Glass processing edge cutting machine

By combining a servo motor-driven bidirectional lead screw system with a telescopic rod and cylinder body, the glass edge cutting machine achieves stability and adaptability, solves glass processing problems under different chamfering requirements, and reduces the risk of glass breakage and insufficient precision.

CN223752640UActive Publication Date: 2026-01-02JIANGYIN YUNFENG GLASS PRODUCTS CO LTD
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Patent Information

Application Number
CN202423248500.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2026-01-02
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing glass edge cutting machines are prone to glass breakage when processing chamfers of different sizes and requirements, and the processing is unstable, affecting the precision of the glass.

Method used

A servo motor-driven bidirectional lead screw system, combined with a telescopic rod and cylinder body, enables step-by-step processing by adjusting the tilt and angle of the processing plate, thereby increasing the stability and adaptability of the glass.

Benefits of technology

It reduces the possibility of glass breaking due to excessive force during processing, improves processing stability and precision, and adapts to glass requirements of various thicknesses and sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of glass processing, and particularly relates to a glass processing edge cutting machine which comprises a processing device base. The feeding device main body is mounted at the top of the outer side of the processing device base; a servo motor is fixedly connected to one side of the outer portion of the machining device base. When the edge of the glass is chamfered, the sizes and requirements of different glass chamfers are different, and if the glass is machined at a time during machining, the glass is possibly subjected to large force, and the possibility that the glass is broken is increased, so that the inclination of the machining plate main body is adjusted through a second telescopic rod, and the machining efficiency is improved. The requirements of the device for processing glass with various thicknesses and sizes are increased, the glass is gradually processed by the two groups of processing plate main bodies, and the situation that the glass is broken due to large stress caused by one-time processing forming of the glass is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass processing technical field, specifically a glass processing edge cutting machine. BACKGROUND

[0002] Glass is a kind of hard and brittle transparent object, usually by silica sand, sodium carbonate and limestone and other raw materials are mixed, in high temperature, shaping, cooling and made, with hard, fragile, transparent, high temperature resistant characteristics, widely used in building, household appliances, automobile manufacturing and other fields.

[0003] Glass processing edge cutting machine is a kind of device that processes chamfer to the edge of glass, usually by sliding structure, cutting structure, electrical system is composed, wherein because the hardness of glass is higher, cutting structure is usually composed of diamond or other tough material part.

[0004] In the prior art, when chamfering the edge of glass, the size and requirement of different glass chamfers are also different, and if once processing is formed during processing, the glass may be subjected to greater force, and the possibility of glass breakage increases;Therefore, a glass processing edge cutting machine is proposed for the above problems. INVENTION CONTENTS

[0005] In order to make up for the deficiency of prior art, solve at least one technical problem proposed in the background art, the utility model provides a kind of glass processing edge cutting machine.

[0006] The technical scheme adopted by the utility model to solve its technical problems is: a kind of glass processing edge cutting machine according to the utility model, including processing device base;The feeding device main body is installed on the outside top of the processing device base;Servo motor is fixedly connected on one side outside the processing device base;The output end of the servo motor is fixedly connected with a double screw;The double screw rotates in the inside of processing device base;The sliding plate is connected with the outside screw thread of the double screw;The sliding plate slides in the inside of processing device base;The square groove is formed in the inside of the sliding plate close to the one side of processing device base;The first telescopic rod is installed in the inside of square groove;The sliding block is fixedly connected on the telescopic end of the first telescopic rod;The sliding block slides in the inside of square groove;The spring shaft is installed on one side of the sliding block;Two groups of processing plate main body are hinged on the outside of the spring shaft;The driving motor is fixedly connected in the inside of processing plate main body;The grinding head is fixedly connected on the output end of the driving motor;The second telescopic rod is installed in the middle of processing plate main body;The grinding head rotates in the inside of processing plate main body;Synchronous transmission belt is installed on the end of the double screw;The synchronous transmission belt is connected with another servo motor.

