A coated glass film removing device

By installing support frames and motor-driven decoction wheels on both sides of the worktable of the coated glass decoction device, simultaneous decoction removal from both sides of the coated glass can be achieved, solving the problem of low processing efficiency of coated glass in the existing technology and improving processing efficiency and user experience.

CN224295531UActive Publication Date: 2026-05-29SHENYANG AEROSPACE MASCH AUTOMATION CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENYANG AEROSPACE MASCH AUTOMATION CO LTD
Filing Date
2025-07-16
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In existing technologies, the coating can only be removed from one side during the processing of coated glass, resulting in low processing efficiency.

Method used

A coating removal device for coated glass is designed. By installing support frames on both sides of the worktable and driving the coating removal grinding wheels on both sides by motors, the coating can be removed from both sides of the coated glass at the same time. The width and height of the coating removal are adjusted by adjusting and lifting mechanisms, and the glass is stabilized by an air pump.

Benefits of technology

It improves the processing efficiency and user experience of coated glass, and ensures the stability and precision of the glass during the processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of coated glass film removing device, belong to glass film removing technical field;Coated glass film removing device includes: workbench, first support frame, first moving mechanism, first moving platform, adjusting mechanism, adjusting platform, first lifting mechanism, first lifting platform, first motor, first film removing grinding wheel, second support frame, second moving mechanism, second moving platform, second lifting mechanism, second lifting platform, second motor and second film removing grinding wheel;By first support frame and second support frame are respectively installed on the two side walls of workbench, and make first motor and second motor respectively drive first film removing grinding wheel and second film removing grinding wheel rotate, to realize when coated glass is placed on workbench, first film removing grinding wheel and second film removing grinding wheel can simultaneously carry out film removing to both sides of coated glass, to improve the processing efficiency of product.
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Description

Technical Field

[0001] This utility model belongs to the field of glass film removal technology, and specifically relates to a film removal device for coated glass. Background Technology

[0002] In related technologies, during the preparation of coated glass, in order to avoid phenomena such as delamination and bubbles at the edges of insulated glass, it is necessary to remove the coating from the edges of the coated glass.

[0003] Existing technology (authorization announcement number: CN216504040U) discloses a coated glass edging device, including a worktable. Side plates are fixedly connected to the upper surfaces of both ends of the worktable. Multiple sets of fixing mechanisms for limiting the position of the coated glass are provided on the side plates. A slide rail is fixedly installed on the upper surface of the worktable, and a mounting box is slidably fitted on the slide rail. An edging motor is installed inside the mounting box, and the output shaft of the edging motor extends outside the mounting box and is connected to an edging wheel. A reciprocating screw is rotatably connected between the two side plates. This invention, through its fixing mechanisms, can quickly fix the coated glass to be edged, preventing the coated glass from shifting during the edging process, thereby improving the edging accuracy. The reciprocating screw drives the edging wheel to move back and forth along the edge of the coated glass, eliminating the need for manual operation. The periodic expansion and contraction of a compressed air bladder automatically blows away dust and debris from the chip collection groove.

[0004] In this prior art, the coating can only be removed from one side of the coated glass in a single processing step, which reduces the processing efficiency of the product. Utility Model Content

[0005] To address the problem in existing technologies where only one side of the coated glass can be removed in a single processing cycle, thus reducing product processing efficiency, this invention provides a coated glass removal device. This device involves mounting a first support frame and a second support frame on the side walls of a worktable, respectively. A first motor and a second motor drive a first and a second removal grinding wheel to rotate, respectively. This allows the first and second removal grinding wheels to simultaneously remove the coating from both sides of the coated glass when it is placed on the worktable, thereby improving product processing efficiency. The specific technical solution is as follows:

[0006] A coating removal device for coated glass includes: a worktable, a first support frame, a first moving mechanism, a first moving stage, an adjusting mechanism, an adjusting stage, a first lifting mechanism, a first lifting stage, a first motor, a first decoction wheel, a second support frame, a second moving mechanism, a second moving stage, a second lifting mechanism, a second lifting stage, a second motor, and a second decoction wheel. The first support frame is mounted on one side wall of the worktable; the first moving mechanism is mounted on the first support frame; the first moving stage is connected to the first moving mechanism; the adjusting mechanism is mounted on the first moving stage; the adjusting stage is connected to the adjusting mechanism; the first lifting mechanism is mounted on the adjusting stage; the first lifting stage is connected to the first lifting mechanism; the first motor is mounted on the first lifting stage; the first decoction wheel is connected to the first motor; the second support frame is mounted on the other side wall of the worktable; the second moving mechanism is mounted on the second support frame; the second moving stage is connected to the second moving mechanism; the second lifting mechanism is mounted on the second moving stage; the second lifting stage is connected to the second lifting mechanism; the second motor is mounted on the second lifting stage; and the second decoction wheel is connected to the second motor.

[0007] In addition, the coated glass removal device in the above-mentioned technical solution provided by this utility model may also have the following additional technical features:

[0008] In the above technical solution, the first moving mechanism includes: a first rotating shaft, a first sprocket, a first chain, a first slide rail, a first slide block, and a third motor; two first rotating shafts are installed at the bottom of both ends of the first support frame, and the two first rotating shafts are rotatably connected to the first support frame; two first sprockets are respectively fitted on the outside of the two first rotating shafts; a first chain is fitted on the outside of the two first sprockets, and the first chain is connected to the first moving platform; two first slide rails are installed on the first support frame, and the two first slide rails are located below the first moving platform; a first slide groove is provided in the first slide block, at least two first slide blocks are installed at the bottom of the first moving platform, and the first slide rail passes through the first slide groove of the first slide block; the third motor is installed on the side wall of the first support frame, and the third motor is connected to one of the first rotating shafts.

