Energy-saving stove panel stamping equipment and method for commercial kitchen
By designing automated commercial kitchen energy-saving stove panel stamping equipment, the problems of low manual operation efficiency, poor adaptability, unsmooth production process, positioning accuracy and energy consumption in the existing technology are solved, and an efficient, flexible and energy-saving production process is achieved.
Patent Information
- Application Number
- CN202510272833.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2025-06-24
AI Technical Summary
The existing stove panel stamping device has problems such as low manual operation efficiency, poor adaptability, poor production process, positioning accuracy problems, and waste of energy consumption.
A commercial kitchen energy-saving stove panel stamping equipment is designed, which adopts automated feeding, stamping and unloading operations. Through the coordinated work of the loading and unloading transmission assembly and the stamping assembly, it realizes automated production, and adapts to panels of different sizes through the distance adjustment mechanism to avoid operational interference, and ensures accurate positioning through precise guide perforation and servo motor control.
Improve production efficiency, adapt to panels of various sizes, avoid operational interference, ensure stamping quality, reduce labor intensity, save energy, and meet energy conservation and environmental protection requirements.
Smart Images

Figure CN120190253A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of stamping equipment, and particularly relates to an energy-saving stove panel stamping equipment and method for commercial kitchens. Background Art
[0002] In commercial kitchens, energy-saving stove panels are an important part of kitchen equipment. With the continuous growth of market demand, higher requirements are put forward for the production efficiency and quality of stove panels.
[0003] However, there are some deficiencies in the existing stove panel stamping devices. First of all, in traditional stamping equipment, the feeding process often needs to be operated manually, which not only has a large labor intensity, but also has low efficiency, and is prone to human errors, affecting the production progress and product quality.
[0004] Secondly, the existing stamping devices have poor adaptability to stove panels of different sizes. Usually, different molds or equipment need to be replaced to adapt to different-sized panels, which not only increases the production cost, but also reduces the production efficiency.
[0005] In addition, during the stamping operation and the blanking operation, interference is likely to occur, resulting in an unsmooth production process and affecting the overall production efficiency.
[0006] Moreover, there are also certain problems with the positioning accuracy of the existing stamping equipment, which may lead to inaccurate feeding and blanking positions of the stove panel, thus affecting the stamping quality.
[0007] Finally, there is also a certain waste in energy consumption in traditional stamping devices, which does not meet the requirements of modern energy conservation and environmental protection.
[0008] Therefore, the present solution particularly proposes an energy-saving stove panel stamping equipment and method for commercial kitchens to solve the above problems. Summary of the Invention
[0009] To overcome the defects of the prior art, the purpose of the present invention is to provide an energy-saving stove panel stamping equipment and method for commercial kitchens.
[0010] To achieve the above-mentioned purpose, the technical solution of the present invention is implemented as follows: an energy-saving stove panel stamping device for commercial kitchens includes a workbench, the top surface of the workbench is divided into a loading area, a unloading stamping area, and a waiting area from left to right, the workbench is provided with a loading perforation at the position of the loading area, and a panel stacking box is installed at the lower end of the loading perforation, the workbench is provided with a stamping lower die at the position of the unloading stamping area, a mounting plate perpendicular to the plane where the top surface is located is arranged above the workbench, loading and unloading adsorption parts are distributed on the workbench, and second sliding guide rails are installed at the upper and lower edges of the plate surface in front of the mounting plate, and loading and unloading transmission components for driving the loading and unloading adsorption parts to perform loading and unloading operations between the loading area and the unloading stamping area are installed on the two second sliding guide rails; The loading and unloading transmission components specifically include the following structures: Turn the dial installed on the back of the mounting plate; A transmission pin installed on the edge of the turntable; Two second sliding blocks correspondingly slidably mounted on the upper and lower second sliding guide rails; A vertical guide frame installed between the upper and lower second sliding blocks; Vertical guide perforations distributed on the vertical guide frame; A connecting rod is distributed in front of the vertical guide frame and the bottom end of which is connected to the top of the upper and lower material adsorption member, and a transmission pin passes through the vertical guide through hole and is connected to the top of the connecting rod; An up-and-down guide convex strip installed on the front end surface of the second slider at the bottom to limit the connecting rod to only slide up and down; A connecting slider is also installed on the second sliding guide rail below. The bottom of the connecting slider is connected to the stamping assembly, and the right side is connected to the left side of the second slider below. It is used to drive the stamping assembly to rotate in the unloading stamping area and the waiting area while the unloading and loading transmission assembly drives the unloading and loading adsorption parts to move left and right, so as to avoid interference between the stamping operation and the unloading operation.
[0011] Preferably, a semicircular arc guide through hole is provided on the mounting plate for the transmission pin to move.
[0012] Preferably, the top of the workbench is provided with two parallel first sliding guide rails for the stamping assembly to slide left and right at the waiting area and the blanking stamping area. The stamping assembly specifically includes the following structure: A first sliding block slidably mounted on the front and rear two first sliding guide rails; A gantry spanning between the tops of the front and rear first slide blocks; The stamping cylinder is installed at the center of the top of the gantry; The punching upper die is connected to the output end of the punching cylinder.
