CN203638669U - Chain conveying mechanism for section steel transferring - Google Patents

Chain conveying mechanism for section steel transferring Download PDF

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Publication number
CN203638669U
CN203638669U CN201420013752.7U CN201420013752U CN203638669U CN 203638669 U CN203638669 U CN 203638669U CN 201420013752 U CN201420013752 U CN 201420013752U CN 203638669 U CN203638669 U CN 203638669U
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CN
China
Prior art keywords
chain
transmission shaft
frame
shaped steel
conveying mechanism
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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.)
Expired - Fee Related
Application number
CN201420013752.7U
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Chinese (zh)
Inventor
余春燕
胡坚
杨宝成
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Co Ltd Of Design Inst Chongqing Iron & Steel Group
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Co Ltd Of Design Inst Chongqing Iron & Steel Group
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Priority to CN201420013752.7U priority Critical patent/CN203638669U/en
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Publication of CN203638669U publication Critical patent/CN203638669U/en
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Abstract

The utility model discloses a chain conveying mechanism for section steel transferring. The chain conveying mechanism comprises a drive device II, a transmission shaft II, at least two chain conveying frames I, a drive device V, a transmission shaft V and lifting devices. The transmission shaft II is connected with the drive device II. The chain conveying frames I which are parallelly arranged at intervals are connected with the transmission shaft II. The transmission shaft V is connected with the drive device V. Each lifting device is connected with the transmission shaft V and disposed at the tail end of each chain conveying frame. The chain conveying mechanism for section steel transferring has the advantages that roll-type straightened section steel rolled pieces are fed through synchronous transferring by chain transmission to perform offline synchronous transferring and offline automatic detection, work efficiency of section steel production lines is increased, and production cost is lowered.

