Horizontal sheet arranging system
By designing a simplified horizontal glass handling system, and utilizing a lifting platform and a rotary drive device to rotate the storage rack rollers, the problems of complex structure and high cost of existing systems are solved, enabling convenient glass storage and low-cost operation.
Patent Information
- Application Number
- CN202520181747.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-05
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-05
AI Technical Summary
Existing horizontal processing systems are complex and costly, and cannot meet industry needs.
Design a horizontal film handling system, including an infeed conveyor, a storage system, and an outfeed conveyor. Employ a lifting platform, a lifting device, and a rotary drive device. The rotary drive device drives the rotating rollers of the storage rack to rotate, simplifying the structure and reducing costs.
This enables easy loading and unloading of glass in the storage rack, simplifying the system structure and reducing costs.
Smart Images

Figure CN223751931U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a horizontal sheet system. BACKGROUND
[0002] In the glass deep processing process, many processes will generally adopt the mode of mixed production in order to maximize the utilization rate of raw materials and the maximum production capacity, for example, a large piece of raw glass will be cut into several different specifications of glass, at this time the utilization rate of the raw piece will be maximum, but the cut glass will be disordered (may be different customers or different processing procedures).
[0003] At present, the horizontally cut glass is stored by the horizontal sheet system. Specifically, the horizontally cut glass is sent to the corresponding storage rack in the storage system through the sheet conveying table of the horizontal sheet system, and then stored in the predetermined order. According to the system requirements, the corresponding storage rack can be conveyed to the sheet conveying table through the storage system, and the glass can be conveyed out through the sheet conveying table. However, the structure of the existing horizontal sheet system is relatively complex, and the cost is high, which cannot meet the requirements of the industry. UTILITY MODEL CONTENT
[0004] In order to overcome the shortcomings of the prior art, the purpose of the utility model is to provide a horizontal sheet system which can simplify the structure and reduce the cost.
[0005] The purpose of the utility model is achieved by the following technical solutions:
[0006] A horizontal sheet system, comprising a sheet conveying table, a storage system and a sheet conveying table; the storage system comprises a plurality of storage racks arranged in order from top to bottom; the storage rack comprises a plurality of rotating rollers for supporting the workpiece and being rotatably arranged; the plurality of rotating rollers of the storage rack are sequentially transmission matched; the first rotating roller of the storage rack is provided with a first combination part, and the last rotating roller of the storage rack is provided with a second combination part; the sheet conveying table and the sheet conveying table each comprise a lifting table, a lifting device and a rotary driving device; the lifting device is used to drive the lifting table to lift; a plurality of rotating rollers are rotatably installed on the lifting table; the rotary driving device is installed on the lifting table and comprises a first power component, a linear driving component and a matching combination part; the first power component is used to drive the plurality of rotating rollers and the matching combination part to rotate; the linear driving component is used to drive the matching combination part to move towards the direction close to the storage rack, and is also used to drive the matching combination part to move towards the direction away from the storage rack; the matching combination part of the sheet conveying table is used to engage the first combination part, and the matching combination part of the sheet conveying table is used to engage the second combination part.
[0007] The first connecting member and the second connecting member are both circumferentially arranged with a plurality of engaging teeth, and the matching connecting member is circumferentially arranged with a plurality of tooth grooves matched with the plurality of engaging teeth.
[0008] The first power component comprises a first motor.
[0009] The rotating driving device further comprises a telescopic coupling, and the matching connecting member is connected to the telescopic coupling, which is rotatably installed on the lifting platform.
[0010] The telescopic coupling is provided with a driven pulley, the first power component further comprises a driving pulley and a transmission belt, the driving pulley is fixed on the output shaft of the first motor, and the transmission belt is wound around the driving pulley and the driven pulley.
[0011] The matching connecting member is connected to the telescopic coupling through a connecting shaft, the connecting shaft is installed on a supporting seat, and the output shaft of the linear driving component is connected to the supporting seat.
