Substrate glass severing frame device and use method

By designing air shielding, air guide groove and air guide main board in the substrate glass breaker rack device, the problem of damage caused by air flow during the handover process is solved, and the damage to the equipment by high temperature is reduced, and production stability and product quality are improved.

CN120025067AActive Publication Date: 2025-05-23IRICO DISPLAY DEVICES CO LTD
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Patent Information

Application Number
CN202510403090.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2025-01-24
Filing Date
2025-04-01
Publication Date
2025-05-23
Estimated Expiration
2045-04-01

AI Technical Summary

Technical Problem

During the overflow pull-down process, the glass substrate is easily shaken by tiny airflow during the handover process, resulting in damage, and high temperature and glass plate damage can easily damage the structure, circuit and electronic components of the board-bending frame.

Method used

A substrate glass plate-bending rack device is designed, including plate-bending rack, air shielding plate, air guide groove and air guide motherboard. The air shield is laid flat on the beating rack. The air guide groove leads to the center or side of the beating rack through the recessed part of the air shield. The air guide main plate is fixedly connected to the air shield to form an adjustable air inlet to control the air volume and direction.

Benefits of technology

By reducing the shaking of the glass plate caused by wind resistance during the displacement of the plate-beating robot, the probability of glass fragments falling on the shaking rack is reduced, preventing high temperatures from causing damage to the equipment, and improving production stability and product quality.

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Abstract

The invention relates to the technical field of plate glass manufacturing, and discloses a substrate glass severing frame device and a use method.The device comprises a severing frame, a wind shielding plate, a wind guiding groove and a wind guiding main plate; the wind shielding plate is flatly laid on the plate breaking-off frame; one plate surface of the wind shielding plate is sunken and penetrates through the wind shielding plate, so that a streamline wind guide groove leading to the center or the side part of the plate severing frame is formed; a certain angle is formed between the air guide groove and the air shielding plate; and the air guide main plate is fixedly connected with the air shielding plate to form an adjustable air inlet. The wind shielding plate is arranged on the plate severing frame, so that shaking and breaking of a glass plate caused by the fanning effect in the displacement process of the plate severing robot can be reduced, and damage of high temperature to the structure, circuits, pipelines and electronic elements of the plate severing frame is also reduced; the air inlet amount is controlled through the cooperation of the air guide groove formed in the air shielding plate and the air guide main plate, then the shaking amplitude of the glass plate is controlled, and the risk that the air shielding plate makes contact with the glass substrate due to wind resistance deformation is reduced.
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Description

Technical Field

[0001] The invention relates to the field of overflow down-draw flat glass manufacturing, and in particular to a substrate glass breaking frame device. Background Art

[0002] In the overflow down-drawing method of producing substrate glass production system, the continuity of production is crucial. When the glass substrate is damaged due to shaking during the plate breaking and displacement process, it will affect the stability of production. The glass substrate flows out of the annealing furnace and is pulled down to form a waterfall. Before starting to break the plate, the system will plan the cutting path according to the preset cutting plan. The cutting tool cuts on the glass substrate according to the pre-planned path. After the cross-cutting mechanism cuts, the plate breaking robot breaks the plate and hands it over to the loading robot, which hangs the glass plate on the transport cart to enter the next process.

[0003] Because the glass substrate is thin, only a few hundred microns, and large, up to several square meters, the surface tension of the glass substrate is very large; during the handover process, the tiny airflow will produce a large fluctuation, which will cause the glass substrate to break. In addition, high temperature and glass plate damage can easily damage the structure, circuits, pipes and electronic components on the breakout rack, ultimately affecting production. Summary of the invention

[0004] In order to solve the existing problems, the present invention provides a substrate glass breaking rack device, which has the technical advantages of reducing the shaking of the glass plate during the handover process, isolating the damage to the equipment circuit by high temperature, and reducing the scratches on the glass, and can ventilate and cool the glass substrate by controlling the air guide groove.

