Gold and silver paper making machine
By introducing a stamping drive component and a pressing element into the gold and silver paper production equipment, the problems of wrinkles and damage during the gold and silver paper pressing process were solved, and efficient and stable production of finished gold and silver paper products was achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 卢远海
- Filing Date
- 2025-08-13
- Publication Date
- 2026-07-24
AI Technical Summary
Existing gold and silver paper production equipment is prone to wrinkling or damage during the pressing process, resulting in a low yield of finished products.
The gold and silver paper making machine includes a frame, paper feeding device, hot stamping device, paper cutting device, stamping device and paper output device. Through the cooperation of the stamping drive component and the pressing component, it ensures that the gold and silver paper is synchronously fed after cutting and accurately folded on the stamping table to prevent misalignment and wrinkles.
It improved the yield of finished gold and silver paper, ensured the stability and precision of the stamping process, reduced wrinkles and damage, and enhanced the processing effect.
Smart Images

Figure CN224545548U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of gold and silver paper making equipment, and in particular to a gold and silver paper making machine. Background Technology
[0002] Gold and silver paper is paper used in sacrificial rites, usually symbolizing gold and silver treasures. It represents people's respect for ancestors or spirits and their wishes for wealth.
[0003] Gold and silver paper are indispensable sacrificial items for some traditional Chinese festivals. They are artificially made from paper foil (gold and silver foil) or ink. Basically, families and temples use the burning of gold and silver paper to pray to gods and Buddhas. Currently, the paper-folding devices on the market use pressing blocks to fold the paper during the feeding process. However, the pressing blocks easily cause wrinkles or even damage to the gold and silver paper during the pressing process, resulting in defective finished paper paper offerings and a low yield rate. Summary of the Invention
[0004] In order to address the technical deficiencies mentioned in the background section, the purpose of this utility model is to provide a gold and silver paper making machine.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A gold and silver paper making machine includes a frame, a paper feeding device arranged sequentially at intervals along the conveying direction of the conveyor frame, a hot stamping device for hot stamping the gold and silver paper, a paper cutting device for cutting the gold and silver paper to a set size, a stamping device, and a paper output device for removing the stamped gold and silver paper; the paper feeding device is used to simultaneously convey two gold and silver paper strips, which are conveyed up and down synchronously; the stamping device includes a stamping drive assembly, a stamping table disposed at the discharge end of the paper cutting device, and a stamping pin located above the stamping table. The component; the stamping drive assembly is disposed within the frame and is used to drive the stamping assembly to move up and down; the stamping assembly includes a mounting frame mounted on the stamping table and two stamping parts and a pressing part disposed on the mounting frame; the mounting frame is connected to the stamping drive assembly, the cut gold and silver paper is located on the stamping table, the pressing part is correspondingly disposed on the upper surface of the stamping table, and one of the stamping parts is disposed on each side of the stamping table along the conveying direction so that the two cut gold and silver papers are bent into a whole.
[0006] By adopting the above technical solution, the gold and silver paper strip is conveyed to the stamping device after hot stamping and cutting. The stamping table is a mold for folding and forming the gold and silver paper to achieve rapid folding and forming. The pressing component presses the gold and silver paper to prevent misalignment during the stamping process, improves the stability of the stamping process and the accuracy of stamping and folding. After the pressing component presses the gold and silver paper, the two stamping components then stamp and fold the two sides of the gold and silver paper, which can also effectively prevent wrinkles from forming during the stamping process, thereby improving the yield of finished products and achieving higher processing results.
[0007] Furthermore, two pressing components are provided, spaced apart along the conveying direction to improve the pressing effect. Each pressing component includes two connecting posts, a pressing block, and two springs. The two connecting posts are vertically arranged and movably connected to the mounting frame, and each connecting post is fitted with a spring. The pressing block is fixed to the lower end of each connecting post. The spring is located between the pressing block and the mounting frame, providing elastic pressing, which helps protect the gold and silver paper and improves the stamping quality.
