CN211945339U - Novel glass is carried and is put flat equipment to one side - Google Patents

Novel glass is carried and is put flat equipment to one side Download PDF

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Publication number
CN211945339U
CN211945339U CN202020330507.4U CN202020330507U CN211945339U CN 211945339 U CN211945339 U CN 211945339U CN 202020330507 U CN202020330507 U CN 202020330507U CN 211945339 U CN211945339 U CN 211945339U
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CN
China
Prior art keywords
conveying roller
conveying
main cabinet
component
driving
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Active
Application number
CN202020330507.4U
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Chinese (zh)
Inventor
何腾平
韩增旺
周江湖
余洪号
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Jiangxi Jijida Technology Co ltd
Original Assignee
Shenzhen Jixiangda Machinery Equipment Co ltd
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Priority to CN202020330507.4U priority Critical patent/CN211945339U/en
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Abstract

The utility model provides a novel glass conveying inclined-laying flat device, which comprises a main cabinet and an inclined-laying flat component arranged in the main cabinet; conveying ports for inputting and outputting glass products are respectively formed in two sides of the main cabinet; the inclined flat component comprises a substrate connected with the inner side of the main cabinet, a conveying roller component and a driving component, wherein one end of the conveying roller component is connected with the end part of the substrate and can rotate around a shaft relative to the substrate, and the driving component is used for driving the conveying roller component to rotate around the shaft; the drive assembly including install in the inboard first driving motor of main cabinet and with the conveying roller subassembly is for the tensile belt that the other end of base plate is connected, in the actual motion process, accomplish when glass and get into the inside back of main cabinet, can drive tensile belt through first driving motor, drives conveying roller subassembly pivoting in step, changes glass's angle, this application structural design is reasonable, and the result of use is outstanding.