[0005] In the first aspect, the present invention provides a substrate glass breaking frame device, comprising a breaking frame, a wind shield, an air guide groove and an air guide main board; the wind shield is flatly arranged on the breaking frame; a plate surface of the wind shield is recessed and passes through the wind shield to form a streamlined air guide groove leading to the center or side of the breaking frame; the air guide groove is at a certain angle to the wind shield; the air guide main board is fixedly connected to the wind shield to form an adjustable air inlet.

[0006] As a further improvement of the present invention, the air guide main board is in the shape of a flat rectangular parallelepiped and gradually narrows toward one side in the length direction.

[0007] As a further improvement of the present invention, the square end of the air guide main board is connected to the wind shielding plate through a third adjustment mechanism; the third adjustment mechanism is a hinge or universal joint structure.

[0008] As a further improvement of the present invention, it also includes air guide side plates; the air guide side plates are arranged on both sides of the air guide main board, the shape of the air guide side plates is a curved triangle, and the length of the air guide side plates is shorter than the length of the air guide main board; the air guide side plates and the air guide main board are hinged; the number of the air guide side plates is at least twice the number of the air guide slots.

[0009] As a further improvement of the present invention, it also includes a first adjustment mechanism; the first adjustment mechanism includes a connecting rod, a slider and a guide rail; one end of the connecting rod is connected to the wind guide side plate through a universal joint, and the other end of the connecting rod is slidably connected to the guide rail through a slider; the guide rail is fixedly connected to the wind shield.

[0010] As a further improvement of the present invention, the board surfaces corresponding to the air guide main board and the air guide groove are streamlined smooth curved surfaces; the board surfaces corresponding to the air guide side board and the air guide groove are streamlined smooth curved surfaces.

[0011] As a further improvement of the present invention, the narrowed end of the air guide main board is connected to the wind shield plate through a second adjustment mechanism to adjust the gap size between the air guide main board and the wind shield plate; the second adjustment mechanism includes at least two bolts symmetrically arranged along the center line of the air guide main board.

[0012] As a further improvement of the present invention, the projection of the wind guide groove on the wind shield surface is in the shape of a shark fin.

[0013] As a further improvement of the present invention, there are at least an even number of the air guide grooves, which are symmetrically arranged along the center line of the wind shield plate; and the number of the air guide main plates is consistent with the number of the air guide grooves.

[0014] On the other hand, the present invention discloses a method for using a substrate glass breaking frame device, comprising the following steps: Install the wind shield on the board breaking frame; Adjust the distance between the wind guide main board and the wind shielding board; When the board breaking rack is moving in, the wind shielding plate is used to reduce the fanning caused by the wind guide groove, and the wind resistance is reduced through the air inlet; During the process of moving the panel frame out, the wind shield is used to block the wind, and the wind resistance is reduced through the air inlet.

[0015] The present invention has the following beneficial effects: By arranging a wind shield on the board breaking frame, the shaking of the glass plate caused by wind resistance during the displacement of the board breaking robot can be reduced, glass fragments can be prevented, and damage to the structure, circuits, pipelines and electronic components on the board breaking frame caused by high temperature can be reduced, thereby reducing the probability of glass fragments falling on the board breaking frame; the air guide groove leads to the center or side of the board breaking frame at a certain angle, which helps to reduce the fanning formed by the wind shield through the air guide groove during the board breaking frame to avoid the glass substrate from shaking when encountering wind; and the air guide groove concentrates the airflow to the center or side of the glass substrate, reducing the wind volume perpendicular to the glass substrate, causing excessive shaking or uneven heating and cooling risks; through the cooperation of the air guide groove and the air guide main board, the air guide main board controls the size of the air volume, and then controls the shaking amplitude of the glass plate; this design can effectively provide wind shielding and wind guiding functions during the movement and breaking of the glass substrate, thereby improving production efficiency and product quality.

[0016] Optionally, the wind guide main board is in the form of a flat rectangular parallelepiped and narrowed on one side, which helps to optimize the guidance of wind, make the wind force more concentrated, and reduce the wind resistance encountered during the movement of the board breaking frame.

