Discharging device of intelligent cutting platform

By combining the design of guiding, steering and conveying devices, the problem of high cost and low efficiency of intelligent cutting platform discharge devices is solved, realizing the reduction of equipment cost and the improvement of conveying efficiency. It is suitable for small and medium-sized enterprises and various sizes of boards.

CN115947085BActive Publication Date: 2026-02-13HUBEI XINGUANG INTELLIGENT EQUIP CO LTD +1
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Patent Information

Application Number
CN202310020456.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-01-06
Publication Date
2026-02-13
Estimated Expiration
2043-01-06

AI Technical Summary

Technical Problem

Existing intelligent cutting platforms have high-cost and low-efficiency discharge devices, making them unsuitable for small and medium-sized enterprises.

Method used

The design employs a combination of guiding, steering, and conveying devices. The guiding device initially aligns the wide edge of the sheet material, the steering device changes the conveying direction, and the lifting steering mechanism and adjusting mechanism adjust the length of the sheet material. The continuous conveying and shaping of the sheet material are achieved through the driving and power mechanisms.

Benefits of technology

It reduces equipment costs, improves sheet material conveying efficiency, is suitable for sheets of different lengths and widths, expands the scope of application, and is suitable for small and medium-sized enterprises.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the related technical field of plate cutting, and discloses a discharging device of an intelligent cutting platform, which comprises a guiding device, a turning device and a conveying device, the guiding device and the conveying device are located on the adjacent two sides of the turning device, the turning device comprises a conveying roller rotatably connected to a support frame one, a jacking turning mechanism is arranged below the support frame one, a plurality of turning belts are arranged between the adjacent conveying rollers, a push plate one and a push plate two are arranged on the opposite sides of a support frame two respectively, a driving mechanism is arranged in the support frame two, the conveying device comprises a fixed conveying belt and a sliding conveying belt which are arranged on the support frame two and are parallel to each other, and an adjusting mechanism is arranged in the support frame two, the present application has the following advantages and effects: through the arrangement of the discharging device, different lengths of plates can be conveyed, the manufacturing cost of the cutting platform is saved, the conveying path is optimized, and the discharging efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of plate cutting, and particularly relates to a discharging device of an intelligent cutting platform. BACKGROUND

[0002] The intelligent cutting platform is an intelligent system for processing plates, and comprises a feeding unit, a longitudinal cutting and labeling unit, a distributing unit, a transverse cutting unit and a discharging unit. The plates have the same width after longitudinal cutting, and then the plates with the same width are transversely cut again to cut them into plates with different lengths according to requirements. At present, the discharging part of the cutting platform is provided with a plurality of conveying belts with different widths, and the plates are transferred to the corresponding discharging conveying belts by using a mechanical hand. The plurality of conveying belts have high cost, and the use of the mechanical hand has high cost and low conveying efficiency, which is not suitable for small and medium-sized enterprises. SUMMARY

[0003] The present application aims to provide a discharging device of an intelligent cutting platform, which has the effects of adjusting the width of the conveying belt according to the length of the plate, saving equipment cost and improving the working efficiency of plate discharging.

[0004] The above technical purpose of the present application is achieved by the following technical scheme: a guiding device, a turning device and a conveying device are sequentially arranged at the discharging end of the transverse cutting device, the guiding device and the conveying device are located on the adjacent two sides of the turning device, and the turning device comprises a conveying roller rotatably connected to a support frame one, a jacking turning mechanism is arranged below the support frame one, the jacking turning mechanism comprises a plurality of turning belts located between adjacent conveying rollers, the conveying direction of the turning belts is perpendicular to the conveying direction of the conveying rollers, a push plate one and a push plate two are arranged on the opposite sides of a support frame two away from and close to the guiding device, a driving mechanism is arranged in the support frame two to drive the push plate one and the push plate two to move away from or close to each other, and the conveying device comprises a fixed conveying belt and a sliding conveying belt which are arranged in parallel on the support frame two, and an adjusting mechanism is arranged in the support frame two to drive the sliding conveying belt to be slidingly connected to the support frame two.