Description

Novel glass is carried and is put flat equipment to one side
[ technical field ]
The utility model relates to a glass conveying equipment technical field especially relates to a structural design is reasonable, efficient novel glass carries to one side and puts flat equipment.
[ background art ]
In recent years, the electronic glass display technology industry has been developed dramatically, and with the improvement of the living standard of human beings, the requirement for large-size display screens is higher and higher. Healthy eye protection is required, so that the anti-glare AG glass is produced at present, and in our lives, the anti-glare AG glass is used in many fields such as televisions, smart phones, vehicle-mounted central control, film screen projection and the like.
The anti-dazzle AG glass is produced. In order to obtain a better frosting effect, inclined frosting is needed, so that the frosting liquid medicine and the glass surface can form slope flow, the frosting effect is better, and the uniformity is higher. However, in the final work sequence, the glass is obliquely conveyed out and cannot be horizontally placed, so that the production and collection of finished glass are inconvenient, and the energy efficiency is low.
Based on the above problems, those skilled in the art have made extensive research and development efforts to improve and improve upon specific structural and functional aspects. A novel inclined glass conveying and leveling mechanism is developed. And achieves better results.
[ contents of utility model ]
For overcoming the problem that prior art exists, the utility model provides a novel glass is carried to one side and is put flat equipment that structural design is reasonable, efficient.
The utility model provides a novel glass conveying inclined-laying device, which comprises a main cabinet and an inclined-laying component arranged in the main cabinet; conveying ports for inputting and outputting glass products are respectively formed in two sides of the main cabinet; the inclined flat component comprises a substrate connected with the inner side of the main cabinet, a conveying roller component and a driving component, wherein one end of the conveying roller component is connected with the end part of the substrate and can rotate around a shaft relative to the substrate, and the driving component is used for driving the conveying roller component to rotate around the shaft; the driving assembly comprises a first driving motor arranged on the inner side of the main cabinet and a stretching belt connected with the other end, opposite to the substrate, of the conveying roller assembly; and a plurality of support rods for supporting the glass in an inclined state are sequentially arranged at the position, close to the connection part with the substrate, of the conveying roller assembly.
Preferably, the conveying roller assembly comprises a plurality of conveying rollers arranged at equal intervals; the second driving motor is arranged at one end of the conveying roller assembly and is used for driving each conveying roller to rotate; a transmission screw rod which is meshed with the end part of each conveying roller is arranged on one side of the conveying roller assembly close to the second driving motor; the transmission screw is driven to rotate by a second driving motor.
Preferably, a first connecting block and a second connecting block for sleeving the stretching belt are further arranged in the main cabinet respectively; the first connecting block is positioned at the upper part of the second connecting block; a winding wheel connected with an output shaft of the first driving motor and used for winding the stretching belt is further arranged in the main cabinet; and a bearing platform for bearing the first driving motor and the winding wheel is arranged at the lower part of the main cabinet.
Preferably, the support rods are respectively arranged between two adjacent conveying rollers.
Preferably, the base plate is further provided with a first rotating block at one end of the supporting rod; and a second rotating block which is matched and connected with the first rotating block is integrally formed on one side, close to the first rotating block, of the conveying roller assembly.
Preferably, a plurality of protective cover plates are further arranged on the upper portion of the main cabinet.
Preferably, the stretching belt is connected at one end of the conveying roller assembly through a limiting block arranged at the lower part of the conveying roller assembly.
Preferably, the conveying openings formed in the two sides of the main cabinet are in a triangular shape.
Compared with the prior art, the novel glass conveying inclined flat device of the utility model is provided with a main cabinet 11 and an inclined flat component arranged inside the main cabinet 11, wherein, the two sides of the main cabinet 11 are respectively provided with a conveying port for inputting and outputting glass products 2, the inclined flat component comprises a base plate 12 connected with the inner side of the main cabinet 11, a conveying roller component with one end connected with the end part of the base plate 12 and capable of rotating around the shaft relative to the base plate 12 and a driving component for driving the conveying roller component to rotate around the shaft, the driving component comprises a first driving motor 13 arranged inside the main cabinet 11 and a stretching belt 124 connected with the other end of the conveying roller component relative to the base plate 12, a plurality of supporting rods 126 for supporting the glass products 2 in an inclined state are sequentially arranged at the position near the connection part with the base plate 11, in the actual operation process, after glass finishes entering main cabinet 11 inside, can drive tensile belt 124 through first driving motor 13, synchronous drive conveying roller subassembly pivoting changes glass's angle, and this application structural design is reasonable, and the result of use is outstanding.
[ description of the drawings ]
Fig. 1 is a schematic view of a three-dimensional structure of a novel glass conveying and inclined leveling device of the present invention.
Fig. 2 and fig. 3 are schematic views of the internal state structure of the novel glass conveying and inclined leveling device of the present invention.
[ detailed description of the invention ]
