CN219193805U - Material arranging device for transverse shearing production line - Google Patents

Material arranging device for transverse shearing production line Download PDF

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Publication number
CN219193805U
CN219193805U CN202223089784.9U CN202223089784U CN219193805U CN 219193805 U CN219193805 U CN 219193805U CN 202223089784 U CN202223089784 U CN 202223089784U CN 219193805 U CN219193805 U CN 219193805U
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Prior art keywords
locking
receipts
receiving
cylinder
rack
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CN202223089784.9U
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Chinese (zh)
Inventor
于洋
茹体振
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Jiangyin Hongheng Mechanical And Electrical Technology Co ltd
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Jiangyin Hongheng Mechanical And Electrical Technology Co ltd
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Abstract

The utility model relates to a material arranging device for a transverse shearing production line, which comprises a material distributing component and a material receiving component which are sequentially connected along the processing direction of a silicon steel sheet, wherein the material receiving component comprises two lifting units which are sequentially arranged along the processing direction of the silicon steel sheet, a magnet frame is arranged on the inner side wall of the material receiving belt, a plurality of lifting parts which are sequentially arranged along the processing direction of the silicon steel sheet are arranged on the magnet frame, the lifting parts comprise a material receiving cylinder, the output end of the material receiving cylinder is connected with two racks distributed along the width direction of the silicon steel sheet through a transmission part, the material receiving cylinder drives the two racks to lift respectively through the two transmission parts, the lifting parts also comprise locking parts, and the locking parts are used for locking racks.

