CN210700883U - Glue applying device for LOW-E glass production - Google Patents

Glue applying device for LOW-E glass production Download PDF

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Publication number
CN210700883U
CN210700883U CN201921090123.3U CN201921090123U CN210700883U CN 210700883 U CN210700883 U CN 210700883U CN 201921090123 U CN201921090123 U CN 201921090123U CN 210700883 U CN210700883 U CN 210700883U
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China
Prior art keywords
fixed
guide rail
glass
low
base
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CN201921090123.3U
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Chinese (zh)
Inventor
张志龙
魏发献
李倩倩
邹建元
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Qinghai Yubo Energy Saving Technology Co ltd
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Qinghai Beibao Energy Saving Technology Co Ltd
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Abstract

The utility model discloses a mucilage binding is beaten in production of LOW-E glass relates to LOW-E glass production technical field. The utility model discloses a base, base fixed surface have the Y axle guide rail, slide on the Y axle guide rail and be equipped with the X axle guide rail, slide on the X axle guide rail and be equipped with the lower support arm, lower support arm one end is fixed with the pillar, and the pillar top is fixed with the support arm, and lower support arm one end is rotated and is connected with a supporting bench, goes up support arm one end and rotates and be connected with the pivot, and the pivot bottom mounting has the fixed plate, and fixed plate fixed surface has anchor clamps. The utility model discloses but LOW-E glass production is beaten mucilage binding and is put but has horizontal migration and a pivoted brace table structure, and is convenient to the glass work piece clamping, can cooperate the spacing proximity sensor of usefulness to accomplish automatic change limit in production, has improved glass and has beaten gluey efficiency, has reduced hand labor's use, has reduced the cost of labor.