[0008] Furthermore, the pressing block has a recessed center to form a pressing groove. During stamping, the gold and silver paper is located between the pressing block and the stamping table. The bottom of the groove is in contact with the upper surface of the stamping table, and the two side walls of the groove are in contact with the sides of the stamping table, which facilitates the bending and shaping of the gold and silver paper and achieves better results.
[0009] Furthermore, the stamping table is configured with a frustum-shaped structure, and the upper surface area of the stamping table is minimized. Both stamping parts are located between the two pressing parts, resulting in a compact structure. The upper end of each stamping part is fixed to the mounting bracket, and the lower end of each stamping part has an inclined surface on the side facing the stamping table to conform to the side of the stamping table, increasing the pressing area and making stamping more convenient.
[0010] Furthermore, the mounting frame includes a mounting plate, multiple connecting rods, and two connecting seats. The length direction of the mounting plate is perpendicular to the conveying direction of the gold and silver paper. At least one connecting rod is provided at each end of the mounting plate. The lower end of each connecting rod passes through the worktable of the frame and connects to a connecting seat. This design avoids misalignment, resulting in a more compact structure and easier and faster installation and disassembly. Both connecting seats are connected to the stamping drive assembly.
[0011] Furthermore, the stamping device also includes two sets of receiving assemblies for temporarily placing gold and silver paper. Each receiving assembly includes a flip plate for placing the gold and silver paper, a support rod, a connecting shaft, and a return spring. The flip plate is located on one side above the stamping table. The connecting shaft is located on the side of the flip plate opposite to the other set of receiving assemblies. The connecting shaft is supported by the upper end of the support rod. The end of the connecting shaft away from the flip plate is fixedly connected to one end of the return spring, and the other end of the return spring is fixed to the worktable of the frame. This facilitates the return of the flip plate to the return of the stamped gold and silver paper, thereby facilitating the conveying of the stamped and bent gold and silver paper and improving work efficiency. The flip plate is located between the stamping table and the pressing component. The flip plate also facilitates the placement and flattening of the gold and silver paper, improving stamping accuracy.
[0012] Furthermore, the stamping drive assembly includes a drive motor, a drive wheel, a first chain belt, a first driven gear, a second driven gear, a second chain belt, a connecting column, and two rocker arms. The output shaft of the drive motor is connected to the drive wheel, and the first chain belt connects the drive wheel and the first driven gear. The second chain belt connects the first driven gear and the second driven gear. The second driven gear is fixed to the connecting column. The length direction of the connecting column is perpendicular to the conveying direction. An eccentric plate is connected to both ends of the connecting column. The lower end of the rocker arm is connected to the corresponding eccentric plate bearing, and the upper end of the rocker arm is connected to the corresponding lower end bearing of the mounting bracket, resulting in a more stable transmission connection.
[0013] Furthermore, the stamping drive assembly also includes a tensioning seat and a tensioning member. The tensioning seat has a groove along its height direction, through which the second chain belt passes. The tensioning member is disposed within the groove, with its lower end abutting against the upper surface of the second chain belt, making installation and debugging more convenient and quick.
[0014] Furthermore, the paper feeding device includes two feeding seats and two feeding rollers. The two feeding seats are spaced apart along the height direction on the frame, and each feeding seat holds a roll of gold and silver paper. The two feeding rollers are arranged vertically on the frame and located on one side of the feeding end of the hot stamping device. Two sheets of gold and silver paper are fed through the gap between the two feeding rollers, resulting in a compact structure and stable feeding.
