Energy-saving glass and production device thereof

By designing a production device for glass coating, the problem of uneven glass coating after cutting is solved, and the uniformity and quality of glass coating are improved.

CN119927755APending Publication Date: 2025-05-06XUZHOU HONGXINFU GLASS PRODUCTS CO LTD
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Patent Information

Application Number
CN202411842422.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

When the cut glass is coated, burrs are prone to appear in the cutting area, and stains are easily stuck during storage and processing of the glass, resulting in uneven coating.

Method used

A production device is designed, including a burr grinding device, a cleaning device and a spraying device. The burr grinding device is used to remove burr in the glass cutting area, the cleaning device is used to clean the coating surface of the glass, and the spraying device automatically stirs the coating liquid during coating to ensure uniform coating.

Benefits of technology

By removing the burrs in the glass cutting area and cleaning the coating surface, the problem of uneven coating is avoided, and the uniformity and quality of coating are ensured by automatically stirring the coating liquid.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of organic glass production, in particular to energy-saving glass and a production device thereof. The burr polishing device is arranged on the ground. The cleaning device is arranged on the burr grinding device and connected with the burr grinding device. And the spraying device is arranged on the burr polishing device and is connected with the burr polishing device. The controller is arranged on the ground and located on the side of the burr grinding device, and the controller is electrically connected with the spraying device and the burr grinding device. The technical effects that when the cut glass is subjected to film coating, the equipment can firstly polish the cutting area of the glass, the film coating surface of the glass is cleaned in advance, and the film coating liquid can be automatically stirred during film coating, so that the uniform film coating of the glass is ensured are achieved.
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Description

Technical Field

[0001] The invention relates to the technical field of organic glass production, in particular to energy-saving glass and a production device thereof. Background Art

[0002] As an important building material and industrial material, glass is widely used in modern life. It has the advantages of transparency, beauty, and corrosion resistance, and is widely used in building doors and windows, curtain walls, automobiles, electronics and other fields. As people's awareness of energy conservation and environmental protection continues to increase, the performance requirements of glass are also getting higher and higher. Energy-saving glass, as a new type of glass product, has good heat insulation, thermal insulation, sound insulation and other properties, which can effectively reduce the energy consumption of buildings and improve energy efficiency.

[0003] In the prior art, when processing the glass after cutting, burrs are likely to appear in the cut area of ​​the glass. If they are not processed, they will scratch the user or surrounding objects. At the same time, when producing energy-saving glass coating, the glass will inevitably be stained during storage and processing. Therefore, when spray coating the glass, the coating liquid cannot be evenly sprayed and adhered to the surface of the glass. Therefore, in order to solve the above problems, we provide an energy-saving glass and a production device thereof. Summary of the invention

[0004] The present invention aims to solve the technical problem of how to coat the cut glass, the equipment will first grind the cut area of ​​the glass, clean the coated surface of the glass in advance, and automatically stir the coating liquid during coating to ensure uniform coating of the glass, and provide an energy-saving glass and its production device.

[0005] The technical solution adopted by the present invention to solve the technical problem is: a production device, including: a burr grinding device, a cleaning device, a spraying device, and a controller.

[0006] The burr grinding device is arranged on the ground. The cleaning device is arranged on the burr grinding device and connected to the burr grinding device. The spraying device is arranged on the burr grinding device and connected to the burr grinding device. The controller is arranged on the ground and is located at the side of the burr grinding device. The controller is electrically connected to the spraying device and the burr grinding device.

[0007] When the user wants to grind the burrs and coat the cut glass, the user can place the glass on the burr grinding device, which can grind the cut area of ​​the glass to remove the burrs and prevent the cut area of ​​the glass from cutting the user or other surrounding objects. The cleaning device can clean the dust generated when the burr grinding device grinds the cut area of ​​the glass and the stains on the sprayed surface of the glass to facilitate the coating of the coated surface of the glass plate. The spraying device can evenly coat the cleaned coated surface of the glass and stir the coating liquid during coating to avoid uneven coating due to precipitation of the coating liquid.

[0008] In this way, when coating the cut glass, the equipment will first grind the cut area of ​​the glass and clean the coated surface of the glass in advance, and can automatically stir the coating liquid during coating to ensure the technical effect of uniform coating of the glass.

[0009] Furthermore, the burr grinding device includes: a first drive motor, a threaded rod, a second drive motor, a third drive motor, a sliding sleeve, a bearing plate, a fixed plate, a first arch frame, a second arch frame, a bearing frame, a first rotating rod, three second rotating rods, a first pulley, three second pulleys, and a limit plate.

[0010] The first arch is disposed on the ground.

[0011] The supporting frame is square and is arranged above the first arch frame, and the bottom surface of the supporting frame is fixedly connected to the flat plate top surface of the first arch frame.

[0012] The second arch frame passes through the inner frame of the bearing frame and is arranged on the ground. There is a gap between the bottom surface of the second arch frame plane and the inner bottom surface of the bearing frame.

[0013] The first rotating rod is laterally arranged on the side of the carrying frame, perpendicular to the side of the carrying frame, and located on the side of one of the corners of the carrying frame. One end of the first rotating rod passes through the side of the carrying frame and extends to the other side of the carrying frame. The side of the first rotating rod is rotatably connected to the side of the carrying frame, and the rotation axis coincides with its own axis.

[0014] The three second rotating rods are respectively arranged laterally on the sides of the carrying frame, respectively on the other three corners of the carrying frame, parallel to the axis of the first rotating rod, and one end of the three second rotating rods is respectively rotatably connected to the side of the carrying frame, and the rotation axis coincides with its own axis.

[0015] The first belt pulley is sleeved on the first rotating rod and is located on the side of the bearing frame close to the three second rotating rods. The first belt pulley is fixedly connected to the side surface of the first rotating rod.

[0016] The three second pulleys are respectively mounted on the three second rotating rods and are respectively in the same vertical plane as the first pulley. The three second pulleys are respectively fixedly connected to the sides of the three second rotating rods and are connected to the first pulley via elastic grinding belts.

[0017] The first drive motor is arranged on the side of the supporting frame, on the side of the first rotating rod away from the first pulley and above the second arch frame, the rotating shaft of the first drive motor is fixedly connected to the end face of the first rotating rod away from the first pulley, and the housing of the first drive motor is fixedly connected to the side of the supporting frame through a connecting plate.

[0018] The limiting plate is vertically arranged above the second arch frame, and is located on the side of the bearing frame away from the first driving motor. The bottom surface of the limiting plate is fixedly connected to the top surface of the flat plate of the second arch frame.

[0019] The second driving motor is arranged above the second arch frame, and is located on the side of the bearing frame away from the limiting plate. The housing of the second driving motor is fixedly connected to the flat plate top surface of the second arch frame.

[0020] The threaded rod is horizontally arranged above the second arch frame, inside the supporting frame, between the limit plate and the second drive motor, and parallel to the axis of the first rotating rod. One end of the threaded rod is fixedly connected to the rotating shaft of the second drive motor, and the other end is rotatably connected to the side of the limit plate close to the supporting frame, and the rotation axis coincides with its own axis.

[0021] The sliding sleeve is arranged on the threaded rod and is located above the second arch frame. The sliding sleeve is threadedly connected to the side of the threaded rod, and the bottom surface is slidably connected to the flat top surface of the second arch frame. The sliding direction is parallel to the axis of the threaded rod.

[0022] The bearing plate is arranged horizontally above the sliding sleeve, between the limiting plate and the second driving motor, and parallel to the axis of the first rotating rod. The bottom surface of the bearing plate is fixedly connected to the top surface of the sliding sleeve.

[0023] The third drive motor is laterally arranged on the top surface of the supporting plate, between the limiting plate and the second drive motor, the rotating shaft of the third drive motor is facing away from the first rotating rod, and the axis is perpendicular to the axis of the first rotating rod, the shell of the third drive motor is fixedly connected to the top surface of the supporting plate, and is electrically connected to the controller.

[0024] The fixed plate is vertically arranged on the side of the rotating shaft of the third drive motor away from the first rotating rod, is above the second arch frame, and is perpendicular to the axis of the rotating shaft of the third drive motor. One side surface of the fixed plate is fixedly connected to the end surface of the rotating shaft of the third drive motor. A plurality of suction cups are arranged on the side of the fixed plate away from the third drive motor, and the plurality of suction cups are connected to the vacuum pump through pipes.

