CN216880145U - Skirting line glass gluing device for building engineering - Google Patents

Skirting line glass gluing device for building engineering Download PDF

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Publication number
CN216880145U
CN216880145U CN202220238379.XU CN202220238379U CN216880145U CN 216880145 U CN216880145 U CN 216880145U CN 202220238379 U CN202220238379 U CN 202220238379U CN 216880145 U CN216880145 U CN 216880145U
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gear
rotating
rack
drives
column
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CN202220238379.XU
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Chinese (zh)
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陈凯
袁德星
王帅
岳志远
姚亭亭
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China MCC20 Group Corp Ltd
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China MCC20 Group Corp Ltd
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Abstract

The utility model provides a glass mucilage binding is beaten to skirting line for building engineering, is including removing base, drive unit, extrusion unit, its characterized in that: the movable base comprises a bottom plate, a rotating shaft and a lifting frame, the driving unit comprises a glue gun frame and a rotating column, the extrusion unit comprises a first gear, a second gear meshed and rotated with the first gear is arranged at the rear end of the first gear, the first gear is rotatably installed on the driving device, and an incomplete gear is coaxially arranged at the rear end of the second gear far away from the first gear. The skirting line glass cement beating device for the building engineering has the advantages that the rotating column, the rotating belt and the driven column are arranged, when the device is lifted in the working process, the driving of the extrusion buckle cannot be stopped, the problem of cement breaking is solved, the phenomenon of missed beating is solved through the arranged rotating wheel, the transverse belt and the rotating shaft, the construction speed is high, and the engineering cost is reduced.