Description

Glue applying device for LOW-E glass production
Technical Field
The utility model belongs to the technical field of LOW-E glass production, especially, relate to a mucilage binding is beaten in LOW-E glass production.
Background
The LOW-E glass is also called LOW-emissivity glass, and is a film system product formed by plating a plurality of layers of metal or other compounds on the surface of the glass. The coating layer has the characteristics of high visible light transmission and high mid-far infrared ray reflection, so that the coating layer has excellent heat insulation effect and good light transmission compared with common glass and traditional coating glass for buildings. The LOW-E glass is often made into hollow glass, the hollow glass is formed by separating two or three pieces of glass by effective sealing material sealing and spacing material, and a drying agent for absorbing moisture is arranged between the two adjacent pieces of glass, so that a dry air layer is formed in the hollow glass for a long time, and moisture and dust do not exist; the hollow glass has better heat insulation and sound insulation performance, and is used as a window for buildings, refrigerated cabinets, railway vehicles and the like.
When processing cavity glass, need beat to glue cavity glass's interval, at present, current glass hits the machine of gluing generally once can only accomplish glass's unilateral and hits the glue, therefore glass need constantly change the limit, and the workstation of equipment of gluing does not have automatic change limit function now, generally needs artifical manual change limit, has not only increased the hand labor volume, and production efficiency is difficult to improve moreover.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a mucilage binding is beaten in LOW-E glass production has solved the workstation of current glass and has beaten the machine of glue and has not possessed automatic change limit function, has not only increased the hand labor volume, and production efficiency is difficult to the problem that improves moreover.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to a mucilage binding is beaten in LOW-E glass production, the on-line screen storage device comprises a base, base fixed surface has the Y axle guide rail, it is equipped with the X axle guide rail to slide on the Y axle guide rail, it is equipped with the lower support arm to slide on the X axle guide rail, lower support arm one end is fixed with the pillar, the pillar top is fixed with the upper support arm, lower support arm one end is rotated and is connected with a supporting bench, upper support arm one end is rotated and is connected with the pivot, the pivot bottom mounting has the fixed plate, fixed plate surface is fixed with anchor clamps, the pivot is on same axis with a supporting bench's rotation center, the base upper surface is fixed with the X axle proximity sensor through the bracing piece, the base upper surface is fixed with Y axle proximity sensor through the.
Further, the clamp comprises a pneumatic push rod, and a pressure plate is fixed at the bottom end of the pneumatic push rod.
Furthermore, the Y-axis guide rail and the X-axis guide rail respectively comprise a slide rail, a slide block, a motor and a screw rod mechanism.
Furthermore, a driving motor is fixed inside one end of the lower supporting arm, and one end of an output shaft of the driving motor is fixedly connected with the supporting table.
Further, an electric cabinet is fixed on the upper surface of the base.
Further, the number of the clamps is four, and the clamps are uniformly distributed on the surface of the fixing plate.
The utility model discloses following beneficial effect has:
the utility model discloses but LOW-E glass production is beaten mucilage binding and is put but has horizontal migration and a pivoted brace table structure, and is convenient to the glass work piece clamping, can cooperate the spacing proximity sensor of usefulness to accomplish automatic change limit in production, has improved glass and has beaten gluey efficiency, has reduced hand labor's use, has reduced the cost of labor.
Of course, it is not necessary for any particular product to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic view of a three-dimensional structure of a glue applying device for LOW-E glass production of the present invention;
FIG. 2 is a front view of the structure of the present invention;
fig. 3 is a cross-sectional view of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
the automatic gluing machine comprises a base 1, a 2-Y-axis guide rail, a 3-X-axis guide rail, a 4-lower support arm, a 5-strut, a 6-upper support arm, a 7-support table, an 8-rotating shaft, a 9-fixing plate, a 10-X-axis proximity sensor, a 11-Y-axis proximity sensor, a 12-pneumatic push rod, a 13-pressure plate, a 14-driving motor, a 15-electric cabinet, a 16-gluing machine head and a 17-gluing machine slide rail.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
Referring to fig. 1-3, the utility model relates to a glue applying device for LOW-E glass production, which comprises a base 1, wherein a Y-axis guide rail 2 is fixed on the surface of the base 1, an X-axis guide rail 3 is arranged on the Y-axis guide rail 2 in a sliding manner, a lower supporting arm 4 is arranged on the X-axis guide rail 3 in a sliding manner, the Y-axis guide rail 2 and the X-axis guide rail 3 both comprise a sliding rail, a sliding block, a motor and a screw rod mechanism, and the output end of the motor can slide on the sliding rail in a reciprocating manner by driving the sliding block through. The slide rail of X axle guide rail 3 is fixed on the slider of Y axle guide rail 2, and lower support arm 4 is fixed on the slider of X axle guide rail 3, and lower support arm 4 one end is fixed with pillar 5, and pillar 5 top is fixed with upper support arm 6.
One end of the lower supporting arm 4 is rotatably connected with a supporting table 7, a driving motor 14 is fixed inside one end of the lower supporting arm 4, and one end of an output shaft of the driving motor 14 is fixedly connected with the supporting table 7. Go up 6 one ends of support arm and rotate and be connected with pivot 8, pivot 8 is on same axis with the rotation center of brace table 7, 8 bottom mounting in pivot have fixed plate 9, fixed plate 9 fixed surface has anchor clamps, anchor clamps include pneumatic push rod 12, pneumatic push rod 12 bottom mounting has pressure disk 13, the quantity of anchor clamps is four, and equally divide and distribute in fixed plate 9 surface, pneumatic push rod 12 connects air compressor and presses the gaseous conveying system in area, and through the control action of electric control valve, pneumatic valve is connected with electric cabinet 15 and is controlled. An X-axis proximity sensor 10 is fixed on the upper surface of the base 1 through a support rod, and a Y-axis proximity sensor 11 is fixed on the upper surface of the base 1 through a support rod. The upper surface of the base 1 is fixed with an electric cabinet 15, the X-axis proximity sensor 10 and the Y-axis proximity sensor 11 are connected with the electric cabinet 15 and the PLC, and when the supporting platform 7 drives a workpiece to reach the detection positions of the X-axis proximity sensor 10 and the Y-axis proximity sensor 11, the supporting platform 7 stops moving.
As shown in fig. 1-3, a glass gluing machine is arranged at one end of a base 1, the glass gluing machine comprises a gluing machine head 16 and a gluing machine slide rail 17, the gluing machine head 16 can horizontally slide along the gluing machine slide rail 17 to finish single-side gluing work of glass, when LOW-E glass is glued, firstly, the combined hollow glass is placed on a supporting table 7, a pneumatic push rod 12 is started to push a pressing disc 13 downwards to clamp and fix the glass on the supporting table 7, then the supporting table 7 is driven to move through a Y-axis guide rail 2 and an X-axis guide rail 3, a workpiece is conveyed to detection positions (namely a processing origin) of an X-axis proximity sensor 10 and a Y-axis proximity sensor 11, and at the moment, the glass gluing machine is started to finish one-side gluing work; then, the support table 7 is driven to move through the Y-axis guide rail 2 and the X-axis guide rail 3, the driving motor 14 is started to enable the support table 7 to rotate 90 degrees, the edge changing of the workpiece is completed, the workpiece is conveyed to the processing original point, and then the glass gluing machine is started to complete the second edge gluing operation; then repeating the edge changing operation, and finishing the gluing of the four edges in sequence; and after the gluing is finished, starting the pneumatic push rod 12 to pull up the pressing disc 13, and taking down the workpiece, wherein the subsequent gluing processing steps of the LOW-E glass workpiece are the same as the steps.
In the description herein, references to the description of "one embodiment," "an example," "a specific example," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. The preferred embodiments are not intended to be exhaustive or to limit the invention to the precise embodiments disclosed. Obviously, many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, to thereby enable others skilled in the art to best understand the invention for and utilize the invention. The present invention is limited only by the claims and their full scope and equivalents.