[0012] The film feeding and conveying platform and the film discharging and conveying platform both comprise a rack, both sides of the rack are provided with guide frames arranged vertically, both sides of the lifting platform are installed with guide devices matched with the corresponding guide frames, the guide devices comprise roller frames, first guide wheels, second guide wheels and rolling wheels, the roller frames are arranged on the lifting platform, the first guide wheels and the second guide wheels are rotatably installed on the roller frames respectively, and the first guide wheels and the second guide wheels are respectively in rolling engagement with both sides of the corresponding guide frames, and the rolling wheels are rotatably installed on the roller frames and in rolling engagement with the corresponding guide frames.
[0013] The first motor of the film feeding and conveying platform is used for driving one rotating roller of the lifting platform of the film feeding and conveying platform to rotate, the first motor of the film discharging and conveying platform is used for driving one rotating roller of the lifting platform of the film discharging and conveying platform to rotate, and any adjacent two rotating rollers on the lifting platform are driven through a transmission device.
[0014] The transmission device comprises a first transmission wheel installed on one of any adjacent two rotating rollers, a second transmission wheel installed on the other of any adjacent two rotating rollers and a synchronous belt wound around the first transmission wheel and the second transmission wheel.
[0015] The lifting device comprises a gear, a rack and a second power component, the rack is fixed on the rack, the second power component is installed on the lifting platform and used for driving the gear to rotate, and the gear is in engagement with the rack.
[0016] Compared with the prior art, the utility model has the beneficial effects that:
[0017] The utility model provides a horizontal sheet system, its through the reasonable setting of the sheet conveying table, storage system and the sheet conveying table, and through the sheet conveying table, the sheet conveying table all includes the lifting platform, lifting device and rotation drive device, can drive the rotation of each storage frame's rotation roller with the rotation drive device of sheet conveying table, in the sheet conveying table sheet process, drive the rotation of each storage frame's rotation roller with the rotation drive device of sheet conveying table, conveniently glass is sent in the storage frame to the position, can drive the rotation of each storage frame's rotation roller with the rotation drive device of sheet conveying table, in the sheet conveying table sheet process, through the rotation drive device of sheet conveying table drive each storage frame's rotation roller rotation, conveniently glass is sent out the storage frame to the lifting platform of sheet conveying table, so, need not be equipped with the conveying device on the storage system can realize glass in the storage frame's sending in, sending out, can ensure that can simplify the structure, reduce the cost. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the structure schematic drawing of the utility model;
[0019] Figure 2 It is the structure schematic drawing of the sheet conveying table;
[0020] Figure 3 It is Figure 2 the enlarged view of B of
[0021] Figure 4 It is the structure schematic drawing of rotation drive device;
[0022] Figure 5 It is another direction schematic drawing of the sheet conveying table;
[0023] Figure 6 It is Figure 5 the enlarged view of A of
[0024] Figure 7 It is the schematic drawing of lifting device;
[0025] Figure 8 It is the schematic drawing of transmission drive and lifting frame cooperation;
[0026] Figure 9 It is the structure schematic drawing of storage system;
[0027] Figure 10 It is Figure 9 the enlarged view of C of
[0028] Figure 11 It is another direction schematic drawing of storage system;
[0029] Wherein, 10, rack; 11, guide frame; 20, lifting platform; 21, rotating roller; 30, rotating driving device; 31, first motor; 32, transmission device; 33, first transmission wheel; 34, second transmission wheel; 35, synchronous belt; 40, lifting device; 41, gear; 42, rack; 43, second power component; 50, guide device; 51, roller frame; 52, first guide wheel; 53, second guide wheel; 54, rolling wheel; 55, first through hole; 56, first shaft body; 57, second through hole; 58, second shaft body; 60, protection frame; 61, cavity; 70, film feeding conveying table; 71, matching combination part; 72, gear slot; 80, storage system; 81, storage rack; 82, rotating roller; 83, first combination part; 84, second combination part; 85, meshing tooth; 91, telescopic coupling; 92, transmission belt; 93, driving pulley; 94, driven pulley; 95, connecting shaft; 96, linear driving component; 97, film discharging conveying table. DETAILED DESCRIPTION
[0030] In the following, the utility model will be further described in conjunction with the drawings and specific embodiments, it needs to be explained that, without conflict, the following description of each embodiment or between each technical feature can be arbitrarily combined to form a new embodiment.