[0005] Through the above technical scheme, the plates after transverse cutting have different lengths, the guiding device preliminarily adjusts the wide side of the plates to keep them in an orderly posture and enter the turning device, the turning device changes the conveying direction of the plates to change the long side of the plates into a variable, and then the jacking turning mechanism transports the plates after turning to the conveying device. The distance between the sliding conveying belt and the fixed conveying belt in the conveying device is adjustable, and can be suitable for plates with different lengths within a certain range. The device has compact structure, low equipment cost and high plate conveying efficiency, and is suitable for small and medium-sized enterprises. In addition, the device is also suitable for conveying other products with adjustable sizes, has wide application range and high practicability.

[0006] Further, the driving mechanism comprises a lead screw and a slide rod, a support vertical plate is slidably connected to the lead screw and the slide rod, an extension assembly is fixed to the support vertical plate, the extension assembly comprises a hollow sleeve rod, a hollow inner rod is rotatably connected to the hollow sleeve rod, an extension rod is slidably connected to the hollow inner rod, a protruding rod is arranged on the side of the extension rod, a sliding groove is arranged on the side of the hollow inner rod and rotates along the side, the protruding rod penetrates through the sliding groove and is slidably connected to a limiting groove on the top of the inner side of the hollow sleeve rod, a push plate one is fixed to the end of the extension rod on the hollow sleeve rod, a push rod is vertically fixed to the support vertical plate, a limiting slot rod is arranged on the push rod, the limiting slot rod comprises a horizontal section and an inclined section, the inclined section is arranged downward along a guide device, a short rod is slidably connected to the limiting slot rod and is hinged to the side of a push plate two, the push plate two is slidably connected to a support rod, and the support rod is vertically fixed to a support frame one close to the guide device.

[0007] By adopting the above technical scheme, the guide device limits the width of the plate, and after being conveyed from the guide device to the support frame one, the length of the plate needs to be aligned. First, the length of the extension assembly is adjusted. By driving the hollow inner rod to rotate, the extension rod clamped in the sliding groove on the side of the hollow inner rod is pushed to slide in the limiting groove on the inner top surface of the hollow sleeve rod, and then the extension rod is extended or retracted from the hollow inner rod, thereby changing the length between the extension rod end and the push plate one of the hollow sleeve rod, and achieving preliminary positioning of the side of the plate. Then, by driving the lead screw to rotate, the support vertical plate is driven to slide on the slide rod. At this time, the push plate one is driven to move close to the side of the plate. When the support vertical plate slides, the push rod is pushed to slide. Since the end of the push rod is provided with the limiting slot rod, when the limiting slot rod slides towards the push plate two, the inclined section of the limiting slot rod pushes the short rod on the side of the push plate two to gradually slide to the horizontal section of the limiting slot rod, so as to drive the push plate two to rise in the support rod. Finally, the push plate two is lifted above the support frame one, forming an obstruction to the side of the plate. The push plate one and the push plate two are arranged on opposite sides of the support frame. The sliding distance of the support vertical plate on the slide rod and the extension assembly together limit the long side of the plate, so that the plate can maintain the correct posture and smoothly enter the conveying device.

[0008] The further arrangement of the present application is that the power mechanism is connected with one end of the lead screw, the power mechanism comprises a motor one, a square shaft sleeve is fixed on the output shaft of the motor one, a rotating shaft is slidably and rotatably connected in the square shaft sleeve, a tooth direction approaching reversing bevel gear one and a reversing bevel gear two are respectively fixed on two ends of the rotating shaft, a drive rod is fixed on the rotating shaft between the reversing bevel gear one and the reversing bevel gear two, the drive rod is fixed on the piston rod of the reversing cylinder, a driven bevel gear one is arranged on the side of the rotating shaft opposite to the drive rod, the driven bevel gear one is coaxially fixed with a driven bevel gear two, the driven bevel gear two is externally meshed with a driven bevel gear three fixed on one end of the lead screw.

[0009] By adopting the above technical scheme, the tooth direction of the reversing bevel gear one and the reversing bevel gear two is approaching, so the rotation directions of the driven bevel gear one when meshing with the reversing bevel gear one and the reversing bevel gear two are different, the reversing cylinder is started to push the rotating shaft to slide, the reversing bevel gear one and the reversing bevel gear two are respectively meshed with the driven bevel gear one, and finally the driven bevel gear three is driven to realize forward rotation and reverse rotation, so that the lead screw one can realize forward rotation and reverse rotation, the driving push plate one and the push plate two not only can approach each other to limit the plate, but also can move away from each other, the push plate two is lowered when the push plate one and the push plate two move away from each other, the next plate is conveniently transported into the support frame one, and continuous conveying is formed, the plate is shaped while continuous and uninterrupted conveying is realized, and the discharging efficiency is significantly improved.

