the first gear of the end edge positioning assembly on the second side and the second gear of the end edge positioning assembly on the first side.
8. The plastering leveling kit as claimed in claim 7, wherein the first gear and the second gear each have one ring groove, and two scraping wires are limited in the two ring grooves.
9. The plastering leveling kit of claim 7, wherein the displacement module has a power member, a rotating gear of the power member engaging the first gear and the second gear.
10. The plastering leveling kit as claimed in claim 2, wherein the line segment between the first positioning module and the displacement module and the line segment between the second positioning module and the displacement module are both parallel to a first reference direction.
CN202011158647.9A 2020-10-26 2020-10-26 Plastering leveling method and sleeve set Active CN114482478B (en)

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CN114482478B true CN114482478B (en) 2023-12-01

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Citations (3)

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