[0025] Through the arrangement of the first drive motor, the threaded rod, the second drive motor, the third drive motor, the sliding sleeve, the bearing plate, the fixed plate, the first arch frame, the second arch frame, the bearing frame, the first rotating rod, the three second rotating rods, the first pulley, the three second pulleys and the limiting plate, the user can grind the cut glass plate through the elastic grinding belt connected to the first pulley and the three second pulleys after the glass plate is fixed by the fixed plate.

[0026] The setting of the third driving motor allows the user to control the rotation of the third driving motor when grinding glass with four cutting surfaces. After grinding two of the cutting surfaces of the glass plate, the other two cutting areas of the glass plate can be adjusted to a position where they can be polished by the elastic grinding belt connected to the first pulley and the three second pulleys.

[0027] Furthermore, the cleaning device includes: two sprockets, a chain, a first vertical plate, a first vertical slide, a first slider, a telescopic rod, a cleaning sponge, and a follower block.

[0028] The two sprockets are respectively mounted on two second rotating rods on the same vertical line, and are located on the side of the supporting plate away from the first drive motor and the side of the second pulley away from the supporting frame. The two sprockets are respectively fixedly connected to the side surfaces of the two second rotating rods on the same vertical line.

[0029] The chain is sleeved on the two sprocket wheels and connected with the two sprocket wheels.

[0030] The follower block is arranged on the side of the chain away from the second pulley, the side surface of the follower block is rotatably connected to the side surface of the outer link plate on the chain, and the rotation axis is parallel to the axes of the second rotating rods.

[0031] The first vertical plate is arranged on the first arch frame, between the bearing frame and the limiting plate, and on the side of the fixing plate away from the second driving motor. The bottom surface of the first vertical plate is fixedly connected to the top surface of the flat plate of the first arch frame.

[0032] The first vertical sliding opening is arranged on the side of the first vertical plate.

[0033] The first sliding block is arranged inside the first vertical sliding opening and is slidably connected with the inner wall of the first vertical sliding opening.

[0034] The cleaning sponge is arranged on the side of the first sliding block close to the fixing plate, and the cleaning sponge is fixedly connected to the side of the first sliding block close to the fixing plate.

[0035] The telescopic rod is arranged on the side of the follower block away from the sprocket, the telescopic outer shell side of the telescopic rod is fixedly connected to the side of the follower block away from the sprocket, and the telescopic inner rod end face of the telescopic rod is fixedly connected to the side of the first sliding block away from the fixed plate.

[0036] By arranging two sprockets, a chain, a first vertical plate, a first vertical sliding port, a first sliding block, a telescopic rod, a cleaning sponge and a follower block, the cleaning sponge can reciprocate up and down to clean the coated surface of the glass, thereby ensuring that the cleanliness of the coated surface of the glass meets appropriate requirements.

[0037] Furthermore, the cleaning device also includes: a vacuum cleaner and two L-shaped short pipes.

[0038] The vacuum cleaner is arranged below the first arch frame and on the ground, and the vacuum cleaner is electrically connected to the controller.

[0039] The two L-shaped short tubes are respectively arranged inside the supporting frame, on the side of the fixed plate away from the third driving motor. The vertical tube of one of the L-shaped short tubes passes through the inner top of the supporting frame, extends to the top of the supporting frame, and is connected with the suction port of the vacuum cleaner through a pipe. The vertical tube of the other L-shaped short tube passes through the inner bottom of the supporting frame, extends to the bottom of the supporting frame, and is connected with the suction port of the vacuum cleaner through a pipe. The vertical tubes of the two L-shaped short tubes are respectively fixedly connected to the top and bottom of the supporting frame, and the pipe openings of the horizontal tubes of the two L-shaped short tubes are respectively facing the direction of the fixed plate.

[0040] By arranging a vacuum cleaner and two L-shaped short tubes, when the elastic grinding belt connected to the first pulley and the three second pulleys is grinding the cutting area of ​​the glass plate, the vacuum cleaner can suck the generated dust into the inside through the two L-shaped short tubes, thereby preventing the dust from adhering to the coated surface of the glass plate or flying in the air.

[0041] Furthermore, the cleaning device also includes: a cleaning nozzle, a waste liquid box, and a waste liquid outlet.

[0042] The cleaning nozzle is arranged on the side of the first slider close to the fixed plate and above the cleaning sponge. The cleaning nozzle is fixedly connected to the side of the first slider close to the fixed plate and is connected to the water supply pipe through a pipeline penetrating the side of the first slider.

[0043] The waste liquid outlet is arranged at the top of the first arch frame, on the side of the bearing frame close to the limiting plate, and directly below the cleaning sponge.

[0044] The waste liquid box is arranged below the first arch frame and directly below the waste liquid port, and the waste liquid box is arranged on the ground.

[0045] By setting the cleaning nozzle, when the cleaning sponge cleans the coated area of ​​the glass plate, the cleaning nozzle can spray water on the coated area of ​​the glass plate, thereby improving the cleaning effect of the cleaning sponge on the coated area of ​​the glass plate.

[0046] Furthermore, the spraying device includes: a third arch frame, a rack, a connecting port, a small gear, a large gear, two rotating plates, a third rotating rod, a cam, a vertical connecting rod, a second vertical plate, a second vertical sliding port, a second slider, a rotating bracket, a rotating port, a spraying nozzle, a spraying material box, and a spraying pump.

[0047] The third arch frame is arranged below the second arch frame, between the first arch frame and the limiting plate, there is a gap between the top surface of the plate of the third arch frame and the bottom surface of the plate of the second arch frame, and the third arch frame is arranged on the ground.

[0048] The communication port is arranged at the top of the second arch frame, and the arrangement direction is parallel to the axis of the threaded rod.

[0049] The rack is arranged below the bearing plate and inside the connecting port. The plane of the rack is fixedly connected to the bottom surface of the bearing plate, the tooth surface faces the direction of the third arch frame, the side surface of the rack is slidably connected to the inner wall of the connecting port, and the sliding direction is consistent with the setting direction of the connecting port.

[0050] The rotating bracket is arranged above the third arch frame, below the plane of the second arch frame and directly below the connecting port. The rotating bracket is fixedly connected to the flat top surface of the third arch frame. A rotating rod is horizontally arranged inside the rotating bracket, and the two ends of the rotating rod are respectively rotatably connected to the inner wall of the rotating bracket, and the rotation axis is perpendicular to the axis of the threaded rod.

[0051] The large gear is sleeved on the rotating rod of the rotating bracket and fixedly connected to the side of the rotating rod of the rotating bracket, and is located directly below the connecting port, and the central axis of the large gear is perpendicular to the axis of the threaded rod.

[0052] The two rotating plates are respectively arranged vertically above the third arch frame and on both sides of the second arch frame. The bottom surfaces of the two rotating plates are respectively fixedly connected to the flat plate top surface of the third arch frame. The two rotating plates are parallel to each other and are opposite to each other.

[0053] The third rotating rod is horizontally arranged between the two rotating plates, between the second arch frame and the third arch frame, and perpendicular to the axis of the threaded rod. One end of the third rotating rod is rotatably connected to the side of the rotating plate close to the large gear, and the other end passes through the side of the rotating plate away from the large gear and extends to the side of the rotating plate away from the large gear, and the side is rotatably connected to the side of the rotating plate away from the large gear, and the rotation axis coincides with its own axis.

[0054] The small gear is sleeved on the third rotating rod, located on the side of the large gear and directly below the connecting port. The small gear is fixedly connected to the side surface of the third rotating rod and meshes with the large gear.

[0055] The cam is arranged on the side of the other end of the third rotating rod, and is located on the side of the rotating plate away from the large gear. The cam is fixedly connected to the other end of the third rotating rod.

[0056] The rotating opening is arranged at the top of the third arch frame, and is located directly below the cam.

[0057] The second vertical plate is arranged above the third arch frame and is located on the side where the cam is away from the second arch frame. The bottom surface of the second vertical plate is fixedly connected to the top surface of the flat plate of the third arch frame.

[0058] The second vertical sliding opening is arranged on the side of the second vertical plate.

[0059] The second sliding block is arranged inside the second vertical sliding opening and is slidably connected with the inner wall of the second vertical sliding opening.

[0060] The vertical connecting rod is arranged between the second vertical plate and the cam, the top side of the vertical connecting rod is rotationally connected to the side of the second slider close to the cam, the bottom side is rotationally connected to the side of the raised wheel of the cam close to the second slider, and the rotation axis is perpendicular to the raised wheel side of the cam.

