CN211077277U - Conveying mechanism for bent toughened glass - Google Patents

Conveying mechanism for bent toughened glass Download PDF

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Publication number
CN211077277U
CN211077277U CN201921303611.8U CN201921303611U CN211077277U CN 211077277 U CN211077277 U CN 211077277U CN 201921303611 U CN201921303611 U CN 201921303611U CN 211077277 U CN211077277 U CN 211077277U
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shaft
transition
glass
belt
transition shaft
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CN201921303611.8U
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王庚
张克治
张喜宾
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Luoyang Landglass Technology Co Ltd
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Luoyang Landglass Technology Co Ltd
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Abstract

The utility model provides a curved toughened glass's conveying mechanism, includes a plurality of arc boards that set up along glass direction of delivery interval in the frame, installs the flexible axle roll table of carrying glass on every arc board, and many flexible axle roll table bending becomes and curved glass shape coincide and bear curved glass's curved surface, and flexible axle roll table length direction's middle part is equipped with flexible axle drive mechanism to it is rotatory to drive the flexible axle roll table, still rotate at interval along glass direction of delivery in the frame and set up a plurality of straight roll tables, rotate in arc board one side and be provided with the transition axle, the middle drive mechanism and the nearest flexible axle drive mechanism meshing transmission of transition axle length direction middle part, the main drive mechanism that transition axle one end set up through frame one side inserts power, and the other end passes through axle head drive mechanism with power transmission extremely straight roll table, the meshing is connected between the main drive mechanism of each transition axle. The utility model discloses a set up the transition axle, realize the synchronous revolution of flexible axle roll table and straight roll table, avoid fish tail glass surface, improve glass's quality.

