CN219219686U - Plastering machine for building construction - Google Patents

Plastering machine for building construction Download PDF

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Publication number
CN219219686U
CN219219686U CN202223060270.0U CN202223060270U CN219219686U CN 219219686 U CN219219686 U CN 219219686U CN 202223060270 U CN202223060270 U CN 202223060270U CN 219219686 U CN219219686 U CN 219219686U
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plastering
ash
motor
column
wall
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CN202223060270.0U
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郭章深
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/91Use of waste materials as fillers for mortars or concrete

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Abstract

The utility model belongs to the technical field of plastering machines, and particularly relates to a plastering machine for building construction, which comprises two upright posts, wherein the two upright posts comprise a cylinder, a first chute is formed in the middle of the cylinder, a first motor column is arranged on the outer side of the cylinder, an angle adjusting motor is arranged in the first motor column, an output shaft of the angle adjusting motor is connected with a first connecting column, and a connecting frame is arranged on the outer wall of the first connecting column. The beneficial effects of the utility model are as follows: through setting up a plurality of stirring paddles in storing up grey mechanism and stirring the ash, avoid the ash to deposit and solidify, drive the mechanism of plastering through the angle modulation motor on two stands and rotate, make the mechanism of plastering keep certain inclination with the ash in the mechanism of plastering pour out to the wall on carry out the work of plastering, through setting up storing up the ash mechanism with the ash in storing up the ash mechanism in carrying to the mechanism of plastering with the help of conveying pipeline, replace artifical pay-off to have saved the manpower, this device simple structure, convenient operation and a large amount of manpower sparingly are very practical.

Description

Plastering machine for building construction
Technical Field
The utility model belongs to the technical field of plastering machines, and particularly relates to a plastering machine for building construction.
Background
The plastering engineering is a system construction process for providing special functions for a building by coating plastering mortar on the surface of a base material, has the functions of protecting a base layer and increasing attractiveness, and has two main functions: the wall has the protection function of protecting the wall from being corroded by wind, rain and snow, improving the moistureproof, weather-proof and heat-insulating capabilities of the wall, and improving the durability and thermal performance of the wall; secondly, beautify the function, improve indoor sanitary condition, air-purifying beautifies the environment, improves the comfort level of living.
Through retrieving, the chinese patent of authorized publication No. CN 214195424U discloses a plastering machine for construction, which comprises a base, the bottom of base is provided with a plurality of gyro wheels, the top of base is provided with bilateral symmetry's guide rail, two be provided with the ash chute between the guide rail, the bilateral symmetry of ash chute is provided with the actuating arm, the outside of actuating arm all is provided with the electric wheel with guide rail looks adaptation, electric wheel sliding connection is in the inboard of guide rail, the front end bottom of ash chute is provided with the blown down tank, the inboard of ash chute is provided with the cardboard with the blown down tank looks adaptation, the top of cardboard is provided with bilateral symmetry's push rod, the top of push rod is connected with the output of actuating cylinder, the top fixed connection of actuating cylinder is in the inboard top of ash chute, the front end intermediate position of ash chute is provided with the scraper blade, the upper and lower both ends symmetry of ash chute is provided with compaction mechanism, compaction mechanism is provided with bilateral symmetry, connecting block fixed connection in the ash chute, the front end is provided with the forced motor, the forced motor is provided with the front end of spring, the forced motor is provided with the forced to draw up the forced motor, the forced motor is provided with the forced down groove, the manual stirring system is provided with the running in the mortar groove, and the volume is set up the mortar pump to rotate the end, and is connected with the forced down through the forced down groove to the pump, and has the forced down to be connected with the pump to the pump.
Disclosure of Invention
In view of the above problems, an object of the present utility model is to: the plastering machine for the building construction solves the problem that cement ash is required to be manually injected into an ash groove in the using process of the plastering machine, and the workload of workers is increased.