[0017] Preferably, the air guide main board is hinged or universally connected to the wind shield plate, so that the angle of the air guide main board can be adjusted to meet different operating requirements, thereby improving flexibility and adjustability.

[0018] Preferably, the design of adding air guide side panels can better control the direction of wind flow. At the same time, the air guide side panels can increase the flexibility of the structure, protect the air guide main board from accidental impact, and disperse the energy of vibration caused by the air guide; the air guide side panels are curved triangles and are shorter than the air guide main board, which helps to reduce wind resistance while maintaining structural strength; at the same time, the air guide side panels are short in length and are arranged on both sides of the air guide main board, which can improve compactness, and the main air guide side panels are connected to form a semi-wrapped curved air duct; the air guide side panels and the air guide main board are hinged, and the hinged design enables the air guide side panels to be adjusted as needed like the air guide main board to adapt to different air volume requirements; the number of air guide side panels is twice the number of air guide slots, which can provide wind guidance on both sides of each air guide slot to enhance control accuracy.

[0019] Preferably, through the setting of connecting rods, sliders and guide rails, vertical translation of the wind guide side panels and the wind shielding panels can be achieved, thereby changing the size of the air inlet to adapt to different air volume requirements; the wind guide side panels increase the flexibility of position adjustment, increasing the flexibility and adaptability of the device.

[0020] Preferably, the corresponding plate surfaces of the air guide main plate, the air guide side plates and the air guide grooves are streamlined and smooth curved surfaces, which help to reduce wind resistance and guide the flow of wind, thereby reducing the wind resistance encountered during the movement of the board breaking frame.

[0021] Preferably, by bolting the narrowed end of the air guide main board to the wind shield, the size of the gap between the air guide main board and the wind shield can be easily adjusted to meet different process requirements; the simple bolt connection is helpful to reduce high-temperature expansion and is suitable for substrate glass after cross-cutting; using at least two bolts symmetrically arranged along the center line of the air guide main board for connection can ensure the stability and symmetry of the connection and improve the operational stability of the entire device.

[0022] Preferably, the air guide groove is designed in a shark fin shape, which can effectively guide the wind flow and improve the air guide efficiency.

[0023] Preferably, an even number of air guide grooves are symmetrically arranged along the center line of the wind shield, which can ensure the balance and symmetry of the entire device and help ensure the uniformity of airflow formation and distribution; the number of air guide main boards is consistent with the number of air guide grooves. This design ensures that each air guide groove has a corresponding air guide main board for effective control, thereby improving the air guide efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The drawings described herein are only for explanation purposes and are not intended to limit the scope of the present invention in any way. In addition, the shapes and proportional dimensions of the components in the drawings are only for illustration purposes to help understand the present invention and are not intended to specifically limit the shapes and proportional dimensions of the components of the present invention. In the drawings: Figure 1 It is a front and cross-sectional schematic diagram of a substrate glass breaking frame device described in an embodiment; Figure 2 It is a schematic diagram of the back side of a substrate glass breaking frame device described in an embodiment; Figure 3 A schematic diagram of a windshield main plate and a windshield side plate of a substrate glass breaking frame device described in an embodiment; Figure 4 A schematic diagram of the connection between the windshield side plate and the wind shield plate of a substrate glass breaking frame device described in an embodiment; Figure 5 A schematic diagram of the connection between a windshield main board and a wind shielding board of a substrate glass breaking frame device described in an embodiment; Among them, 1. wind shield; 2. air guide slot; 3. air guide main board; 4. board breaking frame; 5. first adjustment mechanism; 6. second adjustment mechanism; 7. air guide side plate; 8. third adjustment mechanism; 9. connecting rod; 10. slider; 11. guide rail; 12. bolt; 13. nut. DETAILED DESCRIPTION

[0025] In order to enable those skilled in the art to better understand the technical solutions in the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of the present invention.

[0026] It should be noted that when an element is referred to as being "disposed on" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and are not intended to be the only embodiment.