Description

For the chain conveying mechanism of shaped steel transhipment
Technical field
The utility model belongs to the workpiece technical field of rolling special cross-section shape, specifically relates to a kind of chain conveying mechanism for shaped steel transhipment.
Background technology
Existingly be followed successively by continuous casting billet or bloom at rolling of sectional iron technical process, heating, cogging rolls into shaped blank, crop, omnipotent roughing, omnipotent finish rolling, hot saw is cut into scale, cooling, aligning, cold saw or cold shears, check classification, stacking bundling and warehouse-in, shaped steel length dimension scope after roll straightening is larger, length is generally 18~24 meters of left and right, carry out off-line transhipment difficulty larger, before entering cold saw or cold shears, need workman to carry out online certified products inspection, be allowed for access after passed examination cold sawing machine or cold shears sheared, testing time is long, will delay the explained hereafter time above, testing time is short, off-grade will directly enter cold saw or cold shears is sheared, will affect lumber recovery and the cost of product.
Summary of the invention
In view of this, the purpose of this utility model is to provide a kind of chain conveying mechanism for shaped steel transhipment, this chain conveying mechanism that is used for shaped steel transhipment is synchronously transported material loading by chain transmission by the shaped steel rolled piece process after roll straightening, carry out offline synchronization transhipment, off-line detects automatically, the work efficiency that improves type steel production line, reduces production costs.
In order to achieve the above object, the utility model is for the chain conveying mechanism of shaped steel transhipment, the transmission shaft II that comprises actuating device II, be connected with actuating device II and while are connected with transmission shaft II and are no less than the chain converyer frame I that two interval type arrangement in parallels arrange, and actuating device V, the transmission shaft V being connected with actuating device V and while are connected and are arranged on the jacking system of chain converyer frame I end with transmission shaft V.
Further, described chain converyer frame I comprises frame II, be arranged on the fixed beam I at frame II top and be provided with a pair of driven sprocket with hinged fixed beam II, described fixed beam I and the end, fixed beam II connector two ends of fixed beam I, is set with between drive sprocket II, described driven sprocket II and drive sprocket II and is connected with chain II in described transmission shaft II.
Further, described jacking system comprises for the frame V of supporting shaft V, is fixedly connected on the truss V of fixed beam II end and is articulated and connected in the contiguous block II of the truss V other end, described contiguous block II is fixedly set in transmission shaft V, described actuating device V comprises base V, be arranged on the oil cylinder II in base V and be hinged on the contiguous block I at the top of oil cylinder II, and described contiguous block I is fixedly set in transmission shaft V.
Further, described frame II comprise pair of opposing support, be arranged on transition beam on support and the support II for supporting shaft II, described drive sprocket II is positioned at the centre of support II, and the end of described transition beam and middle part are provided with the truss for supporting fixed beam I two ends.
Further, on described transition beam both sides, be provided with the transition sprocket wheel II of pair of opposing, described chain II is walked around a pair of transition sprocket wheel II by drive sprocket II and is connected with a pair of driven sprocket II, in described chain II, be provided with for by shaped steel rolled piece layout block in groups.
Further, the top of described fixed beam I and fixed beam II is provided with the key way for holding chain II.
Further, described actuating device II is set to motor II.
The beneficial effects of the utility model are:
1, the key equipment that the utility model carries out next process processing for the chain conveying mechanism of shaped steel transhipment to process cold straightener section bar after treatment, carry out in a row carrying for section bars such as the shaped steel after cold leveling, rail, square steel, hot rolling bulb flats reaching cold sawing machine cutting and becoming a useful person, being specially adapted to dimensions length is the transhipment in a row of the section bar rolled piece between 10~40m.
2, the utility model makes to align unit and saw shearing machine group compact conformation for the chain conveying mechanism of shaped steel transhipment, rationally distributed, save the area, can transport off-line shaped steel, not only can extend and check the time of the shaped steel after beam straightening and do not delay production time before straightening process, and can make after aligning to such an extent that shaped steel layout in a row enters in cold sawing machine or cold shears simultaneously and cut and become a useful person, raising cold sawing machine or cold shears work efficiency, reduce production costs.
3, the utility model passes through electric machine control transmission shaft for the chain conveying mechanism of shaped steel transhipment, make several parallel chains carry frame to carry out synchronization action, ensure that shape rolling mill is not offset in transport process, landing, distortion and compared with galling, improved product design and the productive capacity efficiency of shaped steel rolled piece.
Brief description of the drawings
Fig. 1 is the structural plan for the stand in a row of shaped steel transhipment;
Fig. 2 is the structural representation for the stand in a row of shaped steel transhipment;