Claims (6)

1. The utility model provides a mucilage binding is beaten in production of LOW-E glass, includes base (1), its characterized in that: a Y-axis guide rail (2) is fixed on the surface of the base (1), an X-axis guide rail (3) is arranged on the Y-axis guide rail (2) in a sliding manner, a lower supporting arm (4) is arranged on the X-axis guide rail (3) in a sliding way, one end of the lower supporting arm (4) is fixed with a supporting column (5), an upper supporting arm (6) is fixed at the top end of the strut (5), one end of the lower supporting arm (4) is rotatably connected with a supporting platform (7), one end of the upper supporting arm (6) is rotatably connected with a rotating shaft (8), a fixing plate (9) is fixed at the bottom end of the rotating shaft (8), the surface of the fixed plate (9) is fixed with a clamp, the rotating center of the rotating shaft (8) and the supporting platform (7) are on the same axial line, an X-axis proximity sensor (10) is fixed on the upper surface of the base (1) through a support rod, and a Y-axis proximity sensor (11) is fixed on the upper surface of the base (1) through a support rod.
2. A LOW-E glass production gluing device according to claim 1, wherein the clamp comprises a pneumatic push rod (12), and a pressure plate (13) is fixed at the bottom end of the pneumatic push rod (12).
3. A LOW-E glass production gluing device according to claim 1, characterized in that the Y-axis guide rail (2) and the X-axis guide rail (3) comprise a slide rail, a slide block, a motor and a screw mechanism.
4. A LOW-E glass production gluing device according to claim 1, wherein a driving motor (14) is fixed inside one end of the lower supporting arm (4), and one end of an output shaft of the driving motor (14) is fixedly connected with the supporting table (7).
5. A LOW-E glass production gluing device according to claim 1, characterized in that an electric cabinet (15) is fixed on the upper surface of the base (1).
6. A LOW-E glass production gluing device according to claim 1, wherein the number of the clamps is four, and the clamps are distributed on the surface of the fixing plate (9) uniformly.
CN201921090123.3U 2019-07-12 2019-07-12 Glue applying device for LOW-E glass production Active CN210700883U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921090123.3U CN210700883U (en) 2019-07-12 2019-07-12 Glue applying device for LOW-E glass production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921090123.3U CN210700883U (en) 2019-07-12 2019-07-12 Glue applying device for LOW-E glass production

Publications (1)

Publication Number Publication Date
CN210700883U true CN210700883U (en) 2020-06-09

Family

ID=70964198

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921090123.3U Active CN210700883U (en) 2019-07-12 2019-07-12 Glue applying device for LOW-E glass production

Country Status (1)

Country Link
CN (1) CN210700883U (en)

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GR01 Patent grant
GR01 Patent grant
CP01 Change in the name or title of a patent holder

Address after: No. 10, Electromechanical 2nd Road, Biotechnology Industrial Park, Chengbei District, Xining City, Qinghai Province 810000

Patentee after: Qinghai Yubo Energy Saving Technology Co.,Ltd.

Address before: No. 10, Electromechanical 2nd Road, Biotechnology Industrial Park, Chengbei District, Xining City, Qinghai Province 810000

Patentee before: Qinghai Beibao Energy Saving Technology Co.,Ltd.

CP01 Change in the name or title of a patent holder