[0061] The spraying material box is arranged below the third arch frame and on the ground.

[0062] The spraying pump is arranged below the third arch frame and on the side of the spraying material box. The spraying pump is arranged on the ground and is electrically connected to the controller. The input port of the spraying pump passes through the spraying material box through a pipeline and is connected to the inside of the spraying material box.

[0063] The spraying nozzle is arranged on the side of the second slider close to the second arch frame, and is fixedly connected to the side of the second slider close to the second arch frame, and passes through the top of the third arch frame through a pipe, and is connected to the output port of the spraying pump, and the spraying port of the spraying nozzle is facing the direction of the second arch frame.

[0064] The third arch frame, the rack, the connecting port, the small gear, the large gear, the two rotating plates, the third rotating rod, the cam, the vertical connecting rod, the second vertical plate, the second vertical sliding port, the second slider, the rotating bracket, the rotating port, the spraying nozzle, the spraying material box, and the spraying pump are arranged so that the spraying nozzle can move up and down along the spraying surface of the glass plate, thereby ensuring that the coating liquid can be evenly sprayed onto the coating surface of the glass plate, thereby avoiding the occurrence of uneven coating.

[0065] Furthermore, the spray nozzle is an atomizing nozzle.

[0066] Setting the spray nozzle to an atomizing nozzle can better spray the coating liquid onto the coating surface of the glass plate, thereby ensuring the coating effect on the glass.

[0067] Furthermore, the spraying device also includes: a third pulley, a fourth pulley, a stirring rod, and a pulley opening.

[0068] The stirring rod is laterally arranged below the third arch frame and is located on the side of the spraying material box. One end of the stirring rod passes through the side of the spraying material box and extends into the interior of the spraying material box. The stirring rod is parallel to the axis of the third rotating rod. The side of the stirring rod is rotatably connected to the side of the spraying material box, and the rotation axis coincides with its own axis. A plurality of stirring blades are arranged on the side of the stirring rod inside the spraying material box.

[0069] The pulley opening is arranged at the top of the third arch frame and is between the stirring rod and the third rotating rod.

[0070] The third belt pulley is sleeved on the third rotating rod and is located directly above the belt pulley opening. The third belt pulley is fixedly connected to the side surface of the third rotating rod.

[0071] The fourth pulley is sleeved on the stirring rod and is located directly below the pulley opening. The fourth pulley is fixedly connected to the side of the stirring rod and is connected to the third pulley through a belt passing through the pulley opening.

[0072] By arranging the third pulley, the fourth pulley, the stirring rod and the pulley opening, when the spray nozzle is spraying on the coated surface of the glass plate, the stirring rod can stir the coating liquid inside the spray material box to prevent the coating liquid from settling and affecting the spraying effect on the glass plate.

[0073] Furthermore, the stirring blades of the stirring rod located inside the spraying material box are made of corrosion-resistant plastic.

[0074] By making the stirring blades of the stirring rod inside the spraying material box from corrosion-resistant plastic, the stirring blades of the stirring rod will not be corroded in the coating liquid, thereby preventing the working performance of the coating liquid from being affected.

[0075] An energy-saving glass, characterized in that: the shape of the energy-saving glass is square.

[0076] Beneficial effects of the present invention: 1. The present invention cooperates and supports each other by setting up a burr grinding device, a cleaning device, a spraying device, and a controller. The burr grinding device can grind the cut area of ​​the glass to remove the burrs, thereby preventing the cut area of ​​the glass from cutting the user or other surrounding objects. The cleaning device can clean the dust generated when the burr grinding device grinds the cut area of ​​the glass and the stains on the spraying surface of the glass, so as to facilitate the coating of the coating surface of the glass plate. The spraying device can evenly coat the cleaned glass coating surface and stir the coating liquid during coating to avoid uneven coating caused by precipitation of the coating liquid.

[0077] 2. The present invention arranges two sprockets, a chain, a first vertical plate, a first vertical slide, a first slider, a telescopic rod, a cleaning sponge, and a follower block so that the cleaning sponge can reciprocate up and down to clean the coated surface of the glass, thereby ensuring that the cleanliness of the coated surface of the glass meets appropriate requirements.

[0078] 3. The present invention enables the spraying nozzle to move up and down along the spraying surface of the glass plate through the arrangement of the third arch frame, the rack, the connecting port, the small gear, the large gear, the two rotating plates, the third rotating rod, the cam, the vertical connecting rod, the second vertical plate, the second vertical sliding port, the second slider, the rotating bracket, the rotating port, the spraying nozzle, the spraying material box, and the spraying pump, so as to ensure that the coating liquid can be evenly sprayed onto the coating surface of the glass plate, thereby avoiding the occurrence of uneven coating. BRIEF DESCRIPTION OF THE DRAWINGS

[0079] Figure 1 is a top view of the present invention; Figure 2 It is a schematic diagram of region A of the present invention; Figure 3 It is a schematic diagram of a third arch frame of the present invention.

[0080] Description of the accompanying drawings: 101, first driving motor; 102, threaded rod; 103, second driving motor; 104, third driving motor; 105, sliding sleeve; 106, bearing plate; 107, fixing plate; 108, first arch frame; 109, second arch frame; 110, bearing frame; 111, first rotating rod; 112, second rotating rod; 113, first pulley; 114, second pulley; 115, limiting plate; 116, elastic grinding belt; 201, sprocket; 202, chain; 203, first vertical plate; 205, first slider; 206, telescopic rod; 207, cleaning sponge; 208, follower block; 209, cleaning nozzle; 210, waste liquid box; 211, L-shaped short tube; 301, third arch frame; 302, rack; 303, connecting port; 304, small gear; 305, large gear; 306, rotating plate; 307, third rotating rod; 308, cam; 309, vertical connecting rod; 310, second vertical plate; 311, second slider; 312, rotating bracket; 313, rotating port; 314, spray nozzle; 315, spray material box; 316, spray pump; 401, third pulley; 402, fourth pulley; 403, stirring rod; 404, pulley port. DETAILED DESCRIPTION

[0081] The concept and technical effects of the present invention will be clearly and completely described below in conjunction with embodiments to fully understand the purpose, features and effects of the present invention.

[0082] See also Figure 1-3: A production device, including: a burr grinding device, a cleaning device, a spraying device, and a controller.

[0083] The burr grinding device is arranged on the ground. The cleaning device is arranged on the burr grinding device and connected to the burr grinding device. The spraying device is arranged on the burr grinding device and connected to the burr grinding device. The controller is arranged on the ground and is located at the side of the burr grinding device. The controller is electrically connected to the spraying device and the burr grinding device.

[0084] When the user wants to grind the burrs and coat the cut glass, the user can place the glass on the burr grinding device, which can grind the cut area of ​​the glass to remove the burrs and prevent the cut area of ​​the glass from cutting the user or other surrounding objects. The cleaning device can clean the dust generated when the burr grinding device grinds the cut area of ​​the glass and the stains on the sprayed surface of the glass to facilitate the coating of the coated surface of the glass plate. The spraying device can evenly coat the cleaned coated surface of the glass and stir the coating liquid during coating to avoid uneven coating due to precipitation of the coating liquid.

[0085] In this way, when coating the cut glass, the equipment will first grind the cut area of ​​the glass and clean the coated surface of the glass in advance, and can automatically stir the coating liquid during coating to ensure the technical effect of uniform coating of the glass.

[0086] The burr grinding device includes: a first drive motor 101, a threaded rod 102, a second drive motor 103, a third drive motor 104, a sliding sleeve 105, a bearing plate 106, a fixing plate 107, a first arch frame 108, a second arch frame 109, a bearing frame 110, a first rotating rod 111, three second rotating rods 112, a first pulley 113, three second pulleys 114, and a limit plate 115.

[0087] The first arch 108 is disposed on the ground.

[0088] The supporting frame 110 is square and is disposed above the first arch frame 108 . The bottom surface of the supporting frame 110 is fixedly connected to the flat top surface of the first arch frame 108 .

[0089] The second arch frame 109 passes through the inner frame of the supporting frame 110 and is disposed on the ground. There is a gap between the bottom surface of the second arch frame 109 and the inner bottom surface of the supporting frame 110 .

