Glass cutting device for mirror processing

By designing the bracket, support rod, and rubber wheel of the glass cutting device for mirror processing, the problem of unstable separation after glass cutting is solved, achieving stable glass separation and automatic feeding, reducing safety risks and damage, and improving cutting efficiency.

CN119912147BActive Publication Date: 2025-12-26SHANDONG HUAXU HOME TECHNOLOGY CO LTD

Patent Information

Application Number
CN202510422786.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-12-26
Estimated Expiration
2045-04-07

AI Technical Summary

Technical Problem

Existing glass cutting devices are difficult to stably separate glass sheets after cutting, and there are safety risks during the manual material feeding process, which can easily lead to glass damage and cuts.

Method used

A glass cutting device for mirror processing was designed. Through the cooperation of structures such as brackets, support rods, auxiliary plates, and rubber wheels, the device can clamp, bend, and push the cut glass. The cutting unit and conveying mechanism driven by cylinders and motors can achieve stable separation and automatic unloading of the glass.

Benefits of technology

This method achieves stable separation of the cut glass from the main body, reduces manual assistance, lowers safety risks, avoids glass damage, and improves cutting efficiency and safety.

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Abstract

The application discloses a glass cutting device for mirror processing and relates to the field of glass processing.The glass cutting device comprises a cutting table and a cutting unit arranged on the cutting table, the cutting unit is used for cutting glass, the cutting table comprises a feeding end and a discharging end, a bracket is arranged on the side of the discharging end, a lower supporting plate is arranged on the bracket, four supporting connecting rods are symmetrically and rotationally connected to the two sides of the lower supporting plate in a rectangular shape, the bottom end of the supporting connecting rod is rotationally connected to the inner wall of the bracket away from the side of the lower supporting plate, and the bottom end of the supporting connecting rod is obliquely arranged towards the side close to the cutting table.The glass cutting device for mirror processing can clamp the cut glass through the cooperation between the lower bracket and the auxiliary plate, and the lower bracket can be slightly rotated when the lower bracket moves downwards under the driving of the auxiliary cylinder, so that the cut glass can be moved downwards, and the cut glass can be stably separated from the glass body.
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Description

TECHNICAL FIELD

[0001] The present application relates to the glass processing technology, specifically to a kind of mirror processing glass cutting device. BACKGROUND

[0002] Mirror in production process, generally need to cut its raw material glass, so that it can meet the required specifications Product. And commonly used glass cutting device, after cutting head by diamond to the glass cutting, mainly rely on manual to be moved, so that the glass sheet after cutting can be completely separated, however, manual auxiliary glass cutting unloading process, since glass side is extremely sharp, it is easy to appear hand cut, so that the safety risk of glass cutting is larger.

[0003] Chinese invention patent with the publication number CN 119038868 B discloses a kind of glass cutting device, including support table, feed mechanism, cutting mechanism and jacking separation mechanism, feed mechanism is installed on support table and is driven glass intermittent movement when working;Cutting mechanism is installed on support table and corresponds with feed mechanism, wherein, when the gap of feed mechanism drives glass movement, cutting mechanism is driven to carry out once cutting work on the glass of feed mechanism;Jacking separation mechanism is installed on the side of support table and corresponds with the output end of feed mechanism, wherein, when cutting mechanism works, automatically drive jacking separation mechanism to work, and the glass cut out by cutting mechanism once is lifted and separated from whole glass. However, in actual working process, glass cutting, its cutting mark opening is upward, therefore, when the local glass after cutting is separated by vertical upward thrust, it is not easy to separate from main body, and, when the local after cutting is subjected to upward force, main body lacks fixation, leading to main body and local after cutting are subjected to upward thrust, so that the whole glass to be cut can be lifted, so that after glass local separation, main body part will directly fall under the action of dead weight, easy to cause glass damage. SUMMARY

[0004] The purpose of the present application is to provide a kind of mirror processing glass cutting device, to solve the above-mentioned deficiencies in prior art.