[0010] The further arrangement of the present application is that the adjusting mechanism comprises a lead screw two rotatably connected in the support frame two and a slide rod two fixed in the support frame two, the slide conveying belt is connected to the lead screw two through the connecting plate, the slide conveying belt is slidably connected to the slide rod two, a square shaft is fixed in the driving pulley of the fixed conveying belt, a sleeve rod shaft is fixed in the driving pulley of the slide conveying belt, the sleeve rod shaft is slidably sleeved outside the square shaft, and the sleeve rod shaft is connected to the output shaft of the motor one through the belt pulley assembly one.

[0011] By adopting the above technical scheme, when the distance between the slide conveying belt and the fixed conveying belt needs to be adjusted, the lead screw two is driven to rotate, the connecting plate, that is, the slide conveying belt is driven to slide by the lead screw two, the distance between the slide conveying belt and the fixed conveying belt is changed, so that plates of different lengths can be conveyed, the use range is expanded, the square shaft is fixed in the driving pulley of the fixed conveying belt, so the sleeve rod shaft fixed in the driving pulley of the slide conveying belt can not only drive the driving pulley of the fixed conveying belt to rotate, but also can slide on the square shaft to realize two movement modes of rotation and sliding, the sleeve rod shaft is connected to the output shaft of the motor one, in addition, one motor can drive the slide conveying belt, the fixed conveying belt and the lead screw two to rotate reversely, the equipment cost is reduced, and the power equipment is efficiently utilized.

[0012] The hollow inner rod is connected with the screw rod two through the belt pulley assembly two, the driven belt pulley in the belt pulley assembly two is coaxially arranged on the hollow inner rod, the rotating square shaft rotatingly connected in the support frame one is slidingly connected in the driven belt pulley, and the hollow inner rod is fixed on the rotating square shaft.

[0013] By adopting the above technical scheme, when the screw rod two rotates, the hollow inner rod is driven to rotate through the belt pulley assembly two, the hollow inner rod rotates, the extension rod is elongated or retracted, the distance between the push plate one and the push plate two is preliminarily adjusted, the distance between the push plate one and the push plate two is finally adjusted in the same direction while the distance between the fixed conveying belt and the sliding conveying belt is adjusted, the distance of subsequent push plate one sliding is reduced, the time of plate shaping and limiting is significantly saved, and the conveying efficiency is improved; and since the rotating square shaft is arranged in the driven belt pulley, the hollow inner rod can slide together with the rotating square shaft when the driven belt pulley rotates, that is, the support vertical plate can drive the adjusting assembly to slide when the screw rod one rotates.

[0014] The jacking and turning mechanism further comprises a support plate, the turning belt is rotatingly connected above the support plate, the bottom surface of the support plate is connected to the piston rod of the jacking cylinder, the driving belt in each of the turning belts is fixed to the connecting shaft, and the connecting shaft is fixedly connected with the output shaft of the motor two through the belt pulley assembly three.

[0015] By adopting the above technical scheme, the turning belt is arranged between adjacent conveying rollers, after the plate is shaped and limited between the push plate one and the push plate two, the jacking cylinder is started, the support plate is driven to extend above the conveying roller, and since the conveying direction of the turning belt is perpendicular to the conveying direction of the conveying roller, the plate can be smoothly conveyed to the fixed conveying belt and the sliding conveying belt, and the conveying of the plate is smoothly completed.

[0016] The guiding device comprises two guiding plates oppositely arranged on the support frame three, the end edges of the two guiding plates away from the support frame one are away from each other, the guiding plates away from the support frame two are partially arranged on the support frame two, and the two guiding plates are slidingly connected to the support frame three.

[0017] By adopting the above technical scheme, the guiding plates are arranged to limit the two sides of the plate, so that the plate can be accurately slid into the support frame one, and the adjustable function of the guiding plates facilitates the use of plates of different widths.

[0018] The further setting of the present application is that the adjusting hand wheel is fixed at the end of the screw rod two.

[0019] By adopting the technical scheme, the distance between the fixed conveying belt and the sliding conveying belt is adjusted by operating the adjusting hand wheel, which is simple and easy to operate.