[0027] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which the present invention belongs. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0028] Example 1 like Figure 1 As shown, the present invention discloses a substrate glass breaking frame device, including a breaking frame 4, a wind shield 1, an air guide groove 2, an air guide main board 3 and an air guide side board 7; the wind shield 1 is flatly arranged on the breaking frame 4; a plate surface of the wind shield 1 is recessed and passes through the wind shield 1 to form a streamlined air guide groove 2; the air guide main board 3 is fixedly connected to the wind shield 1 to form an adjustable air inlet.

[0029] like Figure 1 As shown, the plate breaking frame 4 is an alloy frame structure, and suction cups are installed on the front side of the plate breaking frame 4 at the four corners and two vertical sides for supporting and fixing the glass substrate during the plate breaking process.

[0030] like Figure 2 As shown, a connecting turntable connected to the assembly line robot arm is provided on the back of the plate breaking rack 4. The plate breaking rack 4 uses a suction cup to absorb the glass substrate during the plate breaking process, and then vertically fixes the glass substrate to complete the processes of translation, plate breaking, separation and transportation.

[0031] The wind shield 1 is installed on the board breaking frame 4, and is fixedly connected, which can be welded, riveted or threaded; the wind shield 1 covers the gap in the center of the board breaking frame 4, blocking the free flow of air in the gap of the board breaking frame 4. The wind shield 1 can be made of lightweight stainless steel, such as steel, aluminum alloy or carbon fiber plate, which is thin and easy to translate and move. The use of stainless steel material to manufacture wind shields can improve durability and corrosion resistance, and extend the service life of the equipment. When the board is breaking, the wind shield 1 will reduce the airflow generated during the movement of the glass plate, thereby ensuring that its shaking is minimized. The wind shield 1 can reduce the shaking of the glass plate caused by wind resistance during the displacement of the board breaking robot, and reduce the probability of glass fragments falling on the board breaking frame 4, so as to prevent glass fragments and high temperature from damaging the structure, circuits, pipelines and electronic components on the board breaking frame 4.

[0032] like Figure 3 As shown, the air guide main board 3 is in the shape of a flat rectangular parallelepiped, and gradually narrows toward one side in the length direction. The air guide main board 3 can be designed in the shape of a surfboard, which effectively reduces wind resistance and turbulence when the wind shield 1 moves in the vertical direction of the board surface; when guiding air to the glass substrate at a small angle, the air random airflow is gathered in an air duct to improve the air guiding efficiency. The length of the air guide main board 3 is shorter than the length of the air guide slot 2 to form a streamlined air duct.

[0033] The square end of the wind guide main plate 3 is connected to the wind shield 1 through a third adjustment mechanism 8, and the third adjustment mechanism 8 is hinged. The wind guide main plate 3 and the wind guide groove 2 are matched to form a spoiler structure similar to an airplane wing. The opening and closing of the spoiler structure and the opening degree of the air inlet can be freely adjusted by the hinge structure.

[0034] like Figure 3 As shown, the wind guide side plates 7 are arranged on both sides of the wind guide main board 3, and the shape of the wind guide side plates 7 is a curved triangle, and the length of the wind guide side plates 7 is shorter than the length of the wind guide main board 3. The wind guide side plates 7 are short and small as the two wings of the wind guide main board 3, which can improve the performance of the air flow. The wind guide side plates 7 can cover the wedge-shaped area between the edge of the wind guide main board 3 and the plane of the wind shielding plate 1, increase the air flow along the air inlet direction, in the limited space sandwiched by the wind guide main board 3 and the wind guide groove 2, and reduce the formation of chaotic air flow and turbulence.

[0035] The wind guide side plate 7 is hinged to the wind guide main plate 3. The rotating shaft and the shaft hole of the hinge structure have a large gap. The advantage of such a design is that the hinge structure is very loose. The wind guide side plate 7 is arranged on both sides of the wind guide main plate 3, and the wind guide side plates 7 on both sides are connected to the wind guide main plate 3 by two hinge structures. The positions of the two hinge structures are sufficient to cover the length of the wind guide side plate 7, ensuring the uniform angle of the entire length and stable connection between the wind guide main side plates.