[0005] In order to achieve the above-mentioned purpose, the present application provides the following technical scheme: a kind of mirror processing glass cutting device, including cutting table and cutting unit set on cutting table, the cutting unit is used to cut glass, the cutting table includes feeding end and discharging end;

[0006] The lower end side is provided with a bracket, the bracket is provided with a lower support plate, the lower support plate is symmetrically connected with four support connecting rods on both sides, the support connecting rod is connected with the inner wall of the bracket on the side away from the lower support plate, the bottom of the support connecting rod is inclined to the side close to the cutting table, the bottom of the inner wall of the bracket is provided with a blanking cylinder, the top of the extension end of the blanking cylinder is fixedly connected with a sliding block, the bottom of the lower support plate is provided with a fault tolerance groove matched with the sliding block, the top of the lower support plate is provided with a vertical plate, the top of the vertical plate is provided with an auxiliary cylinder, and the bottom of the auxiliary cylinder is provided with an auxiliary plate.

[0007] Further, the cutting unit comprises two side plates symmetrically installed on both sides of the cutting table, and the inner side of each installation groove is rotatably connected with an X-axis screw rod.

[0008] Further, the support plate is threadedly connected with the X-axis screw rod, the moving block is threadedly connected with the Y-axis screw rod, and the X-axis screw rod and the Y-axis screw rod are driven by the motor.

[0009] Further, the top surface of the cutting table is provided with symmetrically arranged first wheel grooves, the inside of the cutting table is provided with an installation cavity, the inner side of the installation cavity is slidably connected with a first supporting plate, the top of the first supporting plate is provided with a plurality of first electric drive wheels corresponding to the first wheel grooves, the first electric drive wheels are driven by the motor, the bottom of the installation cavity is provided with a first jacking cylinder, and the extension end of the first jacking cylinder is fixedly connected with the bottom of the first supporting plate.

[0010] Further, the inner side of the cutting table is provided with a guide groove, the inner side of the guide groove is slidably connected with a guide frame, the top of the inner wall of the guide frame is provided with a plurality of elastic expansion pipes, the bottom of the elastic expansion pipe is fixedly connected with a pressing plate, and the guide frame and the first supporting plate are fixedly connected with a linkage plate.

[0011] Further, the two sides of the auxiliary plate are symmetrically provided with four rotating seats in a rectangular shape, rotating rods are rotatably connected between the rotating seats on the two sides, a plurality of rubber wheels are equidistantly arranged on the surface of the rotating rod along the axial direction, inflatable soft rubber sleeves are arranged outside the rubber wheels, cavities are formed in the inner side surfaces of the rotating seats, wire wheels are coaxially fixedly connected to the outer surfaces of the rotating rods, traction wires are wound around the outer surfaces of the wire wheels, torsional springs are mounted between the rotating rods and the inner walls of the cavities, wire grooves are formed in the cavities and extend through the top end of the auxiliary plate, and the traction wires are fixedly connected to the vertical plate at the end away from the wire wheels and pass through the wire grooves.

[0012] Further, when the auxiliary cylinder drives the auxiliary plate to move downward to pull the traction wire, the wire wheel drives the rubber wheel to rotate and pushes the glass to move away from the cutting table.

[0013] Further, arc-shaped grooves are formed in the inner side surfaces of the rubber wheels, protrusions corresponding to the arc-shaped grooves are fixedly connected to the outer surfaces of the rotating rods, and buffer springs are fixedly connected between the protrusions and the inner walls of the arc-shaped grooves.

[0014] Further, two groups of second wheel grooves are symmetrically formed in the top of the auxiliary plate, a receiving cavity is formed in the inside of the auxiliary plate and communicates with the second wheel grooves, a second supporting plate is slidably connected to the inner side surface of the receiving cavity, a plurality of second electric drive wheels corresponding to the second wheel grooves are mounted on the top of the second supporting plate, the second electric drive wheels are driven by the motor, a second jacking cylinder is fixedly mounted on the bottom of the auxiliary plate, and the top of the telescopic end of the second jacking cylinder is fixedly connected to the bottom of the second supporting plate.

[0015] Compared with the prior art, the glass cutting device for mirror processing has the following beneficial effects:

[0016] 1. The glass cutting device for mirror processing can clamp the cut glass through the cooperation between the lower support and the auxiliary plate, and the lower support can rotate slightly when the auxiliary cylinder drives the lower support to move downward, so that the cut glass can be moved downward to be separated from the glass body stably.