Fig. 3 is the structural representation of the utility model for the chain conveyer structure of shaped steel transhipment;
Fig. 4 is the structural representation of Fig. 3 mid frame II.
Reference numeral: 1-straightener; 2-exports roller-way; The synchronous feed frame of 3-; 4-chain converyer frame I; 5-chain converyer frame II; 6-inlet roller way; 7-saws shearing machine; 8-transmission shaft I; 9-motor I; 10-transmission shaft II; 11-motor II; 12-transmission shaft III; 13-motor III; 14-transmission shaft IV; The synchronous blanking unit of 15-; 16-oil cylinder I; 17-oil cylinder II; 18-transmission shaft V; 41-frame II; 42-fixed beam I; 43-fixed beam II; 44-chain II; 45-drive sprocket II; 46-driven sprocket II; 47-transition sprocket wheel II; 48-block; 181-frame V; 182-contiguous block I; 183-contiguous block II; 184-truss V; 410-support; 411-support II; 412-transition beam; 413-truss.
Detailed description of the invention
Below in conjunction with accompanying drawing, preferred embodiment of the present utility model is described in detail.
Be illustrated in figure 3 the structural representation of the utility model for the chain conveyer structure of shaped steel transhipment, the utility model is for the chain conveying mechanism of shaped steel transhipment, it is characterized in that: comprise actuating device II, the transmission shaft II 10 being connected with actuating device II and while are connected with transmission shaft II 10 and are no less than the chain converyer frame I 4 that two interval type arrangement in parallels arrange, actuating device V, the transmission shaft V 18 being connected with actuating device V and the jacking system that is connected and is arranged on chain converyer frame I 4 ends with transmission shaft V 18 simultaneously, the present embodiment is synchronously transported material loading by chain transmission by the shaped steel rolled piece process after roll straightening by many chain converyer frame I of actuating device II control 4, carry out offline synchronization transhipment, off-line detects automatically, improve the work efficiency of type steel production line, reduce production costs.
Further, preferred described chain converyer frame I comprises frame II 41, be arranged on fixed beam I 42 in frame II 41, the fixed beam II 43 hinged with fixed beam I 42, described fixed beam I 42 and fixed beam II 43 ends, connector two ends are provided with a pair of driven sprocket 46, in described transmission shaft II 10, be set with drive sprocket II 45, between described driven sprocket II 46 and drive sprocket II 45, be connected with chain II, in the present embodiment, motor II 11 is controlled transmission shaft II 10 and is clockwise rotated, drive sprocket II 45 in 10 while of transmission shaft II driving plurality chain converyer frame I 4 is rotated, drive sprocket II 45 is by chain II 44 and drive driven sprocket II 46 to rotate, fixed beam I 42 and fixed beam II 43 upper ends are provided with the chute that holds chain II 44, shaped steel rolled piece is supported in the upper surface of chain II 44, the transfer of the moving belt ejector half steel rolling piece of chain II 44.
Further, preferred described jacking system comprises the frame V 181 for supporting shaft V 18, be fixedly connected on the truss V 184 of fixed beam II 43 ends and be articulated and connected in the contiguous block II 183 of truss V 184 other ends, described contiguous block II 183 is fixedly set in transmission shaft V 18, described actuating device V comprises base V, be arranged on oil cylinder II in base V 17 and be hinged on the contiguous block I 182 at the top of oil cylinder II 17, described contiguous block I 182 is fixedly set in transmission shaft V 18, in the present embodiment, when shaped steel rolled piece is transferred to the end of fixed beam II 43, oil cylinder II 17 piston rod retractions, drive is fixedly connected with 17 contiguous block I 182 deflections of oil cylinder II and rotates, contiguous block I 182 drives transmission shaft V 18 to rotate, transmission shaft V 18 moves down truss V 184 by contiguous block II 183, fixed beam II 43 one end are along with truss V 184 offsets downward, jacking system in many chain converyer frame I 4 is transmitted axle V 18 simultaneously and is fixedly connected with, when oil cylinder II 17 is moved simultaneously, fixed beam II 43 in driving plurality chain converyer frame I 4 completes simultaneous bias work, the shaped steel rolled piece that in driving plurality chain converyer frame I 4, chain II 44 supports is synchronously dropped on the chain of many chain converyer frame II 5, complete shaped steel rolled piece is transferred to the course of action chain converyer frame II 5 from chain converyer frame I 4, after having moved, oil cylinder II 17 rises and drives fixed beam II 43 to be upwards offset and to get back to initial position, wait for transhipment next time.
Be illustrated in figure 4 the structural representation of Fig. 3 frame II, further, preferred described frame II 41 comprises the support 410 of pair of opposing, be arranged on transition beam 412 on support 410 and the support II 411 for supporting shaft II 10, described drive sprocket II 45 is positioned at the centre of support II 411, the end of described transition beam 412 and middle part are provided with the truss 413 for supporting fixed beam I 42 two ends, on preferred described transition beam both sides, be provided with the transition sprocket wheel II 47 of pair of opposing, described chain II 44 is walked around a pair of transition sprocket wheel II 47 by drive sprocket II 46 and is connected with a pair of driven sprocket II 45, in described chain II 47, be provided with for by shaped steel rolled piece layout block 48 in groups, the carrying of the raising chain II 44 that this structure is conducive to can, extend the service life of chain II 44, block 48 is for by the layout of shaped steel rolled piece in groups, first shaped steel rolled piece transferred in the chain II 44 of chain converyer frame I 4 and blocked by block 48, chain II 44 is moved forward after a segment distance, stopping second shaped steel rolled piece of wait transfers in the chain II 44 of chain converyer frame I 4, chain II 44 is moved forward after a segment distance again, stopping the 3rd shaped steel rolled piece of wait transfers in the chain II 44 of chain converyer frame I 4, generally the layout of 2~5 shaped steel rolled pieces can be transported to chain converyer frame II 5 from chain converyer frame I 4 in groups simultaneously, there is again chain converyer frame II 5 to be transported to inlet roller way 6, in saw shearing machine 7, saw and cut simultaneously.