Description

Conveying mechanism for bent toughened glass
Technical Field
The utility model belongs to the glass shaping tempering equipment in the glass deep-processing field, concretely relates to curved toughened glass's conveying mechanism.
Background
When the bent toughened glass swings and blows air at the toughening section of the toughening equipment, the conveying mechanism with the same shape is required to be adopted, and the conveying mechanism can wrap the bent glass therein. The flexible shaft roller way with intermediate transmission is matched with the straight roller way for transmission, in the two transmission structures, the flexible shaft roller way main transmission is located in the middle position, and the straight roller way main transmission is generally arranged at the end part of the flexible shaft roller way, so that the flexible shaft roller way and the straight roller way are required to be respectively provided with power mechanisms for driving, and the two power mechanisms are required to ensure that the flexible shaft roller way and the straight roller way synchronously rotate at the same speed so as to avoid scratching the surface of glass.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a curved toughened glass's conveying mechanism through setting up the transition axle, realizes the synchronous revolution of flexible axle roll table and straight roll table, avoids fish tail glass surface, improves glass's quality.
In order to realize the purpose, the utility model discloses the technical scheme who adopts is:
a conveying mechanism for bent toughened glass comprises a plurality of arc plates arranged on a frame at intervals along the glass conveying direction, a flexible shaft roller way for conveying bent glass is arranged on each arc plate, a plurality of flexible shaft roller ways are bent to form a curved surface which is matched with the shape of the bent glass and bears the bent glass, a flexible shaft transmission mechanism is arranged in the middle of the flexible shaft roller way in the length direction, a plurality of straight roller ways are arranged on the frame at intervals along the glass conveying direction in a rotating way by driving the flexible shaft roller ways to rotate, a transition shaft is rotatably arranged on one side of the arc plate, a middle transmission mechanism in the middle of the transition shaft in the length direction is in meshed transmission with a flexible shaft transmission mechanism which is closest to the transition shaft, one end of each transition shaft is connected with power through a main transmission mechanism arranged on one side of the rack, the other end of each transition shaft transmits the power to the straight roller way through a shaft end transmission mechanism, and the main transmission mechanisms of the transition shafts are connected in a meshed mode through connecting pieces.
The section of the curved surface is C-shaped, S-shaped, V-shaped, U-shaped, W-shaped, L-shaped or J-shaped.
The flexible shaft transmission mechanism is a flexible shaft middle chain wheel, the middle transmission mechanism of the transition shaft is a transition shaft middle chain wheel, and the flexible shaft middle chain wheel and the transition shaft middle chain wheel are in meshing transmission through a chain; the main transmission mechanism is a transition shaft main transmission chain wheel arranged on the transition shaft, and the transition shaft main transmission chain wheels of the transition shafts are meshed and connected through chains; the shaft end transmission mechanism of the transition shaft is a transition shaft chain connecting chain wheel, and a straight roller way chain connecting chain wheel which is connected with the transition shaft chain connecting chain wheel through chain meshing is arranged at one end, far away from the main transmission mechanism, of the straight roller way.
The highest point of the rotating surface of the middle chain wheel of the transition shaft is lower than that of the rotating surface of the middle chain wheel of the flexible shaft.
The axis position of the transition shaft is lower than the lowest point of the axis of the flexible shaft roller way.
The flexible shaft transmission mechanism is a flexible shaft intermediate gear, the intermediate transmission mechanism of the transition shaft is a transition shaft intermediate gear, and the flexible shaft intermediate gear and the transition shaft intermediate gear are in meshing transmission.
The highest point of the rotating surface of the intermediate gear of the transition shaft is lower than that of the rotating surface of the intermediate gear of the flexible shaft.
The flexible shaft transmission mechanism is a flexible shaft middle belt pulley, the middle transmission mechanism of the transition shaft is a transition shaft middle belt pulley, and the flexible shaft middle belt pulley and the transition shaft middle belt pulley are in meshing transmission through a belt; the main transmission mechanism of the transition shaft is a transition shaft main transmission belt wheel, and the main transmission belt wheels of the transition shafts are connected in a meshing manner through a belt; the shaft end transmission mechanism of the transition shaft is connected with a belt wheel through the transition shaft, one end, far away from the main transmission mechanism, of the straight roller way is provided with a straight roller way connection belt wheel, and the straight roller way connection belt wheel is in transmission connection with the transition shaft connection belt wheel through a belt.
The highest point of the rotating surface of the intermediate belt wheel of the transition shaft is lower than that of the rotating surface of the intermediate belt wheel of the flexible shaft.
The belt is a synchronous belt or a flat belt.
The utility model has the advantages that: the utility model discloses the main drive mechanism of well transition axle head portion inserts power unit's power, and the transition axle is rotatory, and it is rotatory through the straight roll table of transition axle head drive mechanism drive, and the middle drive mechanism at transition axle middle part is through the flexible axle drive mechanism meshing transmission with the flexible axle roll table simultaneously, realizes the rotation of flexible axle roll table, has just so realized the whole synchronous revolution of flexible axle roll table and straight roll table to and realize the transport to curved glass in the whole frame.
The utility model discloses well each drive mechanism both can adopt the sprocket, also can adopt the band pulley. However, the highest point of the rotating surface of the middle chain wheel of the transition shaft is lower than the highest point of the rotating surface of the middle chain wheel of the flexible shaft, so that the glass can be ensured to pass through smoothly, and the lower surface of the glass can be prevented from being scratched by the middle chain wheel of the transition shaft.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a partial schematic view of the right end of FIG. 1;