In order to achieve the above purpose, the utility model adopts the technical scheme that: the utility model provides a plastering machine for construction, includes two stands, two the stand all includes the cylinder, first spout has been seted up in the middle of the cylinder, first motor post is installed in the outside of cylinder, install angle modulation motor in the first motor post, angle modulation motor's output shaft has first spliced pole, the connecting frame is installed to the outer wall of first spliced pole, two first spliced pole is kept away from angle modulation motor's one end is connected with plastering machine, one side of stand is provided with electronic slide bar, electronic slide bar includes the slide bar casing, the third spout has been seted up to one side of slide bar casing, slider connection in the slide bar casing has passed the second spliced pole of third spout, the cylinder is close to be seted up the second spout on the lateral wall of slide bar casing one side, the second spliced pole passes the second spout is connected on the connecting frame, one side of electronic slide bar is provided with the ash storage mechanism, the ash storage cylinder includes the bottom of ash storage cylinder is connected with the base, the middle motor installs the second motor, the second link in the slide bar is provided with the second motor, the second link is connected with the second pump, the air pump is installed to the second link in the side of slide bar has the output shaft, the ash storage cylinder is kept away from on the side of the conveying pipe.
The beneficial effects of the utility model are as follows: through setting up a plurality of stirring paddles in storing up grey mechanism and stirring the ash, avoid the ash to deposit and solidify, drive the mechanism of plastering through the angle modulation motor on two stands and rotate, make the mechanism of plastering keep certain inclination with the ash in the mechanism of plastering pour out to the wall on carry out the work of plastering, through setting up storing up the ash mechanism with the ash in storing up the ash mechanism in carrying to the mechanism of plastering with the help of conveying pipeline, replace artifical pay-off to have saved the manpower, this device simple structure, convenient operation and a large amount of manpower sparingly are very practical.
In order to stir the ash materials in the ash storage mechanism to avoid sedimentation and solidification, the ash materials in the ash storage mechanism are conveyed into the plastering mechanism through the conveying pipe to replace manual feeding;
as a further improvement of the above technical scheme: and the bottoms of the two upright posts are provided with movable wheels.
The beneficial effects of this improvement are: the bottom of the upright posts is provided with the movable wheels, so that the movable device is convenient to move.
To facilitate movement of the device;
as a further improvement of the above technical scheme: the plastering mechanism comprises a lime groove with an inverted trapezoid cross section, the top of the lime groove is movably connected with a top cover, a discharge hole is reserved between the top cover and the top of the lime groove, and a scraping plate is obliquely arranged at the upper end of the side wall of the lime groove.
The beneficial effects of this improvement are: through setting up the top cap, to the putty interception in the mechanism of plastering, avoid once only pouring a large amount of ashes and cause to smear unevenly and the material waste.
In order to avoid uneven smearing and material waste caused by pouring a large amount of ash material at one time;
as a further improvement of the above technical scheme: the lower part of the scraping plate is provided with a rubber scraping plate, and the distance between the scraping plate and a plastered wall is larger than that between the scraping plate and the plastered wall.
The beneficial effects of this improvement are: the scraping plate with the rubber is arranged below the scraping plate, the distance between the scraping plate and a wall to be plastered is larger than that between the scraping plate and the wall to be plastered, the scraping plate is convenient to smear the putty on the wall, and the scraping plate is used for trowelling, so that plastering is smoother, and plastering effect is optimized.
In order to facilitate the scraping plate to smear the ash on the wall, the scraping plate is used for trowelling, so that plastering is smoother;
as a further improvement of the above technical scheme: the wiper blade is arranged as a wiper blade with a triangular cross section.
The beneficial effects of this improvement are: the scraping blade is arranged to be the scraping blade with the triangular cross section, so that the wall plastering is facilitated to be scraped flat, and the plastering is smoother.
For the strickling of wall plastering, the plastering is smoother;
as a further improvement of the above technical scheme: the lower part of the plastering mechanism is provided with a plaster receiving disc, and the width of the plaster receiving disc is larger than that of the plastering mechanism.
The beneficial effects of this improvement are: through being provided with the ash receiving tray in the below of mechanism of plastering, the width of ash receiving tray is greater than the width of mechanism of plastering, be convenient for collect in the in-process of plastering unnecessary ash material, avoid the ash material to fall on subaerial difficult recovery, cause extravagant.
