An edge smoothing device for tempered glass
By designing an edge smoothing device for tempered glass, the problems of efficiency and size adjustment of existing grinding equipment have been solved, realizing efficient and automated glass edge grinding and debris handling.
Patent Information
- Application Number
- CN202311251440.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-26
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-09-26
AI Technical Summary
In existing tempered glass processing, the grinding equipment has high efficiency and quality requirements, and it is difficult to make flexible adjustments according to the glass size.
An edge smoothing device for tempered glass was designed, comprising a base, a fixing frame, a drive platform, a pressing component, a grinding component, and a support wheel. Through the coordinated work of multiple cylinders and motors, the device achieves automated grinding and debris removal of the glass edges.
It improves the efficiency and quality of glass edge grinding, adapts to different glass sizes, reduces debris and dust pollution, and enhances processing efficiency and practicality.
Smart Images

Figure CN117359427B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of toughened glass processing, and particularly relates to an edge smoothing device for toughened glass. BACKGROUND
[0002] Toughened glass is actually a kind of prestressed glass. In order to improve the strength of the glass, a chemical or physical method is usually used to form a compressive stress on the surface of the glass. When the glass bears an external force, the surface stress is first offset. Before toughening, the glass needs to be cut into the required shape, and after cutting, the cutting part of the glass needs to be smoothed to improve the quality of the product. During processing, the smoothing is usually processed by polishing equipment.
[0003] After searching, the patent with the publication number CN108839268A discloses an edge cutting and polishing device for toughened glass production. The patent includes a base, an extension arm, a support plate and an operation platform. The surface of the base is fixed with a hydraulic cylinder. The inside of the extension arm is provided with a sliding rail. The inside of the sliding rail is provided with a sliding block. The inside of the first clamp is provided with an elastic plate. The upper side of the support plate is provided with a second motor. The inside of the second motor is provided with a three-phase asynchronous motor. The lower end outside of the screw rod is tightly attached to a sanding layer. The lower side of the three-phase asynchronous motor is provided with a support platform. The surface of the operation platform is fixed with a second clamp.
[0004] In the prior art, the polishing process is usually arranged after the glass is cut. Therefore, when a large amount of glass processing is carried out, the efficiency and quality of the polishing equipment are required to be higher. In addition, the polishing equipment needs to be adjusted conveniently according to the size of the processed glass. Therefore, the present application provides an edge smoothing device for toughened glass. SUMMARY
[0005] The purpose of the present application is to solve the above problems and provide an edge smoothing device for toughened glass.
[0006] In order to achieve the above purpose, the present application adopts the following technical scheme: an edge smoothing device for toughened glass, including a base, the upper side of the base is provided with a fixing frame, the lower side of the fixing frame is provided with two groups of second horizontal driving mechanisms, the output ends of the two groups of second horizontal driving mechanisms are respectively provided with pressing assemblies; two groups of pressing assemblies are driven by the second horizontal driving mechanisms to move in opposite directions until they move to 5-15 cm away from the edge of the glass to be processed.
[0007] The upper side of the base is provided with a driving table, and the driving table is distributed vertically to the moving direction of the two groups of second horizontal driving mechanisms.
[0008] The upper side of the base is provided with machining grooves near both sides of the driving table, and a plurality of first horizontal driving mechanisms are installed inside the two groups of machining grooves, which are vertically distributed with the driving table, and a plurality of equally spaced travel mechanisms are installed at the output end of each first horizontal driving mechanism, and the output end of each travel mechanism faces upward and is provided with a supporting wheel;
[0009] A first travel cylinder is installed inside the driving table, the output end of the first travel cylinder faces upward and is provided with a driving assembly; when the driving assembly is working, the top end thereof is lifted to the upper side of the driving table by the first travel cylinder and contacts the glass; when the driving assembly is not working, the top end thereof is accommodated inside the driving table;
[0010] A plurality of third travel cylinders are installed at the side of the two groups of machining grooves away from the driving table, the output end of each third travel cylinder on the same side faces the driving table and is provided with a driving frame, and the output end of the driving frame is provided with a polishing assembly.