[0090] The first rotating rod 111 is horizontally arranged on the side of the carrying frame 110, perpendicular to the side of the carrying frame 110, and located on the side of one of the corners of the carrying frame 110. One end of the first rotating rod 111 passes through the side of the carrying frame 110 and extends to the other side of the carrying frame 110. The side of the first rotating rod 111 is rotatably connected to the side of the carrying frame 110, and the rotation axis coincides with its own axis.

[0091] The three second rotating rods 112 are respectively arranged horizontally on the sides of the supporting frame 110, and are respectively located on the other three corners of the supporting frame 110, parallel to the axis of the first rotating rod 111, and one end of the three second rotating rods 112 is respectively rotatably connected to the side of the supporting frame 110, and the rotation axis coincides with its own axis.

[0092] The first pulley 113 is sleeved on the first rotating rod 111 and is located on the side of the carrying frame 110 close to the three second rotating rods 112 . The first pulley 113 is fixedly connected to the side surface of the first rotating rod 111 .

[0093] The three second pulleys 114 are respectively mounted on the three second rotating rods 112 and are respectively in the same vertical plane as the first pulley 113. The three second pulleys 114 are respectively fixedly connected to the sides of the three second rotating rods 112. The three second pulleys 114 are connected to the first pulley 113 via an elastic grinding belt 116.

[0094] The first drive motor 101 is arranged on the side of the supporting frame 110, on the side of the first rotating rod 111 away from the first pulley 113 and above the second arch frame 109, the rotating shaft of the first drive motor 101 is fixedly connected to the end face of the first rotating rod 111 away from the first pulley 113, and the shell of the first drive motor 101 is fixedly connected to the side of the supporting frame 110 through a connecting plate.

[0095] The limiting plate 115 is vertically arranged above the second arch frame 109 and is located on the side of the supporting frame 110 away from the first driving motor 101 . The bottom surface of the limiting plate 115 is fixedly connected to the flat top surface of the second arch frame 109 .

[0096] The second drive motor 103 is disposed above the second arch frame 109 and is located on the side of the supporting frame 110 away from the limiting plate 115 . The housing of the second drive motor 103 is fixedly connected to the flat top surface of the second arch frame 109 .

[0097] The threaded rod 102 is horizontally arranged above the second arch frame 109, inside the supporting frame 110, between the limiting plate 115 and the second driving motor 103, and parallel to the axis of the first rotating rod 111. One end of the threaded rod 102 is fixedly connected to the rotating shaft of the second driving motor 103, and the other end is rotatably connected to the side of the limiting plate 115 close to the supporting frame 110, and the rotation axis coincides with its own axis.

[0098] The sliding sleeve 105 is sleeved on the threaded rod 102 and is located above the second arch frame 109. The sliding sleeve 105 is threadedly connected to the side of the threaded rod 102, and the bottom surface is slidably connected to the flat top surface of the second arch frame 109, and the sliding direction is parallel to the axis of the threaded rod 102.

[0099] The bearing plate 106 is disposed transversely above the sliding sleeve 105 , between the limiting plate 115 and the second driving motor 103 , and parallel to the axis of the first rotating rod 111 . The bottom surface of the bearing plate 106 is fixedly connected to the top surface of the sliding sleeve 105 .

[0100] The third drive motor 104 is horizontally arranged on the top surface of the supporting plate 106, between the limiting plate 115 and the second drive motor 103, the rotating axis of the third drive motor 104 is directed away from the first rotating rod 111, and the axis is perpendicular to the axis of the first rotating rod 111, the shell of the third drive motor 104 is fixedly connected to the top surface of the supporting plate 106, and is electrically connected to the controller.

[0101] The fixed plate 107 is vertically arranged on the side of the rotating shaft of the third drive motor 104 away from the first rotating rod 111, is above the second arch frame 109, and is perpendicular to the axis of the rotating shaft of the third drive motor 104. One side surface of the fixed plate 107 is fixedly connected to the end surface of the rotating shaft of the third drive motor 104. A plurality of suction cups are arranged on the side of the fixed plate 107 away from the third drive motor 104, and the plurality of suction cups are connected to the vacuum pump through pipes.

[0102] By arranging the first driving motor 101, the threaded rod 102, the second driving motor 103, the third driving motor 104, the sliding sleeve 105, the bearing plate 106, the fixing plate 107, the first arch frame 108, the second arch frame 109, the bearing frame 110, the first rotating rod 111, the three second rotating rods 112, the first pulley 113, the three second pulleys 114, and the limiting plate 115, the user can grind the cut glass plate after the glass plate is fixed by the fixing plate 107 through the elastic grinding belt 116 connected to the first pulley 113 and the three second pulleys 114.

[0103] The setting of the third driving motor 104 allows the user to control the rotation of the third driving motor 104 when grinding glass with all four sides being cut surfaces, after grinding two of the cut surfaces of the glass plate, so as to adjust the other two cutting areas of the glass plate to a position where they can be polished by the elastic grinding belt 116 connected to the first pulley 113 and the three second pulleys 114.

[0104] The cleaning device includes: two sprocket wheels 201 , a chain 202 , a first vertical plate 203 , a first vertical sliding port, a first sliding block 205 , a telescopic rod 206 , a cleaning sponge 207 , and a follower block 208 .

[0105] The two sprockets 201 are respectively mounted on the two second rotating rods 112 on the same vertical line, and are located on the side of the supporting plate 106 away from the first driving motor 101 and the side of the second pulley 114 away from the supporting frame 110. The two sprockets 201 are respectively fixedly connected to the side surfaces of the two second rotating rods 112 on the same vertical line.

[0106] The chain 202 is sleeved on the two sprocket wheels 201 and connected to the two sprocket wheels 201 .

[0107] The follower block 208 is disposed on the side of the chain 202 away from the second pulley 114 , and the side surface of the follower block 208 is rotatably connected to the side surface of the outer link plate on the chain 202 , and the rotation axis is parallel to the axes of the second rotating rods 112 .

[0108] The first vertical plate 203 is disposed on the first arch frame 108 , between the supporting frame 110 and the limiting plate 115 , and on the side of the fixing plate 107 away from the second driving motor 103 . The bottom surface of the first vertical plate 203 is fixedly connected to the flat top surface of the first arch frame 108 .

[0109] The first vertical sliding opening is disposed on a side of the first vertical plate 203 .

[0110] The first sliding block 205 is disposed inside the first vertical sliding opening and is slidably connected to the inner wall of the first vertical sliding opening.

[0111] The cleaning sponge 207 is disposed on the side of the first sliding block 205 close to the fixing plate 107 , and the cleaning sponge 207 is fixedly connected to the side of the first sliding block 205 close to the fixing plate 107 .

[0112] The telescopic rod 206 is arranged on the side of the follower block 208 away from the sprocket 201, the telescopic outer shell side of the telescopic rod 206 is fixedly connected to the side of the follower block 208 away from the sprocket 201, and the telescopic inner rod end face of the telescopic rod 206 is fixedly connected to the side of the first slider 205 away from the fixed plate 107.

[0113] By arranging two sprockets 201, a chain 202, a first vertical plate 203, a first vertical slide, a first slider 205, a telescopic rod 206, a cleaning sponge 207, and a follower block 208, the cleaning sponge 207 can reciprocate up and down to clean the coated surface of the glass, thereby ensuring that the cleanliness of the coated surface of the glass meets appropriate requirements.

[0114] The cleaning device further comprises: a vacuum cleaner and two L-shaped short pipes 211 .

[0115] The vacuum cleaner is disposed below the first arch frame 108 and on the ground, and the vacuum cleaner is electrically connected to the controller.

[0116] The two L-shaped short tubes 211 are respectively arranged inside the supporting frame 110, on the side of the fixed plate 107 away from the third drive motor 104. The vertical tube of one L-shaped short tube 211 passes through the inner top of the supporting frame 110, extends to the top of the supporting frame 110, and is connected to the suction port of the vacuum cleaner through a pipe. The vertical tube of the other L-shaped short tube 211 passes through the inner bottom of the supporting frame 110, extends to the bottom of the supporting frame 110, and is connected to the suction port of the vacuum cleaner through a pipe. The vertical tubes of the two L-shaped short tubes 211 are respectively fixedly connected to the top and bottom of the supporting frame 110, and the pipe openings of the horizontal tubes of the two L-shaped short tubes 211 are respectively facing the direction of the fixed plate 107.

