A glass intelligent heat treatment production line handling device

By designing alignment, fixing, and anti-tipping mechanisms, the problem of glass displacement during transportation in the handling device of the intelligent glass heat treatment production line is solved, achieving stable fixing and safe transportation of the glass and reducing the risk of glass damage.

CN120135803BActive Publication Date: 2025-11-18SHANGRAO KANGRAN OPTICAL INSTRUMENT CO LTD
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Patent Information

Application Number
CN202510550839.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-11-18
Estimated Expiration
2045-04-29

AI Technical Summary

Technical Problem

In existing intelligent heat treatment production lines for glass, the handling equipment may cause objects to shift during transportation due to acceleration, deceleration, turning, or other operations. This makes it difficult to secure the glass effectively, increasing the risk of the glass colliding with the inner wall of the transported goods or other cargo, resulting in glass damage.

Method used

The system employs an alignment mechanism, a fixing mechanism, and an anti-tipping mechanism. Through the coordinated action of components such as push plates, baffles, gears, and springs, it effectively fixes and limits the glass, preventing it from shaking.

Benefits of technology

It effectively prevents glass from shifting during transportation, reduces the risk of collision, improves safety, lowers the probability of glass damage, and facilitates loading and unloading operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a carrying device for a glass intelligent heat treatment production line, and relates to the technical field of glass carrying.The carrying device comprises a push plate, telescopic columns, long blocks, clamping blocks, stress plates, triangular blocks, take-up wheels, connecting blocks, push rods, rubber plates, sealed bins, inclined telescopic plates, triangular telescopic blocks, indirect plates, edge blocks, opening blocks, telescopic cylinders, pull rods and baffle plates.The push plate is slidingly installed on the top of a transport plate, the take-up wheel is fixedly installed on one side of the transport plate close to the push plate, the connecting block is fixedly installed on the bottom of the push plate, one end of the push rod is fixedly installed on one side of the connecting block away from the take-up wheel, and the other end of the push rod is fixedly installed with the rubber plate.The acceleration, deceleration and turning of the transport plate may cause the glass above to be displaced, and the effective limiting device can effectively fix the goods at a specific position, avoid the glass from colliding with the inner wall of the transport object or other goods due to shaking, and reduce the risk of glass damage.
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Description

Technical Field

[0001] This invention relates to the field of glass handling technology, specifically a handling device for a smart glass heat treatment production line. Background Technology

[0002] The handling device for a smart glass heat treatment production line is a device used to transport glass safely and conveniently to the next processing location.

[0003] Patent publication number CN216684455U relates to a base plate, on which a push rod is fixedly mounted at the top, and an anti-slip grip is fixedly mounted on the outer wall of the push rod. A caster wheel is fixedly mounted at the bottom of the base plate, and a housing is fixedly mounted at the top. A buffer assembly is fixedly mounted inside the housing, and a support frame is fixedly mounted at the top of the housing. A groove is formed on the outer wall of the support frame, and a threaded block is fixedly mounted inside the housing. A slider is movably connected to the outer wall of the groove, and a fixed seat is fixedly mounted on the outer wall of the slider. A motor is fixedly mounted inside the fixed seat. This handling device for an intelligent glass heat treatment production line provides good protection, preventing damage due to vibration during movement, thus improving the internal stability of the device and facilitating operation by staff.

[0004] However, the aforementioned patent describes a handling device for a smart glass heat treatment production line. While this device offers good protection and prevents damage from vibration during movement, thus improving internal stability and facilitating operation, problems remain. When an object is on a transport plate, acceleration, deceleration, or turning may cause the object to shift, making it difficult to effectively secure the goods in a specific position. This can lead to the object colliding with the inner wall of the transported goods or other items due to shaking, increasing the risk of damage. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides a handling device for a smart glass heat treatment production line, which solves the problems mentioned in the background section.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a conveying device for a glass intelligent heat treatment production line, comprising a conveying plate, an inclined plate fixedly installed on the top of the conveying plate, baffles fixedly installed on the left and right sides of the conveying plate, an alignment mechanism provided on the top of the conveying plate, a fixing mechanism provided on the bottom of the conveying plate, an anti-tipping mechanism provided on the top of the inclined plate, a first sliding groove and a third sliding groove provided on the bottom of the conveying plate, a placement groove and a locking groove provided inside the conveying plate;