[0011] Further, the driving assembly comprises a plurality of driving wheels, which are distributed in a matrix and are vertically distributed with the driving table, and a connecting rod is installed between each row of driving wheels, and one side of each row of driving wheels is provided with a driving motor;
[0012] The driving motor is in sliding connection with the driving table, and the output end of the driving motor is connected with an adjacent group of driving wheels; when the driving motor is started, each driving wheel in the corresponding row is driven to rotate;
[0013] Each connecting rod on the same row is rotatably connected with a rotating sleeve, and each rotating sleeve is connected with the first travel cylinder; when the first travel cylinder is started, each driving wheel and the driving motor are lifted by the rotating sleeve.
[0014] Further, the driving assembly further comprises a steering assembly, which is arranged at the middle part of the driving table, and the steering assembly comprises a lifting assembly, the output end of the lifting assembly faces upward and is provided with a steering unit, and the output end of the steering unit is provided with a plurality of adsorption assemblies;
[0015] The steering assembly is used for steering the glass to be processed; when steering, the adsorption assembly is lifted by the lifting assembly and is connected with the glass by adsorption, then the steering unit is started to steer the glass by the adsorption assembly, after steering, the adsorption assembly is disconnected from the glass, and then the lifting assembly is reset.
[0016] Further, the polishing assembly comprises a sleeve frame, the cross section of the sleeve frame is "N" type, and the sleeve frame is used for sleeving to the outside of the edge of the glass;
[0017] The interior of the sleeve frame is provided with three groups of polishing units, the first group of polishing units is opposite to the side surface of the glass, and the other two groups of polishing units are arranged on the upper and lower sides of the first group of polishing units to form a "concave" type three groups of polishing units for polishing the upper, lower and side surfaces of the glass.
[0018] Further, the two sides of the sleeve frame near the three groups of polishing units are provided with a plurality of cleaning units;
[0019] The plurality of cleaning units on each side are distributed on the upper and lower sides of the interior of the sleeve frame, and the output ends are directed towards the interior of the sleeve frame.
[0020] Further, the pressing assembly comprises a horizontal plate, the upper side of the horizontal plate is provided with a fourth stroke cylinder, the fourth stroke cylinder is connected with the corresponding second horizontal driving mechanism, and the lower surface of the horizontal plate is provided with a flexible pad.
[0021] Further, the base is provided with a dust collection module on each side;
[0022] The interiors of the two groups of sleeve frames are provided with a plurality of air inlets;
[0023] The input ends of the two groups of dust collection modules are respectively connected with the air inlets of the two groups of sleeve frames.
[0024] Further, the horizontal plate is provided with an air outlet, one end of the air outlet is connected with the outside, and the connection direction is directed towards one side of the corresponding polishing assembly;
[0025] The upper side of the horizontal plate is provided with a blowing mechanism, and the air outlet end of the blowing mechanism extends into the interior of the air outlet;
[0026] When the blowing mechanism works, air is discharged along the air outlet and blown towards one side of the corresponding polishing assembly.
[0027] Further, the support wheel comprises an assembly box, a rotating frame is rotatably connected in the interior of the assembly box, a swing assembly is arranged on the outer side of the assembly box, and the output end of the swing assembly is connected with one end of the assembly box;
[0028] A rotating pipe is mounted on one side of the rotating frame, a wheel body is rotatably connected on the outer side of the rotating pipe, when the rotating frame rotates based on the swing assembly, the side surface of the wheel body is upwardly arranged when rotating, and the side surface of the wheel body is arranged as a plane to avoid damaging the glass when contacting the glass.
[0029] Further, the interior of the rotating pipe is provided with an electromagnetic mechanism, and the outer side of the electromagnetic mechanism is provided with a plurality of output positions;
[0030] The rotating pipe is internally provided with a plurality of elastic members and friction members, one end of each friction member extends to the inside of the rotating pipe and is arranged at one side of each output part of the electromagnetic mechanism.