[0117] By setting up a vacuum cleaner and two L-shaped short tubes 211, when the elastic grinding belt 116 connected to the first pulley 113 and the three second pulleys 114 is grinding the cutting area of ​​the glass plate, the vacuum cleaner can suck the generated dust into the inside through the two L-shaped short tubes 211 to prevent the dust from sticking to the coated surface of the glass plate or flying in the air.

[0118] The cleaning device further includes: a cleaning nozzle 209, a waste liquid box 210, and a waste liquid outlet.

[0119] The cleaning nozzle 209 is arranged on the side of the first slider 205 close to the fixed plate 107 and above the cleaning sponge 207. The cleaning nozzle 209 is fixedly connected to the side of the first slider 205 close to the fixed plate 107, and passes through the side of the first slider 205 through a pipe and is connected to the water supply pipe.

[0120] The waste liquid outlet is arranged at the top of the first arch frame 108 , on the side of the supporting frame 110 close to the limiting plate 115 , and directly below the cleaning sponge 207 .

[0121] The waste liquid box 210 is disposed below the first arch frame 108 and directly below the waste liquid port, and the waste liquid box 210 is disposed on the ground.

[0122] By providing the cleaning nozzle 209 , when the cleaning sponge 207 cleans the coated area of ​​the glass plate, the cleaning nozzle 209 can spray water on the coated area of ​​the glass plate, thereby improving the cleaning effect of the cleaning sponge 207 on the coated area of ​​the glass plate.

[0123] The spraying device includes: a third arch frame 301, a rack 302, a connecting port 303, a small gear 304, a large gear 305, two rotating plates 306, a third rotating rod 307, a cam 308, a vertical connecting rod 309, a second vertical plate 310, a second vertical sliding port, a second slider 311, a rotating bracket 312, a rotating port 313, a spraying nozzle 314, a spraying material box 315, and a spraying pump 316.

[0124] The third arch frame 301 is arranged below the second arch frame 109 and between the first arch frame 108 and the limiting plate 115. There is a gap between the top surface of the plate of the third arch frame 301 and the bottom surface of the plate of the second arch frame 109. The third arch frame 301 is arranged on the ground.

[0125] The communication port 303 is disposed at the top of the second arch frame 109 , and the direction of the connection port 303 is parallel to the axis of the threaded rod 102 .

[0126] The rack 302 is arranged below the supporting plate 106 and inside the connecting port 303. The plane of the rack 302 is fixedly connected to the bottom surface of the supporting plate 106, and the tooth surface faces the direction of the third arch frame 301. The side surface of the rack 302 is slidably connected to the inner wall of the connecting port 303, and the sliding direction is consistent with the setting direction of the connecting port 303.

[0127] The rotating bracket 312 is arranged above the third arch frame 301, below the plane of the second arch frame 109 and directly below the connecting port 303. The rotating bracket 312 is fixedly connected to the flat top surface of the third arch frame 301. A rotating rod is horizontally arranged inside the rotating bracket 312, and the two ends of the rotating rod are rotatably connected to the inner wall of the rotating bracket 312 respectively, and the rotation axis is perpendicular to the axis of the threaded rod 102.

[0128] The large gear 305 is sleeved on the rotating rod of the rotating bracket 312 and fixedly connected to the side of the rotating rod of the rotating bracket 312 , and is located directly below the communication port 303 . The central axis of the large gear 305 is perpendicular to the axis of the threaded rod 102 .

[0129] The two rotating plates 306 are respectively vertically arranged above the third arch frame 301 and on both sides of the second arch frame 109. The bottom surfaces of the two rotating plates 306 are respectively fixedly connected to the flat top surface of the third arch frame 301. The two rotating plates 306 are parallel to each other and are positioned opposite to each other.

[0130] The third rotating rod 307 is horizontally arranged between the two rotating plates 306, between the second arch frame 109 and the third arch frame 301, and perpendicular to the axis of the threaded rod 102. One end of the third rotating rod 307 is rotatably connected to the side of the rotating plate 306 close to the large gear 305, and the other end passes through the side of the rotating plate 306 away from the large gear 305, and extends to the side of the rotating plate 306 away from the large gear 305, and the side is rotatably connected to the side of the rotating plate 306 away from the large gear 305, and the rotation axis coincides with its own axis.

[0131] The small gear 304 is sleeved on the third rotating rod 307 , and is located on the side of the large gear 305 and directly below the communication port 303 . The small gear 304 is fixedly connected to the side of the third rotating rod 307 and meshes with the large gear 305 .

[0132] The cam 308 is disposed on the side of the other end of the third rotating rod 307 , and is located on the side of the rotating plate 306 away from the large gear 305 . The cam 308 is fixedly connected to the other end of the third rotating rod 307 .

[0133] The rotating opening 313 is disposed at the top of the third arch frame 301 , directly below the cam 308 .

[0134] The second vertical plate 310 is disposed above the third arch frame 301 and is located on the side of the cam 308 away from the second arch frame 109 . The bottom surface of the second vertical plate 310 is fixedly connected to the flat top surface of the third arch frame 301 .

[0135] The second vertical sliding opening is disposed on a side of the second vertical plate 310 .

[0136] The second sliding block 311 is disposed inside the second vertical sliding opening and is slidably connected to the inner wall of the second vertical sliding opening.

[0137] The vertical connecting rod 309 is arranged between the second vertical plate 310 and the cam 308, and the top side of the vertical connecting rod 309 is rotationally connected to the side of the second slider 311 close to the cam 308, and the bottom side is rotationally connected to the side of the raised wheel of the cam 308 close to the second slider 311, and the rotation axis is perpendicular to the raised wheel side of the cam 308.

[0138] The spraying material box 315 is arranged below the third arch frame 301 and is arranged on the ground.

[0139] The spraying pump 316 is arranged below the third arch frame 301 and on the side of the spraying material box 315. The spraying pump 316 is arranged on the ground and is electrically connected to the controller. The input port of the spraying pump 316 penetrates the spraying material box 315 through a pipeline and is connected to the inside of the spraying material box 315.

[0140] The spray nozzle 314 is arranged on the side of the second slider 311 close to the second arch frame 109. The spray nozzle 314 is fixedly connected to the side of the second slider 311 close to the second arch frame 109, and passes through the top of the third arch frame 301 through a pipe, and is connected to the output port of the spray pump 316. The spray port of the spray nozzle 314 faces the direction of the second arch frame 109.

[0141] The third arch frame 301, the rack 302, the connecting port 303, the small gear 304, the large gear 305, the two rotating plates 306, the third rotating rod 307, the cam 308, the vertical connecting rod 309, the second vertical plate 310, the second vertical sliding port, the second slider 311, the rotating bracket 312, the rotating port 313, the spraying nozzle 314, the spraying material box 315, and the spraying pump 316 are arranged so that the spraying nozzle 314 can move up and down along the spraying surface of the glass plate, thereby ensuring that the coating liquid can be evenly sprayed onto the coating surface of the glass plate, thereby avoiding the occurrence of uneven coating.

[0142] The spray nozzle 314 is an atomizing nozzle.

[0143] Setting the spray nozzle 314 as an atomizing nozzle can better spray the coating liquid onto the coating surface of the glass plate, thereby ensuring the coating effect on the glass.

[0144] The spraying device further includes: a third pulley 401 , a fourth pulley 402 , a stirring rod 403 , and a pulley opening 404 .

[0145] The stirring rod 403 is horizontally arranged below the third arch frame 301 and is located on the side of the spraying material box 315. One end of the stirring rod 403 passes through the side of the spraying material box 315 and extends to the inside of the spraying material box 315. The stirring rod 403 is parallel to the axis of the third rotating rod 307. The side of the stirring rod 403 is rotatably connected to the side of the spraying material box 315, and the rotation axis coincides with its own axis. A plurality of stirring blades are arranged on the side of the stirring rod 403 inside the spraying material box 315.

[0146] The pulley opening 404 is disposed at the top of the third arch frame 301 , between the stirring rod 403 and the third rotating rod 307 .

[0147] The third pulley 401 is sleeved on the third rotating rod 307 and is located directly above the pulley opening 404 . The third pulley 401 is fixedly connected to the side surface of the third rotating rod 307 .

[0148] The fourth pulley 402 is sleeved on the stirring rod 403 and is located directly below the pulley opening 404. The fourth pulley 402 is fixedly connected to the side of the stirring rod 403. The fourth pulley 402 is connected to the third pulley 401 through a belt passing through the pulley opening 404.