[0031] As Figures 1-11 shown, a horizontal film sorting system, including film feeding conveying table 70, storage system 80 and film discharging conveying table 97;The storage system 80 includes a plurality of storage racks 81 arranged in order from top to bottom;The storage rack 81 includes a plurality of rotating rollers 82 for supporting workpieces and being rotatably arranged;The plurality of rotating rollers 82 of the storage rack 81 are in turn transmission cooperation;The first rotating roller 82 of the storage rack 81 is provided with a first combination part 83, and the last rotating roller 82 of the storage rack 81 is provided with a second combination part 84;The film feeding conveying table 70 and the film discharging conveying table 97 both include lifting platform 20, lifting device 40 and rotating driving device 30;The lifting device 40 is used to drive the lifting platform 20 to lift;The lifting platform 20 is rotatably mounted with a plurality of rotating rollers 21;The rotating driving device 30 is installed on the lifting platform 20 and includes a first power component, a linear driving component 96 and a matching combination part 71;The first power component is used to drive the plurality of rotating rollers 21 and the matching combination part 71 to rotate;The linear driving component 96 is used to drive the matching combination part 71 to move towards the direction close to the storage rack 81, and is also used to drive the matching combination part 71 to move towards the direction away from the storage rack 81;The matching combination part 71 of the film feeding conveying table 70 is used to engage the first combination part 83, and the matching combination part 71 of the film discharging conveying table 97 is used to engage the second combination part 84.
[0032] In use, after the glass is conveyed onto the lifting platform 20 on the in-feed conveying table 70, the first power component of the in-feed conveying table 70 drives the plurality of rotating rollers 21 to rotate, so that the glass on the lifting platform 20 on the in-feed conveying table 70 can be conveyed into position, then the lifting device 40 of the in-feed conveying table 70 is used to drive the lifting platform 20 to lift, so as to drive the glass to the position corresponding to the storage rack 81, then the linear driving component 96 of the in-feed conveying table 70 drives the matching combination piece 71 to move towards the storage rack 81, so that the matching combination piece 71 of the in-feed conveying table 70 engages the first combination piece 83, then the first power component of the in-feed conveying table 70 drives the plurality of rotating rollers 21 and the matching combination piece 71 to rotate, so that the rotating rollers 21 of the in-feed conveying table 70 can rotate to convey the glass, the first combination piece 83 rotates under the drive of the matching combination piece 71, so as to drive the plurality of rotating rollers 82 of the corresponding storage rack 81 to rotate, so that the glass conveyed by the lifting platform 20 on the in-feed conveying table 70 is sent into the storage rack 81 by the rotating rollers 82.If the glass corresponding to the storage rack 81 needs to be removed from use according to the system requirement, the lifting table 20 can be driven to lift to the position corresponding to the storage rack 81 by the lifting device 40 of the out-plate conveying table 97, then the matching combination piece 71 is driven to move towards the direction close to the storage rack 81 by the linear driving component 96 of the out-plate conveying table 97, the matching combination piece 71 of the out-plate conveying table 97 engages the second combination piece 84, then the plurality of rotating rollers 21 and the matching combination piece 71 can be driven to rotate by the working of the first power component of the out-plate conveying table 97, the second combination piece 84 rotates under the driving of the matching combination piece 71, the glass is conveyed to the lifting table 20 of the out-plate conveying table 97 by the storage rack 81, then the glass can be conveyed