Description

Skirting line glass gluing device for building engineering
Technical Field
The utility model relates to a glue applying device, in particular to a skirting line glass cement applying device for constructional engineering.
Background
When the skirting line is installed at present, the skirting line and the wall surface are not flat due to unevenness of the wall surface, and a large gap is formed between the skirting line and the wall surface, and the gap is usually processed by manually applying glass cement to the gap and then is evenly smeared.
The patent with application number 201810507602.4 provides a spout gluey fast, spouts glass and glues even skirting line glass mucilage binding for building engineering and beats device. The technical scheme comprises a bottom plate, wheels, guide wheels, an adjusting device and a gluing device; the bottom plate bottom is installed the wheel, and the leading wheel is installed to the bottom plate left surface, and bottom plate top left side is equipped with adjusting device, is equipped with on the adjusting device and beats mucilage binding and put. According to the skirting line glue spraying device, glue can be sprayed to skirting lines of different heights through the adjusting device, an operator can push the device to move more conveniently through the action of the pushing hands, glue can be sprayed to the skirting lines better, the effects of high glue spraying speed and uniform glass glue spraying are achieved, although the skirting line glue spraying device for the building engineering is also disclosed, the device cannot be lifted and glued in real time during working, the construction speed is low, the glass glue is unevenly sprayed, and the glass glue is wasted.
Known skirting line glazing devices therefore suffer from the various inconveniences and problems described above.
Disclosure of Invention
The utility model aims to provide a safe and reliable skirting line glass cement coating device for building engineering.
In order to achieve the purpose, the technical solution of the utility model is as follows:
the utility model provides a glass mucilage binding is beaten to skirting line for building engineering, is including removing base, drive unit, extrusion unit, its characterized in that:
the movable base comprises a bottom plate, a rotating shaft and a lifting frame, wherein a wiping plate for smoothing glass cement is arranged on the upper surface of the bottom plate, rotating wheels are rotatably arranged at four corners below the bottom plate, the rotating shaft is arranged between the rotating wheels at one side, a transverse belt is arranged on each rotating wheel, one end of each transverse belt is connected with each rotating wheel, the other end of each transverse belt is connected with each rotating shaft, a motor is arranged in each rotating wheel, each rotating wheel drives each rotating shaft to move through each transverse belt when the rotating wheels rotate, and the lifting frame is vertically arranged on the upper surface of one side of the bottom plate;
the driving unit comprises a glue gun rack and a rotating column, the glue gun rack is connected with the rotating shaft and driven by the rotating shaft, the rotating column is arranged in a quadrilateral transmission mode through a rotating belt, the rotating column drives a driven column through the rotating belt, the upper end of the driven column is provided with the glue gun rack, a glue gun extrusion buckle is arranged below the glue gun rack, the rotating shaft drives the rotating column to rotate, the rotating column drives the driven column to rotate through the rotating belt, the rotating column is arranged in a quadrilateral transmission mode through the rotating belt, and the driven column is driven to transmit when the device is lifted;
the extruding unit comprises a first gear, a second gear which is meshed with the first gear to rotate is arranged at the rear end of the first gear, the first gear is rotatably installed on a driving device, an incomplete gear is coaxially arranged at the rear end, away from the first gear, of the second gear, a driving gear which is meshed with the incomplete gear is arranged at the upper end of the incomplete gear, a rack spring is arranged at the rear end of the driving gear, the driving gear and the incomplete gear are rotatably installed inside the gun frame, an extruding plate is arranged at the upper end of the driving gear, the first gear drives the second gear and the incomplete gear to rotate simultaneously, the incomplete gear intermittently drives the driving gear to rotate, the driving gear drives the extruding plate to move, and when the incomplete gear is not meshed with the driving gear, the rack spring drives the driving gear to rotate, so that the driving gear drives the extruding plate to move; the extrusion unit still includes the rack, is provided with lifting gear on the rack, has the motor on the lifting gear, and lifting gear drives the rack and removes, rack slidable mounting is in the crane, and lifting gear fixed mounting is at the crane side, and the gluey stack of arms is installed to the rack upper end, and the rack drives gluey stack of arms and removes when lifting gear drives the rack and removes.
The skirting line glass cement applying device for the building engineering can be further realized by adopting the following technical measures.
According to the skirting line glass cement beating device for the building engineering, the extrusion rod is arranged at the rear end of the glue gun frame, and the extrusion rod is driven to move to extrude glass cement when the glue gun extrusion buckle moves.
After the technical scheme is adopted, the skirting line glass cement coating device for the building engineering has the following advantages:
1. through the arranged rotating column, the rotating belt and the driven column, when the device is lifted in the working process, the driving of the extrusion buckle cannot be stopped, so that the glue beating work is not stopped, and the problem that glue on glass is broken when the glue beating work cannot be carried out while the device is lifted in the prior art is solved;
2. by the aid of the rotating wheel, the transverse belt and the rotating shaft, glue is applied to the device when the device starts to move, the empty window period of the device is reduced, real-time glue application is achieved, and the problems that glue is broken and leaked in application due to the fact that glue application can be performed only after the device moves for a section in the prior art are solved;
3. the construction speed is high, and the engineering cost is reduced.
Drawings
FIG. 1 is a schematic structural view of a glass cement applying apparatus according to an embodiment of the present invention;