[0149] By arranging the third pulley 401, the fourth pulley 402, the stirring rod 403 and the pulley opening 404, when the spray nozzle 314 is spraying on the coating surface of the glass plate, the stirring rod 403 can stir the coating liquid inside the spray material box 315 to avoid the precipitation of the coating liquid and thus affect the spraying effect on the glass plate.

[0150] The stirring rod 403 and the plurality of stirring blades located inside the spraying material box 315 are made of corrosion-resistant plastic.

[0151] By making the stirring blades of the stirring rod 403 inside the spraying material box 315 of corrosion-resistant plastic, the stirring blades of the stirring rod 403 will not be corroded in the plating solution, thereby affecting the working performance of the plating solution.

[0152] An energy-saving glass, characterized in that: the shape of the energy-saving glass is square.

[0153] Working process: After the user fixes the cut glass plate on the suction cup on the side of the fixing plate 107, the user can start the vacuum cleaner, the first drive motor 101 and the second drive motor 103 to rotate forward, and open the water supply pipe through the controller.

[0154] After the first driving motor 101 is started, it drives the first rotating rod 111 to rotate. The rotation of the first rotating rod 111 drives the first pulley 113 to rotate. The rotation of the first pulley 113 drives the three second pulleys 114 to rotate through the elastic grinding belt 116. The rotation of the three second pulleys 114 respectively drives the three second rotating rods 112 to rotate. Among them, the two second rotating rods 112 respectively mounted with the sprockets 201 will drive the two sprockets 201 to rotate when they rotate.

[0155] After the second drive motor 103 is started to rotate forward, it drives the threaded rod 102 to rotate forward. The threaded rod 102 rotates forward and drives the sliding sleeve 105 forward, that is, moves toward the direction close to the limit plate 115. The sliding sleeve 105 moves forward and drives the bearing plate 106 to move forward. The bearing plate 106 moves forward and drives the third drive motor 104 to move forward, and drives the rack 302 to move forward. The third drive motor 104 moves forward and drives the fixing plate 107 to move forward. The fixing plate 107 moves forward and drives the glass plate to move forward until the glass plate moves between the elastic polishing belts 116. At this time, the rotating elastic polishing belts 116 will polish two of the cut surfaces of the glass plate. The user can adjust the moving speed of the glass plate by controlling the rotation speed of the second drive motor 103.

[0156] After the vacuum cleaner is started, the dust generated when the elastic grinding belt 116 grinds the cutting area of ​​the glass plate can be sucked into the vacuum cleaner through the pipe connected to the suction port of the vacuum cleaner and the two L-shaped short pipes 211.

[0157] When the two sprocket wheels 201 rotate, the two sprocket wheels 201 rotate and drive the chain 202 to rotate. The chain 202 rotates and drives the follower block 208 to move up and down reciprocatingly with the rotation of the chain 202. When the follower block 208 moves upward, the follower block 208 moves upward and drives the telescopic rod 206 to move upward. The telescopic rod 206 moves upward and drives the first slider 205 to move upward in the first vertical slide. The first slider 205 moves upward and drives the cleaning sponge 207 to move upward, so that the coated surface of the glass plate contacted by the cleaning sponge 207 is cleaned; and when the follower block 208 moves downward, the follower block 208 moves downward and drives the telescopic rod 206 to move downward. The telescopic rod 206 moves downward and drives the first slider 205 to move downward. The first slider 205 moves downward and drives the cleaning sponge 207 to move downward, so that the cleaning sponge 207 can continuously reciprocate and clean the coated surface of the glass plate.

[0158] After the water supply pipe is opened, the water supply pipe can transport water to the cleaning nozzle 209 through a pipe connected to the cleaning nozzle 209, and then spray the water onto the coated surface of the glass plate through the cleaning nozzle 209, thereby improving the cleaning effect of the cleaning sponge 207 on the coated surface of the glass plate.

[0159] When the grinding of two cutting areas of the glass plate is completed, the user can control the second driving motor 103 to reverse through the controller. After the second driving motor 103 is reversed and started, it drives the threaded rod 102 to reverse, and the threaded rod 102 reverses and drives the sliding sleeve 105 to move backward, that is, to move away from the limiting plate 115. The sliding sleeve 105 moves backward and drives the bearing plate 106 to move backward. The bearing plate 106 moves backward and drives the third driving motor 104 to move backward, and drives the rack 302 to move backward. The third driving motor 104 moves backward and drives the fixed plate 107 to move backward. The fixed plate 107 moves backward and drives the glass plate to move backward until the glass plate returns to its initial position. At this time, the user can control the controller to control the third driving motor 104 to rotate, and the rotation of the third driving motor 104 drives the fixed plate 107 to rotate, and the rotation of the fixed plate 107 drives the glass plate to rotate 90° until the other two cutting areas of the glass plate can be rotated to become the top and bottom surfaces of the glass plate. Then the user controls the second driving motor 103 to rotate forward, so as to grind the other two cutting areas of the glass plate.

[0160] When the other two cutting areas of the glass plate are polished, the second driving motor 103 is kept rotating forward, and the carrier plate 106 continues to drive the rack 302 to move forward until the rack 302 contacts the large gear 305 and the glass plate is in the spraying area of ​​the spraying nozzle 314. When the rack 302 contacts the large gear 305, it drives the large gear 305 to rotate, and the rotation of the large gear 305 drives the small gear 304 to rotate, and the rotation of the small gear 304 drives the third rotating rod 307 to rotate, and the rotation of the third rotating rod 307 drives the cam 308 and the third pulley 401 to rotate.

[0161] The rotation of the cam 308 drives the vertical connecting rod 309 to move up and down, and the vertical connecting rod 309 moves up and down to drive the second slider 311 to move up and down in the second vertical slide. When the second slider 311 moves upward in the second vertical slide, the second slider 311 drives the spraying nozzle 314 to move upward; when the second slider 311 moves downward in the second vertical slide, the second slider 311 drives the spraying nozzle 314 to move downward.

[0162] When the second slider 311 moves up and down in the second vertical slide, the user can control the spray pump 316 to start. After the spray pump 316 is started, it can be pressurized by the spray pump 316 through the pipe connected to the input port of the spray pump 316, and then transported to the spray nozzle 314 through the pipe connected to the output port of the spray pump 316, and sprayed out by the spray nozzle 314, so as to evenly spray the coating liquid on the coating surface of the glass plate in a reciprocating up and down manner.

[0163] When the supporting plate 106 continues to drive the rack 302 to move forward and leave the large gear 305, and the glass plate leaves the spraying area of ​​the spraying nozzle 314, the user can control the second driving motor 103 to reverse again through the controller, and control the third driving motor 104 to rotate again, and the rotation of the third driving motor 104 drives the fixed plate 107 to rotate, and the rotation of the fixed plate 107 drives the glass plate to rotate until the two side surfaces of the glass plate are rotated and switched to the top surface and the bottom surface again, and then the rotation of the third driving motor 104 is stopped. When the second drive motor 103 is reversed, the second drive motor 103 is reversed and started to drive the threaded rod 102 to reverse, the threaded rod 102 reverses and drives the sliding sleeve 105 to move backward, the sliding sleeve 105 moves backward and drives the bearing plate 106 to move backward, the bearing plate 106 moves backward and drives the third drive motor 104 to move backward, and drives the rack 302 to move backward, the third drive motor 104 moves backward and drives the fixing plate 107 to move backward, the fixing plate 107 moves backward and drives the glass plate to move backward, until the glass plate moves to the spraying area of ​​the spraying nozzle 314 again, and the rack 302 contacts the large gear 305 again. At this time, when the rack 302 contacts the large gear 305, the rack 302 drives the large gear 305 to rotate, the large gear 305 rotates and drives the small gear 304 to rotate, the small gear 304 rotates and drives the third rotating rod 307 to rotate, and the third rotating rod 307 rotates and drives the cam 308 and the third pulley 401 to rotate. The rotation of the cam 308 drives the vertical connecting rod 309 to move up and down, and the vertical connecting rod 309 moves up and down to drive the second slider 311 to move up and down in the second vertical sliding opening. When the second slider 311 moves upward in the second vertical sliding opening, the second slider 311 drives the spraying nozzle 314 to move upward; when the second slider 311 moves downward in the second vertical sliding opening, the second slider 311 drives the spraying nozzle 314 to move downward, and the spraying nozzle 314 moves up and down to continue spraying the coating surface of the glass plate. In this way, the coating surface of the glass plate after the orientation adjustment is sprayed again, ensuring the effect of uniform spraying on the coating surface of the glass plate.