[0031] When the electromagnetic mechanism is started, each friction member is pressed against one side of the wheel body.
[0032] Further, the swing assembly adopts an independent driving unit, the independent driving unit is installed at one side of the corresponding assembly box and the output end is connected with the rotating frame for separately controlling the rotation of the wheel body inside the corresponding support wheel.
[0033] The stroke mechanism comprises a second stroke cylinder, and the output end of the second stroke cylinder is provided with a rotating motor, and the output end of the rotating motor is connected with the assembly box.
[0034] Further, the plurality of support wheels are arranged in multiple columns, and each column of support wheels is arranged perpendicularly to the driving table.
[0035] The swing assembly adopts a general control driving unit and a synchronization member, one end of the rotating frame in each support wheel extends to the outside of the assembly box and is provided with a connecting tooth.
[0036] The general control driving unit is installed at the outside of any support wheel in each column of support wheels, and a set of synchronization members are installed between the output end of the general control driving unit and the connecting tooth of each column of support wheels; when the general control driving unit works, it drives each wheel body in each column of support wheels to rotate synchronously.
[0037] The stroke mechanism comprises a second stroke cylinder, and the output end of the second stroke cylinder is connected with the assembly box.
[0038] As described above, due to the adoption of the above technical solutions, the present application has the following advantages:
[0039] When the device in the application processes the edges of the glass, the support wheels inside the base can adjust the moving distance, so that it can adapt to different sizes of glass, and when the glass is polished, the pressing assembly can support the glass, thereby protecting the glass, and the adjustment mode of the support wheel is simple and the working mode is more;
[0040] When polishing, the two groups of polishing assemblies can move along the edges of the two sides of the glass, and the pressing assembly can process the debris and dust generated during polishing;
[0041] Further, the device in the application is highly automated and mechanical, has high processing efficiency when continuously processing glass, and also has high processing efficiency when continuously processing different sizes of glass by adjusting the positions of the support wheels, the pressing assembly and the polishing assembly, and therefore has good practicability. BRIEF DESCRIPTION OF DRAWINGS
[0042] Figure 1 It is a structural schematic view of the edge smoothing device for toughened glass according to the present application;
[0043] Figure 2 It is a bottom view of the base according to the present application;
[0044] Figure 3 It is a side view of the polishing assembly according to the present application;
[0045] Figure 4 It is a front view of the pressing assembly according to the present application;
[0046] Figure 5 It is a sectional view of the supporting wheel according to the present application;
[0047] Figure 6 It is a top view of the supporting wheel according to the embodiment 1 of the present application;
[0048] Figure 7 It is an assembly schematic view of the supporting wheel according to the embodiment 2 of the present application;
[0049] LEGEND:
[0050] 1, base; 2, fixing frame; 3, driving table; 4, driving assembly; 5, first stroke cylinder; 6, first horizontal driving mechanism; 7, supporting wheel; 8, stroke mechanism; 9, third stroke cylinder; 10, driving frame; 11, polishing assembly; 12, second horizontal driving mechanism; 13, pressing assembly; 14, processing groove; 41, driving wheel; 42, connecting rod; 43, driving motor; 44, steering assembly; 131, horizontal plate; 132, fourth stroke cylinder; 133, air outlet; 134, flexible pad; 135, air blowing mechanism; 111, sleeve frame; 112, polishing unit; 113, cleaning unit; 71, assembly box; 72, rotating frame; 73, rotating pipe; 74, wheel body; 75, electromagnetic mechanism; 76, friction member; 77, independent driving unit; 78, general control driving unit; 79, synchronization member. DETAILED DESCRIPTION
