A stamping device for financial management
By combining rotating and pressing components, the automatic multiple stamping of the financial management stamping device is realized, solving the problem of the inability to automatically change the stamp in the existing technology, improving stamping efficiency and reducing labor intensity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SHANDONG POLYTECHNIC COLLEGE
- Filing Date
- 2022-04-08
- Publication Date
- 2026-05-26
AI Technical Summary
Existing financial management stamping devices cannot automatically stamp a document multiple times with different stamps, resulting in cumbersome operation and high labor intensity.
A stamping device for financial management has been designed, comprising a rotating component and a pressing component. The rotating component is equipped with multiple stamp bodies, and the stamps can be replaced and their positions staggered by rotating the rotating component. The pressing component is used to squeeze the stamps to perform the stamping operation. Combined with the feeding component, it realizes automated multiple stamping.
It enables automated multiple stamping, reducing the tedious manual stamp replacement process, lowering labor intensity, and improving stamping efficiency.
Smart Images

Figure CN114701270B_ABST
Abstract
Description
Technical Field
[0001] This invention mainly relates to the field of stamping technology, specifically to a stamping device for financial management. Background Technology
[0002] A seal is a type of stamp used to verify the validity of a document. It is widely used and therefore extremely common. For example, for financial and management documents, the current stamping process usually involves the staff holding the seal, which can cause wrist pain over time. Furthermore, if a document requires multiple different stamps, the stamps need to be manually changed before the document can be stamped, which is a rather cumbersome process.
[0003] Currently, there are some automatic stamping machines. For example, patent CN111421974B discloses a stamping device and method for financial management, including a fixed platform. A fixed frame is fixedly connected to the top side of the fixed platform. An electric push rod is provided at the inner top of the fixed frame. A lifting platform is provided at the drive end of the electric push rod. A connecting rod is fixedly connected to the bottom of the lifting platform. A protective cover is nested and slidably connected to the outer surface of the connecting rod. This patent can automatically perform stable and cyclical stamping work and can also protect the seal. However, this patent cannot stamp the same document multiple times with different seals, which has certain limitations. Summary of the Invention
[0004] (a) Technical problems to be solved
[0005] In view of the above-mentioned problems, the present invention provides a stamping device for financial management that can automatically stamp multiple seals on a single document.
[0006] (II) Technical Solution
[0007] To address the aforementioned technical problems, this invention provides a stamping device for financial management, comprising a frame, a stamping mechanism mounted on the frame, a connecting frame, and a stamping platform. The stamping mechanism includes a rotating component and a pressing component. The rotating component is slidably mounted on the connecting frame and has several different stamp bodies mounted on it. The rotating component is used to change different stamp bodies during stamping and also to change the stamping position of the stamp body on the stamping platform. The pressing component is slidably mounted on the connecting frame and is used to press the stamp body to perform the stamping operation.
[0008] Furthermore, the rotating component includes a cylindrical tube, a power assembly, a guide protrusion, and a head assembly. The cylindrical tube is slidably mounted on a connecting frame and has a helical groove and a helical rack. The power assembly is mounted on the connecting frame and positioned above the cylindrical tube. The guide protrusion is fixedly mounted on the power assembly and slides in conjunction with the helical groove. The drive gear in the power assembly engages with the helical rack to drive the cylindrical tube to rotate and slide horizontally. The cylindrical tube is fixedly connected to the head assembly, and the head assembly has several different stamp bodies.
[0009] Furthermore, the head assembly includes a rectangular stamp base, which is fixedly mounted on a cylindrical tube. Four stamp slide rods are slidably mounted on the rectangular stamp base via an elastic component. Each stamp slide rod has a stamp body mounted on it. Each stamp body is slidably mounted on the stamp slide rod via a base assembly. When the cylindrical tube rotates, it drives the rectangular stamp base to rotate, thereby allowing for the replacement of different stamp bodies. When the cylindrical tube slides, it drives the stamp bodies to slide, thereby changing the stamping position of the material on the stamping platform.
