LU503546B1 - Binding Apparatus Based on Audit Management - Google Patents

Binding Apparatus Based on Audit Management Download PDF

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Publication number
LU503546B1
LU503546B1 LU503546A LU503546A LU503546B1 LU 503546 B1 LU503546 B1 LU 503546B1 LU 503546 A LU503546 A LU 503546A LU 503546 A LU503546 A LU 503546A LU 503546 B1 LU503546 B1 LU 503546B1
Authority
LU
Luxembourg
Prior art keywords
assembly
base
bracket
files
gear
Prior art date
Application number
LU503546A
Other languages
German (de)
Inventor
Dandan Guo
Original Assignee
Univ Zhengzhou Aeronautics
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 Univ Zhengzhou Aeronautics filed Critical Univ Zhengzhou Aeronautics
Application granted granted Critical
Publication of LU503546B1 publication Critical patent/LU503546B1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42CBOOKBINDING
    • B42C19/00Multi-step processes for making books
    • B42C19/02Multi-step processes for making books starting with single sheets
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42BPERMANENTLY ATTACHING TOGETHER SHEETS, QUIRES OR SIGNATURES OR PERMANENTLY ATTACHING OBJECTS THERETO
    • B42B4/00Permanently attaching together sheets, quires or signatures by discontinuous stitching with filamentary material, e.g. wire
    • B42B4/02Rotary type stitching machines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H37/00Article or web delivery apparatus incorporating devices for performing specified auxiliary operations
    • B65H37/04Article or web delivery apparatus incorporating devices for performing specified auxiliary operations for securing together articles or webs, e.g. by adhesive, stitching or stapling

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Portable Nailing Machines And Staplers (AREA)

Abstract

The present invention offers a binding apparatus based on audit management, belonging to the technical field of file binding and comprising a base, a layering assembly, a transmission assembly, and a drive assembly, wherein the drive assembly is arranged at a side of the base and used to drive staples to move towards the base and bind a stack of files on the side of the base, the layering assembly is arranged at the side of the base, an end of the transmission assembly is connected to an output end of the drive transmission, another end of the transmission assembly is connected to the layering assembly, so as to transfer a drive force of the drive assembly to the layering assembly. Compared with the prior art, embodiments of the present invention divide a stack of files into a plurality of thinner layers of files in a binding process.

