CN108147126A - The transfer structure of stabilization conveying can be achieved - Google Patents

The transfer structure of stabilization conveying can be achieved Download PDF

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Publication number
CN108147126A
CN108147126A CN201711345101.2A CN201711345101A CN108147126A CN 108147126 A CN108147126 A CN 108147126A CN 201711345101 A CN201711345101 A CN 201711345101A CN 108147126 A CN108147126 A CN 108147126A
Authority
CN
China
Prior art keywords
glass
bearing support
round roller
shell body
plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN201711345101.2A
Other languages
Chinese (zh)
Inventor
云建军
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhongjiang Zhicheng Tempered Glass Products Co Ltd
Original Assignee
Zhongjiang Zhicheng Tempered Glass Products Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zhongjiang Zhicheng Tempered Glass Products Co Ltd filed Critical Zhongjiang Zhicheng Tempered Glass Products Co Ltd
Priority to CN201711345101.2A priority Critical patent/CN108147126A/en
Publication of CN108147126A publication Critical patent/CN108147126A/en
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G49/00Conveying systems characterised by their application for specified purposes not otherwise provided for
    • B65G49/05Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles
    • B65G49/06Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles for fragile sheets, e.g. glass
    • B65G49/063Transporting devices for sheet glass
    • B65G49/064Transporting devices for sheet glass in a horizontal position

Abstract

The invention discloses the transfer structures of achievable stabilization conveying, including bearing support, motor, right baffle-plate, right shell body and round roller, motor is arranged in bearing support, right baffle-plate, right shell body are arranged on the both ends of bearing support, round roller is rotatably arranged between right baffle-plate and right shell body, and chain is provided on right baffle-plate, right shell body, and the both ends of round roller and the output terminal of motor are mounted on gear, gear and chain interoperation further include the auxiliary support structure being arranged on bearing support;The round roller of setting may be such that different types of stabilization is placed in transport plane, prevent the position offset of glass, auxiliary support structure is additionally provided on bearing support, the function of a transition can be played, it can be unified by glass and process equipment entrance location, it reduces glass to collide with bearing support or process equipment, while improving transmission efficiency, also reduces the loss percentage of glass.