Description

Material arranging device for transverse shearing production line
Technical Field
The utility model relates to a material arranging device for a transverse shearing production line, and belongs to the technical field of silicon steel processing.
Background
The silicon steel transverse shear line is mainly used for processing iron core silicon steel sheets, and can finish oblique shearing of the iron core silicon steel sheets and punching V-shaped or O-shaped holes.
The utility model discloses a material arranging device with the application number of 202210537303.1, which comprises a material arranging mechanism, wherein the material arranging mechanism comprises a material distributing mechanism and a material receiving mechanism; the two sides of the central plate are respectively provided with a side plate, the two sides of the side plates are respectively provided with a U-shaped connecting plate, the U-shaped connecting plates are arranged on the side plates in a sliding rail and sliding sleeve mode, a screw is arranged on the central plate and connected with the output end of a driving motor, the driving motor is arranged on the central plate, the screw penetrates through the U-shaped connecting plates and is in threaded connection with the U-shaped connecting plates, a square frame is arranged at the bottom of the U-shaped connecting plates, a driving piece is arranged on one side of the square frame, a baffle is arranged on the other side of the square frame, the driving piece is connected with the baffle through a connecting block and a sliding rod, the baffle is subjected to large-distance adjustment by the material blocking mechanism and then subjected to fine adjustment, so that the baffle is in a proper position, the phenomenon that a silicon steel sheet is offset or falls in the material collecting process is avoided, but during the meshing period of the rack and the gear, the rack is always in a stressed state due to the gravity effect of the magnet frame, and the service life of the rack is influenced for a long time.
Therefore, a material arranging device for a transverse shearing production line is needed, and the service life of the rack is prolonged.
Disclosure of Invention
The utility model aims to solve the technical problems that: in order to overcome the defects of the prior art, the material arranging device for the transverse shearing production line is provided for prolonging the service life of the rack.
The utility model solves the problems by adopting the following technical scheme: the utility model provides a reason material device for violently cut production line, includes feed divider spare and the receipts material subassembly that connects gradually along silicon steel sheet machine direction, receive the material subassembly and include two elevating units that set gradually along silicon steel sheet machine direction, be provided with two receipts material units of arranging from top to bottom between two elevating units, elevating unit drive receipts material unit goes up and down, receipts material unit is including receiving material piece and the receipts charging tray of arranging from top to bottom, receive the material piece and include receipts material seat and the receipts material belt of setting on receiving material seat, receive the material belt through receiving the drive part drive, be provided with the magnet frame on the material belt inside wall, be provided with a plurality of liftings that set gradually along silicon steel sheet machine direction on the magnet frame, the lifter includes receipts material cylinder, receive the cylinder body of material cylinder and receipts material seat hinge, receive the output of material cylinder and be connected with two racks that distribute along silicon steel sheet width direction through the driving piece, receive the material cylinder and drive two and go up and down respectively through two driving pieces, the vertical setting of rack is at the rack, the rack is used for receiving the drive part through the locking part, the top is still used for receiving the locking part.
Preferably, a translation part is arranged on the receiving tray, and the translation part drives the receiving tray to horizontally move.
Preferably, the locking piece comprises a locking rod, a locking groove is formed in one side of the rack, the locking rod is inserted into the locking groove, a locking cylinder is arranged on the locking rod, the output end of the locking cylinder is connected with the locking rod, the cylinder body of the locking cylinder is fixedly connected with the material collecting seat, the locking cylinder drives the locking rod to move, and before the rack descends, the locking cylinder drives the locking rod to be separated from the locking groove.
Preferably, the locking groove is matched with the locking rod.
Preferably, the locking piece further comprises two guide blocks, the guide blocks are in one-to-one correspondence with the racks, the guide blocks are fixedly connected with the material collecting seat, guide rods penetrate through the guide blocks, and the guide rods are fixedly connected with the locking rods.