FIG. 2 is a schematic diagram of a mobile base according to an embodiment of the present invention;
FIG. 3 is a schematic view of another structure of the mobile base according to the embodiment of the present invention;
FIG. 4 is a schematic structural diagram of a driving device according to an embodiment of the present invention;
fig. 5 is a schematic structural diagram of an extrusion apparatus according to an embodiment of the present invention.
Detailed Description
The present invention will be further described with reference to the following examples and the accompanying drawings.
Example 1
The glass cement beating device comprises a movable base 1, wherein a driving device 2 for driving a rubber gun to beat rubber is arranged on the movable base 1, and an extruding device 3 for extruding the rubber gun to beat rubber is arranged behind the driving device 2.
Referring to fig. 1, fig. 1 is a schematic structural diagram of a glass cement applying device according to an embodiment of the present invention. As shown in the figure, remove base 1 and be a rectangle flat board, dull and stereotyped center is equipped with the square hole that links to each other from top to bottom, and surface mounting has carries out extruded drive arrangement 2 to extrusion device 3 on dull and stereotyped one side, installs behind drive arrangement 2 to be used for the extrusion to glue the rifle and beat the extrusion device 3 that glues.
Referring to fig. 2 and 3, the movable base plate 1 includes a wiping plate seat, the wiping plate seat is connected with a wiping plate 101, a wiping plate brush head for smoothing glass cement is arranged at the front end of the wiping plate 101, rotating wheels 102 are rotatably arranged below four corners of the base plate 101, rotating shafts 104 are connected with the rotating shafts 104, transverse belts 103 are arranged on the rotating wheels 102, one ends of the transverse belts 103 are connected with the rotating wheels 102, the other ends of the transverse belts 103 are connected with the rotating shafts 104, lifting frames 105 are arranged at the upper ends of the base plate 101, motors are arranged in the rotating wheels 102, and the rotating wheels 102 drive the rotating shafts 104 to rotate through the transverse belts 103 when the rotating wheels 102 rotate.
Referring to fig. 4, the driving device 2 includes a rotating column 201, the rotating column 201 is set to a quadrilateral transmission mode through a rotating belt 202, the rotating column 201 drives a driven column 203 through the rotating belt 202, a glue gun rack 204 is arranged at the upper end of the driven column 203, the glue gun rack 204 is fixedly mounted at the upper end of a rack 307, a glue gun extruding buckle 205 is arranged below the glue gun rack 204, a rotating shaft 104 drives the rotating column 201 to rotate, and the rotating column 201 drives the driven column 203 to rotate through the rotating belt 202.
Referring to fig. 5, the extruding device 3 includes a first gear 301, a second gear 302 engaged with the first gear 301 and rotating is disposed at the rear end of the first gear 301, the first gear 301 is rotatably mounted on the driven column 203, an incomplete gear 303 is coaxially disposed at the rear end of the second gear 302 away from the first gear 301, a driving gear 304 engaged with the incomplete gear 303 is disposed at the upper end of the incomplete gear 303, a rack spring 305 is disposed at the rear end of the driving gear 304, an extruding plate 306 is disposed at the upper end of the driving gear 304, a rack 307 is slidably mounted in the lifting frame 105, a lifting gear 308 engaged with the rack 307 is disposed at the upper end of the rack 307, the lifting gear 308 is fixedly mounted at the side of the lifting frame 105, a motor is disposed on the lifting gear 308, a gun frame 204 is mounted at the upper end of the rack 307, the rack 307 is driven by the lifting gear 308 to move the gun frame 204, the second gear 302 and the incomplete gear 303 are driven by the first gear 301 to rotate simultaneously, the incomplete gear 303 intermittently drives the driving gear 304, the driving gear 304 drives the extrusion plate 306 to move, when the incomplete gear 303 is not meshed with the driving gear 304, the rack spring 305 drives the driving gear 304 to rotate, and the driving gear 304 drives the extrusion plate 306 to move.
The utility model relates to a working principle of a skirting line glass cement coating device for constructional engineering, which comprises the following steps: when the device works, glue is placed in the glue gun frame, the device is placed at the initial position where the glue needs to be applied, the rotating wheel is opened, the rotating shaft is driven to rotate by the transverse belt when the rotating wheel rotates, the rotating shaft drives the rotating column to rotate, the rotating belt is driven to rotate simultaneously when the rotating column rotates, the rotating belt drives the driven column to rotate, the driven column drives the first gear at the rear end to rotate, the second gear and the incomplete gear are driven to rotate simultaneously when the first gear rotates, the incomplete gear intermittently drives the driving gear to rotate, the extrusion plate moves to drive the glue gun extrusion buckle to extrude when the incomplete gear is meshed with the driving gear to rotate, and the rack spring is stressed when the incomplete gear is not meshed with the driving gear, the driving gear is driven to rotate when the rack spring is stressed, the driving gear drives the extrusion plate to move, the glue gun extrusion buckle is loosened, and when the device needs to be lifted, the lifting gear drives the rack to move in the lifting frame, and the rack drives the glue gun frame to lift.
The skirting line glass cement polishing device for the building engineering, provided by the utility model, has substantial characteristics and obvious technical progress, and aims at the defects of the prior art, the function of polishing glue in real time when the device moves is provided, and the polished glass cement is leveled, so that the problems that a large amount of bubbles appear in the polished glass cement and the glass cement cannot be quickly leveled because the device in the prior art performs the gluing operation after working for a period of time are solved.
The above embodiments are provided only for illustrating the present invention and not for limiting the present invention, and those skilled in the art can make various changes or modifications without departing from the spirit and scope of the present invention. Accordingly, all equivalents are intended to fall within the scope of the utility model, which is defined in the claims.