[0007] The alignment mechanism includes a push plate, a telescopic column, a long block, a locking block, a force-bearing plate, a triangular block, a take-up reel, a connecting block, a push rod, a rubber plate, a sealing chamber, an inclined telescopic plate, a triangular telescopic block, an indirect plate, a side block, an opening block, a telescopic cylinder, a pull rod, and a baffle. The push plate is slidably mounted on the top of the transport plate. The take-up reel is fixedly mounted on the side of the transport plate near the push plate. The connecting block is fixedly mounted on the bottom of the push plate. One end of the push rod is fixedly mounted on the side of the connecting block away from the take-up reel. The rubber plate is fixedly mounted on the other end of the push rod. The sealing chamber is disposed in a placement groove, and a circular hole is opened at the bottom of the sealing chamber. One end of the telescopic column is fixedly mounted on the side of the push plate near the inclined plate. The indirect plate is fixedly mounted on the other end of the telescopic column. The triangular block is fixedly mounted on the side of the indirect plate near the telescopic column. A block is fixedly installed on the side of the push plate near the telescopic column. A second sliding groove is provided on the side of the push plate near the telescopic column. The locking block is slidably installed in the second sliding groove. The force plate is fixedly installed on the side of the locking block away from the telescopic column. The inclined telescopic plate is fixedly installed on the side of the indirect plate away from the telescopic column. The triangular telescopic block is fixedly installed on the top of the transport plate. The side block is fixedly installed on the left side of the transport plate. The opening block is fixedly installed on the top of the side block. The fixed end of the telescopic cylinder is rotatably installed inside the opening block. The baffle is fixedly installed on the free end of the telescopic cylinder. The pull rod is fixedly installed on the top of the telescopic cylinder. When the pull rod moves upward, it will drive the telescopic cylinder to move upward. When the telescopic cylinder moves upward, it will drive the baffle to move, rotating the baffle onto the opening block above the side block. When the baffle moves, it will release the limit of the push plate.

[0008] According to the above technical solution, the card block contacts the card slot, and the force plate contacts the triangular block. When the triangular block contacts the force plate, it will push the force plate downward into the card slot to limit the push plate.

[0009] According to the above technical solution, a first spring is provided between the long block and the locking block, and a second spring is provided between the sealing chamber and the rubber plate. When the locking block is released, the locking block will move upward due to the elastic force of the first spring, thus releasing the restriction on the push plate.

[0010] According to the above technical solution, the fixing mechanism includes a rack plate, a shaft block, a bearing, a single gear, a pressure plate, a telescopic rod, a suction cup, a frame rod, a ring, a limiting block, a cylinder, and a thin column. The rack plate is fixedly installed at the bottom of the push plate, the shaft block is fixedly installed at the bottom of the transport plate, the bearing is rotatably installed on the side of the shaft block near the rack plate, the single gear is fixedly installed on the circumferential surface of the bearing, the pressure plate is fixedly installed on the circumferential surface of the bearing, one side of the thin column is fixedly installed at the bottom of the transport plate, one side of the cylinder is rotatably installed on the other side of the thin column, and a wheel is rotatably installed on the other side of the cylinder. The limiting block is rotatably installed at the bottom of the cylinder, the fixed end of the telescopic rod is fixedly installed at the bottom of the transport plate, the suction cup is fixedly installed at the free end of the telescopic rod, the frame of the frame rod is fixedly installed at the free end of the telescopic rod, and the ring is fixedly installed at the right angle of the frame rod. When the single gear rotates, it drives the bearing on the shaft block to rotate. When the bearing rotates, it drives the pressure plate to move. When the pressure plate moves, it drives the frame rod to move. When the frame rod moves, it drives the ring to move.

[0011] According to the above technical solution, the rack plate meshes with the single gear, the pressure plate contacts the frame rod, and when the single gear rotates, it will drive the rack plate to move, and the movement of the pressure plate will drive the frame rod to move downward.

[0012] According to the above technical solution, the ring is in contact with the limiting block, and the wheel is in contact with the limiting block. When the limiting block is in contact with the wheel, it will limit the wheel and prevent it from rotating freely.

