Accounting bill archiving rapid cutting device
By designing a quick cutting device for accounting bills, the automatic rotation of the cutting plate is achieved by using the rotating disc and steering components, the problems of low cutting efficiency and low quality caused by manual rotation of bills in the prior art are solved, and efficient, stable and neat bill cutting is achieved.
Patent Information
- Application Number
- CN202510581610.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2025-06-27
AI Technical Summary
When cutting the bills around the bills, the prior art requires continuous manual rotation of the bills, resulting in low cutting efficiency and low quality.
A quick cutting device for accounting bills archives is designed, including a cutting table, steering parts, fixing parts and cutting parts. Through the coordination of the rotating disc and the steering assembly, the automatic rotation of the cutting plate is achieved, avoiding the need for manual adjustment.
It improves the efficiency and quality of bill cutting, achieves fast, stable and neat cutting around bills, avoiding the problems of cutting failure and bill position offset.
Smart Images

Figure CN120206570A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to, but is not limited to, the technical field of bill cutting, and particularly relates to a fast cutting device for accounting bill archiving. Background Art
[0002] Accounting bill archiving refers to the collection, sorting, classification, and preservation of accounting materials such as accounting vouchers, accounting books, and financial statements generated during the daily operation of an enterprise. This is an important basis for enterprise financial management and auditing, and also a necessary material for tax declaration and auditing. In a company, usually these materials are first printed by a printer, and then the bills are separated by a paper cutter for convenient subsequent sorting and preservation. After the printed bills are cut, the content may not be centered, and the blank spaces around are uneven. Therefore, in order to facilitate the unified sorting and preservation of the bills, it is often necessary to cut the four sides of the bills, which is not only convenient for preservation but also improves the aesthetics and neatness of the bills.
[0003] In the patent with the publication number CN219563378U, a paper cutter with an adjustable cutting angle is disclosed. It drives the gear rod to rotate by rotating the gear. When the gear rod rotates, it will drive the fixed frame to rotate. When the fixed frame rotates, it will drive the blade fixed inside the fixed frame to rotate. By setting the gear at an angle, the blade can be at any angle, so that the blade can adjust the angle for paper cutting.
[0004] The above patent has the following defects:
[0005] 1. When cutting bills and other papers, it can only rotate and adjust the angle with the gear rod as the center. When cutting the four sides of the bill, that is, when the cutting position needs to be changed, it cannot meet the requirements. And when cutting the four sides of a large number of bills, after cutting one side, it is necessary to manually pick up and rotate the angle once to cut the next side. During the adjustment process, it is easy for the bill position to shift, and each time it is necessary to realign and sort it again before cutting. The operation is troublesome and not easy to align, resulting in low neatness after cutting and even cutting failure.
[0006] 2. When cutting, it is necessary to manually press the cutting edge. After cutting one side, it is necessary to rotate the bill to cut the other side. It cannot realize the rotation of the bill after cutting. It is necessary for people to continuously rotate to cut the four sides of the bill, which is time-consuming and laborious. The cutting accuracy and neatness are not high enough, resulting in very low cutting efficiency. Summary of the Invention
[0007] In view of the problems in the prior art that when cutting the four sides of a bill, it is necessary to continuously manually rotate the bill for cutting, with low cutting efficiency and low cutting quality, a fast cutting device for accounting bill archiving is proposed.
[0008] On one aspect of the present application, a fast cutting device for accounting bill archiving is provided, and its purpose is to achieve automatic rotation cutting and improve the cutting efficiency.
[0009] The technical solution of the present invention is a fast cutting device for accounting bill archiving. The device includes a cutting table and an installation groove opened in the middle of the cutting table, and a bottom plate arranged in the installation groove. It also includes a steering component, a fixing component, and a cutting component;
[0010] The steering component is arranged in the middle of the cutting plate and is used to rotate the angle during cutting to facilitate cutting;
[0011] The steering component includes a fixing component arranged in the middle of the installation groove, a rotating component arranged at the bottom of the fixing component, and a steering component arranged inside the fixing component;
[0012] The fixing component includes a fixing column arranged in the installation groove, a fixing disk arranged at the top of the fixing column, four rotating holes arranged in a circular array at the bottom of the fixing disk, four fixing blocks arranged in a circular array inside the fixing disk, a fixing hole arranged between the fixing blocks, a first inclined surface arranged on one side of the fixing block, a second inclined surface arranged on one side of the first inclined surface, a third inclined surface arranged on one side of the second inclined surface, and a fourth inclined surface arranged on the third inclined surface, and the fixing hole is arranged between the adjacent first inclined surface and the fourth inclined surface.
[0013] For a fast cutting device for accounting bill archiving provided by an embodiment of the present application, the fixing blocks are arranged in a circular array at the bottom of the inner cavity of the fixing disk, and one end of the fixing block is higher. The first inclined surface, the second inclined surface, the third inclined surface, and the fourth inclined surface are sequentially arranged on the fixing block. The slope of the second inclined surface is larger, and the slope of the third inclined surface is smaller, showing a circular downward trend. The bottom of the first inclined surface is at the same height as the bottom of the adjacent fourth inclined surface, so as to ensure that the steering component can smoothly slide out along the first inclined surface when rotating. During work, the steering component slides on the first inclined surface, the second inclined surface, the third inclined surface, and the fourth inclined surface in turn under the drive of the rotating component, so that the steering component can rotate 90 degrees.
[0014] In a possible implementation manner of the present application, the rotating component includes a rotating circular plate arranged on the fixing column, a rotating disk arranged on the rotating circular plate, four top blocks arranged in a circular array on the top of the rotating disk, rotating rods arranged in a circular array on the rotating disk, and a pushing block arranged on one side of the top of the rotating rod, and the top of the top block and the rotating rod both pass through the fixing hole.