In order to facilitate the collection of the excessive ash materials in the plastering process, the ash materials are prevented from falling on the ground and are not easy to recover, so that waste is caused;
as a further improvement of the above technical scheme: the tops of the two upright posts are connected with a connecting beam.
The beneficial effects of this improvement are: the connecting beam is connected to the top of the upright posts through the two upright posts, so that the device is more stable.
In order to make the device more stable;
as a further improvement of the above technical scheme: the conveying pipe is arranged as a telescopic threaded hose.
The beneficial effects of this improvement are: through with the conveying pipeline sets up to telescopic screwed hose, when the mechanism height adjustment of being convenient for plasters, the conveying pipeline can not drop, can not influence the material loading.
None of the parts of the device are the same as or can be implemented using prior art.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
fig. 2 is a schematic perspective view of a plastering mechanism according to the utility model;
FIG. 3 is a perspective view of the ash storage mechanism of the present utility model;
FIG. 4 is an exploded view of the connection structure of the upright post and the electric sliding rod of the present utility model.
In the figure: 1. a column; 2. an electric slide bar; 3. a plastering mechanism; 4. an ash receiving tray; 5. an ash storage mechanism; 6. an air pump; 7. a material conveying pipe; 8. a first motor column; 9. an angle modulation motor; 10. a top cover; 11. an ash tank; 12. a discharge port; 13. a scraper; 14. a wiper blade; 15. a moving wheel; 16. an ash storage cylinder; 17. a bottom plate; 18. a base; 19. a second motor column; 20. rotating the column; 21. stirring paddles; 22. a column; 23. a first chute; 24. a first connection post; 25. a second chute; 26. a slide bar housing; 27. a third chute; 28. a second connection post; 29. a connection frame; 30. and connecting the beams.
Detailed Description
In order that those skilled in the art may better understand the technical solutions of the present utility model, the following detailed description of the present utility model with reference to the accompanying drawings is provided for exemplary and explanatory purposes only and should not be construed as limiting the scope of the present utility model.
Example 1:
as shown in fig. 1-4: the utility model provides a plastering machine for construction, includes two stand 1, two stand 1 all includes cylinder 22, first spout 23 has been seted up in the middle of the cylinder 22, first motor post 8 is installed in the outside of cylinder 22, install angle modulation motor 9 in the first motor post 8, angle modulation motor 9's output shaft has first spliced pole 24, connecting frame 29 is installed to first spliced pole 24's outer wall, two first spliced pole 24 keep away from angle modulation motor 9's one end is connected with plastering unit 3, one side of stand 1 is provided with electric slide bar 2, electric slide bar 2 includes slide bar casing 26, third spout 27 has been seted up to one side of slide bar casing 26, the slider connection in the slide bar casing 26 has to pass third spout 27's second spliced pole 28, 22 is close to second spout 25 has been seted up on the lateral wall on slide bar casing 26 one side, second spliced pole 28 passes second spout 25 is connected on connecting frame 29, one side of electric slide bar 2 is provided with grey guiding mechanism 5, grey jar 5 is installed to the electric slide bar 2 one side is kept away from in the one side of grey jar 5 the grey jar that is connected with of electric slide bar motor 16, the grey jar 16 is installed to the one end is kept away from in the grey jar 16, and is installed the grey jar 16 is connected with the one end of ash jar 16, and is kept away from the bottom jar 16 is installed to the pneumatic pump cylinder 16, and is connected with the end is equipped with the base 16, and is equipped with the ash jar 16 and is connected with the base 16.
The working principle of the technical scheme is as follows: through setting up a plurality of stirring rake 21 in storing up grey mechanism 5 and stirring the ash, avoid the ash to deposit and solidify, drive the mechanism 3 that plasters through angle modulation motor 9 on two stands 1 and rotate, make the mechanism 3 that plasters keep certain inclination with the ash in the mechanism 3 that plasters pour to the wall on and plaster work, through setting up storing up grey mechanism 5 with storing up the ash in the mechanism 5 with the help of conveying pipeline 7 carry to the mechanism 3 that plasters, replace manual feeding to have saved the manpower, this device simple structure, convenient operation and a large amount of manpower sparingly are very practical.