[0013] According to the above technical solution, the anti-tipping mechanism includes a wide plate, a slider, a connecting plate, a locking block, a U-frame, a locking plate, a gear shaft, a double gear, and a sliding block. The wide plate is fixedly installed on the top of the inclined plate. A fourth groove is opened in the middle of the wide plate, and the slider is slidably installed in the fourth groove. The top of the connecting plate is fixedly installed on the bottom of the slider. The locking block is fixedly installed on the bottom of the connecting plate. The U-frame is fixedly installed on the top of the wide plate. A fifth groove is opened on both the front and back sides of the U-frame, and the sliding block is slidably installed in the fifth groove. The gear shaft is rotatably installed on the sliding block near the middle of the U-frame. The double gear is fixedly installed on the circumferential surface of the gear shaft. The locking plate is fixedly installed at the opening of the U-frame. When the glass needs to be removed, the locking block will move towards the inclined plate. When the locking block moves, it will drive the connecting plate to move. When the connecting plate moves, it will drive the slider to move on the wide plate. When the slider moves, it will drive the gear shaft to rotate.

[0014] According to the above technical solution, the positioning plate meshes with the double gear, and a No. 3 spring is provided between the sliding block and the U frame. When the gear shaft moves due to inertia, it will drive the double gear to move. When moving forward, the double gear will stop rotating due to the limitation of the positioning plate.

[0015] According to the above technical solution, a rubber sheet is installed on the side of the locking block near the inclined plate, and a spring is provided inside the gear shaft. When the locking block comes into contact with the glass, it can prevent the glass from being impacted and broken. During the loading and unloading of the glass, the spring can retract and extend the rope.

[0016] This invention provides a conveying device for a smart glass heat treatment production line. It has the following advantages:

[0017] (1) In this invention, when the baffle moves, the limit of the push plate will be released. When the limit of the push plate is released, the second spring inside the sealed chamber will pull the rubber plate inward. The rubber plate squeezes the air inside and flows out through the small hole. As the rubber plate moves further and further inward, the number of air holes will decrease, preventing the glass above from shifting when the transport plate accelerates, decelerates, turns or other operations. The effective limiting device can effectively fix the goods in a specific position, preventing the glass from colliding with the inner wall of the transported goods or other goods due to shaking, and reducing the risk of glass damage.

[0018] (2) When the single gear rotates, it will drive the bearing on the shaft block to rotate. When the bearing rotates, it will drive the pressure plate to move. When the pressure plate moves, it will drive the frame rod to move. When the frame rod moves, it will drive the ring to move. This will prevent the transport device from being damaged during loading and unloading, thereby reducing the risk of accidental collisions or equipment damage and improving overall safety. At the same time, it will also make it easier and faster for workers to load and unload.

[0019] (3) In this invention, the locking block is pulled towards the outermost glass so that the locking block contacts the outermost glass. When the glass needs to be removed, the locking block will move towards the inclined plate. When the locking block moves, it will drive the connecting plate to move. When the staff unloads the glass, it can prevent the staff from accidentally causing the glass to suddenly tip over and damage the glass. At the same time, it may cause personal safety to the staff around. It avoids unnecessary damage to the glass caused by other reasons during unloading, and can also reduce unnecessary damage and avoid the impact of broken glass on the transportation vehicle. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0021] Figure 2 For the present invention Figure 1 Enlarged schematic diagram of section A in the middle;

[0022] Figure 3 This is a schematic diagram of the push plate and telescopic column structure of the present invention;

[0023] Figure 4 This is a schematic diagram of the transport plate and push plate structure of the present invention;

[0024] Figure 5 This is a schematic diagram of the push plate and sealing chamber structure of the present invention;

[0025] Figure 6 This is a schematic diagram of the bearing and wheel structure of the present invention;

[0026] Figure 7 This is a schematic diagram of the inclined plate and slider structure of the present invention;

[0027] Figure 8 This is a schematic diagram of the U-frame and gear shaft structure of the present invention.