Description

DESCRIPTION 0503566
Binding Apparatus Based on Audit Management
Technical Field
The present invention belongs to the technical field of file binding, in particular to a binding apparatus based on audit management.
Background Technology
At present, when audit management work is conducted, it is usually necessary to bind paper files recording audit information into books for easy viewing.
In the prior art, the binding of paper files is mostly accomplished by binding machines. When existing binding machines operate, press mechanisms thereof apply pressure to staples so that staples penetrate layers of files for bookbinding. However, the thicker the files, the greater the resistance when the staples penetrate, then the staples are prone to bending or even breaking, which makes files unable to be bound smoothly, and also easily cause damage to files.
Summary of the Invention
In view of deficiencies and technical problems in the prior art above, embodiments of the present invention provides a binding apparatus based on audit management.
In order to solve the above technical problems, the present invention has following technical solutions:
A binding apparatus based on audit management comprises a base, a layering assembly, a transmission assembly, and a drive assembly, wherein the drive assembly is arranged at a side of the base and used to drive staples to move towards the base and bind a stack of files on the side of the base, the layering assembly 1s arranged at the side of the base, an end of the transmission assembly 1s connected to an output end of the drive transmission, another end of the transmission assembly is connected to the layering assembly for transferring a drive force of the drive assembly to the layering assembly, so as to drive the layering assembly to rotate, and then divide the stack of files at the side of the base into a plurality of thinner layers of files.
As a further improved technical solution of the present invention, the side of the base is fixedly 909546 provided with a first bracket; the drive assembly comprises a motor, a threaded sleeve and a screw; the motor is fixedly arranged on an inner wall of the first bracket, an end of the threaded sleeve is connected with an output end of the motor, and another end thereof is arranged outside the screw and in threaded cooperation with the screw; and an end of the screw away from the threaded sleeve is fixedly provided with a press block, and at a side of the press block away from the screw are provided notches into which the staples could be embedded.
As a further improved technical solution of the present invention, at a side of the press block is fixedly provided a slide block, and on an inner wall of the first bracket is fixedly provided a first guide rail, and the slide block is in sliding cooperation with the first guide rail.
As a further improved technical solution of the present invention, the layering assembly comprises a rotating shaft and a plurality of partition plates; an end of the rotating shaft is rotationally connected with the base, another end of the rotating shaft is rotationally connected with the first bracket, the plurality of partition plates are fixedly arranged outside the rotating shaft and distributed at intervals along a length direction of the rotating shaft, and every adjacent two groups of the partition plates are arranged in a misalignment with each other; the transmission assembly comprises a first gear, a second gear and a rack; the first gear is fixedly arranged outside the threaded sleeve, the second gear is fixedly arranged outside the rotating shaft, and the rack is slidingly arranged on an inner wall of the first bracket and synchronously meshes with the first gear and the second gear
As a further improved technical solution of the present invention, the rack comprises a support rod, a plurality of first toothed pieces and a plurality of second toothed pieces; the plurality of first toothed pieces are fixedly arranged at a side of the support rod and distributed at intervals, and the plurality of first toothed pieces mesh with the first gear; the plurality of second toothed pieces are hinged at the side of the support rod and distributed at intervals, the plurality of the second toothed pieces mesh with the second gear; sides of the plurality of second toothed pieces are provided with second elastic members which are connected to the support rod through; and 10503568 at a side of the support rod far away from the first toothed pieces and the second toothed pieces are opened a guide rail groove, and on an inner wall of the first bracket is further fixed a second guide rail matching with the guide rail groove.
As a further improved technical solution of the present invention, at the side of the base is further provided a limit assembly, and the limit assembly is used to limit the stack of files at the side of the base.
As a further improved technical solution of the present invention, at the limit assembly comprises a guide rod, a second bracket, a first elastic member and a press plate; the second bracket is fixedly arranged at the side of the base, the press plate is arranged at an inner side of the second bracket, an end of the guide rod is fixedly connected with the press plate, another end of the guide rod penetrates the second bracket and movably cooperates with the second bracket; and an end of the first elastic member is connected with the press plate, and another end of the first elastic member is connected with the second bracket, so as to provide elastic support for the press plate.
As a further improved technical solution of the present invention, on the partition plates are provided slots matched with the staples.
Compared to the prior art, the present invention has following beneficial effects:
In embodiments of the present invention, when a stack of files need to be bound, the stack of files are placed neatly at a side of a base firstly, then staples are driven to move towards the base through a drive assembly, so that staples penetrate through the stack of files to accomplish binding files, while the drive assembly drives the staples to move, the transmission assembly also drives a layering assembly to rotate, so as to divide thick layers on one side into several thinner file layers. Compared with the prior art, embodiments of the present invention divide a stack of files into a plurality of thinner layers of files in a binding process, thereby reducing resistance when staples pierce into layers of files, preventing staples from bending or breaking in the binding process, ensuring that staples can smoothly penetrate through all layers of files, and achieving improved binding effect of files.