[0010] Furthermore, a limiting frame is slidably installed on the connecting frame, the limiting frame is rotatably connected to the cylindrical tube, and one end of the limiting frame is fixedly connected to the pressing component, while the other end of the pressing component is slidably installed on the connecting frame. When the cylindrical tube slides, it drives the pressing component to slide together. After the cylindrical tube rotates to select the corresponding stamp body, the pressing component will squeeze the stamp slide rod to stamp the material on the stamping platform.
[0011] Furthermore, the pressing assembly includes a cylinder, one end of which is fixedly connected to the limiting frame, and the other end is slidably mounted on the connecting frame. A tapered head rod is fixedly mounted on the movable end of the cylinder; the tapered head rod will press the stamping rod to perform the stamping operation.
[0012] Furthermore, the stamping mechanism also includes a feeding component, which is used to convey materials onto the stamping table. The feeding component includes a storage box, a toggle assembly, and a pallet assembly. The storage box is mounted on the mechanism frame and has a lid. When the lid covers the storage box, the pallet assembly positions the materials inside the box, and the toggle assembly conveys the materials to the stamping table in stages.
[0013] Furthermore, the storage box includes a data slot and a top cover. The data slot contains materials, and the cover is the top cover. The top cover is rotatably mounted on the mechanism frame. When the top cover rotates to cover the data slot, the top cover will drive the clamping plate assembly to position the materials in the data slot.
[0014] Furthermore, the card plate assembly includes a positioning slider, which is rotatably mounted on the mechanism frame. A positioning slide is slidably mounted on the positioning slider. The positioning slider is rotatably connected to a positioning slide rod, which is slidably mounted on the mechanism frame. The positioning slide rod is provided with a positioning slide plate through an elastic component. When the top cover plate rotates to cover the data slot, the positioning slide will push the positioning slide plate to position the material in the data slot, and the actuating component will sequentially transport it to the stamping table.
[0015] Furthermore, the actuation assembly includes a bidirectional motor and a top dial wheel. The top dial wheel is mounted on both ends of the bidirectional motor, and the bottom dial wheel is rotatably mounted above the stamping platform. The bottom dial wheel and the top dial wheel are connected by a belt.
[0016] Furthermore, the stamping mechanism also includes an ink pad holder, which is fixedly installed on the connecting frame. The ink pad holder is arched, and an ink pad groove is provided on the top surface and two sides of the arch. The ink pad holder is located on the outside of the stamp body.
[0017] The beneficial effects of this invention compared with the prior art are as follows: 1. This invention is equipped with a rotating component, on which four different stamp bodies are mounted. By rotating the component, different stamps can be changed for stamping. At the same time, the component can automatically slide while rotating, so that the stamping positions are staggered, thereby allowing for multiple stampings, which changes the traditional method of manually changing stamps; 2. This invention is equipped with a pressing component, which can intermittently squeeze the stamp body, working in conjunction with the rotating component to complete the automatic stamping operation. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention.
[0019] Figure 2 This is a schematic diagram of the specific structure set on the frame of the present invention.
[0020] Figure 3 This is a schematic diagram of the rotating component of the present invention.
[0021] Figure 4 This is a schematic diagram of the rotating component of the present invention from another angle.
[0022] Figure 5 This is a schematic diagram of the head assembly of the present invention.
[0023] Figure 6 This is a schematic diagram of the large spring in the seal of this invention.
[0024] Figure 7 This is a schematic diagram of the outer sleeve of the present invention.
[0025] Figure 8 This is a schematic diagram of the tapered head rod of the present invention.
[0026] Figure 9 This is a schematic diagram of the toggle assembly structure of the present invention.
[0027] Figure 10 This is a schematic diagram of the top cover plate of the present invention.
[0028] Figure 11 for Figure 10 A magnified view of a portion of point A in the middle.