Be illustrated in figure 1 the structural plan for the stand in a row of shaped steel transhipment; Be illustrated in figure 2 the structural representation for the stand in a row of shaped steel transhipment; The present embodiment has also been described the stand in a row for shaped steel transhipment that adopts the synchronous feed mechanism of the present embodiment, and the synchronous feed mechanism that this is used for shaped steel transhipment comprises the synchronous material loading unit, chain converyer group and the synchronous blanking unit that are connected successively,
The transmission shaft that described chain converyer group comprises actuating device, be connected with actuating device and is connected with transmission shaft and is no less than the chain converyer frame that two interval type arrangement in parallels arrange simultaneously, described synchronous feed frame 3 and chain converyer frame shift to install; The end of described chain converyer frame extends on saw shearing machine 7 inlet roller ways 6;
The transmission shaft IV 14 that described synchronous blanking unit comprises actuating device IV, connect with actuating device IV and be connected with transmission shaft IV 14 simultaneously be no less than two synchronize blanking frame 15.
The present embodiment exports rolled piece on roller-way 2 by many synchronous feed frames of actuating device I control by straightener 1 and is transported in parallel chain conveying frame, actuating device control parallel chain conveying mechanism props up by 1 on it or 2-4 that layout shaped steel rolled piece is in groups transported and is transported on saw shearing machine 7 inlet roller ways 6 by synchronous blanking frame 15, inlet roller way 6 is carried shaped steel rolled piece to reach in saw shearing machine and is cut and become a useful person, wherein layout shaped steel rolled piece spacing in groups can be made as 30~50mm, this structure makes to align unit and saw shearing machine group compact conformation, rationally distributed, save the area, can transport off-line shaped steel, not only can extend and check the time of the shaped steel after beam straightening and do not delay production time before straightening process, and can make after aligning to such an extent that shaped steel layout in a row enters in cold sawing machine or cold shears simultaneously and cuts and become a useful person, improve cold sawing machine or cold shears work efficiency, reduce production costs.
The preferred described chain converyer frame of the present embodiment comprises chain converyer frame I 4 and chain converyer frame II 5, described actuating device comprises actuating device II and actuating device III, described transmission shaft comprises transmission shaft II 10 and transmission shaft III 12, described chain converyer frame I 4 is all connected with actuating device II by transmission shaft II 10, described chain converyer frame II 5 is all connected with actuating device III by transmission shaft III 12, described chain converyer frame I 4 ends and chain converyer frame II 5 open the end layout that misplaces side by side, in the present embodiment, chain converyer frame can be set to two frames and also can be set to many frames, according to the productive capacity of rolling of sectional iron line, the actual conditions such as the width of factory building manufacturing line are carried out choose reasonable, this structure of the present embodiment is considered the load-carrying capacity of chain, select the chain conveying line being formed by two groups of frames, shaped steel rolled piece is transported on the chain of many chain converyer frame I 4 by many synchronous feed frames 3, clockwise rotate in actuating device II control transmission shaft II 10, in 10 while of transmission shaft II driving plurality chain converyer frame I 4, chain rotates, under the effect of oil cylinder II 17 and transmission shaft V 18, thereby shaped steel rolled piece is shifted on the chain of chain converyer frame II 5, in like manner clockwise rotate in actuating device III control transmission shaft III 12, in 12 while of transmission shaft III driving plurality chain converyer frame II 5, chain rotates, under the effect of synchronous blanking frame 15, just shaped steel rolled piece is transferred to and is transported on saw shearing machine 7 inlet roller ways 6.
Further, preferred described actuating device I, actuating device II and actuating device III are set to respectively motor I 9, motor II 11 and motor III 13, described actuating device IV is set to oil cylinder I 16, this structure is conducive to the start and stop of synchronous feed frame, the start and stop of chain converyer frame, synchronous blanking frame start and stop.
Finally explanation is, above preferred embodiment is only unrestricted in order to the technical solution of the utility model to be described, although the utility model is described in detail by above preferred embodiment, but those skilled in the art are to be understood that, can make various changes to it in the form and details, and not depart from the utility model claims limited range.