Description

The transfer structure of stabilization conveying can be achieved
Technical field
The present invention relates to transmission device, in particular to can realize stabilization conveying transfer structure.
Background technology
Conveyer belt is generally classified by traction piece is whether there is, and the conveyer belt with traction piece generally comprises traction piece, holds Mount components, driving device, tensioning apparatus, change course device and supporting member etc..Conveying can be used to transmit tractive force in traction piece Band, haulage chain or steel wire rope;Bearing carrier has hopper, bracket or suspender etc. to bear material;Driving device to conveyer with Power is generally made of motor, retarder and brake etc.;Tensioning apparatus generally has two kinds of screw and Weight type, can make The certain tension of traction piece holding and sag, to ensure that conveyer belt runs well;Supporting member is to support traction piece or carrying structure Carrying roller, idler wheel etc. can be used in part;Conveyor equipment with traction piece is structurally characterized in that:Material is transported to be mounted in and traction It in the bearing carrier that part links together or is directly installed on traction piece, traction piece joins end to end around each roller or sprocket wheel, shape Into including the You Zai branches for transporting material and the closed loop for the return run for not transporting material, the continuous movement of traction piece is utilized Convey material.
Raw material are entering stove forming, after semi-finished product are made, need the transmission by transmission device to carry out the plating of next step The finishing such as film.When traditional roller conveyor transmits glass to position between process equipment and transmission equipment, glass is past Toward can collide with the entrance of transmission device or process equipment, lead to glass scratch or broken angle, and in transmit process The position of middle glass is it may also happen that certain position offset, so that the position of glass can not be with the import position of process equipment It puts and exactly matches, not only be easy to cause the impaired of glass, also reduce transmission efficiency.
Invention content
The transfer structure of stabilization conveying can be achieved by setting by the present invention, solve glass position in traditional roller transmission Offset, the problems such as transmission efficiency is low, to achieve the purpose that improve transmission efficiency.
The purpose of the present invention reaches by the following technical programs:
The present invention includes bearing support, motor, right baffle-plate, right shell body and round roller, and motor is arranged in bearing support, right baffle-plate, Right shell body is arranged on the both ends of bearing support, and round roller is rotatably arranged between right baffle-plate and right shell body, is set on right baffle-plate, right shell body There is chain, the both ends of round roller and the output terminal of motor are mounted on gear, gear and chain interoperation, further include and be arranged on bearing support On auxiliary support structure.The present invention sets right baffle-plate and right shell body at the both ends of bearing support, the both ends of round roller and motor it is defeated Outlet is mounted on gear, motor-driven gear, with the chain interoperation on moving gear and left and right baffle so that round roller bearing support Upper rotation, and then start to be driven glass movement;The round roller of setting may be such that different types of stabilization is placed on transport plane On, the position offset of glass is prevented, auxiliary support structure is additionally provided on bearing support, the function of a transition can be played, Can be unified by glass and process equipment entrance location, it reduces glass and collides with bearing support or process equipment, improve transmission While efficiency, the loss percentage of glass is also reduced.
Further, the auxiliary support structure includes pedestal and ball, and semi-circular recesses, ball are provided on pedestal Rolling is arranged in groove, and the pedestal is bolted with bearing support.When glass is transferred on auxiliary support mechanism, i.e., with The ball contact of rubber material generates force of rolling friction, with general dynamic friction between the ball and glass of activity setting Power is compared, and rolling friction is more laborsaving, while the abrasion to glass is reduced, can make glass quickly through auxiliary support mechanism Reach the feed inlet of process equipment.
Further, the first roll surface and the second roll surface are arranged at intervals in the round roller, the level height of the first roll surface is high In the second roll surface.The first roll surface and the second roll surface set in round roller has certain difference in height, can play certain limit Position effect, avoids glass that position offset occurs in round roller, may be such that vehicle glass, either plate glass or bend glass is equal What can be stablized is placed in round roller.
Further, the spacing between the round roller is 5~10 ㎝.The transport plane that multiple round rollers collectively form not only rises To the effect of support, additionally it is possible to ensure the quick transmission of glass, the spacing between each round roller is set as 5~10 ㎝, can both prevent Lead to the increase of round roller quantity due to spacing is too small, and then transmission speed is caused to slow down;Also it can avoid causing due to spacing is too big Glass is stuck between round roller, influences transmission efficiency.
Further, it is both provided with rubber pad on first roll surface and the second roll surface.Rubber pad has the function of damping, It prevents the glass in transmission and glass is caused to deviate, while the surface of rubber pad can because of the rotation of the first roll surface and the second roll surface It is contacted well with glass, the frictional force that the two relative movement generates is larger, can accelerate the speed of glass transmission, and then improve and pass Send efficiency.
Compared with prior art, the present invention having the following advantages that and advantageous effect:
1st, the present invention includes bearing support, motor, right baffle-plate, right shell body and round roller, and motor is arranged in bearing support, left gear Plate, right shell body are arranged on the both ends of bearing support, and round roller is rotatably arranged between right baffle-plate and right shell body, on right baffle-plate, right shell body Chain is provided with, the both ends of round roller and the output terminal of motor are mounted on gear, gear and chain interoperation, further include and be arranged on branch Auxiliary support structure on bolster;The round roller of setting may be such that different types of stabilization is placed in transport plane, prevent The position offset of glass, is additionally provided with auxiliary support structure on bearing support, can play the function of a transition, can be by glass Glass is unified with process equipment entrance location, reduces glass and collides with bearing support or process equipment, improves the same of transmission efficiency When, also reduce the loss percentage of glass.
2nd, the transport plane that multiple round rollers of the invention collectively form not only acts as the effect of support, additionally it is possible to ensure glass Quick transmission, the spacing between each round roller is set as 5~10 ㎝, can both prevent the increasing for leading to round roller quantity due to spacing is too small Add, and then transmission speed is caused to slow down;Also it can avoid between glass being caused to be stuck in round roller due to spacing is too big, influence transmission effect Rate.
Description of the drawings
Fig. 1 is the structural diagram of the present invention;
Fig. 2 is the structure diagram of round roller;
Fig. 3 is the side view of the present invention;
Wherein, the corresponding parts title of reference numeral is as follows:
1- right baffle-plates, 2- right shell bodies, 3- round rollers, 4- ball, 5- pedestals, the first roll surfaces of 6-, the second roll surfaces of 7-, 8- rubbers Rubber cushion, 9- gears, 10- chains, 11- bearing supports.
Specific embodiment
Embodiment 1
As shown in Figure 1, Figure 2 and Figure 3, the present embodiment includes bearing support 11, motor, right baffle-plate 1, right shell body 2 and round roller 3, Motor is arranged in bearing support 11, and right baffle-plate 1, right shell body 2 are arranged on the both ends of bearing support 11, and round roller 3 is rotatably arranged on left gear Between plate 1 and right shell body 2, chain 10 is provided on right baffle-plate 1, right shell body 2, the both ends of round roller 3 and the output terminal of motor are pacified Equipped with gear 9, gear 9 coordinates with chain 10, further includes the auxiliary support structure being arranged on bearing support 11;The Auxiliary support Structure includes pedestal 5 and ball 4, and semi-circular recesses are provided on pedestal 5, and the rolling of ball 4 is arranged in groove, the pedestal 5 are bolted with bearing support 11;Spacing between the round roller 3 is 5~10 ㎝.The present invention sets left at the both ends of bearing support 11 Baffle 1 and right shell body 2, the both ends of round roller 3 and the output terminal of motor are mounted on gear 9, motor-driven gear 9, band moving gear 9 Coordinate with the chain 10 in left and right baffle 1,2 so that round roller 3 rotates on bearing support 11, and then starts to be driven glass movement; The round roller 3 of setting may be such that different types of stabilization is placed in transport plane, prevent the position offset of glass, support Auxiliary support structure is additionally provided on frame 11, the function of a transition can be played, it can be by glass and process equipment import position Unification is put, glass is reduced and collides with bearing support 11 or process equipment, while improving transmission efficiency, also reduce glass Loss percentage;It when glass is transferred on auxiliary support mechanism, i.e., is contacted with the ball of rubber material 4, activity setting is led Force of rolling friction is generated between ball 4 and glass, compared with general kinetic force of friction, rolling friction is more laborsaving, in reduction pair While the abrasion of glass, glass can be made to reach the feed inlet of process equipment quickly through auxiliary support mechanism;In the round roller 3 The first roll surface 6 and the second roll surface 7 are arranged at intervals with, the level height of the first roll surface 6 is higher than the second roll surface 7,6 He of the first roll surface Second roll surface 7 has certain difference in height, can play certain position-limiting action, avoids glass that position offset occurs in round roller 3, It may be such that vehicle glass, what either plate glass or bend glass can be stablized is placed in round roller 3.
The transport plane that multiple round rollers 3 collectively form not only acts as the effect of support, additionally it is possible to ensure the quick biography of glass It send, the spacing between each round roller 3 is set as 5~10 ㎝, can both prevent the increase for leading to 3 quantity of round roller due to spacing is too small, into And transmission speed is caused to slow down;Also it can avoid between glass being caused to be stuck in round roller 3 due to spacing is too big, influence transmission efficiency.