[0007] Preferably, the sliding block is fixed with support plates on both sides close to the spring rotation shaft; a rotating cylinder is hinged in the middle of the support plate; a cylinder body is hinged on the outside of the rotating cylinder; and the cylinder body is hinged with the machining plate body away from the rotating cylinder.

[0008] Preferably, a sliding groove is formed in the inside of the machining device base; a rotating column is fixed in the inside of the sliding groove; a limiting spring is installed on the outside of the rotating column; a limiting block is slidingly connected on the outside of the rotating column; and the limiting block slides in the sliding groove.

[0009] Preferably, a feeding plate is formed on one side of the outside of the machining device base; and a cleaning brush is installed on the top of the inside of the feeding plate.

[0010] Preferably, a spring plate is installed in the inside of the limiting block.

[0011] Preferably, a chip removal groove is formed in the inside of the machining device base.

[0012] Preferably, guide angles are arranged on both sides of the feeding device body close to the sliding plate.

[0013] The machining device base has the advantages that:

[0014] The glass machining edge cutting machine has the advantages that: the size and requirements of different glass chamfers are different when chamfering the glass edge; if the glass is processed at one time, the glass may be subjected to a large force, and the possibility of glass breakage increases; the inclination of the machining plate body is adjusted by the second telescopic rod, the requirements of the device for processing glasses of various thicknesses and sizes are increased, two groups of machining plate bodies gradually process the glass, and the situation that the glass is broken due to a large stress caused by one-time processing of the glass is reduced.

[0015] The glass machining edge cutting machine has the advantages that: the size and requirements of different glass chamfers are different when chamfering the glass edge; if the glass is processed at one time, the glass may be subjected to a large force, and the possibility of glass breakage increases; the inclination of the machining plate body is adjusted by the second telescopic rod, the requirements of the device for processing glasses of various thicknesses and sizes are increased, two groups of machining plate bodies gradually process the glass, and the situation that the glass is broken due to a large stress caused by one-time processing of the glass is reduced. ACCREDITED DRAWINGS

[0016] The drawings described herein are used to provide a further understanding of the present application, and constitute a part of the present application. The schematic embodiments of the present application and the description thereof are used to explain the present application, and do not constitute an improper limitation on the present application.

[0017] In the drawings:

[0018] Figure 1 It is a perspective structural schematic view of the machining device base in the present application.

[0019] Figure 2 It is the three-dimensional section structure schematic view of the main body of the feeding device in the utility model;

[0020] Figure 3 It is the first telescopic rod structure schematic view in the utility model;

[0021] Figure 4 It is Figure 2 The enlarged view of A.

[0022] In the drawing: 1, processing device base; 11, feeding device main body; 12, servo motor; 13, bidirectional screw; 14, sliding plate; 15, square groove; 16, first telescopic rod; 17, sliding block; 18, spring rotating shaft; 19, processing plate main body; 100, driving motor; 101, grinding head; 102, second telescopic rod; 103, synchronous transmission belt; 2, support plate; 21, rotating cylinder; 22, cylinder main body; 3, sliding groove; 31, rotating column; 32, limit spring; 33, limit block; 4, feeding plate; 41, cleaning brush; 5, spring plate; 6, chip removal groove; 7, guide angle. DETAILED DESCRIPTION