[0029] Figure 12 This is a schematic diagram of the card plate assembly structure of the present invention.
[0030] Figure 13 This is a schematic diagram of the cross-section of the frame and cylindrical tube of the present invention.
[0031] Reference numerals: 1-Mechanism frame; 2-Stamping mechanism; 101-Space slot; 102-Document slot; 103-Cover plate hole; 104-Positioning hole; 105-Positioning slide; 106-Motor shaft hole; 107-Large motor slot; 108-Dial hole; 109-Small round hole; 110-End hole; 111-Front end hole; 112-Small motor slot; 113-Discharge chute; 114-Connecting frame; 115-Incline slide; 116-Stamping platform; 201-Cylinder; 202-Hollow frame; 203-Guide rod; 204-Ring frame; 205-Ink pad holder; 206-Moving motor; 207-Small fixed frame; 208-Drive gear; 209-Cylindrical cylinder; 210- 211-Guide protrusion; 212-Helical groove; 213-Circular groove; 214-Rectangular base of stamp; 215-Stamp slide bar; 216-Small spring of stamp; 217-Stamp guide rod; 218-Stamp body; 219-Stamp base plate; 220-Large spring of stamp; 221-Conical head rod; 222-Outer sleeve; 223-Top cover plate; 224-Ink trough; 225-Bottom dial wheel; 226-Belt; 227-Top dial wheel; 228-Bidirectional motor; 229-Positioning slider; 230-Positioning carriage; 231-Positioning slide bar; 232-Positioning connecting plate; 233-Positioning spring; 234-Positioning slide plate; 235-Internal groove. Detailed Implementation
[0032] The present invention will be further described below with reference to specific embodiments. The invention is explained through illustrative embodiments and descriptions, but is not intended to limit the invention.
[0033] Example: Figures 1-13The illustrated financial management stamping device includes a frame 1, on which a stamping mechanism 2 is mounted. The frame 1 includes multiple rectangular grids for placing documents, materials, etc. The cover plate hole 103 is located on the frame 1, and the positioning hole 104 is located on the frame 1. The material is placed on the frame 1 and below the cover plate hole 103. The positioning slide 105 is set along the length of the frame 1. The motor shaft hole 106 is set on the frame 1 and extends through the width of the frame 1. The large motor slot 107 is set on the frame 1. The dial hole 108 is set on the connecting frame 114. The small round hole 109 is set on the connecting frame 114. The end hole 110 is set on the connecting frame 114. The front hole 111 is set on the positioning hole 104. The small motor slot 112 is set directly above the front hole 111. The discharge slot 113 is set on the frame 1 and is used to place the stamped material.
[0034] The connecting frame 114 is fixedly installed on the mechanism frame 1, the inclined slide 115 is set on the mechanism frame 1, and the stamping table 116 is set below the stamping mechanism 2. One end of the inclined slide 115 is connected to the connecting frame 114, and the other end is connected to the stamping table 116. The inclined slide 115 is used for material conveying.
[0035] The stamping mechanism 2 includes a rotating component and a pressing component. The rotating component includes a cylindrical tube 209, a power assembly, a guide protrusion 210, and a head assembly. The cylindrical tube 209 is slidably mounted on the front end hole 111. The cylindrical tube 209 is provided with a spiral groove 211 and a spiral rack 212, and the spiral groove 211 and the spiral rack 212 have the same spiral shape. The cylindrical tube 209 is provided with an annular groove 213. The power assembly is mounted on the connecting frame 114 and is located above the cylindrical tube 209. The power assembly includes a moving motor 206, a small fixed frame 207, and a drive gear 208. The mobile motor 206 is fixedly mounted on the small motor slot 112, the small fixing frame 207 is fixedly mounted on the small motor slot 112, and the drive gear 208 is fixedly mounted on the output shaft of the mobile motor 206; the guide protrusion 210 is fixedly mounted on the small fixing frame 207, the guide protrusion 210 is slidably engaged with the spiral groove 211, the drive gear 208 in the power assembly is engaged with the spiral rack 212 to drive the cylindrical cylinder 209 to rotate and slide horizontally; the cylindrical cylinder 209 is fixedly connected to the head assembly, and the head assembly is provided with several different stamp bodies 218.