Preferably, the transmission piece comprises a fixed box fixedly arranged on the material receiving seat, a material receiving transmission shaft is arranged on the fixed box in a penetrating manner, the output end of the material receiving cylinder is hinged with the material receiving transmission shaft through a connecting rod arranged in an inclined manner, a material receiving gear is arranged on the material receiving transmission shaft and is positioned in the fixed box, and the rack penetrates through the fixed box and is meshed with the material receiving gear.
Preferably, two material collecting transmission shafts in the same lifting piece are connected through a material collecting coupling.
Preferably, the two sides of the fixed box are respectively provided with a material receiving transmission shaft bearing, the inner ring of the material receiving transmission shaft bearing is arranged on the material receiving transmission shaft, and the outer ring of the material receiving transmission shaft bearing penetrates through the fixed box and is fixedly connected with the fixed box.
Compared with the prior art, the utility model has the advantages that:
according to the material arranging device for the transverse shearing production line, the locking piece is used for locking the rack, so that the stress of the rack is reduced, and the service life of the rack is prolonged.
Drawings
FIG. 1 is a schematic view of a material handling apparatus for a transverse shearing line according to the present utility model;
FIG. 2 is a schematic structural view of a receiving assembly;
FIG. 3 is a schematic view of the structure of the receiving member;
FIG. 4 is a schematic view of the structure of the lifter;
fig. 5 is a schematic structural view of the transmission member.
Wherein: a material distributing component 81 and a material receiving component 82;
lifting unit 82.1, receiving unit 82.2;
receiving member 82.21, receiving tray 82.22, translating member 82.23;
a receiving seat 82.211, a receiving belt 82.212, a receiving driving part 82.213, a magnet frame 82.214 and a lifting part 82.215;
a receiving cylinder 82.2151, a transmission 82.2152, a rack 82.2153, and a locking member 82.2154;
a fixed box 82.21521, a material receiving transmission shaft 82.21522, a connecting rod 82.21523, a material receiving gear 82.21524, a material receiving coupler 82.21525 and a material receiving transmission shaft bearing 82.21526;
a locking lever 82.21541, a locking groove 82.21542, a locking cylinder 82.21543, a guide block 82.21544, and a guide lever 82.21545.
Detailed Description
As shown in fig. 1-5, a material sorting device for a transverse shearing production line in this embodiment includes a material distributing component 81 and a material receiving component 82 sequentially connected along a processing direction of a silicon steel sheet, and the transversely sheared silicon steel sheet is sorted and conveyed to the material receiving component 82 for storage by the material distributing component 81;
the material receiving assembly 82 comprises two lifting units 82.1 which are sequentially arranged along the processing direction of the silicon steel sheet, two material receiving units 82.2 which are arranged up and down are arranged between the two lifting units 82.1, the lifting units 82.1 drive the material receiving units 82.2 to lift, and the height of the material receiving units 82.2 is adjusted by the lifting units 82.1 through the height of the silicon steel sheet conveyed to the position of the material receiving units 82.2;
the receiving unit 82.2 comprises a receiving piece 82.21 and a receiving disc 82.22 which are arranged up and down, a translation part 82.23 is arranged on the receiving disc 82.22, the translation part 82.23 drives the receiving disc 82.22 to move horizontally, silicon steel sheets collected through the receiving unit 82.2 drop onto the receiving disc 82.22, after the silicon steel sheets on the receiving disc 82.22 are collected to a set number, the silicon steel sheets on the receiving disc 82.22 are conveyed to the next procedure through the translation part 82.23;
the receiving part 82.21 comprises a receiving seat 82.211 and a receiving belt 82.212 arranged on the receiving seat 82.211, the receiving belt 82.212 is driven by a receiving driving part 82.213, a magnet frame 82.214 is arranged on the inner side wall of the receiving belt 82.212, a plurality of lifting parts 82.215 sequentially arranged along the processing direction of the silicon steel sheet are arranged on the magnet frame 82.214, the lifting parts 82.215 comprise a receiving cylinder 82.215, a cylinder body of the receiving cylinder 82.215 is hinged with the receiving seat 82.215, the output end of the receiving cylinder 82.215 is connected with two racks 82.215 distributed along the width direction of the silicon steel sheet through the driving part 82.215, the receiving cylinder 82.215 respectively drives the two racks 82.215 to lift through the two driving parts 82.215, the racks 82.215 are vertically and fixedly arranged on the top of the magnet frame 82.215, the lifting parts 82.215 also comprise locking parts 82.215, the locking parts 82.215 are used for locking the racks 82.215, the receiving belt 82.215 is driven to move through the receiving driving part 82.215, the silicon steel sheet is conveyed to the bottom of the receiving belt 82.215, the silicon steel sheet is magnetically adsorbed through the magnet frame 82.215 through the receiving belt 82.215, the