[0020] The beneficial effects of the present application are: after the plate is cut transversely, the guide device preliminarily adjusts the wide side of the plate to keep the plate in a neat posture and enter the turning device, the turning device changes the conveying direction of the plate to make the long side of the plate variable, then the plate after turning is transported to the conveying device by the lifting and turning mechanism, the distance between the sliding conveying belt and the fixed conveying belt in the conveying device is adjustable, and the device can be applied to plates of different lengths within a certain range, the device has compact structure, the equipment cost is suitable for small and medium-sized enterprises, the plate conveying efficiency is high, in addition, the device is suitable for conveying other products of which the size needs to be adjusted, has wide application range and high practicability. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort on the basis of these drawings.

[0022] Figure 1 is a structural schematic diagram of the present application.

[0023] Figure 2 is a structural schematic diagram of another view of the present application.

[0024] Figure 3 is a structural schematic diagram of the turning device in the present application.

[0025] Figure 4 is a structural schematic diagram of the power mechanism in the present application.

[0026] Figure 5 is an exploded structural schematic diagram of the driving mechanism in the present application.

[0027] Figure 6 is a structural schematic diagram of the lifting and turning mechanism in the present application.

[0028] Figure 7 is a structural schematic diagram of the adjusting mechanism in the present application.

[0029] In the figure, 1, guide device; 2, steering device; 3, conveying device; 4, conveying roller; 5, jacking steering mechanism; 51, steering belt; 52, support plate; 53, jacking air cylinder; 54, motor two; 55, pulley assembly three; 6, driving mechanism; 61, lead screw one; 62, slide rod one; 63, support vertical plate; 64, telescopic assembly; 641, hollow sleeve rod; 642, hollow inner rod; 643, extension rod; 644, protruding rod; 645, sliding groove; 65, push plate one; 66, push rod; 67, limiting groove rod; 68, push plate two; 69, support rod; 7, power mechanism; 71, motor one; 72, rotating shaft; 73, reversing bevel gear one; 74, reversing bevel gear two; 75, drive rod; 76, reversing air cylinder; 77, driven bevel gear one; 78, driven bevel gear two; 79, driven bevel gear three; 8, adjusting mechanism; 81, lead screw two; 82, slide rod two; 83, sliding conveying belt; 84, fixed conveying belt; 85, square shaft; 86, sleeve rod shaft; 87, pulley assembly one; 9, pulley assembly two; 10, rotating square shaft; 11, guide plate; 12, adjusting hand wheel; 13, support frame one; 14, support frame two; 15, support frame three. DETAILED DESCRIPTION

[0030] The technical solutions of the present application will be described clearly and completely below in combination with specific embodiments. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the protection scope of the present application.

[0031] Embodiment, a discharging device of an intelligent cutting platform, comprising Figures 1-7The device is shown, including the guide device 1, the turning device 2 and the conveying device 3 arranged in sequence at the discharging end of the crosscutting device, the guide device 1 and the conveying device 3 are located on the two sides adjacent to the turning device 2, characterized in that: the turning device 2 comprises the conveying roller 4 rotatably connected to the support frame one 13, the jacking turning mechanism 5 is arranged below the support frame one 13, the jacking turning mechanism 5 comprises a plurality of turning belts 51 located between the adjacent conveying rollers 4, the conveying direction of the turning belts 51 is perpendicular to the conveying direction of the conveying rollers 4, the opposite sides of the support frame two 14 away from and close to the guide device 1 are respectively provided with the push plate one 65 and the push plate two 68, the support frame two 14 is provided with the driving mechanism 6 to drive the push plate one 65 and the push plate two 68 to move close to or away from each other, the conveying device 3 comprises the fixed conveying belt 84 and the sliding conveying belt 83 arranged in parallel on the support frame two 14, the support frame two 14 is provided with the adjusting mechanism 8 to drive the sliding conveying belt 83 to be slidingly connected in the support frame two 14, the lengths of the boards after crosscutting are different, the guide device 1 preliminarily adjusts the wide side of the board to keep the posture of the board to be neat and then enters the turning device 2, the turning device 2 changes the conveying direction of the board to make the long side of the board become variable, then the jacking turning mechanism 5 transports the changed board to the conveying device 3, the distance between the sliding conveying belt 83 and the fixed conveying belt 84 in the conveying device 3 is adjustable, which can be suitable for the boards of different lengths within a certain range, the device has compact structure, the equipment cost is suitable for small and medium-sized enterprises, the board conveying efficiency is high, in addition, the device is also suitable for conveying other products which need to adjust the size, has wide application range and high practicability.

