CN218428817U - Printer cross cutting subassembly - Google Patents

Printer cross cutting subassembly Download PDF

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Publication number
CN218428817U
CN218428817U CN202222373538.XU CN202222373538U CN218428817U CN 218428817 U CN218428817 U CN 218428817U CN 202222373538 U CN202222373538 U CN 202222373538U CN 218428817 U CN218428817 U CN 218428817U
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China
Prior art keywords
supporting
moving block
fixed
threaded
rod
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Application number
CN202222373538.XU
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Chinese (zh)
Inventor
朱刘帅
王治国
王小峰
郑跃辉
李芳�
张莉
张俊艳
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HENAN WODAFENG DIGITAL TECHNOLOGY CO LTD
Henan Mingheng Power Equipment Co ltd
Original Assignee
HENAN WODAFENG DIGITAL TECHNOLOGY CO LTD
Henan Mingheng Power Equipment Co ltd
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Application filed by HENAN WODAFENG DIGITAL TECHNOLOGY CO LTD, Henan Mingheng Power Equipment Co ltd filed Critical HENAN WODAFENG DIGITAL TECHNOLOGY CO LTD
Priority to CN202222373538.XU priority Critical patent/CN218428817U/en
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Abstract

The utility model discloses a printer cross cutting subassembly relates to the printer field, including supporting the curb plate, a side symmetric welding of supporting the curb plate has fixed side piece, fixed through hole has been seted up to the top surface of fixed side piece, the top surface level of supporting the curb plate has seted up top joint groove, the top surface of supporting the curb plate is to having docked the top movable block, the side is pegged graft between the movable block and is supported the horizontal pole, the outside limit of supporting the horizontal pole has cup jointed and has been moved the piece, the top surface bolted connection who cup joints and move the piece has adjust cylinder, the bottom surface that cup joints and moves the piece is docked perpendicularly downwards and has fixed loop bar, the bottom of fixed loop bar is pegged graft perpendicularly downwards and is had the extension rod, the bottom surface of top movable block is welded perpendicularly downwards and is equipped with bottom joint piece. The utility model discloses device design simple structure is easy and simple to handle, has adopted the components of a whole that can function independently structure to make portable installation operation, makes simultaneously in many drive operation can carry out the cutting operation that the multi-angle was relieved more.