[0015] Furthermore, the gold and silver paper making machine may include multiple paper feeding devices, hot stamping devices, paper cutting devices, and paper output devices arranged side by side along the conveying direction. The stamping device includes a stamping drive assembly, a stamping table disposed at the output end corresponding to the paper cutting device, and a stamping component located above the corresponding stamping table. Multiple sets of stamping tables and stamping components are provided. The stamping drive assembly is used to simultaneously drive multiple sets of stamping tables and stamping components to perform synchronous lifting and lowering operations. Using the same set of stamping drive assemblies to drive multiple sets of stamping tables and stamping components to perform synchronous operations allows multiple production lines to share one set of stamping drive assemblies, resulting in lower costs and higher production efficiency.
[0016] In summary, the beneficial effects of this utility model are as follows: In this invention, the gold and silver paper strip is hot-stamped and cut before being conveyed to the stamping device. The stamping table is a mold for folding the gold and silver paper. The pressing component presses down on the gold and silver paper, which can prevent misalignment during the stamping process, improve the stability of the stamping process and the accuracy of the stamping and folding. After the pressing component presses down on the gold and silver paper, the two stamping components then stamp and fold both sides of the gold and silver paper, which can also effectively prevent wrinkles from forming during the stamping process, thereby improving the yield of the finished product and achieving a higher processing effect. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of one embodiment of the gold and silver paper making machine of this utility model.
[0018] Figure 2 This is a schematic diagram of the structure of a stamping device of the gold and silver paper making machine of this utility model.
[0019] Figure 3 This is a schematic diagram of the stamping device of the gold and silver paper making machine of this utility model from another perspective.
[0020] Figure 4 This is a schematic diagram of the stamping component of the gold and silver paper making machine of this utility model from another perspective.
[0021] Explanation of the reference numerals in the figure: 1. Gold and silver paper making machine; 2. Machine frame; 31. Feeding seat; 311. Feeding rod; 312. Baffle; 4. Hot stamping device; 5. Paper cutting device; 6. Stamping device; 61. Stamping drive assembly; 611. Drive motor; 612. Drive wheel; 613. First chain belt; 614. First driven gear; 615. Second driven gear; 616. Second chain belt; 617. Transmission shaft; 618. Swing rod; 619. Tensioner; 620. Tensioning component; 621, Eccentric plate; 62, Stamping table; 63, Stamping assembly; 631, Mounting bracket; 6311, Mounting plate; 6312, Connecting rod; 6313, Connecting seat; 632, Stamping part; 633, Pressing part; 6331, Connecting column; 6332, Pressing block; 6333, Spring; 64, Receiving assembly; 641, Flip plate; 642, Support rod; 643, Connecting shaft; 644, Return spring; 7, Paper output device. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model are within the protection scope of the present utility model.
[0023] Those skilled in the art should understand that, in the disclosure of this utility model, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on this utility model.
[0024] In the description of this utility model, the use of terms such as "several" means one or more, with "multiple" meaning two or more. Terms like "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. The use of terms like "first," "second," and "third" is merely for distinguishing technical features and should not be construed as indicating or implying relative importance, the quantity of indicated technical features, or the sequential relationship between indicated technical features.
[0025] The following is in conjunction with the appendix Figure 1-4 The embodiments of this utility model will be described in further detail below.
[0026] A gold and silver paper making machine 1, such as Figure 1 , Figure 2 , Figure 3 As shown, it includes a frame 2, a paper feeding device arranged sequentially at intervals along the conveying direction of the conveyor frame 2, a hot stamping device 4 for hot stamping gold and silver paper, a paper cutting device 5 for cutting gold and silver paper to a set size, a stamping device 6, and a paper output device 7 for removing the stamped gold and silver paper. The paper feeding device is used to simultaneously convey two gold and silver paper strips, which are conveyed up and down synchronously. The stamping device 6 includes a stamping drive assembly 61, a stamping table 62 disposed at the discharge end of the paper cutting device 5, and a stamping assembly 63 located above the stamping table 62. The stamping drive assembly 61 is disposed within the frame 2 and is used to drive the stamping assembly 63 to move up and down. The stamping assembly 63 includes a mounting frame 631 mounted on the stamping table 62 and two stamping parts 632 and a pressing part 633 disposed on the mounting frame 631. The mounting bracket 631 is connected to the stamping drive assembly 61. The cut gold and silver paper is located on the stamping table 62. The pressing component 633 is correspondingly set on the upper surface of the stamping table 62. A stamping component 632 is set on both sides of the stamping table 62 along the conveying direction so that the two cut gold and silver papers are bent into a whole.