[0017] 2. The glass cutting device for mirror processing is connected with the first supporting plate through the linkage plate, so that the pressing plate can move synchronously and press the glass when the first electric drive wheel moves downward and is separated from the glass, and the pressing plate can press the glass body when the glass is cut and separated, so that the separation process of the cut glass is more stable.

[0018] 3、The mirror processing glass cutting device, through the mutual cooperation between the rubber wheel, the line wheel, the traction line, the torsional spring, the arc-shaped groove, the protruding block and the buffer spring, can push the cut glass after it is pried away, so as to avoid the damage of the glass caused by the scratch between the two glasses during the cutting process.

[0019] 4、The mirror processing glass cutting device, through the mutual cooperation between the second electric driving wheel and the second lifting cylinder and other structures, can continue to automatically transport the cut glass after it is separated, so as to further reduce the manual assistance and make the safety of the glass cutting process better. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments will be briefly introduced. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0021] Figure 1 The overall structure schematic diagram provided by the embodiment of the present application;

[0022] Figure 2 The cutting unit partial structure schematic diagram provided by the embodiment of the present application;

[0023] Figure 3 The cutting table local section structure schematic diagram provided by the embodiment of the present application;

[0024] Figure 4 The bracket and lower support plate structure schematic diagram provided by the embodiment of the present application;

[0025] Figure 5 The lower support plate longitudinal section structure schematic diagram provided by the embodiment of the present application;

[0026] Figure 6 The auxiliary plate local section structure schematic diagram provided by the embodiment of the present application;

[0027] Figure 7 The auxiliary plate local section structure schematic diagram provided by the embodiment of the present application; Figure 6 The enlarged structure schematic diagram of A in the embodiment of the present application;

[0028] Figure 8 The rubber wheel local section structure schematic diagram provided by the embodiment of the present application;

[0029] Figure 9 The lower support plate local section structure schematic diagram provided by the embodiment of the present application.

[0030] BRIEF DESCRIPTION OF DRAWINGS

[0031] 1, cutting table; 11, feeding end; 12, discharging end; 2, bracket; 21, lower support plate; 22, support connecting rod; 23, discharging cylinder; 24, sliding block; 25, fault-tolerant groove; 26, vertical plate; 27, auxiliary cylinder; 28, auxiliary plate; 3, side plate; 31, X-axis screw rod; 32, support plate; 33, top plate; 34, Y-axis screw rod; 35, moving block; 36, pneumatic adjusting cutting head; 37, first wheel groove; 38, first supporting plate; 39, first electric drive wheel; 310, first lifting cylinder; 4, guide groove; 41, guide frame; 42, elastic telescopic tube; 43, pressing plate; 44, linkage plate; 5, rotating seat; 51, rotating rod; 52, rubber wheel; 53, wire wheel; 54, traction wire; 55, torsional spring; 56, wire groove; 57, arc-shaped groove; 58, protrusion; 59, buffer spring; 510, inflatable soft rubber sleeve; 6, second wheel groove; 61, second supporting plate; 62, second electric drive wheel; 63, second lifting cylinder. DETAILED DESCRIPTION

[0032] In order for those skilled in the art to better understand the technical solutions of the present application, the present application will be further described in detail below with reference to the drawings.

[0033] Example 1:

[0034] Please refer to Figures 1-6 A glass cutting device for mirror processing, comprising a cutting table 1 and a cutting unit arranged on the cutting table 1, the cutting unit being used for cutting glass, and the cutting table 1 comprising a feeding end 11 and a discharging end 12.

[0035] A bracket 2 is mounted on the side of the discharging end 12, the bracket 2 is provided with a lower support plate 21, four support connecting rods 22 are symmetrically and rotatably connected to the two sides of the lower support plate 21 in a rectangular shape, the bottom end of each support connecting rod 22 is rotatably connected to the inner wall of the bracket 2 away from the side of the lower support plate 21, the bottom end of each support connecting rod 22 is obliquely arranged towards the side of the cutting table 1, a discharging cylinder 23 is mounted on the bottom of the inner wall of the bracket 2, a sliding block 24 is fixedly connected to the top of the extension end of the discharging cylinder 23, a fault-tolerant groove 25 is formed in the bottom of the lower support plate 21 and matched with the sliding block 24, a vertical plate 26 is arranged on the top of the lower support plate 21, an auxiliary cylinder 27 is mounted on the top of the vertical plate 26, and an auxiliary plate 28 is mounted on the bottom of the auxiliary cylinder 27.