Brief Description of the Drawings 0503566
Figure 1 is a schematic structural diagram of a binding apparatus based on audit management;
Figure 2 is a schematic structural diagram of a layering assembly in the binding apparatus based on audit management;
Figure 3 is a schematic structural diagram of a transmission assembly in the binding apparatus based on audit management; and
Figure 4 is an enlarged structural diagram of part “A” in Figure 1.
The markups in the drawings are indicated as follows: 10-base, 20-first bracket, 30-limit assembly, 301-guide rail, 302-second bracket, 303-first elastic member, 804-press plate, 40-layering assembly, 401-rotating shaft, 402-partition plate, 403-slot, 50-staple, 60-transmission assembly, 601-first gear, 602-second gear, 603-supoort rod, 604-guide rail groove, 605-first toothed piece, 606-second elastic member, 607-second toothed piece, 70-drive assembly, 701-motor, 702-threaded sleeve, 703-screw, and 704-press block.
Specific Embodiments
The technical solutions of the present invention are described in further details below in conjunction with specific embodiments.
Embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, where identical or similar labels throughout indicate identical or similar components or components having identical or similar functions. The embodiments described below by referring to the accompanying drawings are exemplary, which are only used to explain the present invention and cannot be construed as limiting the present invention.
Please refer to figure 1, an embodiment of the present invention provides a binding apparatus based on audit management, comprising a base 10, a layering assembly 40, a transmission assembly 60, and a drive assembly 70, wherein the drive assembly 70 is arranged at a side of the base 10 and used to drive staples 50 to move towards the base 10 and bind a stack of files on the side of the base 10, the layering assembly 40 is arranged at the side of the base 10, an end of the 503546 transmission assembly 60 is connected to an output end of the drive transmission 70, another end of the transmission assembly 60 is connected to the layering assembly 40 for transferring a drive force of the drive assembly 70 to the layering assembly 40, so as to drive the layering assembly to rotate, and then divide the stack of files at the side of the base 10 into a plurality of thinner layers of files.
When a stack of files need to be bound, the stack of files are neatly placed on a side of the base 10, and staples are driven to move towards the base 10 through a drive assembly 70, so that staples 50 pierce into layers of the files to complete binding files, while the drive assembly 70 drives the staples 50 to move, the transmission assembly 60 also drives the layering assembly 40 to rotate, so as to divide the stack of the files on the side into several thinner layers of files, thereby reducing the resistance when staples 50 pierce into layers of files, preventing the staples from bending or breaking during the file binding process, ensuring that the staples 50 smoothly penetrate through layers of files, and achieving improved binding effect of files.
Please refer to figure 1 and figure 4, in an embodiment of the present invention, the side of the base 10 is fixedly provided with a first bracket 20, the drive assembly 70 comprises a motor 701, a threaded sleeve 702 and a screw 703, the motor 701 is fixedly arranged on an inner wall of the first bracket 20, an end of the threaded sleeve 702 is connected with an output end of the motor 701, and another end thereof is arranged outside the screw 703 and in threaded cooperation with the screw 703, an end of the screw 703 away from the threaded sleeve 702 is fixedly provided with a press block 704, and at a side of the press block away from the screw are provided notches into which the staples 50 can be embedded.
The motor 701 drives the threaded sleeve 702 to rotate, and the threaded sleeve 702 are in threaded cooperation with the screw 703 so as to drive the screw 703 extend out of the threaded sleeve 702, the press block 704 is then driven to move towards the base 10, and the staples 50 are driven to pierce into layers of files so as to complete the binding of files.
In an embodiment of the present invention, one side of the press block 704 is fixedly provided 203546 with a slide block (which is not shown in the figures), and an inner wall of the first bracket 20 is fixedly provided with a first guide rail (which is not shown in the figures), and the slide block is in sliding cooperation with the first guide rail, so that when the threaded sleeve 702 rotates, the screw 703 is smoothly and stably driven to move, and the staples 50 are driven to pierce into layers of files stably.
Please refer to figure 1 and figure 2, in an embodiment of the present invention, the layering assembly 40 comprises a rotating shaft 401 and a plurality of partition plates 402; an end of the rotating shaft 401 is rotationally connected with the base 10, another end of the rotating shaft 401 is rotationally connected with the first bracket 20, the plurality of partition plates 402 are fixedly arranged outside the rotating shaft 401 and distributed at intervals along a length direction of the rotating shaft 401, and every adjacent two groups of the partition plates 402 are arranged in a misalignment with each other; the transmission assembly 60 comprises a first gear 601, a second gear 602 and a rack; the first gear 601 is fixedly arranged outside the threaded sleeve 702, the second gear 602 is fixed fixedly arranged outside the rotating shaft 401, the rack is slidingly arranged on an inner wall of the first bracket 20 and synchronously meshes with the first gear 601 and the second gear 602.
When the threaded sleeve 702 rotates to drive the first gear 601 to rotate, the rack meshing with the first gear 601 is driven to slide on the inner wall of the first bracket 20, when the rack slides, the second gear 602 meshing with the rack is driven to rotate, thereby driving the rotating shaft 401 to rotate, when the rotating shaft 401 rotates, the plurality of partition plates 402 are driven to rotate and alternately insert into interior portions of layers of the files along a plane direction of files, so as to divide the stack of files into several thinner layers of files; the plurality of partition plates 402 insert into interior portions of the files and provide rigid support for layers of files facing the staples 50, so that the staples 50 pierce into layers of files smoothly. Through alternately inserting partition plates 402 into layers of files, resistance when the staples 50 piece into layers of files is reduced and the staples 50 are prevented from bending or breaking.