[0051] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0052] Please refer to Figures 1-6The application provides a technical scheme: an edge smoothing device for tempered glass, which comprises a base 1, a fixing frame 2 is installed on the upper side of the base 1, dust suction modules are arranged on the two sides of the base 1, two groups of second horizontal driving mechanisms 12 are installed on the lower side of the fixing frame 2, and press components 13 are installed at the output ends of the two groups of second horizontal driving mechanisms 12 respectively; the two groups of press components 13 are driven by the second horizontal driving mechanisms 12 to move in opposite directions until they are moved to 5-15 cm away from the edges of the glass to be processed;
[0053] A driving table 3 is installed on the upper side of the base 1, and the driving table 3 is distributed perpendicularly to the moving directions of the two groups of second horizontal driving mechanisms 12;
[0054] Processing grooves 14 are formed on the two sides of the driving table 3 on the upper side of the base 1, a plurality of first horizontal driving mechanisms 6 are installed in the two groups of processing grooves 14, the plurality of first horizontal driving mechanisms 6 are distributed perpendicularly to the driving table 3, a plurality of stroke mechanisms 8 that are distributed at equal intervals are installed at the output ends of the first horizontal driving mechanisms 6 respectively, the output ends of the stroke mechanisms 8 are all upward, and supporting wheels 7 are installed on the stroke mechanisms 8;
[0055] A first stroke air cylinder 5 is installed in the driving table 3, the output end of the first stroke air cylinder 5 is upward, and a driving component 4 is installed on the first stroke air cylinder 5; when the driving component 4 works, the top end of the driving component 4 is lifted to the upper side of the driving table 3 through the first stroke air cylinder 5 and contacts the glass; when the driving component 4 does not work, the top end of the driving component 4 is accommodated in the driving table 3;
[0056] A plurality of third stroke air cylinders 9 are installed on the side of the two groups of processing grooves 14 that is far away from the driving table 3, the output ends of the plurality of third stroke air cylinders 9 on the same side are all toward the driving table 3, and a driving frame 10 is installed on the third stroke air cylinders 9, and a polishing component 11 is installed on the output end of the driving frame 10;
[0057] The driving frame 10 is provided with driving parts in two-dimensional directions, the driving parts and the corresponding third stroke air cylinders 9 form three-dimensional driving directions, the polishing component 11 is connected with the output end of the driving parts, the distance between the polishing component 11 and the driving table 3 is adjusted through the third stroke air cylinders 9, the polishing component 11 is sleeved to the outside of the edge of the glass to be processed through the driving frame 10, and the polishing component 11 contacts the edge and polishes the edge when the polishing component 11 works.
[0058] The driving component 4 comprises a plurality of driving wheels 41, the plurality of driving wheels 41 are distributed in a matrix and perpendicularly to the driving table 3, connecting rods 42 are installed between the driving wheels 41 in each row, and driving motors 43 are arranged on one side of each of the driving wheels 41;
[0059] The driving motor 43 is in sliding connection with the driving table 3, and the output end of the driving motor 43 is connected with the adjacent group of driving wheels 41; when the driving motor 43 is started, it drives each driving wheel 41 in the corresponding row to rotate;
[0060] The outer side of each connecting rod 42 in the same row is rotationally connected with a rotating sleeve, and each rotating sleeve is connected with the first stroke cylinder 5; when the first stroke cylinder 5 is started, it drives each driving wheel 41 and the driving motor 43 to lift through the rotating sleeve.
[0061] Please refer to Figure 2 , the driving assembly 4 further comprises a steering assembly 44, which is arranged at the middle part of the driving table 3, and the steering assembly 44 comprises a lifting assembly, the output end of the lifting assembly faces upward, and a steering unit is installed, and the output end of the steering unit is installed with a plurality of adsorption assemblies;
[0062] The steering assembly 44 is used for steering the glass to be processed; when steering, the adsorption assembly is lifted by the lifting assembly and is adsorbed and connected with the glass, then the steering unit is started, the glass is steered by the adsorption assembly, after steering, the adsorption assembly is disconnected with the glass, and then the lifting assembly resets.