Claims (2)

1. The utility model provides a glass mucilage binding is beaten to skirting line for building engineering, is including removing base, drive unit, extrusion unit, its characterized in that:
the movable base comprises a bottom plate, a rotating shaft and a lifting frame, wherein a wiping plate for smoothing glass cement is arranged on the upper surface of the bottom plate, rotating wheels are rotatably arranged at four corners below the bottom plate, the rotating shaft is arranged between the rotating wheels at one side, a transverse belt is arranged on each rotating wheel, one end of each transverse belt is connected with each rotating wheel, the other end of each transverse belt is connected with each rotating shaft, a motor is arranged in each rotating wheel, each rotating wheel drives each rotating shaft to move through each transverse belt when the rotating wheels rotate, and the lifting frame is vertically arranged on the upper surface of one side of the bottom plate;
the driving unit comprises a glue gun rack and a rotating column, the glue gun rack is connected with the rotating shaft and driven by the rotating shaft, the rotating column is arranged in a quadrilateral transmission mode through a rotating belt, the rotating column drives a driven column through the rotating belt, the upper end of the driven column is provided with the glue gun rack, a glue gun extrusion buckle is arranged below the glue gun rack, the rotating shaft drives the rotating column to rotate, the rotating column drives the driven column to rotate through the rotating belt, the rotating column is arranged in a quadrilateral transmission mode through the rotating belt, and the driven column is driven to transmit when the device is lifted;
the extruding unit comprises a first gear, a second gear which is meshed with the first gear and rotates is arranged at the rear end of the first gear, the first gear is rotatably installed on a driving device, an incomplete gear is coaxially arranged at the rear end, far away from the first gear, of the second gear, a driving gear which is meshed with the incomplete gear is arranged at the upper end of the incomplete gear, a rack spring is arranged at the rear end of the driving gear, the driving gear and the incomplete gear are rotatably installed inside the gun frame, an extruding plate is arranged at the upper end of the driving gear, the first gear drives the second gear and the incomplete gear to rotate simultaneously, the incomplete gear intermittently drives the driving gear to rotate, the driving gear drives the extruding plate to move, and when the incomplete gear is not meshed with the driving gear, the rack spring drives the driving gear to rotate, so that the driving gear drives the extruding plate to move; the extrusion unit still includes the rack, is provided with lifting gear on the rack, has the motor on the lifting gear, and lifting gear drives the rack and removes, rack slidable mounting is in the crane, and lifting gear fixed mounting is at the crane side, and the gluey stack of arms is installed to the rack upper end, and the rack drives gluey stack of arms and removes when lifting gear drives the rack and removes.
2. The skirting line glass cement device for building engineering as claimed in claim 1, wherein a squeezing rod is provided at the rear end of said cement gun rack, and the movement of the squeezing buckle of the cement gun drives the squeezing rod to squeeze out the glass cement.
CN202220238379.XU 2022-01-28 2022-01-28 Skirting line glass gluing device for building engineering Active CN216880145U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220238379.XU CN216880145U (en) 2022-01-28 2022-01-28 Skirting line glass gluing device for building engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220238379.XU CN216880145U (en) 2022-01-28 2022-01-28 Skirting line glass gluing device for building engineering

Publications (1)

Publication Number Publication Date
CN216880145U true CN216880145U (en) 2022-07-05

Family

ID=82183805

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220238379.XU Active CN216880145U (en) 2022-01-28 2022-01-28 Skirting line glass gluing device for building engineering

Country Status (1)

Country Link
CN (1) CN216880145U (en)

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