[0009] In the above technical solution, the adjustment mechanism includes: a first mounting base, a first lead screw, a first connecting base, and a fourth motor; the first mounting base is mounted on a first movable platform and is located below the adjustment platform; the outer wall of the first lead screw is provided with a first external thread, the first lead screw passes through the first mounting base, and the first lead screw is rotatably connected to the first mounting base; the first connecting base is provided with a first threaded hole, the first threaded hole is provided with a first internal thread, the first connecting base is connected to the bottom of the adjustment platform, and the first lead screw passes through the first threaded hole of the first connecting base; the fourth motor is mounted on the first movable platform and is connected to the first lead screw; wherein, the first external thread and the first internal thread are adapted to each other.

[0010] In the above technical solution, the first lifting mechanism includes: a first lifting frame, a second mounting base, a second lead screw, a second connecting base, a fifth motor, a first bevel gear, and a second bevel gear; the first lifting frame is mounted on an adjusting platform; the second mounting base is mounted on the side wall of the first lifting frame; a second external thread is provided on the outer wall of the second lead screw, the second lead screw passes through the second mounting base, and the second lead screw is rotatably connected to the second mounting base; a second threaded hole is provided in the second connecting base, and a second internal thread is provided in the second threaded hole, the second connecting base is connected to the first lifting platform, and the second lead screw passes through the second threaded hole of the second connecting base; the fifth motor is mounted on the adjusting platform; the first bevel gear is connected to the fifth motor; the second bevel gear is connected to the second lead screw, and the second bevel gear meshes with the first bevel gearbox; wherein, the second external thread and the second internal thread are adapted to each other.

[0011] In the above technical solution, the first lifting mechanism further includes: a second slide rail and a second slide block; the two second slide rails are installed on the side wall of the first lifting frame and are located on both sides of the second lead screw; the second slide block is provided with a second slide groove, at least two second slide blocks are connected to the first lifting platform, and the second slide rail passes through the second slide groove of the second slide block.

[0012] In the above technical solution, the second moving mechanism includes: a second rotating shaft, a second sprocket, a second chain, a third slide rail, a third slide block, and a sixth motor; two second rotating shafts are installed at the bottom of both ends of the second support frame, and the two second rotating shafts are rotatably connected to the second support frame; two second sprockets are respectively fitted on the outside of the two second rotating shafts; a second chain is fitted on the outside of the two second sprockets, and the second chain is connected to the second moving platform; two third slide rails are installed on the second support frame, and the two third slide rails are located below the second moving platform; a third slide groove is provided in the third slide block, at least two third slide blocks are installed at the bottom of the second moving platform, and the third slide rail passes through the third slide groove of the third slide block; the sixth motor is installed on the side wall of the second support frame, and the sixth motor is connected to the second rotating shaft.

[0013] In the above technical solution, the second lifting mechanism includes: a second lifting frame, a third mounting base, a third lead screw, a third connecting base, a seventh motor, a third bevel gear, and a fourth bevel gear; the second lifting frame is mounted on the second moving platform; the third mounting base is mounted on the side wall of the second lifting frame; the outer wall of the third lead screw is provided with a third external thread, the third lead screw passes through the third mounting base, and the third lead screw is rotatably connected to the third mounting base; the third connecting base is provided with a third threaded hole, the third threaded hole is provided with a third internal thread, the third connecting base is connected to the second lifting platform, and the third lead screw passes through the third threaded hole in the third connecting base; the seventh motor is mounted on the second moving platform; the third bevel gear is connected to the seventh motor; the fourth bevel gear is connected to the third lead screw, and the fourth bevel gear meshes with the third bevel gear.

[0014] In the above technical solution, the second lifting mechanism further includes: a fourth slide rail and a fourth slide block; two fourth slide rails are installed on the side wall of the second lifting frame, and the two fourth slide rails are located on both sides of the third lead screw; a fourth slide groove is provided in the fourth slide block, at least two fourth slide blocks are connected to the second lifting platform, and the fourth slide rail passes through the fourth slide groove of the fourth slide block.

[0015] In the above technical solution, the coating removal device for coated glass also includes: ventilation pipes, ventilation holes and air pumps; the ventilation pipes are hollow cavities, and multiple ventilation pipes are installed at the bottom of the top wall of the workbench; multiple ventilation holes are set on the top wall of the workbench, and the ventilation holes are connected to the ventilation pipes; the air pump is installed inside the workbench, and the air pump is simultaneously connected to multiple ventilation pipes.

[0016] The coating removal device for coated glass of this utility model has the following advantages compared with the prior art:

[0017] 1. By installing the first and second support frames on the side walls of the worktable, and by having the first and second motors drive the first and second decoating grinding wheels to rotate, respectively, the first and second decoating grinding wheels can simultaneously remove the coating from both sides of the coated glass when it is placed on the worktable, thereby improving product processing efficiency. By installing an adjustment mechanism on the first movable platform and connecting the platform to the mechanism, the adjustment mechanism can move the platform, thereby adjusting the distance between the platform and the worktable, and thus adjusting the decoating width on the coated glass, improving the user experience.