[0032] As Figures 4-7As shown, the driving mechanism 6 comprises a lead screw 61 and a slide rod 62, a supporting vertical plate 63 is slidingly connected on the lead screw 61 and the slide rod 62, a telescopic assembly 64 is fixed on the supporting vertical plate 63, the telescopic assembly 64 comprises a hollow sleeve rod 641, a hollow inner rod 642 is rotatably connected in the hollow sleeve rod 641, an extension rod 643 is slidingly connected in the hollow inner rod 642, a convex rod 644 is arranged on the side of the extension rod 643, a sliding groove 645 which rotates along the side is arranged on the side of the hollow inner rod 642, the convex rod 644 penetrates through the sliding groove 645 and is slidingly connected in a limiting groove on the inner side top of the hollow sleeve rod 641, a push plate 65 is fixed on the end of the extension rod 643 which is located on the hollow sleeve rod 641, a push rod 66 is vertically fixed on the supporting vertical plate 63, a limiting groove rod 67 is arranged on the push rod 66, the limiting groove rod 67 comprises a horizontal section and an inclined section, the inclined section is arranged downward along the guide device 1, a short rod which is hinged on the side of a push plate 68 is slidingly connected in the limiting groove rod 67, the push plate 68 is slidingly connected in a supporting rod 69, the supporting rod 69 is vertically fixed in a supporting frame 13 which is close to the guide device 1, the guide device 1 limits the width of the plate, after the plate is conveyed from the guide device 1 to the supporting frame 13, the length of the plate needs to be adjusted, first, the length of the telescopic assembly 64 is adjusted, the extension rod 643 which is clamped in the sliding groove 645 on the side of the hollow inner rod 642 is slidingly connected in the limiting groove on the inner top surface of the hollow sleeve rod 641, and then the extension rod 643 is extended out of or retracted into the hollow inner rod 642, so that the length between the push plate 65 on the end of the extension rod 643 and the hollow sleeve rod 641 is changed, and the plate is preliminarily positioned on the side; then, the lead screw 61 is driven to rotate, and the supporting vertical plate 63 is slidingly connected on the slide rod 62, at this time, the push plate 65 is driven to move towards the side of the plate, the supporting vertical plate 63 is slidingly connected, and the push rod 66 is slidingly connected, because the end of the push rod 66 is provided with the limiting groove rod 67, when the limiting groove rod 67 slides towards the push plate 68, the inclined section of the limiting groove rod 67 which is inclined downward drives the short rod on the side of the push plate 68 to gradually slide to the horizontal section of the limiting groove rod 67, so that the push plate 68 is driven to rise in the supporting rod 69, finally, the push plate 68 is lifted above the supporting frame 13, and the plate is blocked on the side, the push plate 65 and the push plate 68 are arranged on the opposite sides of the supporting frame, the sliding distance of the supporting vertical plate 63 on the slide rod 62 and the telescopic assembly 64 jointly limit the long side of the plate, so that the plate maintains the correct posture and smoothly enters the conveying device 3.

[0033] As Figures 3-6As shown, the end of the lead screw 61 is connected with a power mechanism 7, the power mechanism 7 includes a motor 71, a square shaft 85 sleeve is fixed on the output shaft of the motor 71, a rotating shaft 72 is slidably and rotatably connected in the square shaft 85 sleeve, the rotating shaft 72 is fixed with a reversing bevel gear one 73 and a reversing bevel gear two 74 at two ends respectively, a drive rod 75 is fixed on the piston rod of a reversing cylinder 76, a driven bevel gear one 77 is arranged on the side of the rotating shaft 72 opposite to the drive rod 75, the driven bevel gear one 77 is coaxially fixed with a driven bevel gear two 78, the driven bevel gear two 78 is externally engaged with a driven bevel gear three 79 fixed on the end of the lead screw 61, the teeth of the reversing bevel gear one 73 and the reversing bevel gear two 74 are close to each other, so the rotating directions of the driven bevel gear one 77 when engaged with the reversing bevel gear one 73 and the reversing bevel gear two 74 are different, by starting the reversing cylinder 76, the rotating shaft 72 is pushed to slide, the reversing bevel gear one 73 and the reversing bevel gear two 74 are engaged with the driven bevel gear one 77 respectively, finally the driven bevel gear three 79 is driven to realize forward rotation and reverse rotation, to ensure that the lead screw 61 can rotate forward and reverse, then the drive push plate one 65 and the push plate two 68 can not only approach each other to limit the plate, but also can move away from each other, when the push plate one 65 and the push plate two 68 move away from each other, the drive push plate two 68 is lowered, to facilitate the next plate to be transported into the support frame one 13, to form continuous conveying, to realize continuous and uninterrupted conveying while shaping the plate, the discharging efficiency is significantly improved.