Example 2:
as shown in fig. 1-4, as a further optimization of the above embodiment, the plastering machine for construction comprises two upright posts 1, wherein the two upright posts 1 comprise a column body 22, a first sliding groove 23 is formed in the middle of the column body 22, a first motor column 8 is installed on the outer side of the column body 22, an angle adjusting motor 9 is installed in the first motor column 8, an output shaft of the angle adjusting motor 9 is connected with a first connecting column 24, a connecting frame 29 is installed on the outer wall of the first connecting column 24, one end of the two first connecting columns 24 far away from the angle adjusting motor 9 is connected with a plastering mechanism 3, one side of the upright post 1 is provided with an electric sliding rod 2, the electric sliding rod 2 comprises a sliding rod shell 26, a third sliding groove 27 is formed in one side of the sliding rod shell 26, a sliding block in the sliding rod shell 26 is connected with a second connecting column 28 penetrating through the third sliding groove 27, a second chute 25 is formed in the side wall of the column 22, which is close to one side of the slide bar shell 26, the second connecting column 28 is connected to the connecting frame 29 through the second chute 25, one side of the electric slide bar 2 is provided with an ash storage mechanism 5, the ash storage mechanism 5 comprises a cylindrical ash storage cylinder 16, the bottom of the ash storage cylinder 16 is connected with a base 18, a second motor column 19 is mounted in the middle of the base 18, a driving motor is mounted in the second motor column 19, an output shaft of the driving motor penetrates through the bottom plate 17 to be connected with a rotating column 20, stirring paddles 21 are mounted on the outer wall of the rotating column 20, one side of the ash storage cylinder 16 is connected with a conveying pipe 7, one end of the conveying pipe 7, which is close to the ash storage cylinder 16, is provided with an air pump 6, one end of the conveying pipe 7 far away from the ash storage cylinder 16 is connected to the side wall of the plastering mechanism 3. The bottoms of the two upright posts 1 are provided with moving wheels 15.
Example 3:
as shown in fig. 1-4, as a further optimization of the above embodiment, the plastering machine for construction comprises two upright posts 1, wherein the two upright posts 1 comprise a column body 22, a first sliding groove 23 is formed in the middle of the column body 22, a first motor column 8 is installed on the outer side of the column body 22, an angle adjusting motor 9 is installed in the first motor column 8, an output shaft of the angle adjusting motor 9 is connected with a first connecting column 24, a connecting frame 29 is installed on the outer wall of the first connecting column 24, one end of the two first connecting columns 24 far away from the angle adjusting motor 9 is connected with a plastering mechanism 3, one side of the upright post 1 is provided with an electric sliding rod 2, the electric sliding rod 2 comprises a sliding rod shell 26, a third sliding groove 27 is formed in one side of the sliding rod shell 26, a sliding block in the sliding rod shell 26 is connected with a second connecting column 28 penetrating through the third sliding groove 27, a second chute 25 is formed in the side wall of the column 22, which is close to one side of the slide bar shell 26, the second connecting column 28 is connected to the connecting frame 29 through the second chute 25, one side of the electric slide bar 2 is provided with an ash storage mechanism 5, the ash storage mechanism 5 comprises a cylindrical ash storage cylinder 16, the bottom of the ash storage cylinder 16 is connected with a base 18, a second motor column 19 is mounted in the middle of the base 18, a driving motor is mounted in the second motor column 19, an output shaft of the driving motor penetrates through the bottom plate 17 to be connected with a rotating column 20, stirring paddles 21 are mounted on the outer wall of the rotating column 20, one side of the ash storage cylinder 16 is connected with a conveying pipe 7, one end of the conveying pipe 7, which is close to the ash storage cylinder 16, is provided with an air pump 6, one end of the conveying pipe 7 far away from the ash storage cylinder 16 is connected to the side wall of the plastering mechanism 3. The plastering mechanism 3 comprises a lime groove 11 with an inverted trapezoid cross section, a top cover 10 is movably connected to the top of the lime groove 11, a discharge hole 12 is reserved between the top cover 10 and the top of the lime groove 11, and a scraping plate 13 is obliquely arranged at the upper end of the side wall of the lime groove 11.