[0018] 2. By mounting two first sprockets on the outside of two first rotating shafts respectively, mounting a first chain on the outside of the two first sprockets, and connecting the first chain to the first movable platform, the two first sprockets cooperate to support the first chain. Thus, when one first sprocket is rotated, the first sprocket drives the first chain to move, thereby driving the first movable platform to move. By mounting two first slide rails on a first support frame, mounting multiple first slide blocks on the bottom of the first movable platform, and having the first slide rails pass through the first slide grooves of the first slide blocks, the first support frame supports the two first slide rails. This allows the first movable platform to move along the first slide rails via the first slide blocks, thereby improving the stability of the first movable platform's movement.

[0019] 3. By connecting the first connecting seat to the bottom of the adjusting table and passing the first lead screw through the first threaded hole of the first connecting seat, the first lead screw is threadedly connected to the first connecting seat, thereby rotating the first lead screw to drive the first connecting seat and the adjusting table to move, and thus adjusting the position of the adjusting table.

[0020] 4. By connecting the second connecting seat to the first lifting platform and passing the second lead screw through the second threaded hole of the second connecting seat, the second lead screw is threadedly connected to the second connecting seat, thereby rotating the second lead screw and causing the second lead screw to drive the first lifting platform to move up and down through the second connecting seat, thereby adjusting the height of the first lifting platform.

[0021] 5. By installing two second slide rails on the side wall of the first lifting frame and positioning them on both sides of the second lead screw, the first lifting frame supports the two second slide rails, thereby improving the stability of the second slide rails; by connecting multiple second slide blocks to the first lifting platform and allowing the second slide rails to pass through the second slide grooves of the second slide blocks, the first lifting platform can move up and down along the second slide rails via the second slide blocks, thereby improving the stability of the movement of the first lifting platform.

[0022] 6. By mounting two second sprockets on the outside of two second rotating shafts, and then mounting the second chain on the outside of the two second sprockets, connecting the second chain to the second moving platform, the two second rotating shafts can each drive the two second sprockets to rotate. This allows the two second sprockets to cooperate in supporting the second chain, so that when one second rotating shaft drives a second sprocket to rotate, the two second sprockets cooperate in moving the second chain, thus moving the second moving platform. By installing two third slide rails on the second support frame and multiple third slide blocks on the bottom of the second moving platform, with the third slide rails passing through the third grooves of the third slide blocks, the second support frame supports the two third slide rails. This allows the second moving platform to move along the third slide rails via the third slide blocks, improving the stability of the second moving platform's movement.

[0023] 7. By connecting the third connecting seat to the second lifting platform and passing the third lead screw through the third threaded hole in the third connecting seat, a threaded connection is achieved between the third connecting seat and the third lead screw. This allows the third lead screw to rotate, causing it to move the second lifting platform up and down via the third connecting seat, thereby adjusting the height of the second lifting platform. By connecting the fourth bevel gear to the third lead screw and engaging it with the third bevel gear, when the seventh motor drives the third bevel gear to rotate, the third bevel gear engages with the fourth bevel gear to rotate, thereby driving the third lead screw to rotate and providing power for rotating the third lead screw.

[0024] 8. By installing two fourth slide rails on the side wall of the second lifting frame, connecting multiple fourth slide blocks to the second lifting platform, and allowing the fourth slide rails to pass through the fourth slide grooves of the fourth slide blocks, the second lifting frame supports the fourth slide rails, thereby enabling the second lifting platform to move up and down along the fourth slide rails via the fourth slide blocks, thus preventing the second lifting platform from shifting during up and down movement and improving the stability of the movement of the second lifting platform.

[0025] 9. By installing an air pump inside the workbench and connecting it to multiple ventilation ducts simultaneously, when the coated glass is placed on the workbench, activating the air pump draws air out of the ventilation ducts, creating negative pressure within the ducts. This allows the coated glass to be adhered to the workbench through multiple ventilation holes, improving its stability. Simultaneously, when preparing to move the coated glass, activating the air pump injects air into the ventilation ducts, causing the air to flow out of the ventilation holes and move the coated glass, reducing the difficulty of moving the coated glass and thus improving the user experience. Attached Figure Description

[0026] Figure 1 This is one of the perspective views of a coating removal device for coated glass according to this utility model;

[0027] Figure 2 This is a perspective view of the adjustment mechanism and the first lifting mechanism of this utility model;

[0028] Figure 3 This is a perspective view of the second moving mechanism and the second lifting mechanism of this utility model;

[0029] Figure 4 This is a second perspective view of a coating removal device for coated glass according to the present invention;

[0030] in, Figures 1 to 4 The correspondence between the reference numerals and component names in the attached drawings is as follows:

[0031] 10 Workbench, 11 First Support Frame, 12 First Moving Mechanism, 121 First Rotating Shaft, 122 First Sprocket, 123 First Chain, 124 First Slide Rail, 125 First Slide, 126 Third Motor, 13 First Moving Table, 14 Adjusting Mechanism, 141 First Mounting Base, 142 First Lead Screw, 143 First Connecting Base, 144 Fourth Motor, 15 Adjusting Table, 16 First Lifting Mechanism, 161 First Lifting Frame, 162 Second Mounting Base, 163 Second Lead Screw, 164 Second Connecting Base, 165 Fifth Motor, 167 Second Bevel Gear, 168 Second Slide Rail, 169 Second Slide, 17 First Lifting Table, 18 19 First motor, 20 First descaling wheel, 21 Second support frame, 21 Second moving mechanism, 211 Second rotating shaft, 212 Second sprocket, 213 Second chain, 214 Third slide rail, 215 Third slide block, 216 Sixth motor, 22 Second moving table, 23 Second lifting mechanism, 231 Second lifting frame, 232 Third mounting base, 233 Third lead screw, 234 Third connecting base, 235 Seventh motor, 236 Third bevel gear, 237 Fourth bevel gear, 238 Fourth slide rail, 239 Fourth slide block, 24 Second lifting table, 25 Second motor, 26 Second descaling wheel, 27 Ventilation pipe, 28 Ventilation hole, 29 Air pump. Detailed Implementation

[0032] The following are specific implementation cases and appendices. Figures 1 to 4 The present invention will be further described below, but the present invention is not limited to these embodiments.