[0063] Please refer to Figures 3-4 , the polishing assembly 11 comprises a sleeve frame 111, the cross section of the sleeve frame 111 is "N" type, which is used for sleeving to the outside of the edge of the glass;
[0064] The inside of the sleeve frame 111 is installed with three groups of polishing units 112, the first group of polishing units 112 faces the side surface of the glass, and the other two groups of polishing units 112 are arranged on the upper and lower sides of the first group of polishing units 112, to form "concave" three groups of polishing units 112, which polish the upper, lower and side surfaces of the glass respectively.
[0065] Further, the two sides of the sleeve frame 111 close to the three groups of polishing units 112 are installed with a plurality of cleaning units 113;
[0066] The plurality of cleaning units 113 on each side are distributed on the upper and lower sides of the inside of the sleeve frame 111, and the output ends thereof face the inside of the sleeve frame 111.
[0067] The pressing assembly 13 comprises a horizontal plate 131, the upper side of the horizontal plate 131 is installed with a fourth stroke cylinder 132, the fourth stroke cylinder 132 is connected with the corresponding second horizontal driving mechanism 12, and the lower surface of the horizontal plate 131 is installed with a flexible pad 134.
[0068] The inside of the two groups of sleeve frames 111 is provided with a plurality of air inlets;
[0069] The input ends of the two groups of dust collection modules are respectively communicated with the air inlets of the two groups of sleeve frames 111.
[0070] Further, the horizontal plate 131 is internally provided with an air outlet 133, one end of the air outlet 133 is in communication with the outside, and the communication direction is towards the side corresponding to the polishing assembly 11;
[0071] The upper side of the horizontal plate 131 is provided with a blowing mechanism 135, and the air outlet end of the blowing mechanism 135 extends to the inside of the air outlet 133;
[0072] When the blowing mechanism 135 works, air is discharged along the air outlet 133 and blown towards the side corresponding to the polishing assembly 11.
[0073] Please refer to Figures 5-6 , the support wheel 7 includes an assembly box 71, a rotating frame 72 is rotatably connected inside the assembly box 71, and a swing assembly is provided on the outside of the assembly box 71, and the output end of the swing assembly is connected to one end of the assembly box 71;
[0074] A rotating pipe 73 is installed on one side of the rotating frame 72, and a wheel body 74 is rotatably connected to the outside of the rotating pipe 73. When the rotating frame 72 rotates based on the swing assembly, the side surface of the wheel body 74 is upwardly arranged when rotating, and the side surface of the wheel body 74 is arranged as a plane to avoid damage to the glass when contacting it.
[0075] An electromagnetic mechanism 75 is installed inside the rotating pipe 73, and a plurality of output sites are provided on the outside of the electromagnetic mechanism 75;
[0076] A plurality of elastic members are installed in the rotating pipe 73, and each friction piece 76 extends to the inside of the rotating pipe 73, and is arranged on one side of each output site of the electromagnetic mechanism 75;
[0077] When the electromagnetic mechanism 75 is started, each friction piece 76 is pressed against one side of the wheel body 74 to avoid rotation of the wheel body 74 when supporting the glass.
[0078] The swing assembly uses an independent driving unit 77, which is installed on one side of the corresponding assembly box 71, and the output end is connected to the rotating frame 72, which is used to independently control the rotation of the wheel body 74 inside the corresponding support wheel 7;
[0079] And the stroke mechanism 8 includes a second stroke cylinder, and a rotating motor is installed on the output end of the second stroke cylinder, and the output end of the rotating motor is connected to the assembly box 71;
[0080] Through the rotating motor, each wheel body 74 can be switched between parallel to the driving table 3 and perpendicular to the driving table 3;
[0081] When parallel to the driving table 3, the glass is supported when the driving assembly 4 moves the glass;
[0082] When the vertical driving table 3 is adjusted, the wheel body 74 can be attached to the lower side of the glass and moved, and when the position is adjusted, the wheel body 74 can also be supported.