[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0024] As Figures 1-4As shown, a glass processing edge cutting machine, including processing device base 1; the feeding device body 11 is installed on the outside top of the processing device base 1; the servo motor 12 is fixedly connected to one side of the outside of the processing device base 1; the bidirectional screw rod 13 is fixedly connected to the output end of the servo motor 12; the bidirectional screw rod 13 rotates inside the processing device base 1; the sliding plate 14 is threadedly connected to the outside of the bidirectional screw rod 13; the sliding plate 14 slides inside the processing device base 1; the square groove 15 is formed in the inside of the sliding plate 14 close to one side of the processing device base 1; the first telescopic rod 16 is installed in the square groove 15; the sliding block 17 is fixedly connected to the telescopic end of the first telescopic rod 16; the sliding block 17 slides inside the square groove 15; the spring shaft 18 is installed on one side of the sliding block 17; two groups of processing plate bodies 19 are hingedly connected to the outside of the spring shaft 18; the driving motor 100 is fixedly connected to the inside of the processing plate body 19; the grinding head 101 is fixedly connected to the output end of the driving motor 100; the second telescopic rod 102 is installed in the processing plate body 19; the grinding head 101 rotates inside the processing plate body 19; the synchronous transmission belt 103 is installed at the end of the bidirectional screw rod 13; the synchronous transmission belt 103 is connected with another group of servo motors 12; when working, first drive the servo motor 12 to start driving the bidirectional screw rod 13 to rotate, the synchronous transmission belt 103 makes the two groups of bidirectional screw rods 13 rotate synchronously inside the processing device base 1, and the sliding plate 14 moves away from or approaches each other inside the processing device base 1, when adjusted to the appropriate position, drive the first telescopic rod 16 and the second telescopic rod 102, make the processing plate body 19 start to rotate around the spring shaft 18, adjust the sliding block 17 and the processing plate body 19 to the appropriate position according to the thickness of the glass, drive the motor 100 to drive the grinding head 101 to rotate inside the processing plate body 19, then place the raw material to be processed on the top of the processing device base 1, and then drive the feeding device body 11 to move the raw material, the raw material is gradually processed when passing through the multiple grinding heads 101, when processing the chamfer of the glass edge, the size and requirement of different glass chamfers are different, and if it is processed at one time, the glass may be subjected to a large force, increasing the possibility of glass breakage, so the inclination of the processing plate body 19 is adjusted through the second telescopic rod 102, increasing the requirement of the device for processing glass of various thicknesses and sizes, and the two groups of processing plate bodies 19 gradually process the glass, reducing the situation that the glass is broken due to large stress caused by one-time processing.

[0025] As Figure 3As shown, the slider 17 is fixed with support plate 2 on both sides of the spring shaft 18; the middle of the support plate 2 is hinged with the rotating drum 21; the outer side of the rotating drum 21 is hinged with the cylinder body 22; the end of the cylinder body 22 away from the rotating drum 21 is hinged with the processing plate body 19; when the second telescopic rod 102 is adjusted to adjust the angle of the processing plate body 19, the support plate 2 is fixed outside the slider 17, and the cylinder body 22 starts to rotate and stretch around the rotating drum 21 according to the angle of rotation of the processing plate body 19. When the angle of the processing plate body 19 is adjusted to process different requirements of glass, the use of the cylinder body 22 and the support plate 2 increases the stability of the processing plate body 19 when processing glass, and reduces the situation that the precision of glass is insufficient due to the instability of the processing plate body 19.

[0026] As shown in Figures 1-2 , 4, the processing device base 1 is internally provided with a sliding groove 3; the sliding groove 3 is internally fixed with a rotating column 31; the outer side of the rotating column 31 is installed with a limiting spring 32; the outer side of the rotating column 31 is slidingly connected with a limiting block 33; the limiting block 33 slides inside the sliding groove 3; when the sliding plate 14 slides on the top of the processing device base 1, it will extrude the limiting block 33, so that it slides inside the sliding groove 3 around the rotating column 31, and at the same time extrudes the limiting spring 32. When the raw material passes through the limiting block 33, the limiting block 33 will limit the raw material. In the process of pushing the glass for processing, the limiting block 33 limits the two sides of the glass, increasing the stability of the glass when being processed.