[0033] A coating removal device for coated glass, such as Figures 1 to 4 As shown, the coated glass removal device includes: a worktable 10, a first support frame 11, a first moving mechanism 12, a first moving platform 13, an adjusting mechanism 14, an adjusting platform 15, a first lifting mechanism 16, a first lifting platform 17, a first motor 18, a first removal grinding wheel 19, a second support frame 20, a second moving mechanism 21, a second moving platform 22, a second lifting mechanism 23, a second lifting platform 24, a second motor 25, and a second removal grinding wheel 26; the first support frame 11 is installed on one side wall of the worktable 10; the first moving mechanism 12 is installed on the first support frame 11; the first moving platform 13 is connected to the first moving mechanism 12; the adjusting mechanism 14 is installed on the first moving platform 13; the adjusting mechanism 15 is connected to the first moving ... platform 16, a first lifting mechanism 17, a first lifting platform 18, a first lifting platform 19, a first removal grinding wheel 19, a second lifting mechanism 10, a second lifting mechanism 11, a second moving platform 12, a first moving platform 13, a first moving platform 14, a second lifting platform 15, a second lifting mechanism 16, a first lifting platform 17, a first lifting platform 18 The adjustment platform 15 is connected to the adjustment mechanism 14; the first lifting mechanism 16 is installed on the adjustment platform 15; the first lifting platform 17 is connected to the first lifting mechanism 16; the first motor 18 is installed on the first lifting platform 17; the first descaling grinding wheel 19 is connected to the first motor 18; the second support frame 20 is installed on the other side wall of the worktable 10; the second moving mechanism 21 is installed on the second support frame 20; the second moving platform 22 is connected to the second moving mechanism 21; the second lifting mechanism 23 is installed on the second moving platform 22; the second lifting platform 24 is connected to the second lifting mechanism 23; the second motor 25 is installed on the second lifting platform 24; and the second descaling grinding wheel 26 is connected to the second motor 25.

[0034] By mounting the first support frame 11 on one side wall of the workbench 10, mounting the first moving mechanism 12 on the first support frame 11, and connecting the first moving platform 13 to the first moving mechanism 12, the workbench 10 supports the first support frame 11, thereby enabling the first support frame 11 to support the first moving mechanism 12. This allows the first moving mechanism 12 to drive the first moving platform 13 to move, thus adjusting the position of the first moving platform 13. Furthermore, by mounting the adjusting mechanism 14 on the first moving platform 13 and connecting the adjusting table 15 to the adjusting mechanism 14, the adjusting mechanism 14 can drive... The adjustable table 15 is moved to adjust the distance between the adjustable table 15 and the worktable 10. The first lifting mechanism 16 is installed on the adjustable table 15 and the first lifting platform 17 is connected to the first lifting mechanism 16 so that the first lifting mechanism 16 drives the first lifting platform 17 to move up and down, thereby adjusting the height of the first lifting platform 17. The first motor 18 is installed on the first lifting platform 17 and the first decoction wheel 19 is connected to the first motor 18 so that the first motor 18 can drive the first decoction wheel 19 to rotate, thereby enabling the rotating first decoction wheel 19 to remove the coating from the coated glass. By installing the second support frame 20 on the other side wall of the workbench 10, installing the second moving mechanism 21 on the second support frame 20, and connecting the second moving platform 22 to the second moving mechanism 21, the workbench 10 supports the second support frame 20, thereby enabling the second support frame 20 to support the second moving mechanism 21. This allows the second moving mechanism 21 to drive the second moving platform 22 to move, thus adjusting the position of the second moving platform 22. By installing the second lifting mechanism 23 on the second moving platform 22 and connecting the second lifting platform 24 to the second lifting mechanism 23, the second lifting mechanism 23 can drive the second lifting platform 24 to move up and down, thereby adjusting the height of the second lifting platform 24. By installing the second motor 25 on the second lifting platform 24 and connecting the second decoction wheel 26 to the second motor 25, the second motor 25 can drive the second decoction wheel 26 to rotate, thus enabling the rotating second decoction wheel 26 to remove the film from the glass.

[0035] When using the product, first place the coated glass on the worktable 10, positioning it below the first decoction wheel 19 and the second decoction wheel. Then, activate the first moving mechanism 12, causing it to move the first moving table 13 to the end of the coated glass. Simultaneously, activate the second moving mechanism 21, causing it to move the second moving table 22 to the end of the coated glass. Next, activate the adjusting mechanism 14, causing it to move the adjusting table 15, thereby adjusting the distance between the adjusting table 15 and the worktable 10, and thus adjusting the width of the first decoction wheel 19 removing the coating from the coated glass (the running distance of the first moving mechanism 12 is greater than the running distance of the second moving mechanism 21). Then, simultaneously activate the first moving mechanism 12... A first motor 18 and a second motor 25 are used to rotate the first decoction wheel 19 and the second motor 25 to rotate the second decoction wheel 26. Then, the first lifting mechanism 16 and the second lifting mechanism 23 are activated simultaneously, so that the first lifting mechanism 16 and the second lifting mechanism 23 respectively drive the first lifting platform 17 and the second lifting platform 24 to move downward, thereby bringing the first decoction wheel 19 and the second decoction wheel 26 into contact with the coated glass. Then, the first moving mechanism 12 and the second moving mechanism 21 are activated simultaneously, so that the first moving mechanism 12 and the second moving mechanism 21 respectively drive the first moving platform 13 and the second moving platform 22 to move, thereby allowing the rotating first decoction wheel 19 and the rotating second decoction wheel 26 to remove the coating from the coated glass.