[0036] The head assembly includes a rectangular stamp base 214, which is fixedly mounted on a cylindrical tube 209. Four stamp slide rods 215 are slidably mounted on the rectangular stamp base 214 via elastic components. Each stamp slide rod 215 has a stamp body 218 mounted on it. The elastic component is a large stamp spring 220, with its first end fixedly mounted on the stamp slide rod 215 and its second end fixedly mounted on an internal groove 235. 35 is set inside the rectangular base 214 of the seal; each seal body 218 is slidably mounted on the seal slide bar 215 via a base assembly. The base assembly includes a small seal spring 216, a seal guide rod 217, and a seal base plate 219. The seal guide rod 217 is fixedly mounted on the seal slide bar 215, the small seal spring 216 is sleeved on the seal guide rod 217, the seal base plate 219 is slidably mounted on the seal guide rod 217, and the seal body 218 is fixedly mounted on the seal base plate 219.
[0037] A limiting frame is slidably installed on the connecting frame 114. The limiting frame is rotatably connected to the cylindrical tube 209. The limiting frame is fixedly connected to one end of the pressing component. The limiting frame includes a ring frame 204, a guide rod 203, a hollow frame 202, and an outer sleeve 222. The ring frame 204 is fixedly connected to the guide rod 203, and the guide rod 203 is fixedly connected to the hollow frame 202. The ring frame 204 is rotatably connected to the ring groove 213 on the cylindrical tube 209. The guide rod 203 is slidably installed on the small round hole 109, and the outer sleeve 222 is fixedly installed on the hollow frame 202.
[0038] The pressing assembly includes a cylinder 201. One end of the cylinder 201 is fixedly connected to the hollow frame 202, and the other end is slidably installed on the end hole 110. A tapered head rod 221 is fixedly installed on the movable end of the cylinder 201. The tapered head rod 221 presses the stamp slide 215 to perform the stamping operation.
[0039] The stamping mechanism 2 also includes an ink pad holder 205, which is an arched frame. An ink pad groove 224 is provided on the top surface and two sides of the arch. The position of the ink pad groove 224 corresponds to three of the seal bodies 218 on the rectangular base 214 of the seal. The ink pad groove 224 is filled with ink for adding ink to the seal body 218. The two ends of the ink pad holder 205 are fixedly installed on the connecting frame 114. The ink pad holder 205 is located on the outside of the seal body 218.
[0040] The stamping mechanism 2 also includes a feeding component, which includes a storage box, a toggle assembly, and a card plate assembly. The storage box includes a data slot 102 and a top cover 223. Materials are placed in the data slot 102, and the top cover 223 is rotatably mounted on the cover hole 103.
[0041] The card plate assembly includes a positioning slider 229, which is rotatably mounted on the mechanism frame 1. A positioning slide 230 is slidably mounted on the positioning slider 229. The positioning slide 230 is rotatably connected to a positioning slide rod 231. The positioning slide rod 231 is slidably mounted on the positioning hole 104. A positioning connecting plate 232 is fixedly mounted on the positioning slide rod 231. An elastic component is connected to the positioning connecting plate 232. A positioning slide plate 234 is provided on the elastic component. The positioning slide plate 234 is slidably mounted on the positioning slide rail 105. The elastic component is a positioning spring 233, and several positioning springs 233 are provided.
[0042] The actuation assembly includes a bidirectional motor 228, a top dial 227, a belt 226, and a bottom dial 225. The bidirectional motor 228 is fixedly mounted on the large motor slot 107. The bidirectional motor 228 is a dual-output shaft motor. The top dial 227 is fixedly mounted on both ends of the bidirectional motor 228. The top dial 227 is rotatably mounted on the motor shaft hole 106. The bottom dial 225 is rotatably mounted on the dial hole 108. The bottom dial 225 is located above the stamping platform 116. The bottom dial 225 and the top dial 227 are connected by a belt 226.