FIG. 3 is a front view of the present invention;
FIG. 4 is a diagram showing the relationship between the middle sprocket of the middle flexible shaft and the middle sprocket of the transition shaft;
the labels in the figure are: 1. bent glass, 2, arc plates, 3, a flexible shaft roller way, 4, a transition shaft, 5, a straight roller way, 6, a rack, 7, a transition shaft middle chain wheel, 8, a flexible shaft middle chain wheel, 9, a straight roller way chain wheel, 10, a transition shaft chain wheel, 11 and a transition shaft main transmission chain wheel.
Detailed Description
The following detailed description of the present invention is provided with reference to the accompanying drawings and examples, but not to be construed as limiting the present invention in any way.
For convenience of explanation, the curved glass in this embodiment is "C" shaped glass, which may also be called semi-cylindrical glass, and this type of glass is generally used to make cylindrical glass, or laminated glass, hollow glass, etc.
Referring to the attached drawings, the conveying mechanism for the bent toughened glass is arranged in a toughening section of glass toughening equipment and comprises a plurality of arc plates 2 used for installing a flexible shaft roller way 3, the arc plates 2 are sequentially fixed on a frame 6 at intervals along the glass conveying direction, each arc plate 2 is provided with an arc-shaped groove for the bent glass 1 to pass through, the flexible shaft roller ways 3 are arranged in the arc-shaped groove through flexible shaft bases, the flexible shaft roller ways 3 form a semicircle shape matched with the shape of the bent glass 1, a plurality of flexible shaft roller ways 3 are matched to form a curved surface matched with the shape of the bent glass 1 and used for bearing the bent glass 1, the flexible shaft roller ways 3 generally comprise flexible shafts, rolling wheels and flexible shaft transmission mechanisms, the roller is fixedly arranged on the flexible shaft, the flexible shaft transmission mechanism is arranged in the middle of the flexible shaft in the length direction, the whole flexible shaft and the mounted roller are driven to rotate, and the glass 1 is conveyed from one arc plate 2 to the other arc plate 2; one side of each arc plate 2 is also rotatably provided with a transition shaft 4, two ends of each transition shaft 4 are respectively rotatably connected with a bearing on the frame 6, the middle part of the transition shaft 4 in the length direction is provided with an intermediate transmission mechanism, two shaft ends of each transition shaft 4 are respectively provided with a main transmission mechanism and a shaft end transmission mechanism, and the main transmission mechanism is responsible for being connected with a power mechanism on one side of the frame 6 and introducing power for the conveying mechanism; a straight roller way 5 is arranged between the adjacent arc plates 2, two ends of the straight roller way 5 are respectively connected with the bearings on the frame 6 in a rotating way, and a corresponding transmission mechanism is arranged at one end part of the straight roller way 5, so that the shaft end transmission mechanism of the transition shaft 4 is connected in a transmission way.
The various transmission mechanisms described above have various forms of realization, the most commonly used sprocket being described below.
The flexible shaft transmission mechanism is a flexible shaft middle chain wheel 8, the middle transmission mechanism of the transition shaft 4 is a transition shaft middle chain wheel 7, and the flexible shaft middle chain wheel 8 and the transition shaft middle chain wheel 7 are in meshing transmission through a chain; the main transmission mechanism of the transition shaft 4 is a transition shaft main transmission chain wheel 11, and the transition shaft main transmission chain wheels 11 of the transition shafts 4 are meshed and connected through chains; the shaft end transmission mechanism of the transition shaft 4 is a transition shaft chain connecting chain wheel 10, and a straight roller way chain connecting chain wheel 9 which is connected with the transition shaft chain connecting chain wheel 10 through chain meshing is arranged on the straight roller way 5.
Furthermore, the highest point of the rotating surface of the intermediate chain wheel 7 of the transition shaft is lower than that of the rotating surface of the intermediate chain wheel 8 of the flexible shaft. In order to ensure that the transition shaft intermediate chain wheel 7 and the flexible shaft intermediate chain wheel 8 can rotate at the same speed, chain wheels with the same specification are adopted, and other chain wheels are also the same as the transition shaft intermediate chain wheel 7 and the flexible shaft intermediate chain wheel 8, at the moment, in order to ensure that the highest point of the rotating surface of the transition shaft intermediate chain wheel 7 is lower than the highest point of the rotating surface of the flexible shaft intermediate chain wheel 8, the axial position of the transition shaft 4 is required to be lower than the lowest point of the axial line of.
Of course, the chain wheel can be replaced by a belt wheel for transmission. The flexible shaft transmission mechanism is a flexible shaft middle belt pulley, the middle transmission mechanism of the transition shaft is a transition shaft middle belt pulley, and the flexible shaft middle belt pulley and the transition shaft middle belt pulley are in meshing transmission through a belt; the main transmission mechanism of the transition shaft 4 is a transition shaft main transmission belt wheel, and the transition shaft main transmission belt wheels of the transition shafts are in transmission connection through a belt; the shaft end transmission mechanism of the transition shaft is a transition shaft connecting belt wheel, and the straight roller way 5 is provided with a straight roller way connecting belt wheel which is connected with the transition shaft connecting belt wheel through a belt in a meshing manner.
Furthermore, the highest point of the rotating surface of the intermediate belt wheel of the transition shaft is lower than that of the rotating surface of the intermediate belt wheel of the flexible shaft.
The belt can adopt a synchronous belt, the synchronous belt is meshed with a corresponding belt wheel, and the belt can also adopt a flat belt for transmission.
When in use, the universal wheels or the following wheels can be adopted to assist in supporting and driving the two sides of the glass.
No matter what the shape of the glass is, a groove which is adaptive to the shape of the glass needs to be formed on the arc plate for installing a flexible shaft roller way, so that the flexible shaft roller way forms a curved surface with a corresponding shape, and then the curved glass is attached to the lower surface of the glass when being conveyed.