[0036] With the above structure, by installing the first support frame 11 and the second support frame 20 on the two side walls of the worktable 10 respectively, and by having the first motor 18 and the second motor 25 drive the first decoction wheel 19 and the second decoction wheel 26 to rotate respectively, the first decoction wheel 19 and the second decoction wheel 26 can simultaneously remove the coating from both sides of the coated glass when it is placed on the worktable 10, thereby improving the product processing efficiency. By installing the adjustment mechanism 14 on the first moving stage 13 and connecting the adjustment stage 15 to the adjustment mechanism 14, the adjustment mechanism 14 can drive the adjustment stage 15 to move, thereby adjusting the distance between the adjustment stage 15 and the worktable 10, and thus adjusting the decoction width of the coated glass, thereby improving the user experience of the product.

[0037] In embodiments of this utility model, such as Figures 1 to 4As shown, the first moving mechanism 12 includes: a first rotating shaft 121, a first sprocket 122, a first chain 123, a first slide rail 124, a first slide block 125, and a third motor 126; two first rotating shafts 121 are installed at the bottom of both ends of the first support frame 11, and the two first rotating shafts 121 are rotatably connected to the first support frame 11; two first sprockets 122 are respectively fitted on the outside of the two first rotating shafts 121; the first chain 123 is fitted on the outside of the two first sprockets 122, and the first chain 124 is rotatably connected to the first support frame 125; two first sprockets 122 are respectively ...3, and the first chain 124 is rotatably connected to the first support frame 125. 23 is connected to the first movable stage 13; two first slide rails 124 are mounted on the first support frame 11, and the two first slide rails 124 are located below the first movable stage 13; a first slide groove is provided in the first slide block 125, at least two first slide blocks 125 are mounted on the bottom of the first movable stage 13, and the first slide rails 124 pass through the first slide groove of the first slide block 125; a third motor 126 is mounted on the side wall of the first support frame 11, and the third motor 126 is connected to a first rotating shaft 121.

[0038] By installing two first rotating shafts 121 at the bottom of both ends of the first support frame 11 and rotatably connecting the two first rotating shafts 121 to the first support frame 11, the first support frame 11 supports the two first rotating shafts 121, thereby enabling the first rotating shafts 121 to rotate relative to the first support frame 11. By respectively mounting two first sprockets 122 on the outside of the two first rotating shafts 121, mounting a first chain 123 on the outside of the two first sprockets 122, and connecting the first chain 123 to the first movable platform 13, the two first sprockets 122 cooperate to support the first chain 123, thereby enabling the first chain 123 to move when one of the first sprockets 122 is rotated. The first movable platform 13 is moved; by installing two first slide rails 124 on the first support frame 11 and installing multiple first slide blocks 125 on the bottom of the first movable platform 13, and by having the first slide rails 124 pass through the first slide grooves of the first slide blocks 125, the first support frame 11 supports the two first slide rails 124, thereby enabling the first movable platform 13 to move along the first slide rails 124 via the first slide blocks 125, thus improving the stability of the movement of the first movable platform 13; by installing a third motor 126 on the side wall of the first support frame 11 and connecting the third motor 126 to a first rotating shaft 121, the third motor 126 can drive the first rotating shaft 121 to rotate, thereby providing power for rotating the first rotating shaft 121.

[0039] In embodiments of this utility model, such as Figures 1 to 4As shown, the adjustment mechanism 14 includes: a first mounting base 141, a first lead screw 142, a first connecting base 143, and a fourth motor 144; the first mounting base 141 is mounted on the first moving platform 13 and is located below the adjustment platform 15; the outer wall of the first lead screw 142 is provided with a first external thread, the first lead screw 142 passes through the first mounting base 141, and the first lead screw 142 is rotatably connected to the first mounting base 141; the first connecting base 143 is provided with a first threaded hole, the first threaded hole is provided with a first internal thread, the first connecting base 143 is connected to the bottom of the adjustment platform 15, and the first lead screw 142 passes through the first threaded hole of the first connecting base 143; the fourth motor 144 is mounted on the first moving platform 13 and is connected to the first lead screw 142; wherein, the first external thread and the first internal thread are adapted to each other.

[0040] By mounting the first mounting base 141 on the first movable platform 13, allowing the first lead screw 142 to pass through the first mounting base 141 and be rotatably connected to the first mounting base 141, the first mounting base 141 supports the first lead screw 142, thereby enabling the first lead screw 142 to rotate within the first mounting base 141. By connecting the first connecting seat 143 to the bottom of the adjusting platform 15, and allowing the first lead screw 142 to pass through the first threaded hole of the first connecting seat 143, the first lead screw 142 is threadedly connected to the first connecting seat 143, thereby enabling the rotation of the first lead screw 142 to move the first connecting seat 143 and the adjusting platform 15, thus adjusting the position of the adjusting platform 15. By mounting the fourth motor 144 on the first movable platform 13 and connecting the fourth motor 144 to the first lead screw 142, the fourth motor 144 can drive the first lead screw 142 to rotate, thereby providing power for rotating the first lead screw 142.