[0027] As shown in Figures 1-2 , the processing device base 1 is internally provided with a sliding groove 3; the sliding groove 3 is internally fixed with a rotating column 31; the outer side of the rotating column 31 is installed with a limiting spring 32; the outer side of the rotating column 31 is slidingly connected with a limiting block 33; the limiting block 33 slides inside the sliding groove 3; when the sliding plate 14 slides on the top of the processing device base 1, it will extrude the limiting block 33, so that it slides inside the sliding groove 3 around the rotating column 31, and at the same time extrudes the limiting spring 32. When the raw material passes through the limiting block 33, the limiting block 33 will limit the raw material. In the process of pushing the glass for processing, the limiting block 33 limits the two sides of the glass, increasing the stability of the glass when being processed.

[0028] As shown in Figure 2 , 4 , the limiting block 33 is internally provided with a spring plate 5; when the glass passes through the limiting block 33, the spring plate 5 will be extruded, and the spring plate 5 will start to contract, and at the same time the spring plate 5 will limit the glass, and the use of the spring plate 5 further increases the stability of the glass during processing.

[0029] As shown in Figure 2As shown, the processing device base 1 has a chip removal groove 6 inside; when processing glass during operation, some chips will be generated. These chips are discharged into the processing device base 1 through the chip removal groove 6, which increases the cleanliness of the processing device base 1.

[0030] like Figure 1 As shown, guide angles 7 are provided on both sides of the main body 11 of the feeding device near the sliding plate 14. When the sliding plate 14 approaches the main body 11 of the feeding device during operation, the sliding plate 14 can smoothly enter the bottom of the main body 11 of the feeding device through the guiding effect of the guide angles 7, reducing the possibility of collision between the main body 11 of the feeding device and the sliding plate 14 due to long-term use and displacement.

[0031] The working principle is that first, the servo motor 12 is driven to start driving the bidirectional screw rod 13 to rotate, the synchronous transmission belt 103 synchronously drives the two groups of bidirectional screw rods 13 to rotate inside the machining device base 1, and the sliding plates 14 are close to or away from each other inside the machining device base 1, when the position is adjusted to be appropriate, the first telescopic rod 16 and the second telescopic rod 102 are driven to make the machining plate main body 19 start rotating around the spring rotating shaft 18, the slider 17 and the machining plate main body 19 are adjusted to appropriate positions according to the thickness of the glass, the motor 100 drives the grinding head 101 to rotate inside the machining plate main body 19, the raw material to be processed is placed on the top of the machining device base 1, then the feeding device main body 11 is driven to move the raw material, the raw material gradually completes processing when passing through the multiple groups of grinding heads 101, when the glass edge is processed to be chamfered, the size and requirements of different glass chamfers are different, and if the glass is processed once, the glass may be subjected to a large force, and the possibility of glass breakage increases, therefore, the second telescopic rod 102 is used to adjust the inclination of the machining plate main body 19, the requirements of the device for processing glasses of various thicknesses and sizes are increased, the two groups of machining plate main bodies 19 gradually process the glass, the situation that the glass is broken due to a large force caused by one-time processing of the glass is reduced, when the second telescopic rod 102 is telescoped to adjust the angle of the machining plate main body 19, the supporting plate 2 is fixed outside the slider 17, the cylinder main body 22 starts rotating and telescoping around the rotating cylinder 21 according to the angle of rotation of the machining plate main body 19, when the angle of the machining plate main body 19 is adjusted to process the glass with different requirements, the use of the cylinder main body 22 and the supporting plate 2 increases the stability of the machining plate main body 19 when processing the glass, reduces the situation that the glass precision is insufficient due to the instability of the machining plate main body 19, when the sliding plate 14 slides on the top of the machining device base 1, the limiting block 33 is extruded to slide inside the sliding groove 3 around the rotating column 31, and the limiting spring 32 is extruded, the limiting block 33 limits the raw material when the raw material passes through the limiting block 33, the limiting block 33 limits the two sides of the glass during the process of pushing the glass for processing, and the stability of the glass during processing is increased, when the raw material is fed into the machining device base 1, the feeding plate 4 extrudes the cleaning brush 41, and then the cleaning brush 41 starts to deviate and bend to clean the surface of the glass, some stains on the surface of the raw material may affect the processing effect during the processing of the raw material, therefore, the cleaning brush 41 is used to clean the raw material, and the influence of the stains on the surface of the glass on the processing effect is reduced, when the glass passes through the limiting block 33, the spring plate 5 is extruded to contract, and the spring plate 5 limits the glass, and the use of the spring plate 5 further increases the stability of the glass during processing, some debris is generated during the processing of the glass, the debris is discharged from the machining device base 1 through the debris discharge groove 6, and the cleanliness of the machining device base 1 is increased.When the sliding plate 14 approaches the feeding device body 11, the sliding plate 14 can be guided into the bottom of the feeding device body 11 through the guiding angle 7, and the possibility of collision between the feeding device body 11 and the sliding plate 14 due to long-term use is reduced.