[0015] For a fast cutting device for accounting bill archiving provided by an embodiment of the present application, the rotating disk is arranged at the bottom of the fixing disk, and the top block and the rotating rod both pass through the rotating holes opened at the bottom of the fixing disk. The rotating circular plate is fixedly connected to the fixing column to support the rotation of the rotating disk on the fixing column.
[0016] In a possible implementation manner of the present application, the steering component includes a steering ring disposed inside the fixed disk, and the bottom of the steering ring abuts against the top of one side of the fixed block. Four reset grooves are formed in the inner wall of the steering ring in an annular array, a pushing groove surface is disposed between adjacent reset grooves, four limiting columns are disposed at the bottom of the steering ring in an annular array, and the limiting columns are disposed in the fixing holes. A reset member is disposed at the bottom of the fixed disk, a rotating plate is disposed at the top of the reset member, and a cutting plate is disposed at the top of the rotating plate, and the bottom of the rotating plate is fixedly connected to the top of the steering ring.
[0017] In a quick cutting device for accounting bill archiving provided by an embodiment of the present application, when the rotating disk rotates, it drives the top pushing block to rotate. The top pushing block pushes the limiting column upward so that the pushing block abuts against the pushing groove surface and continues to drive the rotating ring to rotate, so that the limiting column at the bottom of the rotating ring slides to the end of the second inclined surface and slides along the third inclined surface to the fourth inclined surface and is re-caught in the fixing hole. When the limiting column is caught in the fixing hole, the rotating ring is limited, so that the cutting plate is limited and fixed, improving the stability during bill cutting, and having a good limiting and fixing effect, avoiding shaking during cutting and resulting in cutting failure.
[0018] In a possible implementation manner of the present application, the fixing component includes a downward pressing component disposed at the corner of the cutting table, and an angle positioning component disposed on one side of the downward pressing component;
[0019] The downward pressing component includes a fixing cylinder disposed at the corner of the cutting table, a threaded rod disposed inside the fixing cylinder, a moving member disposed on the threaded rod, a downward pressing rod disposed on one side of the moving member, a knob disposed at the top of the threaded rod, a downward pressing ring disposed at the bottom of one side of the downward pressing rod, a downward pressing column disposed inside the downward pressing ring, and a lower pressing plate disposed at the bottom of the downward pressing column, and the angle positioning component is disposed inside the downward pressing ring.
[0020] In a quick cutting device for accounting bill archiving provided by an embodiment of the present application, during operation, the knob is rotated to adjust the up and down position of the downward pressing rod. When the bill is adjusted and placed, the knob is turned to rotate the threaded rod, thereby driving the moving member to move downward. The downward pressing rod drives the downward pressing ring and the lower pressing plate to squeeze and fix the bill, which is simple to operate and has a good fixing effect.
[0021] In a possible implementation manner of the present application, the angle positioning component includes a sliding groove formed in the inner wall of the downward pressing ring, a downward pressing member disposed at the top of the downward pressing column, and the top of the downward pressing member is fixedly connected to the downward pressing rod. Four pressing grooves are formed in the four side walls of the downward pressing column in an annular array, a pressing column is disposed in the pressing groove, and an elastic member is disposed at the bottom of the pressing column, and one side of the pressing column abuts against the pressing groove.
[0022] A fast cutting device for accounting bill archiving provided by an embodiment of the present application. After the pressing component presses and fixes the bill, when the cutting board rotates 90 degrees to cut other sides, under the action of the steering component, the cutting board rotates 90 degrees clockwise, which will drive the lower pressing board to rotate 90 degrees synchronously. The pressing column rotates under the action of the elastic member and snaps into the next pressing groove, realizing the synchronous rotation of the cutting board and the lower pressing board while ensuring the fixing effect, so that other sides of the bill can be cut, avoiding the misalignment between bills caused by manually rotating the cutting direction of the bill, and improving the neatness of the four-sided cutting.
[0023] In a possible implementation manner of the present application, the cutting component includes a cutting assembly arranged on one side of the top of the cutting table, a lifting assembly arranged at the bottom of the cutting assembly, and a driving assembly arranged at the bottom of the lifting assembly;
[0024] The cutting assembly includes a bracket arranged on the top of the cutting table, a moving rod arranged on the bracket, a cutting knife arranged on the moving rod, and a handle arranged on one side of the cutting knife.
[0025] A fast cutting device for accounting bill archiving provided by an embodiment of the present application. During operation, the cutting knife can slide on the moving rod to adjust the cutting position of the cutting knife, so as to cut the long side and the short side of the bill respectively.
[0026] In a possible implementation manner of the present application, the lifting assembly includes a moving groove opened on one side of the cutting knife, a moving block arranged in the moving groove, a lifting block arranged on one side of the moving block, a lifting rod arranged at the bottom of the lifting block, a contraction rod arranged at the bottom of the lifting column, a spring member arranged at the bottom of the lifting rod, and the bottom of the spring member is fixedly connected to the contraction rod. A sliding block is arranged at the bottom of the contraction rod, a sliding hole is opened at the bottom of the installation groove, and the sliding block is slidably connected in the sliding hole. A cavity is opened at the bottom of the sliding hole, and a sliding rod is arranged in the cavity, and the sliding block is slidably connected to the sliding rod.
[0027] A fast cutting device for accounting bill archiving provided by an embodiment of the present application. During cutting, when pressing down the cutting knife, the moving block on one side of the cutting knife slides in the moving groove, and presses down the lifting block, so that the lifting rod presses down the spring member in the contraction rod. The spring member can be a spring, so that the cutting knife can be automatically reset and lifted, which is convenient for directly pressing during the next cutting. The cooperation of the sliding hole and the sliding block enables the cutting knife to move, and improves the stability during movement and cutting, and improves the cutting quality.