[0027] Specifically, after hot stamping and cutting, the gold and silver paper strip is conveyed to the stamping device 6. The stamping table 62 serves as a mold for folding the gold and silver paper, enabling rapid folding and forming. The pressing component 633 presses down on the gold and silver paper, preventing misalignment during stamping, improving stability and folding accuracy. After the pressing component 633 holds the paper in place, the two stamping components 632 then fold both sides of the paper, effectively preventing wrinkles and improving yield and processing quality. The stamping drive assembly 61 drives the mounting frame 631 and its pressing components 633 and folding components 632 to move synchronously up and down to perform stamping and folding operations on the gold and silver paper, resulting in higher transmission and stamping efficiency.
[0028] In some embodiments, please refer to Figure 3 , Figure 4 Two pressing components 633 are provided, spaced apart along the conveying direction to improve the pressing effect. Each pressing component 633 includes two connecting posts 6331, a pressing block 6332, and two springs 6333. The two connecting posts 6331 are vertically arranged and movably connected to the mounting bracket 631, and each connecting post 6331 is fitted with a spring 6333. The lower end of each connecting post 6331 is fixed to the pressing block 6332. The springs 6333 are located between the pressing block 6332 and the mounting bracket 631, providing elastic pressing, which helps protect the gold and silver paper and improves the stamping quality.
[0029] Preferably, the pressing block 6332 is recessed in the middle to form a pressing groove. When pressing, the gold and silver paper is located between the pressing block 6332 and the pressing table 62. The bottom of the groove is in contact with the upper surface of the pressing table 62, and the two side walls of the groove are in contact with the side of the pressing table 62, which facilitates the bending and shaping of the gold and silver paper, has a better anti-wrinkle effect, and makes the pressing more stable.
[0030] Specifically, the stamping table 62 is designed with a frustum shape, and the upper surface of the stamping table 62 has the smallest area. Both stamping parts 632 are located between the two pressing parts 633, resulting in a compact structure. The upper end of the stamping part 632 is fixed to the mounting bracket 631, and the lower end of the stamping part 632 has an inclined surface on the side facing the stamping table 62 to fit against the side of the stamping table 62, increasing the pressing area and making stamping more convenient.
[0031] In some embodiments, the mounting bracket 631 includes a mounting plate 6311, multiple connecting rods 6312, and two connecting seats 6313. The length direction of the mounting plate 6311 is perpendicular to the conveying direction of the gold and silver paper. At least one connecting rod 6312 is provided at each end of the mounting plate 6311. The lower end of the connecting rod 6312 passes through the worktable of the frame 2 and connects to a connecting seat 6313. This arrangement avoids misalignment, resulting in a more compact structure and easier and faster installation and disassembly. Both connecting seats 6313 are connected to the stamping drive assembly 61.
[0032] In some embodiments, the stamping device 6 further includes two sets of receiving assemblies 64 for temporarily placing gold and silver paper. Each receiving assembly 64 includes a flap 641 for placing the gold and silver paper, a support rod 642, a connecting shaft 643, and a return spring 644. The flap 641 is located on one side above the stamping table 62. A connecting shaft 643 is located on the side of the flap 641 opposite to the other set of receiving assemblies 64. The connecting shaft 643 is supported on the upper end of the support rod 642. One end of the connecting shaft 643, away from the flap 641, is fixedly connected to one end of the return spring 644. The other end of the return spring 644 is fixed to the worktable of the frame 2, facilitating the reset of the flap 641 to reset the stamped gold and silver paper, thus facilitating the conveying of the stamped and bent gold and silver paper and improving work efficiency. The flap 641 is located between the stamping table 62 and the pressing member 633. The flap 641 also facilitates the placement and flattening of the gold and silver paper, improving stamping accuracy.