[0032] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application.

Claims

1. A glass processing edge cutting machine comprising a processing device base (1); characterized in that: The outer top of the machining device base (1) is provided with a feeding device body (11); one side of the outer part of the machining device base (1) is fixedly connected with a servo motor (12); the output end of the servo motor (12) is fixedly connected with a bidirectional screw rod (13); the bidirectional screw rod (13) rotates inside the machining device base (1); the outer side of the bidirectional screw rod (13) is threadedly connected with a sliding plate (14); the sliding plate (14) slides inside the machining device base (1); a square groove (15) is formed in the inner side of the sliding plate (14) close to the machining device base (1); the first telescopic rod (16) is arranged in the square groove (15); the telescopic end of the first telescopic rod (16) is fixedly connected with a sliding block (17); the sliding block (17) slides inside the square groove (15); the sliding block (17) is provided on one side with a spring rotating shaft (18); the outer side of the spring rotating shaft (18) is hingedly connected with two sets of machining plate bodies (19); the inner side of the machining plate body (19) is fixedly connected with a driving motor (100); the output end of the driving motor (100) is fixedly connected with a grinding head (101); the second telescopic rod (102) is arranged in the machining plate body (19); the grinding head (101) rotates inside the machining plate body (19); the end of the bidirectional screw rod (13) is provided with a synchronous transmission belt (103); the synchronous transmission belt (103) is connected with another servo motor (12).

2. An edge cutting machine for processing glass according to claim 1, characterized in that: The sliding block (17) is fixedly connected with a support plate (2) on both sides close to the spring rotating shaft (18); the middle part of the support plate (2) is hingedly connected with a rotating cylinder (21); the outer side of the rotating cylinder (21) is hingedly connected with a cylinder body (22); the end of the cylinder body (22) away from the rotating cylinder (21) is hingedly connected with the machining plate body (19).

3. An edge cutting machine for processing glass according to claim 1, characterized in that: The inner part of the machining device base (1) is provided with a sliding groove (3); the inner part of the sliding groove (3) is fixedly connected with a rotating column (31); the outer side of the rotating column (31) is provided with a limiting spring (32); the outer side of the rotating column (31) is slidingly connected with a limiting block (33); the limiting block (33) slides inside the sliding groove (3).

4. An edge cutting machine for processing glass according to claim 1, characterized in that: The outer part of the machining device base (1) is provided with a feeding plate (4); the inner top of the feeding plate (4) is provided with a cleaning brush (41).

5. An edge cutting machine for processing glass according to claim 3, characterized in that: The inner part of the limiting block (33) is provided with a spring plate (5).

6. An edge cutting machine for processing glass according to claim 1, characterized in that: The inner part of the machining device base (1) is provided with a chip removal groove (6).

7. An edge cutting machine for processing glass according to claim 1, characterized in that: The outer sides of the feeding device body (11) are provided with guide angles (7) close to the sliding plate (14).