[0028] In the diagram: 1. Transport plate; 2. Inclined plate; 301. Push plate; 302. Telescopic column; 303. Long block; 304. Locking block; 305. Load-bearing plate; 306. Triangular block; 307. Take-up reel; 308. Connecting block; 309. Push rod; 310. Rubber plate; 311. Sealed chamber; 312. Inclined telescopic plate; 313. Triangular telescopic block; 314. Indirect plate; 315. Side block; 316. Opening block; 317. Telescopic cylinder; 318. Pull rod; 319. Baffle plate; 40. 1. Rack plate; 402. Shaft block; 403. Bearing; 404. Single gear; 405. Pressure plate; 406. Telescopic rod; 407. Suction cup; 408. Frame rod; 409. Ring; 410. Limiting block; 411. Cylinder; 412. Thin column; 501. Wide plate; 502. Slider; 503. Connecting plate; 504. Locking block; 505. U-frame; 506. Locking plate; 507. Gear shaft; 508. Double gear; 509. Sliding block; 6. Wheel; 7. Baffle. Detailed Implementation

[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0030] Please see Figures 1-8 A conveying device for a glass intelligent heat treatment production line includes a conveying plate 1, an inclined plate 2 fixedly installed on the top of the conveying plate 1, baffles 7 fixedly installed on the left and right sides of the conveying plate 1, an alignment mechanism provided on the top of the conveying plate 1, a fixing mechanism provided on the bottom of the conveying plate 1, an anti-tipping mechanism provided on the top of the inclined plate 2, a first sliding groove and a third sliding groove provided on the bottom of the conveying plate 1, a placement groove and a card slot provided inside the conveying plate 1.

[0031] The alignment mechanism includes a push plate 301, a telescopic column 302, a long block 303, a locking block 304, a force-bearing plate 305, a triangular block 306, a take-up reel 307, a connecting block 308, a push rod 309, a rubber plate 310, a sealing chamber 311, an inclined telescopic plate 312, a triangular telescopic block 313, an indirect plate 314, a side block 315, an opening block 316, a telescopic cylinder 317, a pull rod 318, and a baffle plate 319. The push plate 301 is slidably mounted on the top of the transport plate 1, and the take-up reel 307 is fixedly mounted. A connecting block 308 is fixedly installed on the bottom of the push plate 301, and one end of the push rod 309 is fixedly installed on the side of the connecting block 308 away from the take-up reel 307. A rubber plate 310 is fixedly installed on the other end of the push rod 309. A sealing chamber 311 is placed in the placement groove, and a round hole is opened at the bottom of the sealing chamber 311. One end of the telescopic column 302 is fixedly installed on the side of the push plate 301 near the inclined plate 2, and an indirect plate 314 is fixedly installed on the other end of the telescopic column 302. Corner block 306 is fixedly installed on the side of indirect plate 314 near telescopic column 302. Long block 303 is fixedly installed on the side of push plate 301 near telescopic column 302. Push plate 301 has a second sliding groove on the side near telescopic column 302. Locking block 304 is slidably installed in the second sliding groove. Force plate 305 is fixedly installed on the side of locking block 304 away from telescopic column 302. Inclined telescopic plate 312 is fixedly installed on the side of indirect plate 314 away from telescopic column 302. Triangular telescopic block 313 is fixedly installed on the top of transport plate 1. Side block 315 is fixedly installed on the left side of transport plate 1. Opening block 316 is fixedly installed on the top of side block 315. Fixed end of telescopic cylinder 317 is rotatably installed inside opening block 316. Baffle 319 is fixedly installed on the free end of telescopic cylinder 317. Pull rod 318 is fixedly installed on the top of telescopic cylinder 317. The limiting mechanism can effectively fix the goods in a specific position, preventing the glass from colliding with the inner wall of the transported goods or other goods due to shaking, and reducing the risk of glass damage.

[0032] The card block 304 contacts the card slot, and the force plate 305 contacts the triangular block 306. When the triangular block 306 contacts the force plate 305, it will push the force plate 305 downward into the card slot, thus limiting the push plate 301.

[0033] A first spring is provided between the long block 303 and the locking block 304, and a second spring is provided between the sealing chamber 311 and the rubber plate 310. When the limiting of the locking block 304 is released, the locking block 304 will move upward due to the elastic force of the first spring, thus releasing the limiting of the push plate 301.