[0033] In use, when the cut gold and silver paper is fed onto the two flip plates 641, the stamping drive assembly 61 drives the mounting frame 631 to lower the stamping parts 632 and 633. The pressing block 6332 of the pressing part 633 is pressed tightly against the upper surface of the gold and silver paper. Under the squeezing force of the corresponding stamping parts 632, the flip plates 641 flip downward, pressing the gold and silver paper onto the stamping table 62, and the return spring 644 is stretched. After stamping is completed, the stamping drive assembly 61 drives the mounting frame 631 to raise the stamping parts 632 and 633. Under the elastic force of the return spring 644, the flip plates 641 reset the gold and silver paper on them, allowing the stamped gold and silver paper to detach from the stamping table 62, facilitating the conveying of the gold and silver paper and improving the conveying efficiency.
[0034] In some embodiments, the stamping drive assembly 61 includes a drive motor 611, a drive wheel 612, a first chain belt 613, a first driven gear 614, a second driven gear 615, a second chain belt 616, a drive shaft 617, and two rocker arms 618. The output shaft of the drive motor 611 is connected to the drive wheel 612. The first chain belt 613 connects the drive wheel 612 and the first driven gear 614. The second chain belt 616 connects the first driven gear 614 and the second driven gear 615. The second driven gear 615 is fixed to the drive shaft 617. The length direction of the drive shaft 617 is perpendicular to the conveying direction. An eccentric plate 621 is connected to both ends of the drive shaft 617. The lower end of the rocker arm 618 is connected to the bearing of the corresponding eccentric plate 621, and the upper end of the rocker arm 618 is connected to the lower end bearing of the corresponding mounting bracket 631, making the transmission connection more stable.
[0035] The drive motor 611 drives the first chain belt 613 and the first driven gear 614 to rotate via the drive wheel 612. The first driven gear 614 drives the second driven gear 615 and the transmission shaft 617 to rotate via the second chain belt 616. The two eccentric plates 621 at both ends of the transmission shaft 617 make circular motion. Since the rocker arm 618 is eccentrically connected to the eccentric plate 621, the eccentric plate 621 can drive the rocker arm 618 to swing up and down during the circular motion, thereby realizing the automatic lifting and lowering movement of the mounting frame 631 and the stamping parts 632 and pressing parts 633 on it.
[0036] Preferably, the stamping drive assembly 61 further includes a tensioning seat 619 and a tensioning element 620. The tensioning seat 619 is provided with a groove along its height direction, the second chain belt 616 passes through the groove, and the tensioning element 620 is disposed in the groove, with the lower end of the tensioning element 620 abutting against the upper surface of the second chain belt 616, making installation and debugging more convenient and quick.
[0037] In some embodiments, the paper feeding device includes two feed seats 31 and two feed rollers. The two feed seats 31 are spaced apart along the height direction on the frame 2, and each feed seat 31 holds a roll of gold and silver paper. The two feed rollers are arranged vertically on the frame 2 and located on one side of the feed end of the hot stamping device 4. Two sheets of gold and silver paper pass through the gap between the two feed rollers, resulting in a compact structure and stable feeding.
[0038] Specifically, the feeding base 31 includes a feeding rod 311, two baffles 312, and a locking block. One end of the feeding rod 311 is rotatably connected to the frame 2, and the other end of the feeding rod 311 is provided with external threads. The two baffles 312 are fitted onto the feeding rod 311, and the gold and silver paper roll is placed between the two baffles 312 and fitted onto the feeding rod 311. The locking block is threaded to the other end of the feeding rod 311, and the side of the locking block abuts against the side of the adjacent baffle 312 to fix the gold and silver paper roll, making installation and disassembly convenient and providing stronger compatibility. The feeding roller structure and the locking block are not shown in the figure; the locking block can be a nut structure. The feeding roller can be a conventional circular roller structure.