[0034] As Figures 5-7As shown, the adjusting mechanism 8 includes a second screw rod 81 rotatably connected to the second support frame 14 and a second sliding rod 82 fixed to the second support frame 14, the second screw rod 81 is fixed with the adjusting hand wheel 12 at one end, the sliding conveying belt 83 is connected to the second screw rod 81 through a connecting plate, the sliding conveying belt 83 is slidably connected to the second sliding rod 82, a square shaft 85 is fixed in the driving pulley of the fixed conveying belt 84, a sleeve rod shaft 86 is fixed in the driving pulley of the sliding conveying belt 83 wheel, the sleeve rod shaft 86 is slidably arranged outside the square shaft 85, and the sleeve rod shaft 86 is connected to the output shaft of the first motor 71 through a pulley assembly 87. When it is necessary to adjust the distance between the sliding conveying belt 83 and the fixed conveying belt 84, the second screw rod 81 is driven to rotate, the connecting plate, i.e. the sliding conveying belt 83, is driven to slide, the distance between the sliding conveying belt 83 and the fixed conveying belt 84 is changed, so that the sliding conveying belt 83 can convey plate materials of different lengths, the use range is expanded, the square shaft 85 is fixed in the driving pulley of the fixed conveying belt 84, so that the sleeve rod shaft 86 fixed in the driving pulley of the sliding conveying belt 83 wheel can not only drive the driving pulley of the fixed conveying belt 84 to rotate, but also can slide on the square shaft 85, realizing two movement modes of rotation and sliding, the sleeve rod shaft 86 is connected to the output shaft of the first motor 71, in addition, one motor can drive the sliding conveying belt 83, the fixed conveying belt 84 and the second screw rod 81 to reversely rotate, reducing the equipment cost and efficiently utilizing the power equipment.

[0035] As shown in Figures 4-6 The hollow inner rod 642 is connected to the second screw rod 81 through the pulley assembly 29, the hollow inner rod 642 is coaxially connected to the driven pulley in the pulley assembly 29, the driven pulley is slidably connected with the rotating square shaft 10 slidably connected to the first support frame 13, and the hollow inner rod 642 is fixed to the rotating square shaft 10. When the second screw rod 81 rotates, the hollow inner rod 642 is driven to rotate through the pulley assembly 29, the hollow inner rod 642 rotates to extend or retract the extension rod 643, and the distance between the first push plate 65 and the second push plate 68 is preliminarily adjusted. Finally, while adjusting the distance between the fixed conveying belt 84 and the sliding conveying belt 83, the distance between the first push plate 65 and the second push plate 68 is also adjusted in the same direction, reducing the subsequent sliding distance of the first push plate 65, significantly saving the time for shaping and limiting the plate, and improving the conveying efficiency. Since the rotating square shaft 10 is arranged in the driven pulley, the driven pulley can also drive the hollow sleeve rod 641 to slide in the rotating square shaft 10 when the driven pulley rotates, that is, the support vertical plate 63 drives the adjusting assembly to slide when the first screw rod 61 rotates.

[0036] As shown in Figures 5-7As shown, the jacking steering mechanism 5 also includes a support plate 52, the steering belt 51 is rotatably connected above the support plate 52, the bottom surface of the support plate 52 is connected to the piston rod of the jacking cylinder 53, the driving pulley in each steering belt 51 is fixed to the connecting shaft, the connecting shaft is fixedly connected with the output shaft of the motor two 54 through the belt pulley assembly three 55, the steering belt 51 is arranged between the adjacent conveying rollers 4, after the plate is shaped and limited between the push plate one 65 and the push plate two 68, the jacking cylinder 53 is started, the jacking cylinder 53 drives the support plate 52 and the steering belt 51 to extend above the conveying roller 4, since the conveying direction of the steering belt 51 is perpendicular to the conveying direction of the conveying roller 4, the plate can be smoothly conveyed to the fixed conveying belt 84 and the sliding conveying belt 83, and the conveying of the plate is successfully completed.