[0034] The fixing mechanism includes a rack plate 401, a shaft block 402, a bearing 403, a single gear 404, a pressure plate 405, a telescopic rod 406, a suction cup 407, a frame rod 408, a ring 409, a limiting block 410, a cylinder 411, and a thin column 412. The rack plate 401 is fixedly installed on the bottom of the push plate 301, the shaft block 402 is fixedly installed on the bottom of the transport plate 1, the bearing 403 is rotatably installed on the side of the shaft block 402 near the rack plate 401, the single gear 404 is fixedly installed on the circumferential surface of the bearing 403, the pressure plate 405 is fixedly installed on the circumferential surface of the bearing 403, and one side of the thin column 412 is fixedly installed on the bottom of the transport plate 1. One side of the cylinder 411 is rotatably mounted on the other side of the thin column 412. A wheel 6 is rotatably mounted on the other side of the cylinder 411. A limiting block 410 is rotatably mounted on the bottom of the cylinder 411. The fixed end of the telescopic rod 406 is fixedly mounted on the bottom of the transport plate 1. A suction cup 407 is fixedly mounted on the free end of the telescopic rod 406. The frame of the frame rod 408 is fixedly mounted on the free end of the telescopic rod 406. A ring 409 is fixedly mounted at the right angle of the frame rod 408. This prevents the transport device from being damaged during loading and unloading, thereby reducing the risk of accidental collisions or equipment damage, improving overall safety, and also making loading and unloading more convenient and faster for staff.

[0035] The rack plate 401 meshes with the single gear 404, and the pressure plate 405 contacts the frame rod 408. When the single gear 404 rotates, it will drive the rack plate 401 to move. When the pressure plate 405 moves, it will drive the frame rod 408 to move downward.

[0036] The ring 409 is in contact with the limiting block 410, and the wheel 6 is in contact with the limiting block 410. When the limiting block 410 is in contact with the wheel 6, it will limit the wheel 6 so that it cannot rotate freely.

[0037] The anti-tipping mechanism includes a wide plate 501, a slider 502, a connecting plate 503, a locking block 504, a U-frame 505, a locking plate 506, a gear shaft 507, a double gear 508, and a sliding block 509. The wide plate 501 is fixedly installed on the top of the inclined plate 2. A fourth sliding groove is formed in the middle of the wide plate 501, and the slider 502 is slidably installed in the fourth sliding groove. The top of the connecting plate 503 is fixedly installed on the bottom of the slider 502. The locking block 504 is fixedly installed on the bottom of the connecting plate 503. The U-frame 505 is fixedly installed on the top of the wide plate 501. The frame 505 has five sliding grooves on its front and rear sides. The sliding block 509 is slidably installed in the five sliding grooves. The gear shaft 507 is rotatably installed on the sliding block 509 near the middle of the U-frame 505. The double gear 508 is fixedly installed on the circumferential surface of the gear shaft 507. The locking plate 506 is fixedly installed at the opening of the U-frame 505. This design ensures the personal safety of the staff in the vicinity, avoids unnecessary damage to the glass during unloading due to other reasons, reduces unnecessary damage, and avoids the impact of broken glass on the transport vehicle.

[0038] The positioning plate 506 meshes with the double gear 508. A third spring is provided between the sliding block 509 and the U-frame 505. When the gear shaft 507 moves due to inertia, it will drive the double gear 508 to move. When it moves forward, the double gear 508 will stop rotating due to the limit of the positioning plate 506.

[0039] A rubber sheet is installed on the side of the locking block 504 near the inclined plate 2, and a spring is installed inside the gear shaft 507. When the locking block 504 comes into contact with the glass, it can prevent the glass from being impacted and broken. During the loading and unloading of the glass, the spring can retract and extend the rope.

[0040] During operation: Push the glass onto the transport plate 1 from the direction of the triangular telescopic block 313, pull the lever 318 upward, and the upward movement of the lever 318 will drive the telescopic cylinder 317 upward. When the telescopic cylinder 317 moves upward, it will drive the baffle 319 to move, rotating the baffle 319 onto the opening block 316 above the side block 315. When the baffle 319 moves, it will release the limit of the push plate 301. When the limit of the push plate 301 is released, the second spring inside the sealing chamber 311 will pull the rubber plate 310 inward. The rubber plate 310 will compress the internal air and let it flow out through the small hole. As the rubber plate 310 moves further inward, the number of air holes will decrease. When the number of air holes decreases, the internal air discharge will slow down, thus slowing down the movement speed of the rubber plate 310. When the rubber plate 310 moves, it will drive the push rod 309 to move. When 09 moves, it will cause the connecting block 308 to move. When the connecting block 308 moves, it will cause the push plate 301 to move. When the push plate 301 moves, it will push the telescopic column 302 to move. When the telescopic column 302 moves, it will cause the indirect plate 314 to move. When the indirect plate 314 moves, it will cause the inclined telescopic plate 312 to move. When the push plate 301 moves, it will cause the long block 303 to move. When the long block 303 moves, the locking block 304 will move due to the pull of the first spring. When the locking block 304 moves, it will cause the force plate 305 to move. When the gap between the indirect plate 314 and the push plate 301 decreases, the triangular block 306 will press the force plate 305 downward. When the force plate 305 moves downward, it will cause the locking block 304 to move into the slot, limiting the push plate 301. When it is necessary to remove the glass, rotate the take-up wheel 307 to reset the push plate 301.