[0028] In a possible implementation manner of the present application, the driving assembly includes a driving hole formed on one side of the bottom of the contraction rod, a driving rod arranged at the bottom of the lifting rod, and the driving rod is slidably connected to the driving hole, a driving block arranged on one side of the rotating disk, and an arc surface is formed at the bottom of the driving block, a fixing rod arranged at the bottom of the rotating disk, and a deflection spring arranged on the fixing rod, and one side of the deflection spring is fixedly connected to one side of the fixed column.
[0029] For a fast cutting device for accounting bill archiving provided by an embodiment of the present application, the setting of the driving assembly enables the cutting scissors to push and rotate the rotating disk once after cutting and resetting, so that the bill on the cutting table can automatically rotate 90 degrees after one side is cut, without manual rotation and adjustment by a person. During work, when one side of the bill on the cutting table is cut well, the lifting rod is automatically pushed upward under the reset action of the elastic member, so that the cutting scissors are lifted and reset. At this time, the driving rod at the bottom of the lifting rod moves upward in the driving hole, and one side of the driving rod slides along the arc surface of the driving block, so that the driving block drives the rotating disk to rotate clockwise, and the cutting plate rotates clockwise by 90 degrees. And after the lifting rod is reset, one side of the driving rod is located at the side of the arc surface and does not exceed the top of the driving block. When cutting, the driving rod moves downward, and the driving block deflects and resets under the reset action of the deflection spring, and continuous rotation can be realized without manual adjustment, and fast cutting of the four sides of the bill can be realized, improving the cutting efficiency.
[0030] On the other hand, the present application provides a usage method of a fast cutting device for accounting bill archiving, aiming to: enable the bill to automatically rotate 90 degrees after one side is cut during cutting, without manual rotation by a person, and improve the cutting quality while realizing fast cutting.
[0031] The technical solution of the present invention is: a usage method of a fast cutting device for accounting bill archiving, including the following steps
[0032] S1. During cutting, place the bill archive on the cutting plate, adjust the margins on all four sides, and adjust the knob so that the pressing assembly presses and fixes the bill archive;
[0033] S2. Hold the handle with one hand, adjust the cutting scissors to closely adhere to the side of the lower pressing plate, and press the handle downward so that the cutting scissors cut the bill archive;
[0034] S3. During the cutting process, the lifting rod is compressed, the driving rod slides downward in the sliding hole and moves away from the bottom of the driving block. When cutting is completed and reset, the lifting rod is reset upward under the action of the elastic member and presses the arc surface at the bottom of the driving block, so that the driving block drives the rotating disk to rotate clockwise. At this time, the deflection spring is pulled and deflected;
[0035] S4. When the driving block rotates, it causes the pushing block to push the limiting post upward. When the bottom of the limiting post reaches the first inclined surface, the steering ring is lifted as a whole. As the driving block continues to rotate, the pushing block on the rotating rod abuts against the pushing groove surface, causing the steering ring to drive the limiting post to continue rotating clockwise. The limiting post slides obliquely upward along the second inclined surface and reaches the fourth inclined surface. Under the pulling action of the reset member, the limiting post slides into the fixing hole again along the third inclined surface and the fourth inclined surface, causing the cutting board to rotate 90 degrees clockwise;
[0036] S5. After the cutting scissors adjust their positions, they cut the bill archive again. During the process of the cutting scissors lifting and resetting, the cutting board drives the bill archive to rotate 90 degrees, thereby achieving the sequential cutting of the four sides of the bill archive.
[0037] In a possible implementation manner of the present application, in S4, when the cutting board rotates 90 degrees clockwise, the lower pressing board will rotate 90 degrees synchronously under the action of the angle adjustment component to facilitate cutting.
[0038] Advantages of the present invention:
[0039] 1. By rotating the rotating disk, the pushing block lifts the rotating ring, and by continuously rotating the rotating disk, the pushing block abuts against the pushing groove surface, causing the limiting post to slide out along the first inclined surface and the second inclined surface, and slide down along the third inclined surface and the fourth inclined surface, thereby being clamped into the fixing hole, realizing a 90-degree horizontal rotation of the cutting board, achieving sequential cutting of the four sides of the bill archive, without the need for frequent manual adjustment, with simple operation, good neatness, and high cutting efficiency.
[0040] 2. When the cutting board rotates, under the action of the extrusion force, the bill will drive the lower pressing board to rotate together, and the arrangement of the four extrusion grooves and extrusion posts makes the lower pressing board rotate 90 degrees each time, keeping the rotation angle consistent with that of the cutting board, facilitating the cutting of the cutting scissors during cutting, avoiding cutting failure caused by different rotation angles of the lower pressing board and the cutting board during cutting, and improving the cutting quality and neatness.