[0036] like Figure 4As shown, the wind guide side plate 7 and the wind shielding plate 1 are also connected through the first adjustment mechanism 5, and the first adjustment mechanism 5 includes a connecting rod 9, a slider 10 and a guide rail 11; one end of the connecting rod 9 is connected to the wind guide side plate 7 through a universal joint, and the other end of the connecting rod 9 is slidably connected to the guide rail 11 through the slider 10; the guide rail 11 is fixedly connected to the wind shielding plate 1. The function of the slider 10 and the guide rail 11 is to facilitate the adjustment of the connection gap between the wind guide side plate 7 and the wind shielding plate 1, and to enable the board breaking frame 4 to produce a significant wind guiding effect when moving forward and backward in a direction perpendicular to the board surface.

[0037] like Figure 1 As shown in the cross-sectional view in , the plate surfaces corresponding to the air guide main board 3 and the recessed air guide groove 2 are streamlined smooth curved surfaces, which reduces the wind resistance and turbulence of the air inlet.

[0038] like Figure 1 As shown in the cross-sectional view in , the air guide side plate 7 and a plate surface corresponding to the recessed air guide groove 2 are streamlined smooth curved surfaces, which reduces the wind resistance and turbulence of the air inlet.

[0039] The narrowed end of the air guide main board 3 is connected to the wind shield plate 1 through the second adjustment mechanism 6 to adjust the gap size between the air guide main board 3 and the wind shield plate 1. According to the size of the glass substrate and the cutting size, the gap between the air guide main board 3 and the wind shield plate 1 can be adjusted to 3cm-5cm. The opening and closing size of the air guide main board 3 is adjusted to control the harmful airflow generated by the wind shield plate 1 to the motherboard when the board is bent, so as to prevent the glass substrate from shaking; the narrowed end of the air guide main board 3 is fixed so that the air guide main board 3 is fixed in four directions, which reduces the free end of the air guide main board 3 and reduces the vibration amplitude of the air guide main board 3 under wind force and during the bending process; reducing wind pressure helps to equalize the temperature and air pressure of various parts of the glass substrate. Specifically, such as Figure 5 As shown, the second adjustment mechanism 6 is a bolt structure; the narrowed end of the air guide main board 3 is connected to the wind shield 1 through at least two bolts 12 symmetrically arranged along the center line of the air guide main board 3; the fixation of the two bolts 12 reduces the rotation or swing of the air guide main board 3 along the center line.

[0040] Optionally, the first adjustment mechanism 5 further includes a first motor, which is used to drive the slider 10 to slide on the guide rail 11 so that the two air guide side panels 7 can be folded toward the air guide main panel 3 in the middle.

[0041] Optionally, the second adjustment mechanism includes a scissor-type mechanical structure, a small hydraulic pump and a second motor, and the second motor is used to drive the distance adjustment between the narrowed end of the wind guide main board 3 and the wind shield 1. The two ends of the scissor-type mechanical structure are respectively connected to the narrowed end of the wind guide main board 3 and the wind shield 1, and the small hydraulic pump is driven by the second motor to extend and retract the scissor-type mechanical structure.

[0042] Optionally, the second adjustment mechanism includes a screw gear structure and a second motor, and the second motor is used to drive the distance adjustment between the narrowed end of the air guide main board 3 and the wind shield 1. One end of the screw gear structure is connected to the narrowed end of the air guide main board 3; the second motor is fixed on the wind shield 1 and is used to drive the gear of the screw gear.

[0043] Optionally, the third adjustment mechanism includes a screw gear structure and a third motor, and the third motor is used to drive the distance adjustment between the square end of the wind guide main board 3 and the wind shield 1. One end of the screw gear structure is connected to the square end of the wind guide main board 3; the second motor is fixed on the wind shield 1 and is used to drive the gear of the screw gear.