Description

Printer cross cutting subassembly
Technical Field
The utility model relates to a printer technical field specifically is a printer cross cutting subassembly.
Background
A printer is one of the output devices of a computer for printing the results of a computer process on an associated medium. The die cutting is a cutting process for the post processing of the printed matter, and the die cutting process can cut the printed matter or other paper products according to a pre-designed figure, so that the shape of the printed matter is not limited to a straight edge and a right angle.
The existing die cutting structure for the printer is an integrated structure, so that the installation is limited to a certain extent, and meanwhile, the operation is limited by an angle or a path, so that the cutting operation cannot be met, and the operation and the use of the existing printer are not facilitated.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a printer cross cutting subassembly to the cross cutting structure who proposes to present printer in solving above-mentioned background art is the integral structure, makes and receives certain restriction during the installation, receives the restriction on angle or route and can't satisfy the operation of cutting when carrying out the operation simultaneously, is unfavorable for the problem of present printer operation use.
In order to achieve the above object, the utility model provides a following technical scheme:
the utility model provides a printer cross cutting subassembly, includes the support curb plate, one side symmetry welding of support curb plate has fixed side piece, fixed through-hole has been seted up to the top surface of fixed side piece, the top surface level of support curb plate has seted up top joint groove, the top surface butt joint of support curb plate has a top movable block, the side is pegged graft between the top movable block and has been had a support horizontal pole, the outside limit of support horizontal pole has cup jointed and has moved the piece, the top surface bolted connection that cup joints and move the piece has adjusting cylinder, the bottom surface of cup jointing and has been docked perpendicularly downwards fixed loop bar, the bottom of fixed loop bar has been pegged graft perpendicularly downwards and has been had the extension rod, the bottom surface of top movable block welds perpendicularly downwards and has a bottom joint piece, the top surface symmetry joint of bottom joint piece has the drive wheel, the bottom joint piece's bottom surface evenly joint has a bottom roll ball, a side screw hole has been seted up to one side symmetry of top movable block, the both ends symmetry welding of support horizontal pole has had the end screw rod, the side symmetry has seted up the cup joints through-hole, the inboard symmetry joint of cup joints of through-hole has the bottom screw thread joint of the bottom rod, the cutting of the bottom joint piece has the bottom thread joint of the bottom rod.
As a preferred embodiment of the present invention: the number of the supporting side plates is two, the two supporting side plates are arranged in parallel, the fixed side blocks are respectively arranged at two ends of one side of each supporting side plate in a pairwise mode, the top clamping groove is horizontally arranged at the central line position of the top surface of each supporting side plate, the number of the top moving blocks and the number of the supporting side plates are in consistent arrangement, and the bottom surfaces of the top moving blocks are in butt joint with the top opening end of the top clamping groove in a one-to-one correspondence mode.
As a preferred embodiment of the present invention: the number of the supporting cross rods is two, the two supporting cross rods are arranged in parallel, the two supporting cross rods are horizontally and fixedly arranged on the side of the top moving block and close to the two ends, the adjusting cylinder is vertically and fixedly arranged on the center of the top surface of the sleeve moving block, the output end of the adjusting cylinder vertically and downwards penetrates through the inner side edge of the vertical groove, and the output end of the adjusting cylinder extends and is welded to the top end of the extension rod.
As a preferred embodiment of the present invention: the top end of the fixed sleeve rod is vertically upwards butted at the bottom opening end position of the bottom threaded groove, the fixed sleeve rod and the extension rod are arranged in a telescopic rod structure, the top end of the bottom clamping block is fixedly arranged at the center position of the bottom surface of the top moving block, and the bottom clamping block is respectively clamped on the inner side edge of the top clamping groove in a one-to-one correspondence mode.