Example 4:
as shown in fig. 1-4, as a further optimization of the above embodiment, the plastering machine for construction is described, the plastering mechanism 3 comprises an ash groove 11 with an inverted trapezoid cross section, the top of the ash groove 11 is movably connected with a top cover 10, a discharge port 12 is reserved between the top cover 10 and the top of the ash groove 11, and a scraper 13 is obliquely arranged at the upper end of the side wall of the ash groove 11. A rubber scraping blade 14 is arranged below the scraping blade 13, and the distance between the scraping blade 13 and a plastered wall is larger than the distance between the scraping blade 14 and the plastered wall.
Example 5:
as a further optimization of the above embodiment, as shown in fig. 1 to 4, a rubber blade 14 is installed under the blade 13, and the distance between the blade 13 and the wall to be plastered is greater than the distance between the blade 14 and the wall to be plastered. The wiper blade 14 is provided as a wiper blade 14 having a triangular cross section.
Example 6:
as shown in fig. 1-4, as a further optimization of the above embodiment, the plastering machine for construction comprises two upright posts 1, wherein the two upright posts 1 comprise a column body 22, a first sliding groove 23 is formed in the middle of the column body 22, a first motor column 8 is installed on the outer side of the column body 22, an angle adjusting motor 9 is installed in the first motor column 8, an output shaft of the angle adjusting motor 9 is connected with a first connecting column 24, a connecting frame 29 is installed on the outer wall of the first connecting column 24, one end of the two first connecting columns 24 far away from the angle adjusting motor 9 is connected with a plastering mechanism 3, one side of the upright post 1 is provided with an electric sliding rod 2, the electric sliding rod 2 comprises a sliding rod shell 26, a third sliding groove 27 is formed in one side of the sliding rod shell 26, a sliding block in the sliding rod shell 26 is connected with a second connecting column 28 penetrating through the third sliding groove 27, a second chute 25 is formed in the side wall of the column 22, which is close to one side of the slide bar shell 26, the second connecting column 28 is connected to the connecting frame 29 through the second chute 25, one side of the electric slide bar 2 is provided with an ash storage mechanism 5, the ash storage mechanism 5 comprises a cylindrical ash storage cylinder 16, the bottom of the ash storage cylinder 16 is connected with a base 18, a second motor column 19 is mounted in the middle of the base 18, a driving motor is mounted in the second motor column 19, an output shaft of the driving motor penetrates through the bottom plate 17 to be connected with a rotating column 20, stirring paddles 21 are mounted on the outer wall of the rotating column 20, one side of the ash storage cylinder 16 is connected with a conveying pipe 7, one end of the conveying pipe 7, which is close to the ash storage cylinder 16, is provided with an air pump 6, one end of the conveying pipe 7 far away from the ash storage cylinder 16 is connected to the side wall of the plastering mechanism 3. A mortar receiving disc 4 is arranged below the plastering mechanism 3, and the width of the mortar receiving disc 4 is larger than that of the plastering mechanism 3.