Claims (5)

1. it can realize the transfer structure of stabilization conveying, it is characterised in that:Including bearing support (11), motor, right baffle-plate (1), Right shell body (2) and round roller (3), motor are arranged in bearing support (11), and right baffle-plate (1), right shell body (2) are arranged on bearing support (11) Both ends, round roller (3) is rotatably arranged between right baffle-plate (1) and right shell body (2), and right baffle-plate (1), right shell body are provided on (2) Chain (10), the both ends of round roller (3) and the output terminal of motor are mounted on gear (9), and gear (9) coordinates with chain (10), also Including the auxiliary support structure being arranged on bearing support (11).
2. the transfer structure of achievable stabilization conveying according to claim 1, it is characterised in that:The Auxiliary support Structure includes pedestal (5) and ball (4), and semi-circular recesses are provided on pedestal (5), and ball (4) rolling is arranged in groove, The pedestal (5) is bolted with bearing support (11).
3. the transfer structure of achievable stabilization conveying according to claim 1, it is characterised in that:The round roller (3) On be arranged at intervals with the first roll surface (6) and the second roll surface (7), the level height of the first roll surface (6) is higher than the second roll surface (7).
4. the transfer structure of achievable stabilization conveying according to claim 3, it is characterised in that:The round roller (3) Between spacing be 5~10 ㎝.
5. the transfer structure of achievable stabilization conveying according to claim 3, it is characterised in that:First roll surface (6) and on the second roll surface (7) it is both provided with rubber pad.
CN201711345101.2A 2017-12-15 2017-12-15 The transfer structure of stabilization conveying can be achieved Withdrawn CN108147126A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201711345101.2A CN108147126A (en) 2017-12-15 2017-12-15 The transfer structure of stabilization conveying can be achieved

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201711345101.2A CN108147126A (en) 2017-12-15 2017-12-15 The transfer structure of stabilization conveying can be achieved

Publications (1)

Publication Number Publication Date
CN108147126A true CN108147126A (en) 2018-06-12

Family

ID=62466355

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201711345101.2A Withdrawn CN108147126A (en) 2017-12-15 2017-12-15 The transfer structure of stabilization conveying can be achieved

Country Status (1)

Country Link
CN (1) CN108147126A (en)

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SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WW01 Invention patent application withdrawn after publication
WW01 Invention patent application withdrawn after publication

Application publication date: 20180612