As a preferred embodiment of the present invention: the bottom butt joint of end roll ball sets up the inboard bottom surface position at top joint groove, and the side screw hole symmetry is seted up and is close to both ends position at one side of top movable block, and the equal level one-to-one of one end of end screw rod is pegged graft and is set up in the inboard side of side screw hole, and the inboard side of grafting end and side screw hole keeps screw thread fixed connection to set up, cup joints the parallel level of through-hole symmetry and sets up and cup joint the side that moves the piece and be close to both sides limit position, and cup joints the through-hole and cup joint the outside limit that sets up at the support horizontal pole respectively one-to-one level.
As a preferred embodiment of the present invention: the side extrusion formula of wheel sets up in the drive and is supporting the outside limit of horizontal pole, runs through and erects the groove vertical to running through the formula and offer and cup joint the central point that moves the piece and put, and end thread groove is the cyclic annular and offers and is close to the end opening end edge position that runs through and erect the groove, and the setting of pegging graft of top thread ring is passed through screw thread fixed connection at the inboard limit in end thread groove.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a to support the curb plate and place the inboard assigned position of printer, it fixes at the assigned position to let fixed side piece after through the bolt through fixed orifices, the drive wheel is being controlled in the inboard side rotation effect in top joint groove, make end joint block move the effect in the inboard side in top joint groove, make simultaneously in the drive under the rotation of wheel make to drive to cup joint and move the piece and carry out the level to the removal operation in the outside limit that supports the horizontal pole, and when needs are to its cutting, then adjust the cylinder promotes downwards and is making to drive the bottom downwardly extending of extension rod from fixed loop bar to assigned length, let the cutting wheel carry out cutting operation to appointed treatment, device design structure is simple and convenient to operate, make portable installation operation adopting the components of a whole that can function independently structure, make the cutting operation that can carry out the multi-angle and put one's mind at many drive operations simultaneously.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 is a schematic perspective view of a die cutting assembly of a printer;
FIG. 2 is a schematic diagram of a side view cross-sectional connection detail of a support side panel of a die cut assembly of a printer;
FIG. 3 is a schematic diagram of a top moving block side view cross-sectional connection detail of a printer die cutting assembly;
FIG. 4 is a schematic diagram of a side cross-sectional connection detail of a female transfer block of a die cut component of a printer;
FIG. 5 is a schematic diagram of a top cross-sectional view of a connecting detail of a female transfer block of a die cutting assembly of a printer;
fig. 6 is a schematic structural view of a front section connection detail of a fixed sleeve rod of a die cutting assembly of a printer.
In the figure: 1. supporting the side plates; 2. fixing the side block; 3. a fixing through hole; 4. a top clamping groove; 5. pushing the moving block; 6. a support rail; 7. sleeving a moving block; 8. an adjusting cylinder; 9. fixing the loop bar; 10. an extension rod; 11. a bottom clamping block; 12. a drive wheel; 13. a bottom rolling ball; 14. a side threaded bore; 15. an end screw; 16. sleeving a through hole; 17. a drive inner wheel; 18. penetrates through the vertical groove; 19. a bottom thread groove; 20. a top threaded ring; 21. and (4) cutting the wheel.
Detailed Description
Referring to fig. 1-2, in an embodiment of the present invention, a die cutting assembly for a printer includes a supporting side plate 1, a fixed side block 2 symmetrically welded to one side of the supporting side plate 1, a fixed through hole 3 formed on a top surface of the fixed side block 2, a top clamping groove 4 horizontally formed on a top surface of the supporting side plate 1, a top moving block 5 abutting against the top surface of the supporting side plate 1, two supporting side plates 1, the two supporting side plates 1 are arranged in parallel, the fixed side blocks 2 are respectively horizontally and fixedly arranged at two ends of one side of each supporting side plate 1 in a group of two, the top clamping groove 4 is horizontally arranged at the central line position of the top surface of each supporting side plate 1, the number of the top moving blocks 5 is consistent with that of the supporting side plates 1, the bottom surfaces of the two supporting cross rods 6 are correspondingly butted with the top opening end of the top clamping groove 4 one by one, the side edges between the top moving blocks 5 are inserted with supporting cross rods 6, the outer side edges of the supporting cross rods 6 are sleeved with sleeved moving blocks 7, the top surfaces of the sleeved moving blocks 7 are connected with adjusting cylinders 8 through bolts, the number of the supporting cross rods 6 is two, the two supporting cross rods 6 are arranged in parallel, the two supporting cross rods 6 are horizontally and