Example 7:
as shown in fig. 1-4, as a further optimization of the above embodiment, the plastering machine for construction comprises two upright posts 1, wherein the two upright posts 1 comprise a column body 22, a first sliding groove 23 is formed in the middle of the column body 22, a first motor column 8 is installed on the outer side of the column body 22, an angle adjusting motor 9 is installed in the first motor column 8, an output shaft of the angle adjusting motor 9 is connected with a first connecting column 24, a connecting frame 29 is installed on the outer wall of the first connecting column 24, one end of the two first connecting columns 24 far away from the angle adjusting motor 9 is connected with a plastering mechanism 3, one side of the upright post 1 is provided with an electric sliding rod 2, the electric sliding rod 2 comprises a sliding rod shell 26, a third sliding groove 27 is formed in one side of the sliding rod shell 26, a sliding block in the sliding rod shell 26 is connected with a second connecting column 28 penetrating through the third sliding groove 27, a second chute 25 is formed in the side wall of the column 22, which is close to one side of the slide bar shell 26, the second connecting column 28 is connected to the connecting frame 29 through the second chute 25, one side of the electric slide bar 2 is provided with an ash storage mechanism 5, the ash storage mechanism 5 comprises a cylindrical ash storage cylinder 16, the bottom of the ash storage cylinder 16 is connected with a base 18, a second motor column 19 is mounted in the middle of the base 18, a driving motor is mounted in the second motor column 19, an output shaft of the driving motor penetrates through the bottom plate 17 to be connected with a rotating column 20, stirring paddles 21 are mounted on the outer wall of the rotating column 20, one side of the ash storage cylinder 16 is connected with a conveying pipe 7, one end of the conveying pipe 7, which is close to the ash storage cylinder 16, is provided with an air pump 6, one end of the conveying pipe 7 far away from the ash storage cylinder 16 is connected to the side wall of the plastering mechanism 3. The tops of the two upright posts 1 are connected with a connecting beam 30.
Example 8:
as shown in fig. 1-4, as a further optimization of the above embodiment, the plastering machine for construction comprises two upright posts 1, wherein the two upright posts 1 comprise a column body 22, a first sliding groove 23 is formed in the middle of the column body 22, a first motor column 8 is installed on the outer side of the column body 22, an angle adjusting motor 9 is installed in the first motor column 8, an output shaft of the angle adjusting motor 9 is connected with a first connecting column 24, a connecting frame 29 is installed on the outer wall of the first connecting column 24, one end of the two first connecting columns 24 far away from the angle adjusting motor 9 is connected with a plastering mechanism 3, one side of the upright post 1 is provided with an electric sliding rod 2, the electric sliding rod 2 comprises a sliding rod shell 26, a third sliding groove 27 is formed in one side of the sliding rod shell 26, a sliding block in the sliding rod shell 26 is connected with a second connecting column 28 penetrating through the third sliding groove 27, a second chute 25 is formed in the side wall of the column 22, which is close to one side of the slide bar shell 26, the second connecting column 28 is connected to the connecting frame 29 through the second chute 25, one side of the electric slide bar 2 is provided with an ash storage mechanism 5, the ash storage mechanism 5 comprises a cylindrical ash storage cylinder 16, the bottom of the ash storage cylinder 16 is connected with a base 18, a second motor column 19 is mounted in the middle of the base 18, a driving motor is mounted in the second motor column 19, an output shaft of the driving motor penetrates through the bottom plate 17 to be connected with a rotating column 20, stirring paddles 21 are mounted on the outer wall of the rotating column 20, one side of the ash storage cylinder 16 is connected with a conveying pipe 7, one end of the conveying pipe 7, which is close to the ash storage cylinder 16, is provided with an air pump 6, one end of the conveying pipe 7 far away from the ash storage cylinder 16 is connected to the side wall of the plastering mechanism 3. The feed conveyor pipe 7 is provided as a telescopic threaded hose.
The working principle and the using flow of the utility model are as follows: after the device is installed and combined at the required position, mixed ash materials are injected into the ash storage cylinder 16, a driving motor in the second motor column 19 is started, continuous mixing stirring is carried out on the ash materials in the ash storage cylinder 16, precipitation and solidification of the ash materials caused by long-time standing are avoided, the ash materials in the ash storage cylinder 16 are conveyed into the plastering mechanism 3 through the conveying pipe 7 by starting the air pump 6, the plastering mechanism 3 is adjusted to a proper inclination angle by simultaneously rotating the two angle modulation motors 9 installed on the side walls of the two upright posts 1, the motor of the electric slide rod 2 is started again, the two angle modulation motors 9 are driven to do up-and-down sliding reciprocating motion by the electric slide blocks of the electric slide rod 2, the ash materials in the plastering mechanism 3 flow to the wall surface through the discharge hole 12 and are smoothed by the scraping blade 13, the scraped surface under the scraping blade 13 is kept smooth for the second time, the scraped ash materials fall into the ash receiving tray 4 at the bottom of the plastering mechanism 3, the ash materials are easy to collect, and after the work is finished, the ash materials are required to be collected in the ash receiving tray 4 and then are returned to the ash storage cylinder 16 to the position after the work is finished, and the ash materials are required to be continuously moved to the plastering device.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
The principles and embodiments of the present utility model have been described herein with reference to specific examples, the description of which is intended only to facilitate an understanding of the method of the present utility model and its core ideas. The foregoing is merely illustrative of the preferred embodiments of the utility model, and it is noted that there is virtually no limit to the specific structure which may be imposed by those skilled in the art without departing from the spirit of the utility model, and that modifications, adaptations, or variations of the foregoing features may be combined in a suitable manner; such modifications, variations and combinations, or the direct application of the inventive concepts and aspects to other applications without modification, are contemplated as falling within the scope of the present utility model.