[0041] 3. When cutting, the driving rod moves downward, and the driving block deflects and resets under the reset action of the deflection spring, causing the rotating disk to reset. When the lifting rod resets, the driving block is again squeezed by the driving block, causing the rotating disk to rotate again and the rotating ring to rotate 90 degrees to rotate the bill for cutting other sides, which can realize self-rotation after cutting, without the need for manual continuous adjustment of rotation, and can achieve rapid cutting of the four sides of the bill. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] Figure 1 is a three-dimensional structural schematic diagram of the whole of the present invention;
[0043] Figure 2 is a three-dimensional structural schematic diagram of the internal whole of the present invention;
[0044] Figure 3 Schematic diagram of the overall structure inside the fixed disk of the present invention;
[0045] Figure 4 Partial enlarged structural schematic diagram of the fixing component of the present invention;
[0046] Figure 5 Schematic diagram of the rotating component structure of the present invention;
[0047] Figure 6 Schematic diagram of the steering component structure of the present invention;
[0048] Figure 7 Three-dimensional view of the pressing-down component structure of the present invention;
[0049] Figure 8 Overall sectional structural schematic diagram of the angle positioning component of the present invention;
[0050] Figure 9 Schematic diagram of the cutting component structure of the present invention;
[0051] Figure 10 Schematic diagram of the overall structure of the cutting part of the present invention;
[0052] Figure 11 Schematic diagram of the lifting component structure of the present invention;
[0053] Figure 12 Overall enlarged structural schematic diagram of the driving component of the present invention.
[0054] In the figure:
[0055] 1. Cutting table; 2. Bottom plate; 3. Fixing component; 31. Fixing column; 32. Fixing disk; 33. Rotating hole; 34. Fixing block; 35. Fixing hole; 36. First inclined surface; 37. Second inclined surface; 38. Third inclined surface; 39. Fourth inclined surface; 4. Rotating component; 41. Rotating circular plate; 42. Rotating disk; 43. Pushing block; 44. Rotating rod; 45. Pushing block; 5. Steering component; 51. Steering ring; 52. Reset groove; 53. Pushing groove surface; 54. Limiting column; 55. Reset component; 56. Rotating plate; 57. Cutting plate; 6. Pressing-down component; 61. Fixed cylinder; 62. Threaded rod; 63. Moving part; 64. Pressing-down rod; 65. Pressing-down ring; 66. Pressing-down column; 67. Pressing-down plate; 7. Angle positioning component; 71. Sliding groove; 72. Pressing-down part; 73. Extrusion groove; 74. Extrusion column; 75. Elastic component; 8. Cutting component; 81. Bracket; 82. Moving rod; 83. Cutting scissors; 9. Lifting component; 91. Moving groove; 92. Moving block; 93. Lifting block; 94. Lifting rod; 95. Shrinking rod; 96. Bouncing component; 97. Sliding block; 98. Sliding hole; 99. Sliding rod; 10. Driving component; 101. Driving hole; 102. Driving rod; 103. Driving block; 104. Fixed rod; 105. Deflection spring. Detailed implementation manners
[0056] To make the above objects, features, and advantages of the present invention more obvious and understandable, the following will describe the detailed implementation manners of the present invention with reference to the accompanying drawings of the specification.
[0057] Example 1, referring to Figures 1-4 , which is the first embodiment of the present invention, provides a quick cutting device for accounting bill archiving. The device includes a cutting table 1 and an installation groove opened in the middle of the cutting table 1, and a bottom plate 2 installed in the installation groove. It also includes a steering component, a fixing component, and a cutting component; the fixing component can be a pressing plate with a torsion spring arranged on one side of the cutting table 1 for squeezing and fixing the bill, the cutting component can be a paper cutter for cutting the edge of the bill, and the steering component is installed in the middle of the cutting plate for rotating the angle during cutting to facilitate cutting; the steering component includes a fixing component 3 installed in the middle of the installation groove, a rotating component 4 installed at the bottom of the fixing component 3, and a steering component 5 installed inside the fixing component 3;
[0058] The fixing component 3 includes a fixing post 31 fixedly connected in the installation groove, a fixing disk 32 fixedly connected to the top of the fixing post 31, the bottom plate 2 is sleeved on the fixing disk 32, four rotating holes 33 arranged in a circular array at the bottom of the fixing disk 32, four fixing blocks 34 fixedly connected in a circular array inside the fixing disk 32, a fixing hole 35 opened between the fixing blocks 34, a first inclined surface 36 opened on one side of the fixing block 34, a second inclined surface 37 opened on one side of the first inclined surface 36, a third inclined surface 38 opened on one side of the second inclined surface 37, and a fourth inclined surface 39 opened on the third inclined surface 38, and the fixing hole 35 is opened between the adjacent first inclined surface 36 and the fourth inclined surface 39.
[0059] Specifically, the fixing blocks 34 are arranged in a circular array at the bottom of the inner cavity of the fixing disk 32, and one end of the fixing block 34 is higher. The first inclined surface 36, the second inclined surface 37, the third inclined surface 38, and the fourth inclined surface 39 are sequentially arranged on the fixing block 34. The slope of the second inclined surface 37 is larger, and the slope of the third inclined surface 38 is smaller, showing a circular downward trend. The bottom of the first inclined surface 36 is at the same height as the bottom of the adjacent fourth inclined surface 39, so as to ensure that the steering component 5 can smoothly slide out along the first inclined surface 36 when rotating. During work, the steering component 5 slides on the first inclined surface 36, the second inclined surface 37, the third inclined surface 38, and the fourth inclined surface 39 in sequence under the drive of the rotating component 4, so that the steering component 5 can rotate 90 degrees.
[0060] Refer to Figures 1-5 The rotating component 4 includes a rotating circular plate 41 fixedly connected to the fixing post 31, a rotating disk 42 rotatably connected to the rotating circular plate 41, four pushing blocks 43 fixedly connected in a circular array on the top of the rotating disk 42, rotating rods 44 fixedly connected in a circular array on the rotating disk 42, and a pushing block 45 fixedly connected to one side of the top of the rotating rod 44, and the tops of the pushing blocks 43 and the rotating rods 44 both pass through the fixing hole 35.
[0061] Specifically, the rotating disk 42 is arranged at the bottom of the fixing disk 32, and the pushing blocks 43 and the rotating rods 44 both pass through the rotating holes 33 opened at the bottom of the fixing disk 32. A rotating circular plate 41 is fixedly connected to the fixing post 31 to support the rotation of the rotating disk 42 on the fixing post 31.