fixedly arranged at the positions of the side edges of the top moving block 5 close to the two ends, the adjusting cylinder 8 is vertically and fixedly arranged at the central position of the top surface of the sleeving moving block 7, an output end of the adjusting cylinder 8 vertically penetrates through the inner side edge of the vertical groove 18 downwards, the output end is arranged at the top end of an extension rod 10 in an extending and welding mode, a fixed loop rod 9 is vertically and downwards butted on the bottom surface of the sleeving moving block 7, the extension rod 10 is vertically and downwards inserted at the bottom end of the fixed loop rod 9, the top end of the fixed loop rod 9 is vertically and upwards butted at the bottom opening end position of a bottom threaded groove 19, and the fixed loop rod 9 and the extension rod 10 are arranged in a telescopic rod structure;
referring to fig. 3-6, in an embodiment of the present invention, a die-cutting assembly for a printer is provided, wherein a bottom clamping block 11 is vertically welded downward to a bottom surface of a top moving block 5, a top end of the bottom clamping block 11 is fixedly disposed at a central position of the bottom surface of the top moving block 5, the bottom clamping blocks 11 are respectively and correspondingly clamped at inner sides of top clamping grooves 4, driving wheels 12 are symmetrically clamped at top surfaces of the bottom clamping blocks 11, bottom rolling balls 13 are uniformly clamped at bottom surfaces of the bottom clamping blocks 11, side threaded holes 14 are symmetrically formed at one side of the top moving block 5, end screws 15 are symmetrically welded at two ends of a supporting cross bar 6, socket through holes 16 are symmetrically formed at sides of socket moving blocks 7, bottom ends of the bottom rolling balls 13 are butt-jointed at inner bottom positions of the top clamping grooves 4, the side threaded holes 14 are symmetrically formed at one side of the top moving block 5 near two ends, one end of an end screw rod 15 is horizontally and correspondingly spliced on the inner side of the side threaded hole 14 one by one, the splicing end and the inner side of the side threaded hole 14 are fixedly connected and arranged in a threaded manner, the splicing through holes 16 are symmetrically, parallelly and horizontally arranged on the side edge of the splicing moving block 7 close to the two side edges, the splicing through holes 16 are respectively horizontally and correspondingly spliced on the outer side edge of the supporting cross rod 6 one by one, the inner side edge of the splicing through hole 16 is symmetrically clamped with a driving inner wheel 17, the top surface of the splicing moving block 7 is vertically provided with a through vertical groove 18, the bottom surface of the splicing moving block 7 is provided with a bottom threaded groove 19, the top end of the fixed sleeve rod 9 is welded with a top threaded ring 20, the side extrusion type of the driving inner wheel 17 is arranged on the outer side edge of the supporting cross rod 6, the through vertical groove 18 is vertically arranged at the central position of the splicing moving block 7 in a penetrating manner, the bottom threaded groove 19 is annularly arranged at the edge position of the bottom opening close to the through vertical groove 18, the top thread ring 20 is inserted and arranged on the inner side edge of the bottom thread groove 19 through thread fixed connection, and the bottom end of the extension rod 10 is clamped with a cutting wheel 21.
The components are standard parts in general or known to those skilled in the art, and their structure and principle are known to those skilled in the art through technical manuals or through routine experimentation.
The utility model discloses a theory of operation is:
to support curb plate 1 and place the inboard assigned position of printer, it fixes at the assigned position to run through behind the fixing hole 3 to let fixed side piece 2 through the bolt, control drive wheel 12 and rotate the effect at the inboard edge of top joint groove 4, make end joint block 11 move the effect at the inboard edge of top joint groove 4, make simultaneously in the drive under 17's the rotation in the drive to cup joint and move piece 7 and carry out the level to the removal operation at the outside limit that supports horizontal pole 6, and when needs are to its cutting, then adjust cylinder 8 promotes downwards and makes and drive the bottom downwardly extending of extension rod 10 from fixed loop bar 9 to assigned length, let cutting wheel 21 carry out the cutting operation to appointed treatment.
The above-mentioned, only be the embodiment of the preferred of the present invention, nevertheless the utility model discloses a protection scope is not limited to this, and any technical personnel familiar with this technical field is in the technical scope of the utility model discloses an according to the utility model discloses a technical scheme and utility model design in addition the replacement of equality or change, all should be covered within the protection scope of the utility model.