Claims (8)

1. Plastering machine for construction, its characterized in that: including two stand (1), two stand (1) all include cylinder (22), first spout (23) have been seted up in the middle of cylinder (22), first motor post (8) are installed in the outside of cylinder (22), install angle modulation motor (9) in first motor post (8), the output shaft of angle modulation motor (9) has first spliced pole (24), connecting frame (29) are installed to the outer wall of first spliced pole (24), two first spliced pole (24) keep away from one end of angle modulation motor (9) is connected with plastering machine (3), one side of stand (1) is provided with electronic slide bar (2), electronic slide bar (2) are including slide bar casing (26), third spout (27) have been seted up to one side of slide bar casing (26), the slider in slide bar casing (26) is connected with and passes second spliced pole (28) of third spout (27), second spout (25) have been seted up on the lateral wall that cylinder (22) is close to slide bar casing (26) one side, second spout (25) are in connection frame (25) are in one side of slide bar casing (25), the ash storage mechanism (5) comprises a cylindrical ash storage cylinder (16), a base (18) is connected to the bottom of the ash storage cylinder (16), a second motor column (19) is installed in the middle of the base (18), a driving motor is installed in the second motor column (19), an output shaft of the driving motor penetrates through a bottom plate (17) to be connected with a rotating column (20), stirring paddles (21) are installed on the outer wall of the rotating column (20), a conveying pipe (7) is connected to one side of the ash storage cylinder (16), an air pump (6) is installed at one end, close to the ash storage cylinder (16), of the conveying pipe (7), and one end, far away from the ash storage cylinder (16), of the conveying pipe (7) is connected to the side wall of the plastering mechanism (3).
2. The plastering machine for construction according to claim 1, wherein: the bottoms of the two upright posts (1) are provided with moving wheels (15).
3. The plastering machine for construction according to claim 1, wherein: the plastering mechanism (3) comprises a lime groove (11) with an inverted trapezoid cross section, a top cover (10) is movably connected to the top of the lime groove (11), a discharge hole (12) is reserved between the top cover (10) and the top of the lime groove (11), and a scraping plate (13) is obliquely arranged at the upper end of the side wall of the lime groove (11).
4. A plastering machine for construction according to claim 3, wherein: a rubber scraping blade (14) is arranged below the scraping blade (13), and the distance between the scraping blade (13) and a plastered wall is larger than the distance between the scraping blade (14) and the plastered wall.
5. The plastering machine for construction according to claim 4, wherein: the wiper blade (14) is provided as a wiper blade (14) having a triangular cross section.
6. The plastering machine for construction according to claim 1, wherein: the lower part of the plastering mechanism (3) is provided with a plaster receiving disc (4), and the width of the plaster receiving disc (4) is larger than that of the plastering mechanism (3).
7. The plastering machine for construction according to claim 1, wherein: the tops of the two upright posts (1) are connected with connecting beams (30).
8. The plastering machine for construction according to claim 1, wherein: the conveying pipe (7) is arranged as a telescopic threaded hose.
CN202223060270.0U 2022-11-18 2022-11-18 Plastering machine for building construction Active CN219219686U (en)

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