[0043] The working principle of this invention is as follows: The material to be stamped is placed into the document slot 102, and the top cover plate 223 is manually placed over the document slot 102. The positioning slider 229 pushes the positioning slide rod 231 to slide, thereby causing the positioning slide plate 234 to slide. The positioning slide plate 234 positions and locks the material in the document slot 102, and the positioning spring 233 acts as a buffer. When the top cover plate 223 is opened, the positioning slider 229 drives the positioning slide rod 231 to move backward, which will release the positioning slide plate 234 from the material, making it easier to add new material.
[0044] Start the bidirectional motor 228, which drives the top dial 227 at both ends to rotate. Under the transmission of the belt 226, the bottom dial 225 rotates. The top dial 227 pulls the material in the data slot 102 out of the data slot 102, through the inclined slide 115, to the stamping table 116, waiting to be stamped.
[0045] At this time, the stamp body 218, which is parallel to and close to the stamping table 116, needs to stamp the material. The cylinder 201 is activated, and the cylinder 201 extends to push the conical head rod 221 forward. The conical head rod 221 extends into the rectangular stamp seat 214 and squeezes the stamp slide rod 215. The stamp slide rod 215 will slide, causing the stamp body 218 to contact the material on the stamping table 116 for stamping. After stamping, the cylinder 201 retracts. At the same time, during stamping, the other three stamp bodies 218 will contact the ink trough 224 set on the ink pad holder 205 to automatically add ink.
[0046] At this point, one stamp has been placed on the material. If a second stamp is needed, the moving motor 206 is activated. The moving motor 206 drives the drive gear 208 to rotate. The drive gear 208 engages with the helical rack 212, causing the helical rack 212 to rotate and the cylindrical cylinder 209 to slide forward while rotating, rotating the next stamp body 218 until it is parallel to the stamping table 116. Then the moving motor 206 stops working. At this time, the cylinder 201 is activated again to extend, driving the conical head rod 221 to squeeze... Press the stamp slide bar 215 to make the second stamp body 218 stamp the material of the stamping table 116. Since the cylindrical tube 209 slides forward, the stamp is now misaligned with the previous stamp. If another stamp is needed, start the moving motor 206 again to drive the drive gear 208 to rotate, making the cylindrical tube 209 slide. Then start the cylinder 201 to make the stamp body 218 stamp. After stamping, start the moving motor 206 to reverse and return the cylindrical tube 209 to the initial position for the next stamping.
[0047] After the material is stamped, it will be moved to the discharge trough 113 by the bottom dial 225 and then manually removed; thus completing the automatic stamping process, which can stamp multiple materials at once.