[0044] The above-mentioned adjustment mechanism for connecting the air guide main board 3, the air guide side board 7 and the wind shielding board 1 can adopt the electric adjustment distance between the plates to adapt to the different sizes of substrate glass on the breaking frame and the translation speed of the breaking frame.

[0045] In order to introduce intelligent control of the distance between panels, PLC can also be used to automatically control multiple motors to adapt to the size of the substrate glass and the speed of the coordinated panel frame translation, and adjust the angle and distance between the air guide main panel 6 or the air guide side panel 7 and the wind shield 1.

[0046] like Figure 3 As shown, the projection of the air guide groove 2 on the wind shield 1 is in the shape of a shark fin, which is conducive to guiding the air flow, reducing the gas resistance through the air guide groove, reducing the wind pressure, and helping to even out the temperature and air pressure of each part of the glass substrate; the shark fin can also play a role in spoiling the flow, by guiding the air flowing through the board breaking frame to form a vortex, which helps to improve the stability of the board breaking frame and the substrate glass and the driving safety. The shark fin shape design not only improves the aerodynamic performance of the board breaking frame, but also adds a unique and dynamic appearance, and also gives them a unique sense of the future, improving the overall aesthetics.

[0047] The wind guide groove 2 and the wind shield plate 1 are connected to the side of the board breaking frame 4 at a certain angle, which concentrates the wind force on the side of the board breaking frame 4, which is beneficial to reduce the wind directed to the glass substrate area when the board breaking frame is moved out, and ensures that the wind force on the glass substrate will not cause stress concentration, and the temperature and air pressure are uniform.

[0048] There are at least an even number of the air guide grooves 2, which are symmetrically arranged along the center line of the wind shield 1, to avoid setting uneven and single air guide grooves 2, which will excessively concentrate the air on the glass substrate, generate stress concentration, and damage the glass substrate.

[0049] The number of the air guide main boards 3 is consistent with the number of the air guide slots 2, ensuring that each air guide slot 2 has a corresponding air guide main board 3 for effective control, thereby improving the air guide efficiency.

[0050] The number of the wind guide side plates 7 is twice the number of the wind guide slots 2, which can provide wind guidance on both sides for each wind guide slot 2, thereby enhancing the control accuracy.

[0051] The air volume adjustment can be completed by the air guide main board 3 and the air guide side panel 7 together; when adjusting the air intake size, first adjust the fixing nut between the air guide side panel 7 and the wind shielding plate 1. At this time, the connecting rod 9 connecting the air guide side panel 7 can move on the slide rail, and the air guide side panel 7 can move with the air guide main board 3. The height of the air guide main board 3 can be adjusted by the bolt 12. After the height adjustment of the air guide main board 3 is completed, tighten the fixing nut 13 of the bolt 12. At this time, the adjustment of the air intake size is completed.

[0052] During the board breaking process, the airflow generated when the board breaking frame 4 drives the glass substrate to move flows out from the air inlet, so that the glass substrate will not shake. After the board is broken, when the robot moves, the wind shield 1 blocks most of the airflow, reducing the wind pressure, thereby reducing the shaking of the glass plate. Because the wind shield 1 is made of stainless steel with good heat dissipation and hard texture, it can effectively isolate high temperature and protect the structure, circuits, pipelines and electronic components on the board breaking frame 4. Because the surface of the wind shield 1 is smooth, it reduces the occurrence of scratches on the glass plate after the broken glass hanger.

[0053] The air guide main board 3 is installed at the air inlet of the wind shield 1. By adjusting the air intake, the shaking of the glass substrate by the panel breaking robot during the panel breaking process is controlled, the wind pressure is reduced, and the wind resistance and energy consumption are reduced. Compared with the prior art, the present invention has the technical advantages of improving the transportation stability of the glass plate, reducing the shaking of the glass plate during the handover process, isolating the damage to the equipment circuit caused by high temperature, and reducing the scratches on the glass.