[0083] Working principle:
[0084] Before the glass is moved to the driving table 3, each driving assembly 4 is raised by the first stroke cylinder 5 until each driving wheel 41 in the driving assembly 4 is moved to the outside of the driving table 3, at the same time, each supporting wheel 7 is moved to the direction perpendicular to the driving table 3 based on the first horizontal driving mechanism 6, the moving distance is matched with the size of the two sides of the glass to be processed, and after the wheel body 74 in each supporting wheel 7 is turned to the horizontal state, the edge of the outermost wheel body 74 is located in the same vertical plane as the edge of the corresponding pressing assembly 13;
[0085] And the two groups of pressing assemblies 13 are also adjusted based on the second horizontal driving mechanism 12 until the side outward of the pressing assembly 13 is 7 cm away from the edge of the glass to be processed;
[0086] Then the glass is moved to the processing position by the driving assembly 4, and when the glass is moved, each wheel body 74 is supported by the driving wheel 41;
[0087] After the glass is moved, each supporting wheel 7 is lowered by the corresponding stroke mechanism 8, then the independent driving unit 77 is started, the wheel body 74 is turned by the rotating frame 72, the side of the wheel body 74 is set upward, then the stroke mechanism 8 lifts each supporting wheel 7, the side of each wheel body 74 is moved to the lower side of the glass and supported, at the same time, the fourth stroke cylinder 132 in the pressing assembly 13 is started, the horizontal plate 131 is lowered to the upper side of the glass, and the glass is clamped by cooperating with the wheel body 74;
[0088] Finally, the third stroke cylinder 9 and the driving frame 10 are started, the polishing assembly 11 is set to the outside of the corresponding edge of the glass, and the glass is polished by the three groups of polishing units 112 inside the polishing assembly 11, and during polishing, the debris and dust generated by polishing are recycled by the cleaning unit 113, the air blowing mechanism 135 and the dust collection module.
[0089] Embodiment 2
[0090] Please refer to Figure 7 Compared with embodiment 1, the plurality of supporting wheels 7 in embodiment 2 are arranged in multiple columns, and each column of supporting wheels 7 is arranged vertically to the driving table 3;
[0091] The swing assembly adopts a general control driving unit 78 and a synchronization part 79, one end of the rotating frame 72 in each supporting wheel 7 extends to the outside of the assembly box 71, and a connecting tooth is installed on the one end;
[0092] The total control driving unit 78 is installed on the outer side of any support wheel 7 in each column of support wheels 7, and a set of synchronizers 79 is installed between the output end of the total control driving unit 78 and the connecting tooth of each column of support wheels 7; when the total control driving unit 78 works, it drives each wheel body 74 in each column of support wheels 7 to rotate synchronously;
[0093] And the stroke mechanism 8 comprises a second stroke cylinder, and the output end of the second stroke cylinder is connected with the assembling box 71;
[0094] When the wheel body 74 is adjusted, each wheel body 74 in each column can be adjusted synchronously through the synchronizer 79, and the expansibility of the device is sacrificed to reduce the production cost.