[0036] It should be noted that by obliquely arranging the bottom end of the support connecting rod 22 towards the side of the cutting table 1, the lower support plate 21 can be slightly rotated when the auxiliary cylinder 27 exerts a downward pulling force on the lower support plate 21, so that the cut glass can be better moved to separate it from the main body of the glass.

[0037] In the embodiment, the cutting unit comprises side plates 3 symmetrically arranged on both sides of the cutting table 1, and each of the two side plates 3 is provided with a mounting groove on the side facing the other side plate 3, the inner side surface of the mounting groove is rotationally connected with an X-axis screw rod 31, the inner side surface of the mounting groove on each side is slidingly connected with a support plate 32, the two support plates 32 are arranged between a top plate 33, the bottom of the top plate 33 is provided with a moving groove, the inner side surface of the moving groove is rotationally connected with a Y-axis screw rod 34, and the inner side surface of the moving groove is slidingly connected with a moving block 35, and the bottom of the moving block 35 is provided with a pneumatic adjusting cutting head 36.

[0038] It should be noted that the support plate 32 is threadedly connected with the X-axis screw rod 31, the moving block 35 is threadedly connected with the Y-axis screw rod 34, and the X-axis screw rod 31 and the Y-axis screw rod 34 are both driven by a motor.

[0039] In the embodiment, the top surface of the cutting table 1 is provided with symmetrically arranged first wheel grooves 37, the inside of the cutting table 1 is provided with a mounting cavity, the inner side surface of the mounting cavity is slidingly connected with a first supporting plate 38, the top of the first supporting plate 38 is provided with a plurality of first electric drive wheels 39 corresponding to the first wheel grooves 37, the first electric drive wheels 39 are driven by a motor, the bottom of the mounting cavity is provided with a first jacking cylinder 310, and the telescopic end of the first jacking cylinder 310 is fixedly connected with the bottom of the first supporting plate 38.

[0040] When cutting the glass, the first electric drive wheels 39 are used to convey the glass to be cut, and the pneumatic adjusting cutting head 36 is driven to move by the Y-axis screw rod 34 to cut the glass, and the cut glass is conveyed to the lower supporting plate 21 by the first electric drive wheels 39;

[0041] At this time, the auxiliary cylinder 27 drives the auxiliary plate 28 to move downward, so that the auxiliary plate 28 is pressed against the surface of the cut glass, and then the telescopic end of the discharging cylinder 23 is retracted to drive the lower supporting plate 21 to be pulled downward, so that the lower supporting plate 21 is subjected to a downward pulling force and moves downward, and under the cooperation of the supporting connecting rod 22, the lower supporting plate 21 is rotated downward, so that the cut glass can be separated from the glass body;

[0042] During the small-amplitude rotation of the lower supporting plate 21, the sliding block 24 moves along the inner side surface of the fault tolerance groove 25, so that the discharging cylinder 23 can drive the lower supporting plate 21 to move stably up and down when working.

[0043] Embodiment 2:

[0044] Please refer to 3, this embodiment provides a technical scheme on the basis of the above embodiment: the inner side of the cutting table 1 is provided with a guide groove 4, the inner side of the guide groove 4 is slidably connected with a guide frame 41, a plurality of elastic telescopic pipes 42 are installed on the top of the inner wall of the guide frame 41, the bottom of the elastic telescopic pipe 42 is fixedly connected with a pressing plate 43, the guide frame 41 and the first supporting plate 38 are fixedly connected with a linkage plate 44, when the first lifting cylinder 310 drives the first electric drive wheel 39 to move to contact the glass bottom surface, the pressing plate 43 moves away from the glass.