[0054] In addition, if Figure 1 As shown in the cross-sectional view, the wind shield 1 is installed on the front side of the board breaking frame 4, and is located between the board breaking frame 4 and the suction cup mechanism provided on the board breaking frame 4, so as to prevent the wind shield from shaking and deforming during movement and squeezing the glass substrate on the suction cup structure; the wind shield 1 covers the entire board breaking frame 4, so as to reduce the glass substrate from shaking violently when encountering wind resistance when the board breaking frame 4 completes the board breaking and moving out.

[0055] Example 2 The difference between Example 2 and Example 1 is: One square end of the air guide main plate 3 is connected to the wind shielding plate 1 via a third adjusting mechanism 8; the third adjusting mechanism 8 is a universal joint.

[0056] No air guide side plates 7 are provided on both sides of the air guide main board 3 , and only the air guide main board 3 and the air guide grooves form an air inlet accordingly.

[0057] The present invention discloses a method for using a substrate glass breaking frame device as follows: Install the wind shield 1 on the board breaking frame 4; Adjust the distance between the wind guide main board 3 and the wind shielding board 1; When the board breaking frame 4 moves in, the wind shielding plate 1 is fanned by the wind guide groove 2, and the wind resistance is reduced by the air inlet; When the board-breaking frame 4 is moved out, the wind shield 1 is used to block the wind, and the wind resistance is reduced through the air inlet.

[0058] In order to better adapt to factors such as the size and cutting size of the glass substrate, the board breaking rate, and the temperature environment of the workshop, sensors are introduced to monitor the position of the air guide main board and the air guide side board; and the first adjustment mechanism, the second adjustment mechanism, and the third adjustment mechanism are all designed as electrically driven connection mechanisms with adjustable distances. By integrating a temperature sensor in the board breaking frame device, the temperature of the glass substrate is monitored in real time. The angle or position of the air guide main board and the air guide side board, as well as the size of the air inlet, are automatically adjusted according to the temperature data to maintain the best air guide effect.

[0059] In addition, an integrated dust removal system, such as a dust suction device or an air curtain system, can be provided on the board breaking frame device to effectively reduce the impact of dust and debris generated during the board breaking process on the operating environment and products. This can not only improve product quality, but also reduce environmental pollution. An air filter can also be installed in the air guide groove 2 to filter the flowing gas.

[0060] The beneficial effects brought by the substrate glass breaking frame 4 device proposed in the present invention mainly include the following points: Reduce equipment damage: The device can effectively protect the structure, lines, pipes and electronic components on the plate breaking frame 4 through a rationally designed structure, reducing the damage they suffer from high temperature environments. This is essential to maintaining the long-term stable operation of the production line, because equipment failure or damage often leads to production interruptions, increased maintenance costs and production losses.

[0061] Reduce the risk of glass plate breakage: The device significantly reduces the risk of glass plate breakage due to airflow during the production process by providing stable support and limiting the shaking of the glass plate. This is of great significance to improving product quality and production efficiency, because broken glass plates need to be discarded or reprocessed, which not only wastes materials but also increases production costs.

[0062] Improve production continuity and stability: By reducing equipment failures and glass sheet breakage, the device helps maintain production continuity and stability, which is critical to meeting market demands, improving customer satisfaction, and maximizing production benefits.

[0063] Optimize the working environment: The device may also improve the working environment of workers by reducing noise, dust and other pollutants generated by equipment failure or glass plate breakage. This is also beneficial to improving worker work efficiency and satisfaction, as well as protecting worker health and safety.

[0064] The above embodiment is only one of the implementation methods that can realize the technical solution of the present invention. The scope of protection claimed by the present invention is not limited only to this embodiment, but also includes changes, replacements and other implementation methods that can be easily thought of by any technician familiar with the technical field within the technical scope disclosed by the present invention. Although the embodiments of the present invention have been shown and described, it can be understood by those of ordinary skill in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the attached claims and their equivalents.