[0164] When the third pulley 401 rotates, the third pulley 401 drives the fourth pulley 402 to rotate through the belt, and the fourth pulley 402 drives the stirring rod 403 to rotate, and the stirring rod 403 drives several stirring blades on the stirring rod 403 to rotate, so as to stir the coating liquid inside the spraying material box 315 to prevent the coating liquid from settling.

[0165] When the glass plate is sprayed for the second time and leaves the spraying area of ​​the spraying nozzle 314, and the rack 302 leaves the large gear 305 again, the user can control the second drive motor 103 to stop and the spraying pump 316 to stop through the controller. Then the glass plate is removed from the fixed plate 107, and then the second drive motor 103 is controlled by the controller to reverse and start until the sliding sleeve 105 returns to its original position, and then the second drive motor 103 is stopped through the controller, and the next piece of cut glass is placed on the fixed plate 107 and fixed by the fixed plate 107. Then the second drive motor 103 is controlled to rotate forward and reverse, and the spraying pump 316 is started and stopped one by one to complete the processing of another glass plate.

[0166] The above embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, other embodiments obtained by those skilled in the art without creative work shall all fall within the scope of protection of the present invention.

Claims

1. A production device, characterized in that: include: Burr grinding device, cleaning device, spraying device, controller; The burr grinding device is arranged on the ground; the cleaning device is arranged on the burr grinding device and connected to the burr grinding device; the spraying device is arranged on the burr grinding device and connected to the burr grinding device; the controller is arranged on the ground, at the side of the burr grinding device, and the controller is electrically connected to the spraying device and the burr grinding device.

2. A production device according to claim 1, characterized in that: The burr grinding device comprises: a first driving motor (101), a threaded rod (102), a second driving motor (103), a third driving motor (104), a sliding sleeve (105), a bearing plate (106), a fixing plate (107), a first arch frame (108), a second arch frame (109), a bearing frame (110), a first rotating rod (111), three second rotating rods (112), a first pulley (113), three second pulleys (114), a limiting plate (115), and an elastic grinding belt (116); The first arch frame (108) is arranged on the ground; The supporting frame (110) is square and is arranged above the first arch frame (108); the bottom surface of the supporting frame (110) is fixedly connected to the flat plate top surface of the first arch frame (108); The second arch frame (109) passes through the inner frame of the supporting frame (110) and is arranged on the ground, and there is a gap between the bottom surface of the plane of the second arch frame (109) and the inner bottom surface of the supporting frame (110); The first rotating rod (111) is transversely arranged on the side of the carrying frame (110), perpendicular to the side of the carrying frame (110), and located on the side of one of the corners of the carrying frame (110); one end of the first rotating rod (111) passes through the side of the carrying frame (110) and extends to the other side of the carrying frame (110); the side of the first rotating rod (111) is rotatably connected to the side of the carrying frame (110), and the rotation axis coincides with the axis of the first rotating rod; The three second rotating rods (112) are respectively arranged transversely on the sides of the carrying frame (110), respectively on the sides of the other three corners of the carrying frame (110), and are parallel to the axis of the first rotating rod (111); one end of the three second rotating rods (112) is respectively rotatably connected to the side of the carrying frame (110), and the rotation axes respectively coincide with their own axes; The first belt wheel (113) is sleeved on the first rotating rod (111) and is located on the side of the carrying frame (110) close to the three second rotating rods (112), and the first belt wheel (113) is fixedly connected to the side of the first rotating rod (111); The three second pulleys (114) are respectively sleeved on the three second rotating rods (112) and are respectively in the same vertical plane as the first pulley (113); the three second pulleys (114) are respectively fixedly connected to the side surfaces of the three second rotating rods (112); the three second pulleys (114) are connected to the first pulley (113) via the elastic grinding belt (116); The first drive motor (101) is arranged on the side of the carrying frame (110), on the side of the first rotating rod (111) away from the first pulley (113) and above the second arch frame (109); the rotating shaft of the first drive motor (101) is fixedly connected to the end surface of the first rotating rod (111) away from the first pulley (113), and the housing of the first drive motor (101) is fixedly connected to the side of the carrying frame (110) via a connecting plate; The limiting plate (115) is vertically arranged above the second arch frame (109) and is located on the side of the supporting frame (110) away from the first driving motor (101), and the bottom surface of the limiting plate (115) is fixedly connected to the top surface of the flat plate of the second arch frame (109); The second drive motor (103) is arranged above the second arch frame (109), and is located on the side of the supporting frame (110) away from the limiting plate (115), and the housing of the second drive motor (103) is fixedly connected to the top surface of the flat plate of the second arch frame (109); The threaded rod (102) is transversely arranged above the second arch frame (109), inside the bearing frame (110), between the limiting plate (115) and the second drive motor (103), and parallel to the axis of the first rotating rod (111); one end of the threaded rod (102) is fixedly connected to the rotating shaft of the second drive motor (103), and the other end is rotatably connected to the side of the limiting plate (115) close to the bearing frame (110), and the rotation axis coincides with the own axis; The sliding sleeve (105) is sleeved on the threaded rod (102) and is located above the second arch frame (109). The sliding sleeve (105) is threadedly connected to the side surface of the threaded rod (102), and the bottom surface is slidably connected to the flat top surface of the second arch frame (109), and the sliding direction is parallel to the axis of the threaded rod (102); The bearing plate (106) is disposed transversely above the sliding sleeve (105), between the limiting plate (115) and the second driving motor (103), and parallel to the axis of the first rotating rod (111); the bottom surface of the bearing plate (106) is fixedly connected to the top surface of the sliding sleeve (105); The third drive motor (104) is transversely arranged on the top surface of the bearing plate (106), between the limiting plate (115) and the second drive motor (103); the rotation axis of the third drive motor (104) faces away from the direction where the first rotating rod (111) is located, and the axis is perpendicular to the axis of the first rotating rod (111); the housing of the third drive motor (104) is fixedly connected to the top surface of the bearing plate (106), and is electrically connected to the controller; The fixing plate (107) is vertically arranged on the side of the rotation axis of the third drive motor (104) away from the first rotation rod (111), is located above the second arch frame (109), and is perpendicular to the axis of the rotation axis of the third drive motor (104). One side surface of the fixing plate (107) is fixedly connected to the end surface of the rotation axis of the third drive motor (104). A plurality of suction cups are arranged on the side of the fixing plate (107) away from the third drive motor (104), and the plurality of suction cups are connected to the air pump through pipelines.

3. A production device according to claim 2, characterized in that: The cleaning device comprises: two sprocket wheels (201), a chain (202), a first vertical plate (203), a first vertical sliding port, a first sliding block (205), a telescopic rod (206), a cleaning sponge (207), and a follower block (208); The two sprockets (201) are respectively sleeved on the two second rotating rods (112) on the same vertical line, and are located on the side of the carrying plate (106) away from the first driving motor (101) and the side of the second pulley (114) away from the carrying frame (110). The two sprockets (201) are respectively fixedly connected to the side surfaces of the two second rotating rods (112) on the same vertical line; The chain (202) is sleeved on the two sprocket wheels (201) and connected to the two sprocket wheels (201); The follower block (208) is arranged on the side of the chain (202) away from the second pulley (114), and the side surface of the follower block (208) is rotatably connected to the side surface of the outer link plate on the chain (202), and the rotation axis is parallel to the axes of the plurality of second rotation rods (112); The first vertical plate (203) is arranged on the first arch frame (108), between the bearing frame (110) and the limiting plate (115), and on the side of the fixing plate (107) away from the second driving motor (103), and the bottom surface of the first vertical plate (203) is fixedly connected to the top surface of the flat plate of the first arch frame (108); The first vertical sliding opening is arranged on the side of the first vertical plate (203); The first sliding block (205) is arranged inside the first vertical sliding opening and is slidably connected to the inner wall of the first vertical sliding opening; The cleaning sponge (207) is arranged on the side of the first sliding block (205) close to the fixing plate (107), and the cleaning sponge (207) is fixedly connected to the side of the first sliding block (205) close to the fixing plate (107); The telescopic rod (206) is arranged on the side of the follower block (208) away from the sprocket (201), the side of the telescopic outer shell of the telescopic rod (206) is fixedly connected to the side of the follower block (208) away from the sprocket (201), and the end surface of the telescopic inner rod of the telescopic rod (206) is fixedly connected to the side of the first sliding block (205) away from the fixed plate (107).