Claims (10)

1. The utility model provides a curved toughened glass's conveying mechanism which characterized in that: the bending machine comprises a plurality of arc plates (2) arranged on a rack (6) at intervals along the glass conveying direction, wherein a flexible shaft roller way (3) for conveying bent glass (1) is arranged on each arc plate (2), and the flexible shaft roller ways (3) are bent to form a curved surface which is matched with the bent glass (1) in shape and bears the bent glass (1); a flexible shaft transmission mechanism is arranged in the middle of the flexible shaft roller way (3) in the length direction and used for driving the flexible shaft roller way (3) to rotate; still rotate along glass direction of delivery in the frame (6) at the interval and set up a plurality of straight roll tables (5) arc board (2) one side is rotated and is provided with transition axle (4), the middle drive mechanism and the nearest flexible axle drive mechanism meshing transmission of transition axle (4) length direction middle part, main drive mechanism that transition axle (4) one end set up through frame (6) one side inserts power, and the other end passes through axle head drive mechanism with power transmission extremely straight roll table (5), the main drive mechanism meshing of each transition axle (4) is connected.
2. The conveying mechanism for bent toughened glass according to claim 1, wherein the cross-sectional shape of the curved surface is "C" -shaped, "S" -shaped, "V" -shaped, "U" -shaped, "W" -shaped, "L" -shaped or "J" -shaped.
3. The conveying mechanism for bent tempered glass as claimed in claim 1, wherein: the flexible shaft transmission mechanism is a flexible shaft middle chain wheel (8), the middle transmission mechanism of the transition shaft (4) is a transition shaft middle chain wheel (7), and the flexible shaft middle chain wheel (8) and the transition shaft middle chain wheel (7) are in meshing transmission through a chain; the main transmission mechanism is a transition shaft main transmission chain wheel (11) arranged on the transition shaft (4), and the transition shaft main transmission chain wheels (11) of the transition shafts (4) are meshed and connected through chains; the shaft end transmission mechanism of the transition shaft (4) is a transition shaft chain connecting chain wheel (10), and one end of the straight roller way (5) far away from the main transmission mechanism is provided with a straight roller way chain connecting chain wheel (9) connected with the transition shaft chain connecting chain wheel (10) through chain meshing.
4. The conveying mechanism for bent tempered glass as claimed in claim 3, wherein: the highest point of the rotating surface of the intermediate chain wheel (7) of the transition shaft is lower than that of the rotating surface of the intermediate chain wheel (8) of the flexible shaft.
5. The conveying mechanism for bent tempered glass as claimed in claim 1, wherein: the axis of the transition shaft (4) is lower than the lowest point of the axis of the flexible shaft roller table (3).
6. The conveying mechanism for bent tempered glass as claimed in claim 1, wherein: the flexible shaft transmission mechanism is a flexible shaft intermediate gear, the intermediate transmission mechanism of the transition shaft (4) is a transition shaft intermediate gear, and the flexible shaft intermediate gear and the transition shaft intermediate gear are in meshing transmission.
7. The conveying mechanism for bent tempered glass as claimed in claim 6, wherein: the highest point of the rotating surface of the intermediate gear of the transition shaft is lower than that of the rotating surface of the intermediate gear of the flexible shaft.
8. The conveying mechanism for bent tempered glass as claimed in claim 1, wherein: the flexible shaft transmission mechanism is a flexible shaft middle belt pulley, the middle transmission mechanism of the transition shaft (4) is a transition shaft middle belt pulley, and the flexible shaft middle belt pulley and the transition shaft middle belt pulley are in meshing transmission through a belt; the main transmission mechanism of the transition shaft (4) is a transition shaft main transmission belt wheel, and the transition shaft main transmission belt wheels of the transition shafts (4) are connected in a meshing manner through a belt; the shaft end transmission mechanism of the transition shaft (4) is connected with a belt wheel through the transition shaft, one end, far away from the main transmission mechanism, of the straight roller way (5) is provided with a straight roller way connection belt wheel, and the straight roller way connection belt wheel is in transmission connection with the transition shaft connection belt wheel through a belt.
9. The conveying mechanism for bent tempered glass as claimed in claim 8, wherein: the highest point of the rotating surface of the intermediate belt wheel of the transition shaft is lower than that of the rotating surface of the intermediate belt wheel of the flexible shaft.
10. The conveying mechanism for bent tempered glass as claimed in claim 8, wherein: the belt is a synchronous belt or a flat belt.
CN201921303611.8U 2019-08-13 2019-08-13 Conveying mechanism for bent toughened glass Active CN211077277U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921303611.8U CN211077277U (en) 2019-08-13 2019-08-13 Conveying mechanism for bent toughened glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921303611.8U CN211077277U (en) 2019-08-13 2019-08-13 Conveying mechanism for bent toughened glass

Publications (1)

Publication Number Publication Date
CN211077277U true CN211077277U (en) 2020-07-24

Family

ID=71628504

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921303611.8U Active CN211077277U (en) 2019-08-13 2019-08-13 Conveying mechanism for bent toughened glass

Country Status (1)

Country Link
CN (1) CN211077277U (en)

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