[0041] In embodiments of this utility model, such as Figures 1 to 4As shown, the first lifting mechanism 16 includes: a first lifting frame 161, a second mounting base 162, a second lead screw 163, a second connecting base 164, a fifth motor 165, a first bevel gear, and a second bevel gear 167; the first lifting frame 161 is mounted on the adjusting platform 15; the second mounting base 162 is mounted on the side wall of the first lifting frame 161; the outer wall of the second lead screw 163 is provided with a second external thread, the second lead screw 163 passes through the second mounting base 162, and the second lead screw 163 is rotatably connected to the second mounting base 162. The second connecting seat 164 is provided with a second threaded hole, and the second threaded hole is provided with a second internal thread. The second connecting seat 164 is connected to the first lifting platform 17, and the second lead screw 163 passes through the second threaded hole of the second connecting seat 164. The fifth motor 165 is mounted on the adjusting platform 15. The first bevel gear is connected to the fifth motor 165. The second bevel gear 167 is connected to the second lead screw 163, and the second bevel gear 167 meshes with the first bevel gear box. The second external thread is adapted to the second internal thread.

[0042] By mounting the first lifting frame 161 on the adjusting platform 15 and mounting the second mounting base 162 on the side wall of the first lifting frame 161, the second lead screw 163 passes through the second mounting base 162 and is rotatably connected to the second mounting base 162, so that the first lifting frame 161 can support the second mounting base 162, thereby enabling the second mounting base 162 to support the second lead screw 163, and thus enabling the second lead screw 163 to rotate within the second mounting base 162; by connecting the second connecting base 164 to the first lifting platform 17 and passing the second lead screw 163 through the second threaded hole of the second connecting base 164, the second lead screw 163 is threadedly connected to the second connecting base 164, thereby enabling the rotation of the second lead screw 163 to drive the first lifting platform 17 to move up and down through the second connecting base 164, thereby adjusting the height of the first lifting platform 17. By mounting the fifth motor 165 on the adjustment table 15, connecting the first bevel gear to the fifth motor 165, connecting the second bevel gear 167 to the second lead screw 163, and making the second bevel gear 167 mesh with the first bevel gear, the fifth motor 165 can drive the first bevel gear to rotate, thereby enabling the first bevel gear to mesh with the second bevel gear 167 and rotate, which in turn drives the second lead screw 163 to rotate.

[0043] In embodiments of this utility model, such as Figures 1 to 4 As shown, the first lifting mechanism 16 further includes: a second slide rail 168 and a second slide block 169; the two second slide rails 168 are installed on the side wall of the first lifting frame 161, and the two second slide rails 168 are located on both sides of the second lead screw 163; the second slide block 169 is provided with a second slide groove, at least two second slide blocks 169 are connected to the first lifting platform 17, and the second slide rails 168 pass through the second slide groove of the second slide block 169.

[0044] By installing two second slide rails 168 on the side wall of the first lifting frame 161 and positioning them on both sides of the second lead screw 163, the first lifting frame 161 supports the two second slide rails 168, thereby improving the stability of the second slide rails 168. By connecting multiple second slide blocks 169 to the first lifting platform 17 and allowing the second slide rails 168 to pass through the second slide grooves of the second slide blocks 169, the first lifting platform 17 can move up and down along the second slide rails 168 via the second slide blocks 169, thereby improving the stability of the movement of the first lifting platform 17.

[0045] In embodiments of this utility model, such as Figures 1 to 4 As shown, the second moving mechanism 21 includes: a second rotating shaft 211, a second sprocket 212, a second chain 213, a third slide rail 214, a third slide block 215, and a sixth motor 216; two second rotating shafts 211 are installed at the bottom of both ends of the second support frame 20, and the two second rotating shafts 211 are rotatably connected to the second support frame 20; two second sprockets 212 are respectively fitted on the outside of the two second rotating shafts 211; the second chain 213 is fitted on the outside of the two second sprockets 212, and the second chain 213 is... 213 is connected to the second movable stage 22; two third slide rails 214 are installed on the second support frame 20, and the two third slide rails 214 are located below the second movable stage 22; a third slide groove is provided in the third slide block 215, at least two third slide blocks 215 are installed at the bottom of the second movable stage 22, and the third slide rails 214 pass through the third slide groove of the third slide block 215; the sixth motor 216 is installed on the side wall of the second support frame 20, and the sixth motor 216 is connected to the second rotating shaft 211.

[0046] By installing two second rotating shafts 211 at the bottom of both ends of the second support frame 20 and rotatably connecting the second rotating shafts 211 to the second support frame 20, the second support frame 20 supports the two second rotating shafts 211, thereby enabling the two second rotating shafts 211 to rotate relative to the second support frame 20. By respectively mounting two second sprockets 212 on the outside of the two second rotating shafts 211, and mounting the second chain 213 on the outside of the two second sprockets 212, and connecting the second chain 213 to the second moving platform 22, the two second rotating shafts 211 can drive the two second sprockets 212 to rotate, thereby enabling the two second sprockets 212 to cooperate in supporting the second chain 213. Thus, when one second rotating shaft 211 drives the second sprocket 212 to rotate, the two second sprockets 212 cooperate in driving the second chain 213 to move, thereby moving the second moving platform 22. By installing two third slide rails 214 on the second support frame 20 and installing multiple third slide blocks 215 on the bottom of the second moving platform 22, and by having the third slide rails 214 pass through the third slide grooves of the third slide blocks 215, the second support frame 20 supports the two third slide rails 214, thereby enabling the second moving platform 22 to move along the third slide rails 214 via the third slide blocks 215, thus improving the stability of the movement of the second moving platform 22; by installing a sixth motor 216 on the side wall of the second support frame 20 and connecting the sixth motor 216 to the second rotating shaft 211, the sixth motor 216 can drive the second rotating shaft 211 to rotate, thereby providing power for rotating the second rotating shaft 211.