to the lifting table 20 of the out-plate conveying table 97 by the rotating of the rotating rollers 21 of the out-plate conveying table 97, then the matching combination piece 71 is driven to move towards the direction away from the storage rack 81 by the linear driving component 96 of the out-plate conveying table 97, the matching combination piece 71 of the out-plate conveying table 97 is separated from the second combination piece 84, and the lifting table 20 is lowered to the position by the lifting device 40 of the out-plate conveying table 97, the rotating of the rotating rollers 21 of the out-plate conveying table 97 drives the rotating rollers 21 to rotate, and the glass is conveyed out, thus, the horizontal plate arranging system provided by the utility model, by reasonably setting the in-plate conveying table 70, the storage system 80 and the out-plate conveying table 97, and by setting the in-plate conveying table 70 and the out-plate conveying table 97 to each include the lifting table 20, the lifting device 40 and the rotating driving device 30, the rotating rollers 82 of each storage rack 81 can be driven to rotate by the rotating driving device 30 of the in-plate conveying table 70, in the in-plate process of the in-plate conveying table 70, the rotating rollers 82 of each storage rack 81 are driven to rotate by the rotating driving device 30 of the in-plate conveying table 70, the glass is conveniently sent to the position in the storage rack 81, the rotating rollers 82 of each storage rack 81 can be driven to rotate by the rotating driving device 30 of the in-plate conveying table 70, in the out-plate process of the out-plate conveying table 97, the rotating rollers 82 of each storage rack 81 are driven to rotate by the rotating driving device 30 of the out-plate conveying table 97, the glass is conveniently sent out from the storage rack 81 towards the lifting table 20 of the out-plate conveying table 97, in this way, the glass can be sent in and out in the storage rack 81 without the need of equipping the conveying device on the storage system 80, the structure can be simplified and the cost can be reduced.
[0033] The first combination piece 83 and the second combination piece 84 are both circumferentially arranged with a plurality of meshing teeth 85, and the matching combination piece 71 is circumferentially arranged with a plurality of tooth grooves 72 matched with the plurality of meshing teeth 85. By the above setting, when the matching combination piece 71 engages the first combination piece 83 or the second combination piece 84, the meshing teeth 85 are matched with the tooth grooves 72, so that the first combination piece 83 or the second combination piece 84 can be driven to rotate by the matching combination piece 71.
[0034] The first power component comprises a first motor 31. The rotary driving device 30 further comprises a telescopic coupling 91, and the matching combination part 71 is connected to the telescopic coupling 91, which is rotatably installed on the lifting platform 20. The telescopic coupling 91 is provided with a driven pulley 94, and the first power component further comprises a driving pulley 93 and a transmission belt 92. The driving pulley 93 is fixed on the output shaft of the first motor 31, and the transmission belt 92 is wound around the driving pulley 93 and the driven pulley 94. In use, the first motor 31 is operated to drive the driving pulley 93 to rotate, and the transmission belt 92 drives the driven pulley 94 to rotate, so as to drive the telescopic coupling 91 and the matching combination part 71 to rotate.
[0035] The matching combination part 71 is connected to the telescopic coupling 91 through a connecting shaft 95, the connecting shaft 95 is installed on a supporting seat, and the output shaft of the linear driving component 96 is connected to the supporting seat. In use, the supporting seat is moved by the linear driving component 96, so that the telescopic coupling 91 is telescoped to drive the matching combination part 71 to move.
[0036] The linear driving component 96 can be a pneumatic cylinder, an oil cylinder or a linear motor.