[0062] Refer to Figures 1-6, the steering assembly 5 includes a steering ring 51 rotatably connected inside the fixed disk 32, and the bottom of the steering ring 51 abuts against the top of one side of the fixed block 34. Four reset grooves 52 are formed in the inner wall of the steering ring 51 in an annular array, and a pushing groove surface 53 is formed between adjacent reset grooves 52. Four limiting columns 54 are fixedly connected to the bottom of the steering ring 51 in an annular array, and the limiting columns 54 are clamped in the fixing holes 35. A reset member 55 is fixedly connected to the bottom of the fixed disk 32. The reset member 55 can be a spring. A rotating plate 56 is fixedly connected to the top of the reset member 55, and a cutting plate 57 is rotatably connected to the top of the rotating plate 56. The rotating plate 56 is arranged to pull the rotated cutting plate 57 downward to automatically reset it, and the bottom of the rotating plate 56 is fixedly connected to the top of the steering ring 51.
[0063] Specifically, when the rotating disk 42 rotates, it will drive the jacking block 43 to rotate. The jacking block 43 jacks up the limiting column 54 upward so that the pushing block 45 abuts against the pushing groove surface 53 and continues to drive the rotating ring to rotate, so that the limiting column 54 at the bottom of the rotating ring slides to the end of the second inclined surface 37 and slides along the third inclined surface 38 to the fourth inclined surface 39 and is re-clamped into the fixing hole 35. The limiting column 54 is clamped in the fixing hole 35, so that the rotating ring is limited, and thus the cutting plate is limited and fixed, improving the stability during bill cutting, and having a good limiting and fixing effect, avoiding shaking during cutting and resulting in cutting failure.
[0064] During use, when cutting, place the bill archive on the cutting plate 57, adjust the four-side margins, and rotate the knob so that the pressing assembly 6 presses and fixes the bill archive; hold the handle with one hand, adjust the cutting scissors 83 to closely adhere to the side of the lower pressing plate 67, and press the handle downward so that the cutting scissors 83 cut the side of the bill archive. After cutting by the cutting component, the rotating disk 42 is driven to rotate once, so that the jacking block 43 on the rotating disk 42 jacks up the limiting column 54 upward. The bottom of the limiting column 54 reaches the first inclined surface 36, and the steering ring 51 is lifted as a whole. The driving block 103 continues to rotate so that the pushing block 45 on the rotating rod 44 abuts against the pushing groove surface 53, so that the steering ring 51 drives the limiting column 54 to continue to rotate clockwise. The limiting column 54 slides obliquely upward along the second inclined surface 37 and reaches the fourth inclined surface 39. Under the reset pulling action of the reset member 55, the limiting column 54 slides into the fixing hole 35 again along the third inclined surface 38 and the fourth inclined surface 39, so that the cutting plate rotates 90 degrees clockwise;
[0065] By rotating the rotating disk 42, the top pushing block 43 jacks up the rotating ring. By continuously rotating the rotating disk 42, the pushing block 45 abuts against the pushing groove surface 53, causing the limiting column 54 to slide out along the first inclined surface 36 and the second inclined surface 37, and then slide down along the third inclined surface 38 and the fourth inclined surface 39, so as to be clamped into the fixing hole 35, realizing a 90-degree horizontal rotation of the cutting plate 57, achieving sequential cutting around the bill archive. There is no need for frequent manual adjustment, the operation is simple, the cutting is neat, and the cutting efficiency is high.
[0066] Embodiment 2, referring to Figures 1-7 , which is the second embodiment of the present invention. The difference between this embodiment and the first embodiment is that the fixing component includes a pressing-down component 6 installed at the corner of the cutting table 1, and an angle positioning component 7 installed on one side of the pressing-down component 6; the pressing-down component 6 includes a fixing cylinder 61 fixedly connected to the corner of the cutting table 1, a threaded rod 62 rotatably connected inside the fixing cylinder 61, a moving part 63 threadedly connected to the threaded rod 62, a pressing-down rod 64 fixedly connected to one side of the moving part 63, a knob fixedly connected to the top of the threaded rod 62, a pressing-down ring 65 fixedly connected to the bottom of one side of the pressing-down rod 64, a pressing-down column 66 slidably connected inside the pressing-down ring 65, and a pressing-down plate 67 fixedly connected to the bottom of the pressing-down column 66, and the angle positioning component 7 is installed inside the pressing-down ring 65.
[0067] Specifically, during operation, rotate the knob to adjust the up and down position of the pressing-down rod 64. When the bill is adjusted and placed properly, turn the knob to make the threaded rod 62 rotate, thereby driving the moving part 63 to move downwards. The pressing-down rod 64 drives the pressing-down ring 65 and the pressing-down plate 67 to squeeze and fix the bill. The operation is simple and the fixing effect is good.
[0068] Referring to Figures 1-8 , the angle positioning component 7 includes a sliding groove 71 opened on the inner wall of the pressing-down ring 65, a pressing-down part 72 fixedly connected to the top of the pressing-down column 66, and the top of the pressing-down part 72 is fixedly connected to the pressing-down rod 64. Four pressing grooves 73 are annularly arrayed on the four side walls of the pressing-down column 66, a pressing column 74 slidably connected in the pressing groove 73, and an elastic part 75 fixedly connected to the bottom of the pressing column 74. The elastic part 75 can be a spring, and one side of the pressing column 74 abuts against the pressing groove 73.