[0047] In embodiments of this utility model, such as Figures 1 to 4 As shown, the second lifting mechanism 23 includes: a second lifting frame 231, a third mounting base 232, a third lead screw 233, a third connecting base 234, a seventh motor 235, a third bevel gear 236, and a fourth bevel gear 237; the second lifting frame 231 is mounted on the second moving platform 22; the third mounting base 232 is mounted on the side wall of the second lifting frame 231; the outer wall of the third lead screw 233 is provided with a third external thread, the third lead screw 233 passes through the third mounting base 232, and the third lead screw 233 is connected to the third mounting base 234. The mounting base 232 is rotatably connected; the third connecting base 234 is provided with a third threaded hole, and the third threaded hole is provided with a third internal thread. The third connecting base 234 is connected to the second lifting platform 24, and the third lead screw 233 passes through the third threaded hole in the third connecting base 234; the seventh motor 235 is mounted on the second moving platform 22; the third bevel gear 236 is connected to the seventh motor 235; the fourth bevel gear 237 is connected to the third lead screw 233, and the fourth bevel gear 237 meshes with the third bevel gear 236.

[0048] By installing the second lifting frame 231 on the second moving platform 22 and installing the third mounting base 232 on the side wall of the second lifting frame 231, the third lead screw 233 passes through the third mounting base 232 and is rotatably connected to the third mounting base 232, so that the third mounting base 232 can support the third lead screw 233, thereby enabling the third lead screw 233 to rotate within the third mounting base 232; by connecting the third connecting base 234 to the second lifting platform 24 and having the third lead screw 233 pass through the third threaded hole in the third connecting base 234, the third connecting base 234 and the third lead screw 233 are threadedly connected, thereby enabling the rotation of the third lead screw 233 to drive the second lifting platform 24 to move up and down through the third connecting base 234, thereby adjusting the height of the second lifting platform 24. By mounting the seventh motor 235 on the second moving platform 22 and connecting the third bevel gear 236 to the seventh motor 235, the seventh motor 235 can drive the third bevel gear 236 to rotate. By connecting the fourth bevel gear 237 to the third lead screw 233 and making the fourth bevel gear 237 mesh with the third bevel gear 236, when the seventh motor 235 drives the third bevel gear 236 to rotate, the third bevel gear 236 meshes with the fourth bevel gear 237 to rotate, thereby driving the third lead screw 233 to rotate, and thus providing power for rotating the third lead screw 233.

[0049] In embodiments of this utility model, such as Figures 1 to 4 As shown, the second lifting mechanism 23 further includes: a fourth slide rail 238 and a fourth slide block 239; two fourth slide rails 238 are installed on the side wall of the second lifting frame 231, and the two fourth slide rails 238 are located on both sides of the third lead screw 233; a fourth slide groove is provided in the fourth slide block 239, at least two fourth slide blocks 239 are connected to the second lifting platform 24, and the fourth slide rail 238 passes through the fourth slide groove of the fourth slide block 239.

[0050] By installing two fourth slide rails 238 on the side wall of the second lifting frame 231, connecting multiple fourth slide blocks 239 to the second lifting platform 24, and allowing the fourth slide rails 238 to pass through the fourth slide grooves of the fourth slide blocks 239, the second lifting frame 231 supports the fourth slide rails 238, thereby enabling the second lifting platform 24 to move up and down along the fourth slide rails 238 via the fourth slide blocks 239, thus preventing the second lifting platform 24 from shifting during up and down movement and improving the stability of the movement of the second lifting platform 24.

[0051] In embodiments of this utility model, such as Figures 1 to 4As shown, the coating removal device for coated glass also includes: ventilation pipe 27, ventilation hole 28 and air pump 29; ventilation pipe 27 is a hollow cavity, and multiple ventilation pipes 27 are installed at the bottom of the top wall of the workbench 10; multiple ventilation holes 28 are set on the top wall of the workbench 10, and the ventilation holes 28 are connected to the ventilation pipes 27; air pump 29 is installed inside the workbench 10, and air pump 29 is simultaneously connected to multiple ventilation pipes 27.

[0052] By installing multiple ventilation pipes 27 on the top of the top wall of the workbench 10 and setting multiple ventilation holes 28 on the top wall of the workbench 10, and connecting the ventilation holes 28 to the ventilation pipes 27, the workbench 10 supports the multiple ventilation pipes 27, thereby achieving internal communication between the ventilation holes 28 and the ventilation pipes 27. By installing an air pump 29 inside the workbench 10 and connecting the air pump 29 to the multiple ventilation pipes 27, when the coated glass is placed on the workbench 10, the air pump 29 is activated to extract air from the ventilation pipes 27, thereby creating a negative pressure inside the ventilation pipes 27. This allows the coated glass to be adsorbed onto the workbench 10 through the multiple ventilation holes 28, improving the stability of the coated glass. At the same time, when preparing to move the coated glass, the air pump 29 is activated to inject air into the ventilation pipes 27, causing the air to flow out from the ventilation holes 28 and blow the coated glass, reducing the difficulty of moving the coated glass and improving the user experience of the product.