silicon steel sheet is moved to a set position along with the movement of the receiving belt 82.215, then the transmission piece 82.215 is driven by the receiving cylinder 82.215 to drive the rack 82.215 to ascend, namely the magnet frame 82.215 is driven to ascend, the distance between the magnet frame 82.215 and the silicon steel sheet is increased, the silicon steel sheet cannot be magnetically adsorbed, the silicon steel sheet falls onto the receiving disc 82.22, then the rack 82.215 is driven by the receiving cylinder 82.215 to descend to realize reset, namely the magnet frame 82.215 descends to reset, the adsorption of the next silicon steel sheet is carried out, so reciprocation is realized, after the rack 82.215 ascends, the rack 82.215 is locked through the locking piece 82.215, so that the stress of the rack 82.215 is reduced, and the service life of the rack 82.215 is prolonged;
the retaining member 82.2154 comprises a retaining rod 82.21541, a retaining groove 82.21542 matched with the retaining rod 82.21541 is formed in one side of the rack 82.2153, the retaining rod 82.21541 is inserted into the retaining groove 82.21542, a retaining cylinder 82.21543 is arranged on the retaining rod 82.21541, the output end of the retaining cylinder 82.21543 is connected with the retaining rod 82.21541, a cylinder body of the retaining cylinder 82.21543 is fixedly connected with the receiving seat 82.211, the retaining cylinder 82.21543 drives the retaining rod 82.21541 to move, the retaining cylinder 82.21543 drives the retaining rod 82.21541 to be separated from the retaining groove 82.21542 before the rack 82.2153 descends, after the rack 82.2153 ascends, the retaining cylinder 82.21543 drives the retaining rod 82.21541 to reversely move and insert into the retaining groove 82.21542, and locking of the rack 82.2153 is achieved through cooperation between the retaining rod 82.21541 and the retaining groove 82.21542.
The locking member 82.2154 further comprises two guide blocks 82.21544, the guide blocks 82.21544 are in one-to-one correspondence with the racks 82.2153, the guide blocks 82.21544 are fixedly connected with the material receiving seat 82.211, the guide blocks 82.21544 are provided with guide rods 82.21545 in a penetrating mode, and the guide rods 82.21545 are fixedly connected with the locking rods 82.21541.
The driving medium 82.2152 includes fixed case 82.21521 fixedly disposed on receiving seat 82.211, wears to be equipped with on fixed case 82.21521 and receives material transmission shaft 82.21522, and the output of receiving cylinder 82.2151 is articulated with receiving transmission shaft 82.21522 through the connecting rod 82.21523 that the slope set up, installs on receiving transmission shaft 82.21522 and receives material gear 82.21524, and receiving gear 82.21524 is located fixed case 82.21521, and rack 82.2153 passes fixed case 82.21521, and rack 82.2153 meshes with receiving gear 82.21524, and two receiving transmission shafts 82.21522 in the same lifter 82.215 are connected through receiving shaft coupling 82.21525, and when receiving cylinder 82.2151 started, promotes receiving transmission shaft 82.21522 rotation through connecting rod 82.21523, and receiving transmission shaft 82.21522's rotation drives rack 82.2153 through receiving gear 82.21524 and goes up and down.
The both sides of fixed box 82.21521 all are provided with receipts material transmission shaft 82.21522 bearing, and the inner circle of receipts material transmission shaft 82.21522 bearing is installed on receipts material transmission shaft 82.21522, and the outer lane of receipts material transmission shaft 82.21522 bearing passes fixed box 82.21521 and with fixed box 82.21521 fixed connection.
The material distribution assembly 81 sorts and conveys the transversely sheared silicon steel sheets to the material receiving assembly 82 for storage, the material distribution assembly 81 is started simultaneously mainly through an upper material distribution assembly 81 conveying assembly motor and a lower material distribution assembly 81 conveying assembly motor, the upper material distribution assembly 81 conveying belt 72 and the lower material distribution assembly 81 conveying belt 72 are driven to operate simultaneously, a cylinder of the material distribution assembly 81 acts, a rotating shaft of the material distribution assembly 81 is driven to rotate, namely, the material distribution assembly 81 is driven to overturn, when the material distribution assembly is overturned upwards, an upper inclined plate of the material distribution assembly is matched with a baffle plate of the material distribution assembly 81 to introduce the silicon steel sheets onto the material distribution assembly 81 conveying belt 72 located above, and when the material distribution assembly is overturned downwards, a lower inclined plate of the material distribution assembly is matched with a material distribution assembly 81 supporting plate to introduce the silicon steel sheets onto the material distribution assembly 81 conveying belt 72 located below.
In addition to the above embodiments, the present utility model also includes other embodiments, and all technical solutions that are formed by equivalent transformation or equivalent substitution should fall within the protection scope of the claims of the present utility model.