[0095] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A device for smoothing the edges of toughened glass, comprising a base (1) having a fixing frame (2) mounted on its upper side, characterized in that, Also include: Pressing assembly (13), two groups of the pressing assembly (13) are connected with the fixed frame (2) through a group of second horizontal drive mechanism (12); Drive table (3), installed inside the base (1), and the moving direction of the two groups of second horizontal drive mechanism (12) is perpendicular distribution; Drive assembly (4) is connected with drive table (3) through first stroke cylinder (5); Processing groove (14), two groups of the processing groove (14) are set up in the inside of base (1), and are arranged in the both sides of drive table (3), the inside of two groups of the processing groove (14) is installed with a plurality of first horizontal drive mechanism (6), a plurality of first horizontal drive mechanism (6) are perpendicular to the distribution of drive table (3); The output end of each first horizontal drive mechanism (6) is installed with a plurality of equidistant distribution stroke mechanism (8); Support wheel (7), a plurality of support wheel (7) are connected with each stroke mechanism (8) respectively; Third stroke cylinder (9), a plurality of third stroke cylinder (9) are divided into two groups, and two groups of third stroke cylinder (9) are installed in the inside of two groups of processing groove (14) respectively; Drive frame (10), two groups of drive frame (10) are connected with two groups of third stroke cylinder (9), and the output end of each drive frame (10) is installed with polishing assembly (11); The support wheel (7) includes an assembly box (71), a rotating frame (72) is rotatably connected inside the assembly box (71), and a swing assembly is arranged on the outside of the assembly box (71), and the output end of the swing assembly is connected with one end of the assembly box (71); A rotating tube (73) is installed on one side of the rotating frame (72), and a wheel body (74) is rotatably connected to the outside of the rotating tube (73); An electromagnetic mechanism (75) is installed inside the rotating tube (73), and a plurality of output sites are arranged on the outside of the electromagnetic mechanism (75); A plurality of elastic members are installed in the rotating tube (73), one end of each friction piece (76) extends into the rotating tube (73), and each friction piece (76) is arranged on one side of each output site of the electromagnetic mechanism (75); When the electromagnetic mechanism (75) is started, the other end of each friction piece (76) is pressed against one side of the wheel body (74); The swing assembly adopts an independent drive unit (77), which is installed on one side of the corresponding assembly box (71), and the output end is connected with the rotating frame (72); The stroke mechanism (8) includes a second stroke cylinder, a rotating motor is installed on the output end of the second stroke cylinder, and the output end of the rotating motor is connected with the assembly box (71).
2. The apparatus for smoothing the edge of tempered glass according to claim 1, wherein The polishing assembly (11) includes a sleeve frame (111), and the cross section of the sleeve frame (111) is "N" shaped; Three groups of polishing units (112) are installed inside the sleeve frame (111), and the three groups of polishing units (112) are distributed in a "concave" shape.
3. The apparatus for smoothing the edge of tempered glass according to claim 2, wherein A plurality of cleaning units (113) are installed on the upper and lower sides inside the sleeve frame (111); Dust collection modules are arranged on both sides of the base (1); A plurality of air inlets are formed in the inside of two groups of sleeve frames (111). The input ends of the two groups of dust suction modules are connected with the air inlets of the two groups of sleeve frames (111) respectively.
4. The apparatus for smoothing the edge of tempered glass according to claim 3, wherein The pressing assembly (13) comprises a horizontal plate (131), a fourth stroke cylinder (132) is installed on the upper side of the horizontal plate (131), and a flexible pad (134) is installed on the lower surface of the horizontal plate (131).
5. The apparatus for smoothing the edge of a tempered glass according to claim 4, wherein An air outlet (133) is formed in the horizontal plate (131), one end of the air outlet (133) is communicated with the outside; A blowing mechanism (135) is installed on the upper side of the horizontal plate (131), and the air outlet end of the blowing mechanism (135) extends into the air outlet (133); When the blowing mechanism (135) works, air is discharged along the air outlet (133) and blown towards the side of the corresponding polishing assembly (11).
6. The apparatus for smoothing the edge of tempered glass according to claim 1, wherein The plurality of support wheels (7) are arranged in multiple columns, and each column of support wheels (7) is arranged vertically to the driving table (3). The swinging assembly adopts a general control driving unit (78) and a synchronous part (79); The general control driving unit (78) is installed on the outer side of any support wheel (7) in each column of support wheels (7), and the output end of the general control driving unit (78) and each support wheel (7) in each column are synchronously rotated through the synchronous part (79); The stroke mechanism (8) comprises a second stroke cylinder, and the output end of the second stroke cylinder is connected with the assembly box (71).
Citation Information
Patent Citations
Edge cutting and polishing device for tempered glass production
CN108839268A
Constructional engineering energy-saving material maintenance device
CN113715144A
Glass panel corner polishing equipment
CN210849547U
Corner grinding device for aluminum alloy production
CN211029335U
Full-automatic edge grinding machining device for tempered glass
CN214054706U