[0069] Specifically, after the pressing component 6 presses and fixes the bill, when the cutting board rotates 90 degrees to cut other sides, the cutting board rotates 90 degrees clockwise under the action of the steering component 5, which will drive the lower pressing board 67 to rotate 90 degrees synchronously. The pressing column 74 rotates under the action of the elastic member 75 and snaps into the next pressing groove 73, realizing the synchronous rotation of the cutting board and the lower pressing board 67 while ensuring the fixing effect, so that other sides of the bill can be cut, avoiding the dislocation between bills caused by manually rotating the cutting direction of the bill, and improving the neatness of the four-sided cutting.
[0070] During use, when cutting, place the bill archive on the cutting board 57, adjust the four-sided margins of the bill archive, rotate the knob to move the moving member 63 downward and drive the downward moving rod to move, so that the lower pressing board 67 presses on the bill archive, and the bill archive is pressed and fixed. Hold the handle with one hand, adjust the cutting scissors 83 to be close to the side of the lower pressing board 67, and press the handle downward to cut the bill archive with the cutting scissors 83. And when the cutting board rotates, under the action of the pressing force, the bill will drive the lower pressing board 67 to rotate together, and the setting of the four pressing grooves 73 and the pressing columns 74 makes the lower pressing board 67 rotate 90 degrees each time, keeping the same rotation angle as the cutting board, facilitating the cutting of the cutting scissors 83 during cutting, avoiding the cutting failure caused by different rotation angles of the lower pressing board 67 and the cutting board during cutting, and improving the cutting quality and neatness.
[0071] The remaining structure is the same as that of Embodiment 1.
[0072] Embodiment 3, refer to Figures 1-9 , which is the third embodiment of the present invention. The difference between this embodiment and the second embodiment is that the cutting component includes a cutting assembly 8 installed on one side of the top of the cutting table 1, a lifting assembly 9 installed at the bottom of the cutting assembly 8, and a driving assembly 10 installed at the bottom of the lifting assembly 9; the cutting assembly 8 includes a bracket 81 fixedly connected to the top of the cutting table 1, a moving rod 82 fixedly connected to the bracket 81, a cutting scissors 83 rotatably connected to the moving rod 82, and a handle fixedly connected to one side of the cutting scissors 83.
[0073] Specifically, during work, the cutting scissors 83 can slide on the moving rod 82 to adjust the cutting position of the cutting scissors 83, so as to cut the long side and the short side of the bill respectively.
[0074] Refer to Figures 1-11, the lifting component 9 includes a moving groove 91 formed on one side of the cutting knife 83, a moving block 92 slidably connected in the moving groove 91, a lifting block 93 fixedly connected to one side of the moving block 92, a lifting rod 94 fixedly connected to the bottom of the lifting block 93, a retractable rod 95 slidably connected to the bottom of the lifting column, a spring member 96 fixedly connected to the bottom of the lifting rod 94. The spring member 96 can be a spring, and the bottom of the spring member 96 is fixedly connected to the retractable rod 95, a sliding block 97 fixedly connected to the bottom of the retractable rod 95, a sliding hole 98 formed in the bottom of the installation groove, and the sliding block 97 is slidably connected in the sliding hole 98, a cavity formed in the bottom of the sliding hole 98, and a sliding rod 99 fixedly connected in the cavity, and the sliding block 97 is slidably connected to the sliding rod 99.
[0075] Specifically, during cutting, the cutting knife 83 is pressed downward. The moving block 92 on one side of the cutting knife 83 slides in the moving groove 91, and the lifting block 93 is pressed downward so that the lifting rod 94 presses the spring member 96 in the retractable rod 95. The spring member 96 can be a spring, so that the cutting knife 83 can be automatically reset and lifted, facilitating the direct pressing for the next cutting. The cooperation of the sliding hole 98 and the sliding block 97 enables the cutting knife 83 to move and improves the stability during movement and cutting, thus improving the cutting quality.
[0076] Refer to Figures 1-12 , the driving component 10 includes a driving hole 101 formed on one side of the bottom of the retractable rod 95, a driving rod 102 fixedly connected to the bottom of the lifting rod 94, and the driving rod 102 is slidably connected in the driving hole 101, a driving block 103 fixedly connected to one side of the rotating disk 42, and an arc surface is formed at the bottom of the driving block 103, a fixing rod 104 fixedly connected to the bottom of the rotating disk 42, and a deflection spring 105 fixedly connected to the fixing rod 104, and one side of the deflection spring 105 is fixedly connected to one side of the fixing column 31.
[0077] Specifically, the setting of the driving component 10 enables the cutting scissors 83 to push and rotate the rotating disk 42 once after the cutting is reset, so that the bill on the cutting table 1 can be automatically rotated by 90 degrees after being cut on one side, without manual rotation and adjustment by humans. During work, when one side of the bill on the cutting table 1 is cut, the lifting rod 94 is automatically pushed upward under the reset action of the elastic member 96, so that the cutting scissors 83 are lifted and reset. At this time, the driving rod 102 at the bottom of the lifting rod 94 moves upward in the driving hole 101, and one side of the driving rod 102 slides along the arc surface of the driving block 103, so that the driving block 103 drives the rotating disk 42 to rotate clockwise, and the cutting plate rotates clockwise by 90 degrees. After the lifting rod 94 is reset, one side of the driving rod 102 is located at the side of the arc surface and does not exceed the top of the driving block 103. When cutting, the driving rod 102 moves downward, and the driving block 103 deflects and resets under the reset action of the deflection spring 105, and continuous rotation can be achieved without manual adjustment, improving the cutting efficiency.