[0053] In the description of this utility model, the term "multiple" refers to two or more. Unless otherwise explicitly defined, the terms "upper," "lower," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. The terms "connection," "installation," "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0054] In the description of this utility model, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this utility model. In this utility model, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0055] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A device for removing coating from coated glass, characterized in that, The coated glass removal device includes: Workbench; A first support frame is installed on one side wall of the workbench; A first moving mechanism is mounted on the first support frame; A first mobile station, which is connected to the first mobile mechanism; An adjustment mechanism is mounted on the first movable platform; An adjustment platform, which is connected to the adjustment mechanism; A first lifting mechanism is installed on the adjustment platform; A first lifting platform, which is connected to the first lifting mechanism; A first motor is installed on the first lifting platform; The first film-removing grinding wheel is connected to the first motor; The second support frame is installed on the other side wall of the workbench; The second moving mechanism is mounted on the second support frame; The second mobile station is connected to the second mobile mechanism; A second lifting mechanism is installed on the second movable platform; The second lifting platform is connected to the second lifting mechanism; The second motor is installed on the second lifting platform; The second film-removing grinding wheel is connected to the second motor.

2. The coating removal device for coated glass according to claim 1, characterized in that, The first moving mechanism includes: The first rotating shaft, two first rotating shafts are installed at the bottom of both ends of the first support frame, and the two first rotating shafts are rotatably connected to the first support frame; The first sprocket, the two first sprockets are respectively mounted on the outside of the two first shafts; A first chain is fitted around the outside of the two first sprockets and is connected to the first moving platform; The first slide rail, two first slide rails are mounted on the first support frame, and the two first slide rails are located below the first moving platform; A first slide block, wherein a first slide groove is provided inside the first slide block, at least two first slide blocks are installed on the bottom of the first movable platform, and the first slide rail passes through the first slide groove of the first slide block; A third motor is mounted on the side wall of the first support frame and is connected to one of the first rotating shafts.

3. The coating removal device for coated glass according to claim 2, characterized in that, The adjustment mechanism includes: A first mounting base is mounted on the first movable platform and is located below the adjustment platform; The first lead screw has a first external thread on its outer wall, passes through the first mounting base, and is rotatably connected to the first mounting base. A first connecting seat is provided with a first threaded hole and a first internal thread. The first connecting seat is connected to the bottom of the adjusting table, and the first lead screw passes through the first threaded hole of the first connecting seat. A fourth motor is mounted on the first movable platform and is connected to the first lead screw; The first external thread is adapted to the first internal thread.

4. The coating removal device for coated glass according to claim 3, characterized in that, The first lifting mechanism includes: A first lifting frame is mounted on the adjustment platform; The second mounting base is mounted on the side wall of the first lifting frame; The second lead screw has a second external thread on its outer wall, passes through the second mounting base, and is rotatably connected to the second mounting base. The second connecting seat has a second threaded hole and a second internal thread. The second connecting seat is connected to the first lifting platform, and the second lead screw passes through the second threaded hole of the second connecting seat. The fifth motor is mounted on the adjustment platform; The first bevel gear is connected to the fifth motor; The second bevel gear is connected to the second lead screw and meshes with the first bevel gearbox; The second external thread is adapted to the second internal thread.

5. The coating removal device for coated glass according to claim 4, characterized in that, The first lifting mechanism also includes: The second slide rail is installed on the side wall of the first lifting frame, and the two second slide rails are located on both sides of the second lead screw. The second slide block has a second slide groove inside. At least two of the second slide blocks are connected to the first lifting platform, and the second slide rail passes through the second slide groove of the second slide block.

6. The coating removal device for coated glass according to claim 1, characterized in that, The second moving mechanism includes: The second rotating shaft is installed at the bottom of both ends of the second support frame and is rotatably connected to the second support frame. The second sprocket, the two second sprockets are respectively mounted on the outside of the two second shafts; The second chain is fitted around the outside of the two second sprockets and is connected to the second movable platform; The third slide rail, two of which are mounted on the second support frame and located below the second movable platform; The third slide block has a third slide groove inside, and at least two of the third slide blocks are installed on the bottom of the second movable platform, and the third slide rail passes through the third slide groove of the third slide block; A sixth motor is mounted on the side wall of the second support frame and is connected to the second rotating shaft.

7. The coating removal device for coated glass according to claim 6, characterized in that, The second lifting mechanism includes: The second lifting frame is mounted on the second movable platform; The third mounting base is mounted on the side wall of the second lifting frame; The third lead screw has a third external thread on its outer wall, passes through the third mounting base, and is rotatably connected to the third mounting base. The third connecting seat has a third threaded hole and a third internal thread. The third connecting seat is connected to the second lifting platform, and the third lead screw passes through the third threaded hole in the third connecting seat. A seventh motor is mounted on the second movable platform; The third bevel gear is connected to the seventh motor; The fourth bevel gear is connected to the third lead screw and meshes with the third bevel gear.

8. The coating removal device for coated glass according to claim 7, characterized in that, The second lifting mechanism also includes: The fourth slide rail, two of which are mounted on the side wall of the second lifting frame, and the two of which are located on both sides of the third lead screw; The fourth slide block has a fourth slide groove inside, and at least two of the fourth slide blocks are connected to the second lifting platform, and the fourth slide rail passes through the fourth slide groove of the fourth slide block.

9. The coating removal device for coated glass according to claim 1, characterized in that, The coated glass removal device further includes: Ventilation duct, wherein the ventilation duct is a hollow cavity, and multiple ventilation ducts are installed at the bottom of the top wall of the workbench; Ventilation holes, a plurality of the ventilation holes are provided on the top wall of the workbench, and the ventilation holes are connected to the ventilation pipe; An air pump is installed inside the workbench and is simultaneously connected to multiple ventilation pipes.