Claims (8)

1. The utility model provides a reason material device for horizontal shear production line, includes feed divider (81) and receipts material subassembly (82) that connect gradually along silicon steel sheet machine direction, receipts material subassembly (82) include two lift units (82.1) that set gradually along silicon steel sheet machine direction, be provided with two receipts material units (82.2) of arranging from top to bottom between two lift units (82.1), lift unit (82.1) drive receipts material unit (82.2) go up and down, receipts material unit (82.2) include receipts material spare (82.21) and receipts material dish (82.22) of arranging from top to bottom, receipts material spare (82.21) include receipts material seat (82.211) and receipts material belt (82.212) of setting on receipts material seat (82.211), receipts material belt (82.212) are through receipts material drive part (82.213), be provided with magnet frame (82.214) on receipts material belt (82.212) inside wall, characterized in that magnet frame (82.214) are provided with the receipts material spare (82.21) and receive material spare (5232) are passed through two cylinder (5232) and are received material seat (5272) are received through to the receipts material (5272) are cut in proper order to the cylinder body (5232), and two cylinders (5232) are received material seat (5272) and are received material seat (4639) and are received in the direction respectively, the rack (82.2153) is vertically and fixedly arranged at the top of the magnet frame (82.214), the lifting piece (82.215) further comprises a locking piece (82.2154), the locking piece (82.2154) is used for locking the rack (82.2153), and the receiving belt (82.212) is driven to move through the receiving driving component (82.213).
2. A material handling apparatus for a shear line according to claim 1, wherein: the receiving tray (82.22) is provided with a translation part (82.23), and the translation part (82.23) drives the receiving tray (82.22) to horizontally move.
3. A material handling apparatus for a shear line according to claim 1, wherein: the utility model provides a locking piece (82.2154) is including locking lever (82.21541), one side of rack (82.2153) is provided with locking groove (82.21542), locking lever (82.21541) inserts locking groove (82.21542), be provided with locking cylinder (82.21543) on locking lever (82.21541), the output and the locking lever (82.21541) of locking cylinder (82.21543) are connected, the cylinder body and the receipts material seat (82.211) fixed connection of locking cylinder (82.21543), locking cylinder (82.21543) drive locking lever (82.21541) remove, before rack (82.2153) decline, locking cylinder (82.21543) drive locking lever (82.21541) and locking groove (82.21542) separation.
4. A material handling apparatus for a shear line according to claim 3, wherein: the locking groove (82.21542) is matched with the locking rod (82.21541).
5. A material handling apparatus for a shear line according to claim 3, wherein: the locking piece (82.2154) further comprises two guide blocks (82.21544), the guide blocks (82.21544) are in one-to-one correspondence with the racks (82.2153), the guide blocks (82.21544) are fixedly connected with the material receiving seat (82.211), guide rods (82.21545) are arranged on the guide blocks (82.21544) in a penetrating mode, and the guide rods (82.21545) are fixedly connected with the locking rods (82.21541).
6. A material handling apparatus for a shear line according to claim 1, wherein: the transmission piece (82.2152) comprises a fixed box (82.21521) fixedly arranged on a material collecting seat (82.211), a material collecting transmission shaft (82.21522) is arranged on the fixed box (82.21521) in a penetrating mode, the output end of the material collecting cylinder (82.2151) is hinged to a material collecting transmission shaft (82.21522) through a connecting rod (82.21523) arranged in an inclined mode, a material collecting gear (82.21524) is arranged on the material collecting transmission shaft (82.21522), the material collecting gear (82.21524) is located in the fixed box (82.21521), a rack (82.2153) penetrates through the fixed box (82.21521), and the rack (82.2153) is meshed with the material collecting gear (82.21524).
7. The material handling device for a transverse shearing line as recited in claim 6, wherein: two material collecting transmission shafts (82.21522) in the same lifting piece (82.215) are connected through a material collecting coupler (82.21525).
8. The material handling device for a transverse shearing line as recited in claim 6, wherein: the two sides of the fixed box (82.21521) are respectively provided with a material collecting transmission shaft (82.21522) bearing, the inner ring of the material collecting transmission shaft (82.21522) bearing is arranged on the material collecting transmission shaft (82.21522), and the outer ring of the material collecting transmission shaft (82.21522) bearing penetrates through the fixed box (82.21521) and is fixedly connected with the fixed box (82.21521).
CN202223089784.9U 2022-11-22 2022-11-22 Material arranging device for transverse shearing production line Active CN219193805U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223089784.9U CN219193805U (en) 2022-11-22 2022-11-22 Material arranging device for transverse shearing production line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223089784.9U CN219193805U (en) 2022-11-22 2022-11-22 Material arranging device for transverse shearing production line

Publications (1)

Publication Number Publication Date
CN219193805U true CN219193805U (en) 2023-06-16

Family

ID=86704094

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223089784.9U Active CN219193805U (en) 2022-11-22 2022-11-22 Material arranging device for transverse shearing production line

Country Status (1)

Country Link
CN (1) CN219193805U (en)

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