Claims

1. A substrate glass breaking frame device, characterized in that: The invention comprises a plate-breaking frame (4), a wind shield (1), an air guide groove (2) and an air guide main board (3); the wind shield (1) is arranged flat on the plate-breaking frame (4); a plate surface of the wind shield (1) is recessed and penetrates the wind shield (1) to form a streamlined air guide groove (2) in the center or side of the plate-breaking frame (4); the air guide groove (2) forms a certain angle with the wind shield (1); the air guide main board (3) is fixedly connected to the wind shield (1) to form an adjustable air inlet.

2. A substrate glass breaking frame device according to claim 1, characterized in that: The air guide main plate (3) is in the shape of a flat rectangular parallelepiped and gradually narrows toward one side in the length direction.

3. The substrate glass breaking frame device according to claim 1, characterized in that: One square end of the wind guide main plate (3) is connected to the wind shielding plate (1) via a third adjustment mechanism (8); the third adjustment mechanism (8) is a hinged or universal joint structure.

4. The substrate glass breaking frame device according to claim 1, characterized in that: It also comprises wind guide side plates (7); the wind guide side plates (7) are arranged on both sides of the wind guide main plate (3); the wind guide side plates (7) are in the shape of curved triangles, and the length of the wind guide side plates (7) is shorter than the length of the wind guide main plate (3); the wind guide side plates (7) and the wind guide main plate (3) are hinged; the number of the wind guide side plates (7) is at least twice the number of the wind guide slots (2).

5. The substrate glass breaking frame device according to claim 4, characterized in that: It also comprises a first adjustment mechanism (5); the first adjustment mechanism (5) comprises a connecting rod (9), a sliding block (10) and a guide rail (11); one end of the connecting rod (9) is connected to the wind guide side plate (7) via a universal joint, and the other end of the connecting rod (9) is slidably connected to the guide rail (11) via the sliding block (10); and the guide rail (11) is fixedly connected to the wind shielding plate (1).

6. The substrate glass breaking frame device according to claim 4, characterized in that: The plate surfaces of the air guide main plate (3) and the air guide groove (2) corresponding to each other are streamlined smooth curved surfaces; and the plate surfaces of the air guide side plate (7) and the air guide groove (2) corresponding to each other are streamlined smooth curved surfaces.

7. The substrate glass breaking frame device according to claim 1, characterized in that: The narrowed end of the air guide main plate (3) is connected to the wind shield plate (1) via a second adjustment mechanism (6) to adjust the size of the gap between the air guide main plate (3) and the wind shield plate (1); the second adjustment mechanism (6) comprises at least two bolts (12) symmetrically arranged along the center line of the air guide main plate (3).

8. The substrate glass breaking frame device according to claim 1, characterized in that: The projection of the air guide groove (2) on the surface of the wind shield (1) is in the shape of a shark fin.

9. The substrate glass breaking frame device according to claim 1, characterized in that: There are at least an even number of the air guide grooves (2), and the air guide grooves (2) are symmetrically arranged along the center line of the wind shielding plate (1); the number of the air guide main plates (3) is consistent with the number of the air guide grooves (2).

10. A method for using a substrate glass breaking rack device according to any one of claims 1 to 9, characterized in that: The following steps are involved: Install the wind shield (1) on the board breaking frame (4); Adjusting the distance between the wind guide main plate (3) and the wind shielding plate (1); When the board-breaking frame (4) moves in, the wind shielding plate (1) is reduced through the wind guide groove (2) to form a fan, and the wind resistance is reduced through the air inlet; During the process of moving the board breaking frame (4) out, the wind shield (1) is used to block the wind, and the wind resistance is reduced through the air inlet.

Citation Information

Patent Citations

  • TFT (thin film transistor) glass BOD (biochemical oxygen demand) procedure severing device and method

    CN118754416A

  • Surface temperature stabilizing structure for glass substrate of exposure machine

    CN118963071A

  • Double-row sucker mechanism for plate severing device

    CN211199017U

  • Air guide device, air-conditioner cabinet, and air supply method therefor

    WO2018040550A1