Claims (6)

1. The die cutting assembly of the printer comprises a supporting side plate (1), and is characterized in that fixed side blocks (2) are symmetrically welded on one side of the supporting side plate (1), fixed through holes (3) are formed in the top surface of the fixed side blocks (2), a top clamping groove (4) is horizontally formed in the top surface of the supporting side plate (1), a top moving block (5) is in butt joint with the top surface of the supporting side plate (1), a supporting cross rod (6) is inserted between the top moving blocks (5), a sleeve moving block (7) is sleeved on the outer side edge of the supporting cross rod (6), an adjusting cylinder (8) is in bolted connection with the top surface of the sleeve moving block (7), a fixed sleeve rod (9) is vertically and downwards butted on the bottom surface of the sleeve moving block (7), an extension rod (10) is vertically and downwards inserted on the bottom end of the fixed sleeve rod (9), a bottom clamping block (11) is vertically and downwards welded on the bottom surface of the top moving block (5), a bottom clamping block (11) is symmetrically clamped with a driving wheel (13), two symmetrical side ends of the top moving block (7) are symmetrically welded with a top threaded hole (16), and two symmetrical ends of the moving block (6) are sleeved with a bottom threaded rod (7), cup joint the inboard side symmetry joint of through-hole (16) and have interior wheel of drive (17), cup joint the top surface that moves piece (7) and vertically to having seted up and run through perpendicular groove (18), cup joint the bottom surface that moves piece (7) and seted up end screw thread groove (19), the top welding of fixed loop bar (9) has top threaded ring (20), the bottom joint of extension rod (10) has cutting wheel (21).
2. The die cutting assembly of the printer according to claim 1, wherein the number of the supporting side plates (1) is two, the two supporting side plates (1) are arranged in parallel, the fixed side blocks (2) are horizontally and fixedly arranged at two ends of one side of each supporting side plate (1) in a group of two, the top clamping grooves (4) are horizontally arranged at the central line position of the top surface of each supporting side plate (1), the number of the top moving blocks (5) is consistent with that of the supporting side plates (1), and the bottom surfaces of the top clamping grooves (4) are correspondingly butted with each other at the top opening end of each supporting side plate (1).
3. The printer die-cutting assembly according to claim 1, wherein the number of the supporting cross bars (6) is two, the two supporting cross bars (6) are arranged in parallel, the two supporting cross bars (6) are horizontally and fixedly arranged at positions close to two ends of the side edge of the top moving block (5), the adjusting cylinder (8) is vertically and fixedly arranged at the center of the top surface of the sleeved moving block (7), the output end of the adjusting cylinder (8) vertically and downwardly penetrates through the inner side edge of the vertical groove (18), and the output end is welded at the top end of the extending rod (10).
4. The printer die-cutting assembly according to claim 1, wherein the top end of the fixed sleeve rod (9) is vertically and upwardly butted against the bottom opening end of the bottom threaded groove (19), the fixed sleeve rod (9) and the extension rod (10) are arranged in a telescopic rod structure, the top end of the bottom clamping block (11) is fixedly arranged at the center of the bottom surface of the top moving block (5), and the bottom clamping blocks (11) are correspondingly clamped on the inner side edges of the top clamping grooves (4) one by one respectively.
5. The die cutting assembly of the printer according to claim 1, wherein the bottom ends of the bottom rolling balls (13) are butt-jointed and arranged at the inner bottom surface position of the top clamping groove (4), the side threaded holes (14) are symmetrically formed at one side edge of the top moving block (5) close to the two end positions, one ends of the end threaded rods (15) are horizontally and correspondingly inserted and arranged at the inner side edge of the side threaded holes (14), the inserting ends and the inner side edge of the side threaded holes (14) are fixedly connected and arranged in a threaded manner, the sleeving through holes (16) are symmetrically, parallelly and horizontally formed at the side edge of the sleeving moving block (7) close to the two side edges, and the sleeving through holes (16) are horizontally sleeved and arranged at the outer side edge of the supporting cross bar (6) in a one-to-one correspondence manner.
6. The printer die-cutting assembly as claimed in claim 1, wherein the side edge of the driving inner wheel (17) is arranged on the outer side edge of the supporting cross bar (6) in an extrusion mode, the penetrating vertical groove (18) is vertically arranged at the central position of the sleeving moving block (7) in a penetrating mode, the bottom threaded groove (19) is arranged at the edge position of the bottom opening end close to the penetrating vertical groove (18) in an annular mode, and the top threaded ring (20) is arranged on the inner side edge of the bottom threaded groove (19) in an insertion mode through thread fixed connection.
CN202222373538.XU 2022-09-07 2022-09-07 Printer cross cutting subassembly Active CN218428817U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222373538.XU CN218428817U (en) 2022-09-07 2022-09-07 Printer cross cutting subassembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222373538.XU CN218428817U (en) 2022-09-07 2022-09-07 Printer cross cutting subassembly

Publications (1)

Publication Number Publication Date
CN218428817U true CN218428817U (en) 2023-02-03

Family

ID=85103662

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222373538.XU Active CN218428817U (en) 2022-09-07 2022-09-07 Printer cross cutting subassembly

Country Status (1)

Country Link
CN (1) CN218428817U (en)

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