Claims (7)

1. the chain conveying mechanism for shaped steel transhipment, it is characterized in that: the transmission shaft II that comprise actuating device II, is connected with actuating device II and while are connected with transmission shaft II and are no less than the chain converyer frame I that two interval type arrangement in parallels arrange, and actuating device V, the transmission shaft V being connected with actuating device V and while are connected and are arranged on the jacking system of chain converyer frame I end with transmission shaft V.
2. the chain conveying mechanism for shaped steel transhipment as claimed in claim 1, it is characterized in that: described chain converyer frame I comprises frame II, be arranged on the fixed beam I at frame II top and be provided with a pair of driven sprocket with hinged fixed beam II, described fixed beam I and the end, fixed beam II connector two ends of fixed beam I, is set with between drive sprocket II, described driven sprocket II and drive sprocket II and is connected with chain II in described transmission shaft II.
3. the chain conveying mechanism for shaped steel transhipment as claimed in claim 2, it is characterized in that: described jacking system comprises for the frame V of supporting shaft V, is fixedly connected on the truss V of fixed beam II end and is articulated and connected in the contiguous block II of the truss V other end, described contiguous block II is fixedly set in transmission shaft V, described actuating device V comprises base V, be arranged on the oil cylinder II in base V and be hinged on the contiguous block I at the top of oil cylinder II, and described contiguous block I is fixedly set in transmission shaft V.
4. the chain conveying mechanism for shaped steel transhipment of stating as claim 2, it is characterized in that: described frame II comprise pair of opposing support, be arranged on transition beam on support and the support II for supporting shaft II, described drive sprocket II is positioned at the centre of support II, and the end of described transition beam and middle part are provided with the truss for supporting fixed beam I two ends.
5. the chain conveying mechanism for shaped steel transhipment of stating as claim 4, it is characterized in that: on described transition beam both sides, be provided with the transition sprocket wheel II of pair of opposing, described chain II is walked around a pair of transition sprocket wheel II by drive sprocket II and is connected with a pair of driven sprocket II, in described chain II, be provided with for by shaped steel rolled piece layout block in groups.
6. the chain conveying mechanism for shaped steel transhipment as claimed in claim 2, is characterized in that: the top of described fixed beam I and fixed beam II is provided with the key way for holding chain II.
7. the chain conveying mechanism for shaped steel transhipment as claimed in claim 1, is characterized in that: described actuating device II is set to motor II.
CN201420013752.7U 2014-01-09 2014-01-09 Chain conveying mechanism for section steel transferring Expired - Fee Related CN203638669U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420013752.7U CN203638669U (en) 2014-01-09 2014-01-09 Chain conveying mechanism for section steel transferring

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420013752.7U CN203638669U (en) 2014-01-09 2014-01-09 Chain conveying mechanism for section steel transferring

Publications (1)

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CN203638669U true CN203638669U (en) 2014-06-11

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107626846A (en) * 2017-11-09 2018-01-26 昆山万马五金有限公司 A kind of intermetallic composite coating punching press feed device
CN107954169A (en) * 2017-12-05 2018-04-24 洛阳奥博特智能装备有限公司 A kind of smallclothes galvanization production line material frame conveying device
CN119501656A (en) * 2024-11-06 2025-02-25 济南邦德激光股份有限公司 A profile feeding device and profile processing system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107626846A (en) * 2017-11-09 2018-01-26 昆山万马五金有限公司 A kind of intermetallic composite coating punching press feed device
CN107954169A (en) * 2017-12-05 2018-04-24 洛阳奥博特智能装备有限公司 A kind of smallclothes galvanization production line material frame conveying device
CN107954169B (en) * 2017-12-05 2023-09-05 洛阳奥博特智能装备有限公司 Material frame conveying device for small hot galvanizing production line
CN119501656A (en) * 2024-11-06 2025-02-25 济南邦德激光股份有限公司 A profile feeding device and profile processing system

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140611

Termination date: 20210109

CF01 Termination of patent right due to non-payment of annual fee