[0039] Among them, the gold and silver paper strips on the two feeding seats 31 pass through the gap between the two feeding rollers simultaneously, which makes it easier to flatten the two gold and silver paper strips and also makes the two gold and silver paper strips fit together more tightly, thus improving the cutting accuracy.
[0040] In some embodiments, the gold and silver paper making machine may include multiple paper feeding devices, hot stamping devices 4, paper cutting devices 5, and paper output devices 7 arranged side by side along the conveying direction. The stamping device 6 includes a stamping drive assembly 61, a stamping table 62 disposed at the discharge end of the corresponding paper cutting device 5, and a stamping component 63 located above the corresponding stamping table 62. Multiple sets of stamping tables 62 and stamping components 63 are provided. The stamping drive assembly 61 is used to simultaneously drive multiple sets of stamping tables 62 and stamping components 63 to operate synchronously. Using the same set of stamping drive assemblies to drive multiple sets of stamping tables and stamping components to operate synchronously allows multiple production lines to share one set of stamping drive assemblies 61, resulting in lower costs and higher production efficiency. The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be covered within the scope of protection of this application.
Claims
1. A gold and silver paper making machine, characterized in that, The system includes a frame (2), a paper feeding device arranged sequentially at intervals along the conveying direction of the conveyor frame (2), a hot stamping device (4) for hot stamping gold and silver paper, a paper cutting device (5) for cutting gold and silver paper to a set size, a stamping device (6), and a paper output device (7) for removing the stamped gold and silver paper; the paper feeding device is used to simultaneously convey two gold and silver paper strips, which are conveyed up and down synchronously; the stamping device (6) includes a stamping drive assembly (61), a stamping table (62) disposed at the discharge end of the paper cutting device (5), and a stamping assembly (63) located above the stamping table (62); the stamping drive assembly (61) is disposed at the discharge end of the paper cutting device (5). Inside the frame (2), the stamping assembly (63) is used to drive the stamping component (63) to move up and down. The stamping component (63) includes a mounting frame (631) mounted on the stamping table (62) and two stamping parts (632) and a pressing part (633) set on the mounting frame (631). The mounting frame (631) is connected to the stamping drive assembly (61). The cut gold and silver paper is located on the stamping table (62). The pressing part (633) is correspondingly set on the upper surface of the stamping table (62). The stamping table (62) has one stamping part (632) on each side along the conveying direction so that the two cut gold and silver papers are bent into a whole.
2. The gold and silver paper making machine according to claim 1, characterized in that, Two pressing components (633) are provided, and the two pressing components (633) are spaced apart along the conveying direction; each pressing component (633) includes two connecting columns (6331), a pressing block (6332), and two springs (6333); the two connecting columns (6331) are vertically arranged and movably connected to the mounting frame (631), and each connecting column (6331) is fitted with a spring (6333); the lower end of the connecting column (6331) is fixed with the pressing block (6332); the spring (6333) is located between the pressing block (6332) and the mounting frame (631).
3. The gold and silver paper making machine according to claim 2, characterized in that, The pressing block (6332) is recessed in the middle to form a pressing groove. When pressing, the gold and silver paper is located between the pressing block (6332) and the pressing table (62). The bottom of the groove is in contact with the upper surface of the pressing table (62), and the two side walls of the groove are in contact with the side of the pressing table (62).
4. The gold and silver paper making machine according to claim 2, characterized in that, The stamping table (62) is configured as a frustum-shaped structure, and the upper surface of the stamping table (62) has the smallest area; both stamping parts (632) are located between the two pressing parts (633); the upper end of the stamping part (632) is fixed on the mounting bracket (631), and the lower end of the stamping part (632) facing the stamping table (62) has an inclined surface to fit against the side of the stamping table (62).