[0045] After the cut glass is transported to the discharging position, the first lifting cylinder 310 drives the first supporting plate 38 to move downward, so that the first electric drive wheel 39 moves downward and separates from the glass surface, in this process, the first supporting plate 38 drives the linkage plate 44 to move downward, the linkage plate 44 drives the guide frame 41 to move downward, the guide frame 41 drives the elastic telescopic pipe 42 to move downward, so that the pressing plate 43 moves and is pressed tightly on the glass surface, which can play a certain fixing effect, so as to play a good stable supporting effect when the glass is cut and separated after cutting.

[0046] Embodiment 3:

[0047] Please refer to Figures 6-8 , this embodiment provides a technical scheme on the basis of the above embodiment: the two sides of the auxiliary plate 28 are symmetrically provided with four rotating seats 5 in a rectangular shape, a rotating rod 51 is rotatably connected between the two rotating seats 5, a plurality of rubber wheels 52 are equidistantly arranged on the surface of the rotating rod 51 along the axial direction, an inflatable soft rubber sleeve 510 is arranged outside the rubber wheel 52, a cavity is formed in the inner side of the rotating seat 5, a wire wheel 53 is coaxially fixedly connected outside the rotating rod 51, a traction line 54 is wound outside the wire wheel 53, a torsional spring 55 is installed between the rotating rod 51 and the inner wall of the cavity, a wire groove 56 is formed in the cavity and penetrates through the top end of the auxiliary plate 28, and the traction line 54 is fixedly connected with the vertical plate 26 through the wire groove 56 away from the wire wheel 53.

[0048] It should be noted that when the auxiliary cylinder 27 drives the auxiliary plate 28 to move downward to pull the traction line 54, the wire wheel 53 drives the rubber wheel 52 to rotate and pushes the glass to move away from the cutting table 1.

[0049] It should be further supplemented that the inflatable soft rubber sleeve 510 can deform when it is pressed, so as to not only play a good protection effect on the surface of the glass, but also make the contact friction force between the inflatable soft rubber sleeve 510 and the glass surface meet the need of fixing.

[0050] In the embodiment, the inner side surface of the rubber wheel 52 is provided with an arc-shaped groove 57, the outer part of the rotating rod 51 is fixedly connected with a protrusion 58 corresponding to the arc-shaped groove 57, and the buffer spring 59 is fixedly connected between the protrusion 58 and the inner wall of the arc-shaped groove 57.

[0051] When the auxiliary cylinder 27 drives the auxiliary plate 28 to move downward to fix the cut glass part, the rubber wheel 52 moves downward synchronously with the auxiliary plate 28, and when the inflatable soft rubber sleeve 510 outside the rubber wheel 52 contacts the glass surface, the rubber wheel 52 no longer moves, and continues to move downward with the continuous downward movement of the auxiliary plate 28 and applies pressure to the inflatable soft rubber sleeve 510, so that the inflatable soft rubber sleeve 510 deforms;

[0052] When the auxiliary plate 28 moves downward to drive the rubber wheel 52 to move downward, under the traction of the traction line 54, the line wheel 53 rotates to drive the torsional spring 55 to be compressed, and the rotation of the line wheel 53 also drives the rotating rod 51 and the rubber wheel 52 to rotate, and when the inflatable soft rubber sleeve 510 contacts the glass surface, the inflatable soft rubber sleeve 510 cannot rotate because the glass cannot move at this time, so that the rubber wheel 52 cannot rotate, at this time, the continuous rotation of the rotating rod 51 causes the relative rotation between the rotating rod 51 and the rubber wheel 52, so that the protrusion 58 slides along the inner wall of the arc-shaped groove 57 and compresses the buffer spring 59, so that the rubber wheel 52 that has stopped moving has a tendency to rotate;

[0053] When the cut glass is separated from the glass main body, it is no longer limited in movement, and under the drive of the buffer spring 59, the rubber wheel 52 and the inflatable soft rubber sleeve 510 rotate synchronously and push the separated glass away from the glass main body, so that there is a certain gap between them, thereby effectively avoiding the damage of the cut glass to the glass main body when the cut glass is discharged.