[0037] The film feeding and conveying table 70 and the film discharging and conveying table 97 each comprise a rack 10, and each side of the rack 10 is provided with a vertical guide frame 11. The lifting platform 20 is provided with a guide device 50 corresponding to each guide frame 11. The guide device 50 comprises a roller frame 51, a first guide wheel 52, a second guide wheel 53 and a rolling wheel 54. The roller frame 51 is arranged on the lifting platform 20. The first guide wheel 52 and the second guide wheel 53 are rotatably arranged on the roller frame 51, and each of the first guide wheel 52 and the second guide wheel 53 is in rolling contact with the two sides of the corresponding guide frame 11. The rolling wheel 54 is rotatably arranged on the roller frame 51 and in rolling contact with the corresponding guide frame 11. The first guide wheel 52 and the second guide wheel 53 of the guide device 50 on each side of the lifting platform 20 are in rolling contact with the two sides of the corresponding guide frame 11, and the rolling wheel 54 of each guide device 50 is in rolling contact with the corresponding guide frame 11. The cooperation of the first guide wheel 52, the second guide wheel 53 and the guide frame 11 can avoid the deflection of the lifting platform 20 during lifting and reduce friction, so that the lifting of the glass is smooth and stable.
[0038] Each side of the rack 10 is provided with two guide frames 11, and each side of the lifting platform 20 is provided with two guide devices 50 corresponding to the two guide frames 11 on the same side, so as to further improve the stability of the lifting of the lifting platform 20.
[0039] The first guide wheel 52 is provided with a first shaft body 56, and the first shaft body 56 is installed in the first through hole 55. The second guide wheel 53 is provided with a second shaft body 58, and the second shaft body 58 is installed in the second through hole 57. Through the above structure, the first guide wheel 52 and the second guide wheel 53 can be conveniently installed.
[0040] The rolling wheel 54 is provided with a third rotating shaft, and the rolling wheel 54 is rotatably installed on the roller frame 51 through the third rotating shaft. Through the above structure, the rolling wheel 54 can be conveniently installed.
[0041] Specifically, the central axis of the first shaft body 56 is parallel to the central axis of the second shaft body 58; and the central axis of the third rotating shaft is perpendicular to the central axis of the first shaft body 56.
[0042] The roller frame 51 is provided with a protection frame 60, the protection frame 60 is provided with a cavity 61 penetrating through the both end surfaces of the roller frame 51, and the rolling wheel 54 is installed in the cavity 61, so that the rolling wheel 54 can be protected through the cavity 61.
[0043] Specifically, the roller frame 51 includes a left side and a right side; the protection frame 60 is located between the left side and the right side, the first guide wheel 52 is installed on the left side, the second guide wheel 53 is installed on the right side, and the first guide wheel 52 and the second guide wheel 53 are clamped between the corresponding guide frames 11.
[0044] The first motor 31 of the film feeding conveying table 70 is used to drive one rotating roller 21 of the lifting table 20 of the film feeding conveying table 70 to rotate; the first motor 31 of the film output conveying table 97 is used to drive one rotating roller 21 of the lifting table 20 of the film output conveying table 97 to rotate; and any two adjacent rotating rollers 21 on the lifting table 20 are driven through a transmission device 32. In work, the first motor 31 drives one rotating roller 21 to rotate, and then the rotating roller 21 is driven to the adjacent rotating roller 21 through the transmission device 32, and is driven between the two adjacent rotating rollers 21 through each transmission device 32, so that each rotating roller 21 can rotate.
[0045] The transmission device 32 includes a first transmission wheel 33 installed on one of any two adjacent rotating rollers 21, a second transmission wheel 34 installed on the other of any two adjacent rotating rollers 21, and a synchronous belt 35 wound around the first transmission wheel 33 and the second transmission wheel 34, so as to be driven by the synchronous belt 35.
[0046] The lifting device 40 comprises a gear 41, a rack 42 and a second power component 43; the rack 42 is fixed on the frame 10, the second power component 43 is installed on the lifting platform 20 and drives the gear 41 to rotate; the gear 41 is engaged with the rack 42. The second power component 43 comprises a second motor. In use, the second power component 43 drives the gear 41 to rotate and moves along the rack 42, thereby driving the lifting platform 20 to lift.