To make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1 to 3, a novel glass conveying inclined-leveling apparatus 1 of the present invention includes a main cabinet 11 and an inclined-leveling assembly installed inside the main cabinet 11; two sides of the main cabinet 11 are respectively provided with a conveying port for inputting and outputting the glass products 2; the inclined flat component comprises a substrate 12 connected with the inner side of the main cabinet 11, a conveying roller component with one end connected with the end part of the substrate 12 and capable of rotating around a shaft relative to the substrate 12, and a driving component for driving the conveying roller component to rotate around the shaft; the driving assembly comprises a first driving motor 13 arranged inside the main cabinet 11 and a tension belt 124 connected with the other end of the conveying roller assembly opposite to the substrate 12; a plurality of support rods 126 for supporting the glass 2 in an inclined state are sequentially provided at the position of the feed roller assembly near the connection with the substrate 11.
The glass conveying device is characterized in that a main cabinet 11 and an inclined flat component arranged inside the main cabinet 11 are arranged at the same time, conveying ports for inputting and outputting glass products 2 are respectively arranged on two sides of the main cabinet 11, the inclined flat component comprises a substrate 12 connected with the inner side of the main cabinet 11, a conveying roller component and a driving component, one end of the conveying roller component is connected with the end part of the substrate 12 and can rotate around a shaft relative to the substrate 12, the driving component is used for driving the conveying roller component to rotate around the shaft, the driving component comprises a first driving motor 13 arranged on the inner side of the main cabinet 11 and a stretching belt 124 connected with the other end of the conveying roller component relative to the substrate 12, a plurality of supporting rods 126 used for supporting the glass 2 in an inclined state are sequentially arranged at the position, which is close to the substrate 11, in the actual operation process, after the glass enters the main cabinet 11, can drive tensile belt 124 through first driving motor 13, synchronous drive conveying roller subassembly pivoting, change glass's angle, this application structural design is reasonable, and the result of use is outstanding.
Preferably, the conveying roller assembly includes a plurality of conveying rollers 121 arranged at equal intervals; the device also comprises a second driving motor 122 which is arranged at one end part of the conveying roller assembly and is used for driving each conveying roller 121 to rotate; a transmission screw 125 which is meshed with the end parts of the conveying rollers 121 respectively is arranged on one side of the conveying roller assembly close to the second driving motor 122; the drive screw 125 is rotated by the second drive motor 122.
Preferably, a first connecting block 113 and a second connecting block 114 for sleeving the stretching belt 124 are further installed inside the main cabinet 11; the first connecting block 113 is positioned at the upper part of the second connecting block 114; a winding wheel 131 connected with an output shaft of the first driving motor 13 and used for winding the stretching belt 124 is further arranged inside the main cabinet 11; the lower part of the main cabinet 11 is provided with a bearing platform for bearing the first driving motor 13 and the winding wheel 131.
Preferably, the support rods 126 are respectively disposed between two adjacent conveying rollers.
Preferably, the base plate 12 is further provided with a first rotating block 129 at one end of the supporting rod 126; and a second rotating block 127 matched and connected with the first rotating block 129 is integrally formed on one side, close to the first rotating block 129, of the conveying roller assembly.
Preferably, a plurality of protective covers 111 are further disposed on the upper portion of the main cabinet 11.
Preferably, the tension belt 124 is connected at one end of the feed roller assembly by a stopper 128 installed at a lower portion of the feed roller assembly.
Preferably, the conveying openings formed at two sides of the main cabinet 11 are in a triangular shape.
The utility model discloses glass carries to put flat mechanism to one side provides horizontal transport power unit and oscilaltion power unit.
The horizontal conveying power mechanism enables the glass products to move horizontally for conveying, the up-down lifting power mechanism can be upwards lifted to realize butt joint with the front inclined conveying track, and can be downwards realized to realize butt joint with the rear procedure horizontal conveying track to finish the inclined flat-laying function of glass conveying.
The up-down lifting power mechanism lifts the motor through the bottom of the machine body, and the nylon hanging belt (namely the stretching belt 124) is folded and unfolded, so that the glass product is lifted (namely inclined and flat), and the two action processes are both in the working or stopping state of the transmission motor and the lifting motor controlled by the electronic inductor.
Compared with the prior art, the novel glass conveying inclined flat device 1 of the utility model is provided with a main cabinet 11 and an inclined flat component arranged inside the main cabinet 11, wherein both sides of the main cabinet 11 are respectively provided with a conveying port for inputting and outputting glass products 2, the inclined flat component comprises a base plate 12 connected with the inner side of the main cabinet 11, a conveying roller component with one end connected with the end part of the base plate 12 and capable of rotating around the shaft relative to the base plate 12, and a driving component for driving the conveying roller component to rotate around the shaft, the driving component comprises a first driving motor 13 arranged inside the main cabinet 11 and a stretching belt 124 connected with the other end of the conveying roller component relative to the base plate 12, a plurality of supporting rods 126 for supporting the glass products 2 in an inclined state are sequentially arranged at the position close to the base plate 11, in the actual operation process, after glass finishes entering main cabinet 11 inside, can drive tensile belt 124 through first driving motor 13, synchronous drive conveying roller subassembly pivoting changes glass's angle, and this application structural design is reasonable, and the result of use is outstanding.
The above-mentioned embodiments of the present invention do not limit the scope of the present invention. Any modification, equivalent replacement, and improvement made within the spirit and principle of the present invention should be included in the protection scope of the claims of the present invention.