[0078] During the use process, during the cutting process, the lifting rod 94 is compressed, and the driving rod 102 slides downward in the sliding hole 98, away from the bottom of the driving block 103. When the cutting is completed and reset, the lifting rod 94 is reset upward under the action of the elastic member 96 and squeezes the arc surface at the bottom of the driving block 103, so that the driving block 103 drives the rotating disk 42 to rotate clockwise. At this time, the deflection spring 105 is pulled and deflected. When cutting, the driving rod 102 moves downward, and the driving block 103 deflects and resets under the reset action of the deflection spring 105, so that the rotating disk 42 is reset. When the lifting rod 94 is reset, the driving block 103 is driven by the driving block 103 again, so that the rotating disk 42 rotates again and the rotating ring rotates by 90 degrees to rotate the bill for cutting other sides, and continuous rotation can be achieved without manual adjustment, improving the cutting efficiency.
[0079] The remaining structure is the same as that of the second embodiment.
[0080] Embodiment 4, referring to Figures 1-12 , which is the fourth embodiment of the present invention, provides: a method for using a fast cutting device for accounting bill archiving, including the following steps,
[0081] S1. When cutting, place the bill archive on the cutting plate 57, adjust the four-side margins, rotate the knob to make the threaded rod 62 rotate, thereby driving the moving member 63 to drive the pressing rod 64 to move downward, so that the lower pressing plate 67 presses and fixes the bill archive;
[0082] S2. Hold the handle with one hand, adjust the position of the cutting scissors 83 so that it is close to the side of the lower pressing plate 67, and press the handle downward to make the cutting scissors 83 cut the edge of the bill archive;
[0083] S3. During the cutting process, the lifting rod 94 is compressed, and the driving rod 102 slides downward within the sliding hole 98, moving away from the bottom of the driving block 103. When resetting after cutting, the lifting rod 94 resets upward under the action of the elastic member 96 and presses against the arc surface at the bottom of the driving block 103, causing the driving block 103 to drive the rotating disk 42 to rotate clockwise. At this time, the deflection spring 105 is pulled and deflected;
[0084] S4. When the driving block 103 rotates, it causes the pushing block 43 to push the limiting post 54 upward. The bottom of the limiting post 54 reaches the first inclined surface 36, and the steering ring 51 is lifted as a whole. When the driving block 103 continues to rotate, the pushing block 45 on the rotating rod 44 abuts against the pushing groove surface 53, causing the steering ring 51 to drive the limiting post 54 to continue rotating clockwise. The limiting post 54 slides obliquely upward along the second inclined surface 37 and reaches the fourth inclined surface 39. Under the pulling action of the resetting member 55, the limiting post 54 slides into the fixing hole 35 again along the third inclined surface 38 and the fourth inclined surface 39, causing the cutting board to rotate 90 degrees clockwise. When the cutting board rotates 90 degrees clockwise, the lower pressing board 67 will rotate 90 degrees synchronously under the action of the angle adjustment assembly to facilitate cutting;
[0085] S5. After the cutting scissors 83 adjust their positions, they cut the bill archive again. During the process of the cutting scissors 83 lifting and resetting, the cutting board drives the bill archive to rotate 90 degrees, thereby achieving sequential cutting of the four sides of the bill archive.
Claims
1. A quick cutting device for filing accounting documents, comprising a cutting table (1), a mounting groove provided in the middle of the cutting table (1), and a bottom plate (2) arranged in the mounting groove, characterized in that: It also includes steering components, fixing components and cutting components; The steering component is arranged in the middle of the cutting board and is used to rotate the angle during cutting to facilitate cutting; The steering component comprises a fixed component (3) arranged in the middle of the installation groove, a rotating component (4) arranged at the bottom of the fixed component (3), and a steering component (5) arranged inside the fixed component (3); The fixing assembly (3) comprises a fixing column (31) arranged in the installation groove, a fixing plate (32) arranged on the top of the fixing column (31), four rotating holes (33) arranged in an annular array at the bottom of the fixing plate (32), four fixing blocks (34) arranged in an annular array inside the fixing plate (32), a fixing hole (35) arranged between the fixing blocks (34), a first inclined surface (36) arranged on one side of the fixing block (34), a second inclined surface (37) arranged on one side of the first inclined surface (36), a third inclined surface (38) arranged on one side of the second inclined surface (37), and a fourth inclined surface (39) arranged on the third inclined surface (38), and the fixing hole (35) is arranged between adjacent first inclined surfaces (36) and fourth inclined surfaces (39).
2. According to claim 1, the quick cutting device for filing accounting bills is characterized by: The rotating assembly (4) comprises a rotating circular plate (41) arranged on a fixed column (31), a rotating disk (42) arranged on the rotating circular plate (41), four push blocks (43) arranged in a circular array on the top of the rotating disk (42), a rotating rod (44) arranged in a circular array on the rotating disk (42), and a push block (45) arranged on one side of the top of the rotating rod (44), and the tops of the push blocks (43) and the rotating rod (44) both pass through the fixing hole (35).
3. According to claim 2, the quick cutting device for filing accounting documents is characterized by: The steering assembly (5) comprises a steering ring (51) arranged inside a fixed plate (32), the bottom of the steering ring (51) abutting against the top of one side of a fixed block (34), four reset grooves (52) arranged in an annular array on the inner wall of the steering ring (51), a pushing groove surface (53) arranged between adjacent reset grooves (52), four limiting columns (54) arranged in an annular array at the bottom of the steering ring (51), the limiting columns (54) being arranged in a fixed hole (35), a reset member (55) arranged at the bottom of the fixed plate (32), a rotating plate (56) arranged at the top of the reset member (55), and a cutting plate (57) arranged at the top of the rotating plate (56), and the bottom of the rotating plate (56) is fixedly connected to the top of the steering ring (51).