[0041] When the push plate 301 moves, it drives the rack plate 401 to move. When the rack plate 401 moves, it drives the single gear 404 to rotate. When the single gear 404 rotates, it drives the bearing 403 on the shaft block 402 to rotate. When the bearing 403 rotates, it drives the pressure plate 405 to move. When the pressure plate 405 moves, it drives the frame rod 408 to move. When the frame rod 408 moves, it drives the ring 409 to move. When the ring 409 moves, it presses the limiting block 410 downward. When the limiting block 410 moves downward, it limits the wheel 6. No matter how the cylinder 411 under the thin column 412 rotates, the limiting block 410 will limit the wheel 6. At the same time, when the frame rod 408 moves downward, it drives the telescopic rod 406 to move downward. When the telescopic rod 406 moves downward, it drives the suction cup 407 to move. When the suction cup 407 moves downward, it makes the transport plate 1 more stable.

[0042] When stacking glass, the locking block 504 is pulled towards the outermost glass, so that the locking block 504 contacts the outermost glass. When it is necessary to remove the glass, the locking block 504 will move towards the inclined plate 2. When the locking block 504 moves, it will drive the connecting plate 503 to move. When the connecting plate 503 moves, it will drive the slider 502 to move on the wide plate 501. When the slider 502 moves, it will drive the gear shaft 507 to rotate. When the glass accidentally falls to one side, it will move the slider 502 away from the inclined plate 2. Under the action of inertia, it will drive the gear shaft 507 to move towards the side of the slider 502. When the gear shaft 507 moves, it will drive the double gear 508 to move. At the same time, it will drive the sliding block 509 to move in the groove on the U frame 505. The double gear 508 will contact the locking plate 506, so that the slider 502 stops moving and protects the glass together with the baffle 7.