Claims (8)

1. The utility model provides a novel glass is carried and is put flat equipment to one side which characterized in that: the device comprises a main cabinet and an inclined flat component arranged inside the main cabinet; conveying ports for inputting and outputting glass products are respectively formed in two sides of the main cabinet; the inclined flat component comprises a substrate connected with the inner side of the main cabinet, a conveying roller component and a driving component, wherein one end of the conveying roller component is connected with the end part of the substrate and can rotate around a shaft relative to the substrate, and the driving component is used for driving the conveying roller component to rotate around the shaft; the driving assembly comprises a first driving motor arranged on the inner side of the main cabinet and a stretching belt connected with the other end, opposite to the substrate, of the conveying roller assembly; and a plurality of support rods for supporting the glass in an inclined state are sequentially arranged at the position, close to the connection part with the substrate, of the conveying roller assembly.
2. The novel glass conveying inclined flat-laying apparatus as claimed in claim 1, wherein: the conveying roller assembly comprises a plurality of conveying rollers which are distributed at equal intervals; the second driving motor is arranged at one end of the conveying roller assembly and is used for driving each conveying roller to rotate; a transmission screw rod which is meshed with the end part of each conveying roller is arranged on one side of the conveying roller assembly close to the second driving motor; the transmission screw is driven to rotate by a second driving motor.
3. A novel glass conveying inclined flat-laying apparatus as claimed in claim 1 or 2, wherein: a first connecting block and a second connecting block for sleeving the stretching belt are further arranged in the main cabinet respectively; the first connecting block is positioned at the upper part of the second connecting block; a winding wheel connected with an output shaft of the first driving motor and used for winding the stretching belt is further arranged in the main cabinet; and a bearing platform for bearing the first driving motor and the winding wheel is arranged at the lower part of the main cabinet.
4. The novel glass conveying tilt and level apparatus of claim 2, wherein: the supporting rods are respectively arranged between two adjacent conveying rollers.
5. The novel glass conveying tilt and level apparatus of claim 4, wherein: the base plate is also provided with a first rotating block at one end of the supporting rod; and a second rotating block which is matched and connected with the first rotating block is integrally formed on one side, close to the first rotating block, of the conveying roller assembly.
6. The novel glass conveying inclined flat-laying apparatus as claimed in claim 1, wherein: a plurality of protective cover plates are further arranged on the upper portion of the main cabinet.
7. The novel glass conveying inclined flat-laying apparatus as claimed in claim 1, wherein: the stretching belt is connected with one end of the conveying roller assembly through a limiting block arranged at the lower part of the conveying roller assembly.
8. The novel glass conveying inclined flat-laying apparatus as claimed in claim 1, wherein: the conveying openings formed in the two sides of the main cabinet are in a triangular shape.
CN202020330507.4U 2020-03-17 2020-03-17 Novel glass is carried and is put flat equipment to one side Active CN211945339U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020330507.4U CN211945339U (en) 2020-03-17 2020-03-17 Novel glass is carried and is put flat equipment to one side

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020330507.4U CN211945339U (en) 2020-03-17 2020-03-17 Novel glass is carried and is put flat equipment to one side

Publications (1)

Publication Number Publication Date
CN211945339U true CN211945339U (en) 2020-11-17

Family

ID=73180742

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020330507.4U Active CN211945339U (en) 2020-03-17 2020-03-17 Novel glass is carried and is put flat equipment to one side

Country Status (1)

Country Link
CN (1) CN211945339U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20230614

Address after: 341700 Office area of Lot 2, Intelligent Equipment Industrial Park, Longnan Economic and Technological Development Zone, Longnan City, Ganzhou City, Jiangxi Province

Patentee after: Jiangxi jijida Technology Co.,Ltd.

Address before: 518000 4th floor, building 3, No. 33, Jixiang 2nd Road, Pingxi community, Pingdi street, Longgang District, Shenzhen City, Guangdong Province

Patentee before: SHENZHEN JIXIANGDA MACHINERY EQUIPMENT CO.,LTD.