4. A production device according to claim 3, characterized in that: The cleaning device also includes: a vacuum cleaner and two L-shaped short pipes (211); The vacuum cleaner is arranged below the first arch frame (108) and on the ground, and the vacuum cleaner is electrically connected to the controller; The two L-shaped short tubes (211) are respectively arranged inside the supporting frame (110) and are located on the side of the fixing plate (107) away from the third drive motor (104). The vertical tube of one of the L-shaped short tubes (211) passes through the top of the inside of the supporting frame (110) and extends to the top of the supporting frame (110), and is connected to the suction port of the vacuum cleaner through a pipeline. The vertical tube of the other L-shaped short tube (211) passes through the bottom of the inside of the supporting frame (110) and extends to the bottom of the supporting frame (110), and is connected to the suction port of the vacuum cleaner through a pipeline. The vertical tubes of the two L-shaped short tubes (211) are respectively fixedly connected to the top and bottom of the supporting frame (110), and the pipe openings of the horizontal tubes of the two L-shaped short tubes (211) are respectively facing the direction where the fixing plate (107) is located.

5. A production device according to claim 3, characterized in that: The cleaning device further comprises: a cleaning nozzle (209), a waste liquid box (210), and a waste liquid outlet; The cleaning nozzle (209) is arranged on the side of the first slider (205) close to the fixed plate (107) and above the cleaning sponge (207). The cleaning nozzle (209) is fixedly connected to the side of the first slider (205) close to the fixed plate (107), and passes through the side of the first slider (205) through a pipeline to communicate with the water supply pipe; The waste liquid outlet is arranged at the top of the first arch frame (108), on the side of the supporting frame (110) close to the limiting plate (115), and directly below the cleaning sponge (207); The waste liquid box (210) is arranged below the first arch frame (108) and directly below the waste liquid port. The waste liquid box (210) is arranged on the ground.

6. A production device according to claim 3, characterized in that: The spraying device comprises: a third arch frame (301), a rack (302), a connecting port (303), a small gear (304), a large gear (305), two rotating plates (306), a third rotating rod (307), a cam (308), a vertical connecting rod (309), a second vertical plate (310), a second vertical sliding port, a second sliding block (311), a rotating bracket (312), a rotating port (313), a spraying nozzle (314), a spraying material box (315), and a spraying pump (316); The third arch frame (301) is arranged below the second arch frame (109), between the first arch frame (108) and the limiting plate (115), there is a gap between the top surface of the flat plate of the third arch frame (301) and the bottom surface of the flat plate of the second arch frame (109), and the third arch frame (301) is arranged on the ground; The communication port (303) is arranged at the top of the second arch frame (109), and the arrangement direction is parallel to the axis of the threaded rod (102); The rack (302) is arranged below the bearing plate (106) and is located inside the communication port (303); the plane of the rack (302) is fixedly connected to the bottom surface of the bearing plate (106), the tooth surface faces the direction where the third arch frame (301) is located, and the side surface of the rack (302) is slidably connected to the inner wall of the communication port (303), and the sliding direction is consistent with the setting direction of the communication port (303); The rotating bracket (312) is arranged above the third arched frame (301), below the plane of the second arched frame (109) and directly below the connecting port (303); the rotating bracket (312) is fixedly connected to the flat top surface of the third arched frame (301); a rotating rod is transversely arranged inside the rotating bracket (312), and both ends of the rotating rod are respectively rotatably connected to the inner wall of the rotating bracket (312), and the rotating axis is perpendicular to the axis of the threaded rod (102); The large gear (305) is sleeved on the rotating rod of the rotating bracket (312) and is fixedly connected to the side of the rotating rod of the rotating bracket (312). It is located directly below the connecting port (303), and the central axis of the large gear (305) is perpendicular to the axis of the threaded rod (102). The two rotating plates (306) are respectively arranged vertically above the third arch frame (301) and on both sides of the second arch frame (109); the bottom surfaces of the two rotating plates (306) are respectively fixedly connected to the flat plate top surface of the third arch frame (301); the two rotating plates (306) are parallel to each other and are located opposite to each other; The third rotating rod (307) is transversely arranged between the two rotating plates (306), between the second arch frame (109) and the third arch frame (301), and is perpendicular to the axis of the threaded rod (102). One end of the third rotating rod (307) is rotatably connected to the side of the rotating plate (306) close to the large gear (305), and the other end passes through the side of the rotating plate (306) away from the large gear (305) and extends to the side of the rotating plate (306) away from the large gear (305), and the side is rotatably connected to the side of the rotating plate (306) away from the large gear (305), and the rotation axis coincides with its own axis. The small gear (304) is sleeved on the third rotating rod (307), located on the side of the large gear (305) and directly below the communication port (303); the small gear (304) is fixedly connected to the side of the third rotating rod (307) and meshes with the large gear (305); The cam (308) is arranged on the side of the other end of the third rotating rod (307), on the side of the rotating plate (306) away from the large gear (305), and the cam (308) is fixedly connected to the other end of the third rotating rod (307); The rotating opening (313) is arranged at the top of the third arch frame (301) and is located directly below the cam (308); The second vertical plate (310) is arranged above the third arch frame (301) and is located on the side of the cam (308) away from the second arch frame (109), and the bottom surface of the second vertical plate (310) is fixedly connected to the top surface of the flat plate of the third arch frame (301); The second vertical sliding opening is arranged on the side of the second vertical plate (310); The second sliding block (311) is arranged inside the second vertical sliding opening and is slidably connected to the inner wall of the second vertical sliding opening; The vertical connecting rod (309) is arranged between the second vertical plate (310) and the cam (308), the top side surface of the vertical connecting rod (309) is rotationally connected to the side surface of the second slider (311) close to the cam (308), and the bottom side surface is rotationally connected to the side surface of the raised wheel of the cam (308) close to the second slider (311), and the rotation axis is perpendicular to the raised wheel side surface of the cam (308); The spraying material box (315) is arranged below the third arch frame (301) and is arranged on the ground; The spraying pump (316) is arranged below the third arch frame (301) and is located on the side of the spraying material box (315). The spraying pump (316) is arranged on the ground and is electrically connected to the controller. The input port of the spraying pump (316) passes through the spraying material box (315) through a pipeline and is connected to the inside of the spraying material box (315); The spray nozzle (314) is arranged on the side of the second slider (311) close to the second arch frame (109), and the spray nozzle (314) is fixedly connected to the side of the second slider (311) close to the second arch frame (109), and passes through the top of the third arch frame (301) through a pipeline, and is connected to the output port of the spray pump (316), and the spray port of the spray nozzle (314) faces the direction of the second arch frame (109).

7. A production device according to claim 6, characterized in that: The spraying nozzle (314) is an atomizing nozzle.

8. A production device according to claim 6, characterized in that: The spraying device further comprises: a third pulley (401), a fourth pulley (402), a stirring rod (403), and a pulley opening (404); The stirring rod (403) is transversely arranged below the third arch frame (301) and is located on the side of the spraying material box (315). One end of the stirring rod (403) passes through the side of the spraying material box (315) and extends into the interior of the spraying material box (315). The stirring rod (403) is parallel to the axis of the third rotating rod (307). The side of the stirring rod (403) is rotatably connected to the side of the spraying material box (315). The rotation axis coincides with the axis of the stirring rod itself. A plurality of stirring blades are arranged on the side of the stirring rod (403) inside the spraying material box (315). The pulley opening (404) is arranged at the top of the third arch frame (301), between the stirring rod (403) and the third rotating rod (307); The third pulley (401) is sleeved on the third rotating rod (307) and is located directly above the pulley opening (404); the third pulley (401) is fixedly connected to the side of the third rotating rod (307); The fourth pulley (402) is sleeved on the stirring rod (403) and is located directly below the pulley opening (404). The fourth pulley (402) is fixedly connected to the side of the stirring rod (403). The fourth pulley (402) is connected to the third pulley (401) through a belt passing through the pulley opening (404).

9. A production device according to claim 8, characterized in that: The stirring rod (403) and the plurality of stirring blades located inside the spraying material box (315) are made of corrosion-resistant plastic.

10. An energy-saving glass used in the production device of any one of claims 1 to 9, characterized in that: include: The energy-saving glass is in a square shape.