[0047] The above-mentioned embodiments are only the preferred embodiments of the present application, and cannot be used to limit the scope of protection of the present application, and any non-essential changes and replacements made by the person skilled in the art on the basis of the present application shall fall within the scope of protection of the present application.
Claims
1. A horizontal collating system characterized by: The device comprises an input conveying platform, a storage system and an output conveying platform; the storage system comprises a plurality of storage racks arranged in sequence from top to bottom; the storage rack comprises a plurality of rotating rollers arranged in a rotatable manner for supporting workpieces; the rotating rollers of the storage rack are in driving cooperation in sequence; the first rotating roller of the storage rack is provided with a first connecting member, and the last rotating roller of the storage rack is provided with a second connecting member; the input conveying platform and the output conveying platform each comprise a lifting platform, a lifting device and a rotary driving device; the lifting device is used to drive the lifting platform to lift; a plurality of rotary rollers are rotatably mounted on the lifting platform; the rotary driving device is mounted on the lifting platform and comprises a first power component, a linear driving component and a matching connecting member; the first power component is used to drive the plurality of rotary rollers and the matching connecting member to rotate; the linear driving component is used to drive the matching connecting member to move towards the storage rack and is also used to drive the matching connecting member to move away from the storage rack; the matching connecting member of the input conveying platform is used to engage the first connecting member, and the matching connecting member of the output conveying platform is used to engage the second connecting member.
2. The horizontal collating system of claim 1 wherein: A plurality of meshing teeth are circumferentially arranged on the first connecting member and the second connecting member, and a plurality of tooth grooves matched with the meshing teeth are circumferentially arranged on the matching connecting member.
3. The horizontal collating system of claim 1 wherein: The first power component comprises a first motor.
4. The horizontal collating system of claim 3 wherein: The rotary driving device further comprises a telescopic coupling; the matching connecting member is connected to the telescopic coupling, and the telescopic coupling is rotatably mounted on the lifting platform.
5. The horizontal collating system of claim 4 wherein: A driven pulley is arranged on the telescopic coupling, the first power component further comprises a driving pulley and a transmission belt; the driving pulley is fixed on the output shaft of the first motor, and the transmission belt is wound around the driving pulley and the driven pulley.
6. The horizontal collating system of claim 4 or 5, wherein: The matching connecting member is connected to the telescopic coupling through a connecting shaft, the connecting shaft is mounted on a supporting seat, and the output shaft of the linear driving component is connected to the supporting seat.
7. The horizontal collating system of claim 1 wherein: The input conveying platform and the output conveying platform each comprise a rack, and vertical guide frames are arranged on both sides of the rack; guide devices matched with the corresponding guide frames are mounted on both sides of the lifting platform; the guide device comprises a roller frame, a first guide wheel, a second guide wheel and a rolling wheel; the roller frame is arranged on the lifting platform; the first guide wheel and the second guide wheel are rotatably mounted on the roller frame, and the first guide wheel and the second guide wheel are respectively in rolling cooperation with both sides of the corresponding guide frame; the rolling wheel is rotatably mounted on the roller frame and is in rolling cooperation with the corresponding guide frame.
8. The horizontal collating system of claim 7 wherein: The first motor of the input conveying platform is used to drive one of the rotary rollers of the lifting platform of the input conveying platform to rotate; the first motor of the output conveying platform is used to drive one of the rotary rollers of the lifting platform of the output conveying platform to rotate; any adjacent two rotary rollers on the lifting platform are in driving cooperation through a transmission device.
9. The horizontal collating system of claim 8 wherein: The transmission device comprises a first transmission wheel mounted on one of the adjacent two rotating rollers, a second transmission wheel mounted on the other of the adjacent two rotating rollers, and a synchronous belt wound around the first transmission wheel and the second transmission wheel.
10. The horizontal collating system of claim 7 wherein: The lifting device comprises a gear, a rack and a second power component; the rack is fixed on a frame, the second power component is installed on the lifting platform and drives the gear to rotate; the gear is engaged with the rack.