[0054] Embodiment 4:

[0055] Please refer to Figure 5 , Figure 9 , the embodiment provides a technical scheme based on the above-mentioned embodiments: the top of the auxiliary plate 28 is provided with two groups of second wheel grooves 6 arranged symmetrically, the inside of the auxiliary plate 28 is provided with a receiving cavity communicating with the second wheel grooves 6, the inner side surface of the receiving cavity is slidably connected with a second supporting plate 61, the top of the second supporting plate 61 is provided with a plurality of second electric drive wheels 62 corresponding to the second wheel grooves 6, the second electric drive wheels 62 are driven by an electric motor, and the bottom of the auxiliary plate 28 is fixedly provided with a second jacking cylinder 63, and the top of the extension end of the second jacking cylinder 63 is fixedly connected with the bottom of the second supporting plate 61.

[0056] After the cut glass is separated from the glass body, the second supporting plate 61 is driven to move upward by the second lifting cylinder 63, so that the second electric drive wheel 62 is in contact with the bottom surface of the glass, and then the cut glass is conveyed by rotating the second electric drive wheel 62, so that manual assistance in unloading can be effectively reduced, and the safety of glass cutting and unloading is better.

[0057] Embodiment 5

[0058] The embodiment provides a glass cutting control system for mirror processing on the basis of the above-mentioned embodiments. The motor for driving the X-axis screw rod 31 and the Y-axis screw rod 34 is electrically connected with the controller, and the first lifting cylinder 310 and the first electric drive wheel 39 are also electrically connected with the controller. Before cutting, the position of the pneumatic adjusting cutting head 36 is automatically adjusted by the X-axis screw rod 31 controlled by the controller, so that the distance between the pneumatic adjusting cutting head 36 and the end of the unloading end 12 is adapted to the size value of the glass to be cut. The single conveying distance of the first electric drive wheel 39 is also adapted to the size of the glass to be cut by the controller. After one cutting is completed, the controller can control the first electric drive wheel 39 to convey the glass, so that the cut glass part is conveyed to the outside of the unloading end 12, and the unloading is facilitated, and the part to be cut is conveyed to the lower side of the pneumatic adjusting cutting head 36 at the same time. After the first electric drive wheel 39 is separated from the glass, the pressing plate 43 is synchronously lowered and the glass is pressed and fixed, so that the cutting and unloading separation of the glass can be synchronously performed, and the cutting efficiency of the glass can be further improved.

[0059] The above only describes some exemplary embodiments of the application in a descriptive manner. It is needless to say that those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the application. Therefore, the above drawings and descriptions are illustrative in nature and should not be understood as limiting the scope of protection of the claims of the application.

Claims

1. A glass cutting apparatus for mirror processing, comprising a cutting table (1) and a cutting unit provided on the cutting table (1) for cutting glass, characterized in that, The cutting table (1) includes a feeding end (11) and a discharging end (12); The discharging end (12) side is provided with a bracket (2), the bracket (2) is provided with a lower supporting plate (21), the lower supporting plate (21) two sides are symmetrically rotatably connected with four supporting connecting rods (22), the supporting connecting rod (22) bottom end is rotatably connected with the inner wall of the bracket (2) away from the lower supporting plate (21) side, the bottom end of the supporting connecting rod (22) is inclinedly arranged towards the cutting table (1) side, the bottom of the inner wall of the bracket (2) is provided with a discharging cylinder (23), the top of the telescopic end of the discharging cylinder (23) is fixedly connected with a sliding block (24), the bottom of the lower supporting plate (21) is provided with a fault tolerance groove (25) matched with the sliding block (24), the top of the lower supporting plate (21) is provided with a vertical plate (26), the top of the vertical plate (26) is provided with an auxiliary cylinder (27), the bottom of the auxiliary cylinder (27) is provided with an auxiliary plate (28); The two sides of the auxiliary plate (28) are symmetrically provided with four rotating seats (5), the rotating seats (5) are rotatably connected with a rotating rod (51) between the two sides, a plurality of rubber wheels (52) are equidistantly arranged on the surface of the rotating rod (51) along the axial direction, the rubber wheels (52) are provided with inflatable soft rubber sleeves (510) outside, the inner side of the rotating seat (5) is provided with a cavity, the rotating rod (51) is coaxially fixedly connected with a wire wheel (53) outside, the wire wheel (53) is provided with a traction wire (54) wound outside, the rotating rod (51) and the inner wall of the cavity are provided with a torsion spring (55), the inside of the cavity is provided with a wire groove (56) penetrating through the top of the auxiliary plate (28), the end of the traction wire (54) away from the wire wheel (53) penetrates through the wire groove (56) and is fixedly connected with the vertical plate (26), the inner side of the rubber wheel (52) is provided with an arc-shaped groove (57), the rotating rod (51) is fixedly connected with a protrusion (58) corresponding to the arc-shaped groove (57) outside, the protrusion (58) and the inner wall of the arc-shaped groove (57) are fixedly connected with a buffer spring (59); When the auxiliary cylinder (27) drives the auxiliary plate (28) to move downward to pull the traction wire (54), the wire wheel (53) drives the rubber wheel (52) to rotate and pushes the glass to move away from the cutting table (1) side.