Claims
1. A stamping device for financial management, comprising a frame (1), wherein a stamping mechanism (2) is provided on the frame (1), and a connecting frame (114) and a stamping table (116) are also provided on the frame (1), characterized in that: The stamping mechanism (2) includes a rotating component and a pressing component. The rotating component is slidably mounted on the connecting frame (114). Several different stamp bodies (218) are provided on the rotating component. The rotating component is used to change different stamp bodies (218) when stamping. The rotating component is also used to change the stamping position of the stamp body (218) on the stamping table (116). The pressing component is slidably mounted on the connecting frame (114). The pressing component is used to squeeze the stamp body (218) to perform the stamping operation. The rotating component includes a cylindrical tube (209), a power assembly, a guide protrusion (210), and a head assembly. The cylindrical tube (209) is slidably mounted on a connecting frame (114), and the cylindrical tube (209) is provided with a spiral groove (211) and a spiral rack (212). The power assembly is located on the connecting frame (114) and is positioned above the cylindrical tube (209). The guide protrusion (210) is fixedly mounted on the power assembly, and the guide protrusion (210) is slidably engaged with the spiral groove (211). The drive gear (208) in the power assembly engages with the spiral rack (212) to drive the cylindrical tube (209) to rotate and slide horizontally. The cylindrical tube (209) is fixedly connected to the head assembly, and the head assembly is provided with several different stamp bodies (218). The head assembly includes a rectangular stamp base (214), which is fixedly mounted on a cylindrical tube (209). A stamp slide rod (215) is slidably mounted on the rectangular stamp base (214) via an elastic component. There are four stamp slide rods (215), and each stamp slide rod (215) is provided with a stamp body (218). Each stamp body (218) is slidably mounted on the stamp slide rod (215) via a base assembly. When the cylindrical tube (209) rotates, it will drive the rectangular stamp base (214) to rotate, thereby changing different stamp bodies (218). When the cylindrical tube (209) slides, it will drive the stamp body (218) to slide, thereby changing the stamping position of the material on the stamping table (116). A limiting frame is slidably installed on the connecting frame (114). The limiting frame is rotatably connected to the cylindrical tube (209). The limiting frame is fixedly connected to one end of the pressing component. The other end of the pressing component is slidably installed on the connecting frame (114). When the cylindrical tube (209) slides, it drives the pressing component to slide together. After the cylindrical tube (209) rotates to select the corresponding stamp body (218), the pressing component will squeeze the stamp slide bar (215) to stamp the material on the stamping table (116). The pressing assembly includes a cylinder (201), one end of which is fixedly connected to the limiting frame, and the other end is slidably mounted on the connecting frame (114). A tapered head rod (221) is fixedly mounted on the movable end of the cylinder (201); the tapered head rod (221) presses the stamp slide rod (215) to perform the stamping operation.
2. The stamping device for financial management according to claim 1, characterized in that, The stamping mechanism (2) further includes a feeding component, which is used to feed materials onto the stamping table (116). The feeding component includes a storage box, a toggle assembly, and a card plate assembly. The storage box is mounted on the mechanism frame (1) and has a lid. When the lid covers the storage box, the card plate assembly positions the materials inside the box, and the toggle assembly feeds the materials onto the stamping table (116) in several batches.
3. The stamping device for financial management according to claim 2, characterized in that, The storage box includes a data slot (102) and a top cover (223). The data slot (102) contains materials, and the cover is the top cover (223). The top cover (223) is rotatably mounted on the mechanism frame (1). When the top cover (223) rotates to cover the data slot (102), the top cover (223) will drive the card plate assembly to position the materials in the data slot (102).
4. A stamping device for financial management according to claim 3, characterized in that, The card plate assembly includes a positioning slider (229), which is rotatably mounted on the mechanism frame (1). A positioning slide (230) is slidably mounted on the positioning slider (229). The positioning slider (229) is rotatably connected to a positioning slide rod (231), which is slidably mounted on the mechanism frame (1). The positioning slide rod (231) is provided with a positioning slide plate (234) through an elastic component. When the top cover plate (223) rotates to cover the data slot (102), the positioning slide rod (230) will push the positioning slide plate (234) to position the material in the data slot (102), and the material will be sequentially transported to the stamping table (116) by the actuating component.
5. A stamping device for financial management according to claim 4, characterized in that, The actuation assembly includes a bidirectional motor (228) and a top dial (227). The top dial (227) is mounted on both ends of the bidirectional motor (228), and the bottom dial (225) is rotatably mounted above the stamping table (116). The bottom dial (225) and the top dial (227) are connected by a belt (226).
6. A stamping device for financial management according to claim 1, characterized in that, The stamping mechanism (2) further includes an ink pad holder (205), which is fixedly installed on the connecting frame (114). The ink pad holder (205) is arched, and an ink pad groove (224) is provided on the top surface and two sides of the arch. The ink pad holder (205) is located on the outside of the stamp body (218).