Please refer to figure3, in an embodiment of the present invention, the rack comprises a support 09946 rod 603, a plurality of first toothed pieces 605 and a plurality of second toothed pieces 607; the plurality of first toothed pieces 605 are fixedly arranged at a side of the support rod 603 and distributed at intervals, and the plurality of first toothed pieces 605 mesh with the first gear 601, the plurality of second toothed pieces 607 are hinged at the side of the support rod 603 and distributed at intervals, the plurality of the second toothed pieces 607 mesh with the second gear 602, at one side of the plurality of second toothed pieces 607 are connected the support rod 603 through second elastic members 606, at a side of the support rod 603 far away from the first toothed pieces 605 and the second toothed pieces 607 are opened a guide rail groove, on an inner wall of the first bracket 20 is further fixed a second guide rail matching with the guide rail groove.
When the threaded sleeve 702 rotates to drive the staples 50 to pierce into layers of files, the threaded sleeve 702 drives the first gear 601 to rotate, the first gear 601 meshes with the first toothed pieces 605 to drive the support rod 603 to slide relative to the second guide rail, the support rod 603 slide to rotate the rotating shaft 401 through the meshing effect of the second toothed pieces 607 and the second gear 602, and the plurality of partition plates 402 are driven to insert into interior portions of layers of files, thereby achieving layering the files, when the staples 50 pierce into layers of files, the motor 701 drives the threaded sleeve 702 to rotate reversely, then the screw 703 and the press block 704 are driven to move backward and away from the base 10 thereby realizing the reset of press block 704; when the threaded sleeve 702 rotates reversely, the first gear 601 is driven to rotate reversely, the first gear 601 meshes with the first toothed pieces so as to drive support rod 603 to slide backward, and the second toothed pieces 607 are driven to move backward, at this time, the plurality of the second toothed pieces 607 act on the second gear 602 in reverse, and the second toothed pieces 607 rotate in an opposite direction to the support rod 603, so that the second gear 602 cannot be pushed to rotate in the opposite direction, and the rotating shaft 401 and the partition plates 402 keep still, so as to prevent the partition plates 402 from inserting into the interior portions of layers of files again, and avoid causing damage to the staplers 50 when piercing into layers of files.
Please refer to figure 1, in an embodiment of the present invention, at the side of the base 10 TS 203546 further provided a limit assembly 30, and the limit assembly 30 1s used to limit the stack of files at the side of the base 10 and ensure that the staples 50 pierce into files stably and smoothly.
Please refer to figure 1, in an embodiment of the present invention, at the limit assembly 30 comprises a guide rod 301, a second bracket 302, a first elastic member 303 and a press plate 304; the second bracket 302 is fixedly arranged at the side of the base 10, the press plate 304 is arranged at an inner side of the second bracket 302, an end of the guide rod 301 1s fixedly connected with the press plate 304, another end of the guide rod 302 penetrates the second bracket 302 and movably cooperates with the second bracket 302; and an end of the first elastic member 303 is connected with the press plate 304, and another end of the first elastic member 303 is connected with the second bracket 302, so as to provide elastic support for the press plate 304.
The guide rod 301 is pulled so that the press plate 304 is driven to move, the first elastic member 303 1s compressed, then layers of files are placed inside the second bracket 302; and when the guide rod 301 is loosened, under the support of the first elastic member 303, the pressing plate 304 are pressed against the side of layers of files to ensure a stable binding process.
In an embodiment of the present invention, the first elastic member 303 and the second elastic members 606 may be springs or metal elastic pieces, which are not limited here.
Please refer to figure 2, in an embodiment of the present invention, on the partition plates 402 are all provided notches 403 matching with the staples 50, the notches 403 are arranged, so that, when the staples 50 pierce into layers of files on sides of the partition plates 402, the notches 403 are located at positions which the staplers 50 pass through, and pressure that the staples 50 exert on files of layers 1s adaptively transferred to inner portions of the notches 403, which enables the staples 50 to pierce into layers of files smoothly.
In embodiments of the present invention, when a stack of files need to be bound, the stack of files are placed neatly at the side of the base 10 firstly, and the staples 50 are driven to move 503546 towards the base 10 through the drive assembly 70, so that the staples 50 pierce into the stack of files to complete the binding of the files, while the drive assembly 70 drives the staples 50 to move, the transmission assembly 60 also drives the layering assembly 40 to rotate, so as to divide the stack of files on the side of the base 10 into thinner layers of files. Compared with the prior art, embodiments of the present invention divide a stack of files into a plurality of thinner layers of files in a binding process, thereby reducing resistance when the staples 50 pierce into layers of files, preventing staples from bending or breaking in the binding process, ensuring that staples can smoothly penetrate through layers of files, and achieving improved binding effect of files.
The preferred embodiments of the present invention has been described in detail above, but the present invention is not limited to the above-mentioned embodiments, and within the knowledge of those of ordinary skill in the art, various changes can also be made without departing from the purpose of the present invention.