5. The gold and silver paper making machine according to claim 1, characterized in that, The mounting frame (631) includes a mounting plate (6311), multiple connecting rods (6312), and two connecting seats (6313). The length direction of the mounting plate (6311) is perpendicular to the conveying direction of the gold and silver paper. At least one connecting rod (6312) is provided at each end of the mounting plate (6311). The lower end of the connecting rod (6312) passes through the worktable of the frame (2) and connects to one of the connecting seats (6313). Both connecting seats (6313) are connected to the stamping drive assembly (61).
6. The gold and silver paper making machine according to claim 1, characterized in that, The stamping device (6) further includes two sets of receiving components (64) for temporarily placing gold and silver paper. Each receiving component (64) includes a flip plate (641) for placing gold and silver paper, a support rod (642), a connecting shaft (643), and a return spring (644)(6333). The flip plate (641) is located on one side above the stamping table (62). The connecting shaft (643) is provided on the side of the flip plate (641) away from the other set of receiving components (64). The connecting shaft (643) is supported on the upper end of the support rod (642). One end of the connecting shaft (643) away from the flip plate (641) is fixedly connected to one end of the return spring (644)(6333). The other end of the return spring (644)(6333) is fixed to the worktable of the frame (2). The flip plate (641) is located between the stamping table (62) and the pressing member (633).
7. The gold and silver paper making machine according to claim 1, characterized in that, The stamping drive assembly (61) includes a drive motor (611), a drive wheel (612), a first chain belt (613), a first driven gear (614), a second driven gear (615), a second chain belt (616), a transmission shaft (617), and two rocker arms (618). The output shaft of the drive motor (611) is connected to the drive wheel (612). The first chain belt (613) connects the drive wheel (612) and the first driven gear (614), and the second chain belt (616) connects the second driven gear (615). The first driven gear (614) and the second driven gear (615) are connected; the second driven gear (615) is fixed on the transmission shaft (617); the length direction of the transmission shaft (617) is perpendicular to the conveying direction; an eccentric plate (621) is connected to both ends of the transmission shaft (617); the lower end of the rocker arm (618) is connected to the bearing of the corresponding eccentric plate (621); and the upper end of the rocker arm (618) is connected to the lower end bearing of the corresponding mounting bracket (631).
8. The gold and silver paper making machine according to claim 7, characterized in that, The stamping drive assembly (61) further includes a tensioning seat (619) and a tensioning member (620); the tensioning seat (619) is provided with a groove along its height direction, the second chain belt (616) passes through the groove, the tensioning member (620) is disposed in the groove, and the lower end of the tensioning member (620) abuts against the upper surface of the second chain belt (616).
9. The gold and silver paper making machine according to claim 1, characterized in that, The paper feeding device includes two feeding seats (31) and two feeding rollers; the two feeding seats (31) are spaced apart on the frame (2) along the height direction, and each feeding seat (31) holds a roll of gold and silver paper material; the two feeding rollers are arranged vertically on the frame (2) and located on one side of the feeding end of the hot stamping device (4), and the two gold and silver paper strips pass through the gap between the two feeding rollers.
10. The gold and silver paper making machine according to claim 1, characterized in that, The gold and silver paper making machine may include multiple paper feeding devices, hot stamping devices (4), paper cutting devices (5), and paper output devices (7) arranged side by side along the conveying direction; the stamping device (6) includes a stamping drive assembly (61), a stamping table (62) disposed at the discharge end corresponding to the paper cutting device (5), and a stamping component (63) located above the stamping table (62); multiple sets of the stamping table (62) and the stamping component (63) are provided; the stamping drive assembly (61) is used to simultaneously drive multiple sets of the stamping table (62) and the stamping component (63) to perform synchronous lifting and lowering operations.