2. The glass cutting apparatus for mirror processing according to claim 1, wherein The cutting unit includes side plates (3) symmetrically installed on both sides of the cutting table (1), the side plates (3) are provided with mounting grooves on the side facing each other, the inner side of the mounting groove is rotatably connected with an X-axis screw rod (31), the inner side of the mounting groove is slidably connected with a supporting plate (32), the supporting plates (32) are provided with a top plate (33) between the two sides, the bottom of the top plate (33) is provided with a moving groove, the inner side of the moving groove is rotatably connected with a Y-axis screw rod (34), the inner side of the moving groove is slidably connected with a moving block (35), the bottom of the moving block (35) is provided with a pneumatic adjusting cutting head (36).

3. The glass cutting apparatus for mirror processing according to claim 2, wherein The support plate (32) is in threaded connection with the X axial screw (31), the moving block (35) is in threaded connection with the Y axial screw (34), and the X axial screw (31) and the Y axial screw (34) are driven by motors.

4. The glass cutting apparatus for mirror processing according to claim 2, wherein The top surface of the cutting table (1) is provided with symmetrically arranged first wheel grooves (37), the inside of the cutting table (1) is provided with a mounting cavity, the inner side of the mounting cavity is slidably connected with a first supporting plate (38), the top of the first supporting plate (38) is provided with a plurality of first electric drive wheels (39) corresponding to the first wheel grooves (37), the first electric drive wheels (39) are driven by a motor, and the bottom of the mounting cavity is provided with a first jacking cylinder (310), and the telescopic end of the first jacking cylinder (310) is fixedly connected with the bottom of the first supporting plate (38).

5. The glass cutting apparatus for mirror processing according to claim 4, wherein The inner side of the cutting table (1) is provided with a guide groove (4), the inner side of the guide groove (4) is slidably connected with a guide frame (41), the top of the inner wall of the guide frame (41) is provided with a plurality of elastic telescopic pipes (42), the bottom of the elastic telescopic pipe (42) is fixedly connected with a pressing plate (43), the guide frame (41) and the first supporting plate (38) are fixedly connected with a linkage plate (44), when the first jacking cylinder (310) drives the first electric drive wheel (39) to move to contact the bottom surface of the glass, the pressing plate (43) moves to separate from the glass.

6. The glass cutting apparatus for mirror processing according to claim 1, wherein The top of the auxiliary plate (28) is provided with symmetrically arranged two groups of second wheel grooves (6), the inside of the auxiliary plate (28) is provided with a receiving cavity in communication with the second wheel grooves (6), the inner side of the receiving cavity is slidably connected with a second supporting plate (61), the top of the second supporting plate (61) is provided with a plurality of second electric drive wheels (62) corresponding to the second wheel grooves (6), the second electric drive wheels (62) are driven by a motor, and the bottom of the auxiliary plate (28) is fixedly provided with a second jacking cylinder (63), and the top of the telescopic end of the second jacking cylinder (63) is fixedly connected with the bottom of the second supporting plate (61).

Citation Information

Patent Citations

  • Glass cutting device

    CN119038868B

  • Cutting device on glass production line and cutting method thereof

    CN109534671A

  • Glass cutting device

    CN219621075U

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