Claims (8)

CLAIMS LU503546
1. À binding apparatus based on audit management, comprising a base, a layering assembly, a transmission assembly, and a drive assembly, wherein the drive assembly is arranged at a side of the base and used to drive staples to move towards the base and bind a stack of files on the side of the base, the layering assembly 1s arranged at the side of the base, an end of the transmission assembly is connected to an output end of the drive transmission, and another end of the transmission assembly 1s connected to the layering assembly for transferring a drive force of the drive assembly to the layering assembly, so as to drive the layering assembly to rotate, and then divide the stack of files at the side of the base into a plurality of thinner layers of files.
2. The binding apparatus based on audit management according to claim 1, wherein the side of the base is fixedly provided with a first bracket; the drive assembly comprises a motor, a threaded sleeve and a screw; the motor is fixedly arranged on an inner wall of the first bracket, an end of the threaded sleeve is connected with an output end of the motor, and another end of the threaded sleeve is arranged outside the screw and in threaded cooperation with the screw; and an end of the screw away from the threaded sleeve is fixedly provided with a press block, and at a side of the press block away from the screw are provided notches into which the staples could be embedded.
3. The binding apparatus based on audit management according to claim 2, wherein at a side of the press block is fixedly provided a slide block, and on an inner wall of the first bracket is fixedly provided a first guide rail, and the slide block is in sliding cooperation with the first guide rail.
4. The binding apparatus based on audit management according to claim 2, wherein the layering assembly comprises a rotating shaft and a plurality of partition plates; an end of the rotating shaft is rotationally connected with the base, another end of the rotating shaft is rotationally connected with the first bracket, the plurality of partition plates are fixedly arranged outside the rotating shaft and distributed at intervals along a length direction of the rotating shaft, and every adjacent two groups of the partition plates are arranged in a misalignment with each other; the transmission assembly comprises a first gear, a second gear and a rack; and the first gear is fixedly arranged outside the threaded sleeve, the second gear is fixedly arranged outside the rotating shaft, and the rack is slidingly arranged on an inner wall of the first bracket and synchronously meshes with the first gear and the second gear.
5. The binding apparatus based on audit management according to claim 4, wherein, the rack comprises a support rod, a plurality of first toothed pieces and a plurality of second toothed pieces; the plurality of first toothed pieces are fixedly arranged at a side of the support rod and distributed at intervals, and the plurality of first toothed pieces mesh with the first gear; the plurality of second toothed pieces are hinged at the side of the support rod and distributed at intervals, the plurality of the second toothed pieces mesh with the second gear; sides of the plurality of second toothed pieces are provided with second elastic members which are connected to the support rod, at a side of the support rod far away from the first toothed pieces and the second toothed pieces are opened a guide rail groove, on an inner wall of the first bracket is further fixed a second guide rail matching with the guide rail groove.
6. The binding apparatus based on audit management according to claim 1, wherein at the side of the base 1s further provided a limit assembly, and the limit assembly is used to limit the stack of files at the side of the base.
7. The binding apparatus based on audit management according to claim 6, wherein at the limit assembly comprises a guide rod, a second bracket, a first elastic member and a press plate; the second bracket 1s fixedly arranged at the side of the base, the press plate is arranged at an inner side of the second bracket, an end of the guide rod is fixedly connected with the press plate, another end of the guide rod penetrates the second bracket and movably cooperates with the second bracket; and an end of the first elastic member is connected with the press plate, and another end of the first elastic member is connected with the second bracket, so as to provide elastic support for the press plate.
8. The binding apparatus based on audit management according to claim 4, wherein on the partition plates are provided slots matched with the staples.
LU503546A 2023-02-14 2023-02-28 Binding Apparatus Based on Audit Management LU503546B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202310111368 2023-02-14

Publications (1)

Publication Number Publication Date
LU503546B1 true LU503546B1 (en) 2023-10-03

Family

ID=88244306

Family Applications (1)

Application Number Title Priority Date Filing Date
LU503546A LU503546B1 (en) 2023-02-14 2023-02-28 Binding Apparatus Based on Audit Management

Country Status (1)

Country Link
LU (1) LU503546B1 (en)

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Effective date: 20231003