[0037] As shown in the figure, Figures 1-2 As shown, the guide device 1 includes two guide plates 11 oppositely arranged on the support frame three 15, the two guide plates 11 away from the support frame one 13, the end edges of the two guide plates 11 away from the support frame one 13 are mutually away, the guide plates 11 away from the support frame two 14 are partially located on the support frame two 14, and the two guide plates 11 are slidably connected to the support frame three 15. The guide plates 11 are arranged to limit the two edges of the plate, so that the plate can be accurately slid into the support frame one 13, and the adjustable function of the guide plates 11 facilitates the use of plates of different widths.

[0038] The working principle of the discharging device of the intelligent cutting platform is as follows:

[0039] First, adjust the distance between the sliding conveying belt 83 and the fixed conveying belt 84 according to the length of the plate to be conveyed, first rotate the adjusting hand wheel 12, the screw rod two 81 rotates, drives the sliding conveying belt 83 to slide, at the same time, since the screw rod two 81 rotates, the hollow inner rod 642 is driven to rotate through the belt pulley assembly two 9, the hollow inner rod 642 rotates, so that the extension rod 643 is elongated or retracted, the distance between the push plate one 65 and the push plate two 68 is preliminarily adjusted, finally, the distance between the push plate one 65 and the push plate two 68 is adjusted in the same direction at the same time as the distance between the fixed conveying belt 84 and the sliding conveying belt 83 is adjusted, the distance of the subsequent sliding of the push plate one 65 is reduced, the time for shaping and limiting the plate is significantly saved, and the conveying efficiency is improved.

[0040] At the same time, the distance between the two guide plates 11 in the guide device 1 is adjusted, which facilitates the use of plates of different widths.

[0041] Subsequently, the cut plate is guided into the support frame one 13 through the guide device 1, at this time, the reversing cylinder 76 is started, the reversing cylinder 76 pushes the rotating shaft 72 to slide, realizes the meshing of the reversing bevel gear one 73 or the reversing bevel gear two 74 and the driven bevel gear one 77, finally drives the rotation of the driven bevel gear three 79, so as to drive the rotation of the lead screw one 61, the rotation of the lead screw one 61 drives the support vertical plate 63 to slide on the slide rod one 62, at this time, the push plate one 65 is driven to approach the side of the plate, the sliding of the support vertical plate 63 drives the push rod 66 to slide, since the end of the push rod 66 is provided with the limiting slot rod 67, so when the limiting slot rod 67 slides towards the push plate two 68, the inclined downward inclined section of the limiting slot rod 67 drives the short rod on the side of the push plate two 68 to gradually slide to the horizontal section of the limiting slot rod 67, that is, the push plate two 68 is driven to rise in the support rod 69, finally the push plate two 68 is lifted above the support frame one 13, forming the block to the side of the plate, the push plate one 65 and the push plate two 68 are arranged on the opposite sides of the support frame, the sliding distance of the support vertical plate 63 on the slide rod one 62 and the telescopic assembly 64 jointly constitute the limitation to the long side of the plate, so that it maintains the correct posture and smoothly enters the conveying device 3.

[0042] Subsequently, the jacking cylinder 53 is started, the jacking cylinder 53 drives the support plate 52 and the deflection belt 51 to extend above the conveying roller 4, since the conveying direction of the deflection belt 51 is perpendicular to the conveying direction of the conveying roller 4, so the plate can be smoothly conveyed to the fixed conveying belt 84 and the sliding conveying belt 83, and the conveying of the plate is successfully completed.

[0043] When the plate enters the conveying device 3, the lead screw one 61 is reversed, the push plate one 65 and the push plate two 68 are away from each other, the push plate two 68 is lowered, which is convenient for the next plate to enter, realizes the uninterrupted conveying, and improves the discharging efficiency.