4. The quick cutting device for filing accounting bills according to claim 3 is characterized by: The fixing component comprises a pressing component (6) arranged at a corner of the cutting table (1), and an angle positioning component (7) arranged at one side of the pressing component (6); The pressing assembly (6) comprises a fixed tube (61) arranged at a corner of the cutting table (1), a threaded rod (62) arranged inside the fixed tube (61), a moving part (63) arranged on the threaded rod (62), a pressing rod (64) arranged on one side of the moving part (63), a knob arranged on the top of the threaded rod (62), a pressing ring (65) arranged at the bottom of one side of the pressing rod (64), a pressing column (66) arranged inside the pressing ring (65), and a pressing plate (67) arranged at the bottom of the pressing column (66), and the angle positioning assembly (7) is arranged inside the pressing ring (65).
5. The quick cutting device for filing accounting bills according to claim 4 is characterized by: The angle positioning assembly (7) comprises a sliding groove (71) formed on the inner wall of a lower pressure ring (65), a lower pressure piece (72) arranged on the top of a lower pressure column (66), and the top of the lower pressure piece (72) is fixedly connected to the lower pressure rod (64), four extrusion grooves (73) formed in an annular array on the side wall of the lower pressure column (66), an extrusion column (74) arranged in the extrusion groove (73), and an elastic piece (75) arranged at the bottom of the extrusion column (74), and one side of the extrusion column (74) is in contact with the extrusion groove (73).
6. The quick cutting device for filing accounting bills according to claim 5 is characterized by: The cutting component comprises a cutting assembly (8) arranged on one side of the top of the cutting table (1), a lifting assembly (9) arranged at the bottom of the cutting assembly (8), and a driving assembly (10) arranged at the bottom of the lifting assembly (9); The cutting assembly (8) comprises a bracket (81) arranged on the top of the cutting table (1), a moving rod (82) arranged on the bracket (81), a cutting knife (83) arranged on the moving rod (82), and a handle arranged on one side of the cutting knife (83).
7. The quick cutting device for filing accounting bills according to claim 6 is characterized by: The lifting assembly (9) comprises a moving groove (91) provided at one side of the cutting blade (83), a moving block (92) arranged in the moving groove (91), a lifting block (93) provided at one side of the moving block (92), a lifting rod (94) provided at the bottom of the lifting block (93), a retracting rod (95) provided at the bottom of the lifting column, a pop-up member (96) provided at the bottom of the lifting rod (94), and the bottom of the pop-up member (96) is fixedly connected to the retracting rod (95), a sliding block (97) provided at the bottom of the retracting rod (95), a sliding hole (98) provided at the bottom of the mounting groove, and the sliding block (97) is slidably connected to the sliding hole (98), a cavity provided at the bottom of the sliding hole (98), and a sliding rod (99) provided in the cavity, and the sliding block (97) is slidably connected to the sliding rod (99).
8. The quick cutting device for filing accounting bills according to claim 7 is characterized by: The driving assembly (10) comprises a driving hole (101) provided at one side of the bottom of the retracting rod (95), a driving rod (102) provided at the bottom of the lifting rod (94), and the driving rod (102) is slidably connected to the driving hole (101), a driving block (103) provided at one side of the rotating disk (42), and the bottom of the driving block (103) is provided with an arc surface, a fixing rod (104) provided at the bottom of the rotating disk (42), and a deflection spring (105) provided on the fixing rod (104), and one side of the deflection spring (105) is fixedly connected to one side of the fixing column (31).
9. A method for using an accounting bill filing fast cutting device, using the accounting bill filing fast cutting device as claimed in claim 8, characterized in that: The following steps are involved: S1, when cutting, place the bill archive on the cutting board (57), adjust the perimeter of the four sides, and adjust the knob so that the pressing component (6) squeezes and fixes the bill archive; S2, holding the handle with one hand, adjusting the cutting knife (83) to be close to the side of the lower pressing plate (67), and pressing the handle downward so that the cutting knife (83) cuts the bill for filing; S3, during the cutting process, the lifting rod (94) is compressed, and the driving rod (102) slides downward in the sliding hole (98) away from the bottom of the driving block (103). When the cutting is completed and the reset is completed, the lifting rod (94) is reset upward under the action of the pop-up member (96) and squeezes the arc surface at the bottom of the driving block (103), so that the driving block (103) drives the rotating disk (42) to rotate clockwise, and at this time the deflection spring (105) is pulled to deflect; S4, when the driving block (103) rotates, the pushing block (43) pushes the limiting column (54) upward, the bottom of the limiting column (54) reaches the first inclined surface (36), the steering ring (51) is lifted up as a whole, the driving block (103) continues to rotate so that the pushing block (45) on the rotating rod (44) abuts against the pushing groove surface (53), so that the steering ring (51) drives the limiting column (54) to continue to rotate clockwise, the limiting column (54) slides upward along the second inclined surface (37) and reaches the fourth inclined surface (39), under the pulling action of the reset member (55), the limiting column (54) slides into the fixing hole (35) again along the third inclined surface (38) and the fourth inclined surface (39), so that the cutting plate rotates 90 degrees clockwise; S5, the cutting knife (83) adjusts its position and cuts the bill archive again, so that when the cutting knife (83) is lifted and reset, the cutting plate drives the bill archive to rotate 90 degrees, thereby realizing the sequential cutting of the four sides of the bill archive.
10. The method for using the quick cutting device for filing accounting bills according to claim 9 is characterized by: In the above-mentioned S4, when the cutting plate rotates 90 degrees clockwise, the lower pressing plate (67) will synchronously rotate 90 degrees under the action of the angle adjustment component to facilitate cutting.
Citation Information
Patent Citations
Paper cutting machine capable of changing cutting angle
CN219563378U