[0043] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A conveying device for a glass intelligent heat treatment production line, comprising a conveyor plate (1), characterized in that: The top of the transport plate (1) is fixedly installed with a sloping plate (2), and the left and right sides of the transport plate (1) are fixedly installed with baffles (7). The top of the transport plate (1) is provided with an alignment mechanism, the bottom of the transport plate (1) is provided with a fixing mechanism, the top of the sloping plate (2) is provided with an anti-tipping mechanism, the bottom of the transport plate (1) is provided with a first sliding groove, the bottom of the transport plate (1) is provided with a third sliding groove, the inside of the transport plate (1) is provided with a placement groove, and the inside of the transport plate (1) is provided with a card slot. The alignment mechanism includes a push plate (301), a telescopic column (302), a long block (303), a locking block (304), a force-bearing plate (305), a triangular block (306), a take-up reel (307), a connecting block (308), a push rod (309), a rubber plate (310), a sealing chamber (311), an inclined telescopic plate (312), a triangular telescopic block (313), an indirect plate (314), a side block (315), an opening block (316), a telescopic cylinder (317), a pull rod (318), and a baffle (319). The push plate (301) is slidably mounted on the transport plate ( 1) At the top, the take-up reel (307) is fixedly installed on the side of the transport plate (1) near the push plate (301), the connecting block (308) is fixedly installed at the bottom of the push plate (301), one end of the push rod (309) is fixedly installed on the side of the connecting block (308) away from the take-up reel (307), the rubber plate (310) is fixedly installed at the other end of the push rod (309), the sealing chamber (311) is set in the placement groove, the bottom of the sealing chamber (311) is provided with a round hole, and one end of the telescopic column (302) is fixedly installed on the push plate (301) near the inclined plate ( 2) On one side, the indirect plate (314) is fixedly installed at the other end of the telescopic column (302), the triangular block (306) is fixedly installed on the side of the indirect plate (314) near the telescopic column (302), the long block (303) is fixedly installed on the side of the push plate (301) near the telescopic column (302), the side of the push plate (301) near the telescopic column (302) is provided with a second sliding groove, the locking block (304) is slidably installed in the second sliding groove, the force plate (305) is fixedly installed on the side of the locking block (304) away from the telescopic column (302), the inclined The telescopic plate (312) is fixedly installed on the side of the indirect plate (314) away from the telescopic column (302), the triangular telescopic block (313) is fixedly installed on the top of the transport plate (1), the side block (315) is fixedly installed on the left side of the transport plate (1), the opening block (316) is fixedly installed on the top of the side block (315), the fixed end of the telescopic cylinder (317) is rotatably installed inside the opening block (316), the baffle (319) is fixedly installed on the free end of the telescopic cylinder (317), and the pull rod (318) is fixedly installed on the top of the telescopic cylinder (317). The fixing mechanism includes a rack plate (401), a shaft block (402), a bearing (403), a single gear (404), a pressure plate (405), a telescopic rod (406), a suction cup (407), a frame rod (408), a ring (409), a limiting block (410), a cylinder (411), and a thin column (412). The rack plate (401) is fixedly installed at the bottom of the push plate (301), the shaft block (402) is fixedly installed at the bottom of the transport plate (1), the bearing (403) is rotatably installed on the side of the shaft block (402) near the rack plate (401), the single gear (404) is fixedly installed on the circumferential surface of the bearing (403), and the pressure plate (405) is fixedly installed. On the circumferential surface of the bearing (403), one side of the thin column (412) is fixedly installed on the bottom of the transport plate (1), one side of the cylinder (411) is rotatably installed on the other side of the thin column (412), and a wheel (6) is rotatably installed on the other side of the cylinder (411). The limiting block (410) is rotatably installed on the bottom of the cylinder (411). The fixed end of the telescopic rod (406) is fixedly installed on the bottom of the transport plate (1). The suction cup (407) is fixedly installed on the free end of the telescopic rod (406). The frame of the frame rod (408) is fixedly installed on the free end of the telescopic rod (406). The ring (409) is fixedly installed at the right angle of the frame rod (408). The rack plate (401) meshes with the single gear (404), and the pressure plate (405) contacts the frame rod (408); The card block (304) contacts the card slot, and the force plate (305) contacts the triangular block (306); A first spring is provided between the long block (303) and the locking block (304), and a second spring is provided between the sealing chamber (311) and the rubber plate (310); The ring (409) contacts the limiting block (410), and the wheel (6) contacts the limiting block (410).

2. The conveying device for a glass intelligent heat treatment production line according to claim 1, characterized in that: The anti-tipping mechanism includes a wide plate (501), a slider (502), a connecting plate (503), a locking block (504), a U-frame (505), a locking plate (506), a gear shaft (507), a double gear (508), and a sliding block (509). The wide plate (501) is fixedly installed on the top of the inclined plate (2). A fourth groove is opened in the middle of the wide plate (501). The slider (502) is slidably installed in the fourth groove. The top of the connecting plate (503) is fixedly installed on the bottom of the slider (502). The locking block (509) 504) is fixedly installed at the bottom of the connecting plate (503), the U frame (505) is fixedly installed at the top of the wide plate (501), the front and rear sides of the U frame (505) are provided with five sliding grooves, the sliding block (509) is slidably installed in the five sliding grooves, the gear shaft (507) is rotatably installed at the position of the sliding block (509) near the middle of the U frame (505), the double gear (508) is fixedly installed on the circumferential surface of the gear shaft (507), and the positioning plate (506) is fixedly installed at the opening of the U frame (505).

3. The conveying device for a glass intelligent heat treatment production line according to claim 2, characterized in that: The card plate (506) meshes with the double gear (508), and a No. 3 spring is provided between the sliding block (509) and the U-frame (505).

4. The conveying device for a glass intelligent heat treatment production line according to claim 3, characterized in that: The locking block (504) has a rubber sheet installed on the side near the inclined plate (2), and a spring is provided inside the gear shaft (507).

Citation Information

Patent Citations

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