Claims

1. A discharge device for an intelligent cutting platform, comprising a guiding device (1), a turning device (2), and a conveying device (3) sequentially arranged at the discharge end of the cross-cutting device, wherein the guiding device (1) and the conveying device (3) are located on adjacent sides of the turning device (2), characterized in that: The steering device (2) includes a conveying roller (4) rotatably connected to a support frame (13). A lifting steering mechanism (5) is provided below the support frame (13). The lifting steering mechanism (5) includes several steering belts (51) located between adjacent conveying rollers (4). The conveying direction of the steering belts (51) is perpendicular to the conveying direction of the conveying rollers (4). Push plates (65) and (68) are respectively provided on opposite sides of the support frame (13) away from and close to the guide device (1). A driving mechanism (6) is provided in the support frame (13) to drive push plates (65) and (68) to move closer or further away from each other. The conveying device (3) includes a conveying device (4) arranged parallel to each other on the support frame (14). The fixed conveyor belt (84) and the sliding conveyor belt (83) on the support frame (14) are provided with an adjustment mechanism (8) to drive the sliding conveyor belt (83) to slide in the support frame (14). The driving mechanism (6) includes a lead screw (61) and a slide rod (62). A support vertical plate (63) is slidably connected to the lead screw (61) and the slide rod (62). A telescopic component (64) is fixed on the support vertical plate (63). The telescopic component (64) includes a hollow sleeve rod (641). A hollow inner rod (642) is rotatably connected in the hollow sleeve rod (641). An extension rod (643) is slidably connected in the hollow inner rod (642). A protruding rod (643) is provided on the side of the extension rod (643). 44), a sliding groove (645) that rotates along the side is provided on the side of the hollow inner rod (642). The protruding rod (644) passes through the sliding groove (645) and is slidably connected to the limiting groove at the top of the inner side of the hollow sleeve rod (641). The push plate one (65) is fixed to the end of the extension rod (643) located on the hollow sleeve rod (641). A push rod (66) is vertically fixed on the support vertical plate (63). A limiting groove rod (67) is provided on the push rod (66). The limiting groove rod (67) includes a horizontal section and an inclined section. The inclined section is set downward along the guide device (1). A short rod hinged to the side of the push plate two (68) is slidably connected in the limiting groove rod (67). The push plate two (68) is slidably connected to the support rod in a lifting and lowering manner. In (69), the support rod (69) is vertically fixed in the support frame (13) near the guide device (1). The end of the lead screw (61) is connected to the power mechanism (7). The power mechanism (7) includes a motor (71). A square shaft (85) sleeve is fixed on the output shaft of the motor (71). A rotating shaft (72) is slidably connected in the square shaft (85). Two reversing bevel gears (73) and (74) with similar tooth directions are fixed at both ends of the rotating shaft (72). A drive rod (75) is fixed on the rotating shaft (72) between the reversing bevel gears (73) and (74). The drive rod (75) is fixed on the piston rod of the reversing cylinder (76).A driven bevel gear one (77) is provided on the side of the rotating shaft (72) relative to the drive rod (75). A driven bevel gear two (78) is coaxially fixed to the driven bevel gear one (77). The driven bevel gear two (78) meshes externally with a driven bevel gear three (79) fixed to the end of the lead screw one (61).

2. The discharge device of the intelligent cutting platform according to claim 1, characterized in that: The adjustment mechanism (8) includes a lead screw (81) rotatably connected to the support frame (14) and a slide rod (82) fixed in the support frame (14). The sliding conveyor belt (83) is connected to the lead screw (81) through a connecting plate. The sliding conveyor belt (83) is slidably connected to the slide rod (82). A square shaft (85) is fixed in the drive pulley of the fixed conveyor belt (84). A sleeve shaft (86) is fixed in the drive pulley of the sliding conveyor belt (83). The sleeve shaft (86) is slidably sleeved outside the square shaft (85). The sleeve shaft (86) is connected to the output shaft of the motor (71) through a pulley assembly (87).

3. The discharge device of the intelligent cutting platform according to claim 2, characterized in that: The hollow inner rod (642) and the lead screw (81) are connected by the pulley assembly (9). The driven pulley in the pulley assembly (9) is coaxially arranged on the hollow inner rod (642). The driven pulley is slidably connected to the rotating square shaft (10) which is rotatably connected to the support frame (13). The hollow inner rod (642) is fixed on the rotating square shaft (10).

4. The discharge device of the intelligent cutting platform according to claim 3, characterized in that: The lifting and steering mechanism (5) also includes a support plate (52), and the steering belt (51) shown is rotatably connected above the support plate (52). The bottom surface of the support plate (52) is connected to the piston rod of the lifting cylinder (53). The drive pulley in each steering belt (51) is fixed on the connecting shaft. The connecting shaft is fixedly connected to the output shaft of the motor (54) through the pulley assembly three (55).

5. The discharge device of an intelligent cutting platform according to claim 4, characterized in that: An adjusting handwheel (12) is fixed to the end of the lead screw (81).

Citation Information

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