[0013] Preferably, the loading and unloading adsorbent specifically includes the following structure: The mounting bracket directly connected to the bottom end of the connecting rod; The adsorption components distributed at the left and right ends below the mounting bracket; The distance adjustment mechanism installed inside the mounting bracket to adjust the distance between the two adsorption components to adapt to the adsorption transfer operation of stove panels of different sizes.
[0014] Preferably, the adsorption component specifically includes the following structure: A longitudinally distributed mounting bracket; The pneumatic suction cups correspondingly installed at the front and rear ends of the bottom of the mounting bracket.
[0015] Preferably, the distance adjustment mechanism specifically includes the following structure: The double-axis reduction motor installed at the center inside the mounting bracket; The driving lead screws respectively docked on the output ends on both sides of the double-axis reduction motor; The lead screw sleeves respectively threadedly sleeved on the two driving lead screws, and the bottom pipe walls of the two lead screw sleeves are respectively connected to the centers of the tops of the two adsorption components.
[0016] Preferably, a servo motor is installed on the back of the mounting plate to drive the rotating disk to continuously rotate forward and backward by 180°.
[0017] Preferably, several stove panels to be stamped are stacked in sequence from top to bottom inside the panel stacking box, and a stepping cylinder for intermittently pushing the internal materials is installed at the bottom of the panel stacking box.
[0018] Preferably: Step 1, the feeding preparation stage: Stack several stove panels to be stamped in sequence from top to bottom inside the panel stacking box; Start the stepping cylinder at the bottom of the panel stacking box to intermittently push the topmost stove panel inside, so that the panel is waiting for the feeding operation above the feeding perforation; Step 2, the feeding operation stage: The servo motor on the back of the mounting plate starts to drive the rotating disk to rotate clockwise; The transmission pin at the edge of the rotating disk moves as the rotating disk rotates, and the transmission pin moves to the rightmost side in the semi-circular guiding perforation of the mounting plate; The transmission pin penetrates out inside the vertical guiding perforation and docks with the top end of the connecting rod. As the rotating disk rotates clockwise, the transmission pin drives the vertical guiding frame and the loading and unloading suction attachment connected to the vertical guiding frame to move to the right through the second slider on the second sliding guide rail, and then presses down on the top surface of the topmost stove panel for adsorption operation; When the loading and unloading suction attachment moves above the loading area, the suction component in the loading and unloading suction attachment is activated, and the stove panel located above the loading perforation is adsorbed through the pneumatic suction cup; if it is a stove panel of different sizes, the double-axis reduction motor in the distance adjustment mechanism can be driven to rotate the driving lead screws on both sides, and the lead screw sleeve drives the suction component to adjust the distance to adapt to the panel size and perform the suction operation; Step 3: Transfer stage of the blanking stamping area: The servo motor continues to drive the rotating disk to rotate counterclockwise, and the transmission pin drives the loading and unloading suction attachment to move leftward through the second slider on the second sliding guide rail, thereby driving the just-adsorbed stove panel to be lowered to the top of the stamping lower die and placed down, and then returning to the loading area. At this time, due to the connection of the connecting slider, the lower second slider drives the stamping component to transfer from the waiting area to the blanking stamping area position; Step 4: Stamping operation stage: The stamping cylinder in the stamping component is activated, pushing the stamping upper die to move downward to cooperate with the stamping lower die to perform stamping operation on the stove panel; Step 5: Blanking operation stage: After stamping, the stamped panel is removed, and the stamping upper die is reset under the drive of the stamping cylinder; At this time, the loading and unloading suction attachment is activated again to adsorb a new stove panel in the loading area and repeat the above operations.
[0019] The beneficial effects of the present invention are reflected in: Improve production efficiency: Through the intermittent pushing of the stove panel by the stepping cylinder, and the coordinated work of the loading and unloading transmission component and the stamping component, automated loading, stamping and unloading operations are realized, reducing manual intervention and greatly improving production efficiency.
[0020] Adapt to different size panels: The distance adjustment mechanism in the loading and unloading suction attachment can adjust the distance between the suction components on both sides to adapt to stove panels of different sizes, improving the versatility and flexibility of the equipment.
[0021] Avoid operation interference: The setting of the connecting slider enables the loading and unloading transmission component to drive the stamping component to rotate between the blanking stamping area and the waiting area while driving the loading and unloading suction attachment to move left and right, avoiding interference between the stamping operation and the blanking operation, and ensuring the continuity and stability of production.
[0022] Precise positioning: Through the design of the semi-circular guide perforation and the vertical guide perforation, and the precise control of the rotating disk by the servo motor, the movement trajectory of the loading and unloading suction attachment is ensured to be accurate, thereby realizing precise loading and unloading of the stove panel.
[0023] Reduce labor intensity: The automated production process reduces the labor intensity of workers, enabling them to be liberated from tedious repetitive labor and improving the comfort and safety of work.
[0024] Save energy: The equipment is reasonably designed, and its components work together, which can effectively reduce energy consumption and improve energy utilization efficiency, meeting the requirements of energy conservation.
[0025] In summary, the energy-saving stove panel stamping equipment for commercial kitchens and its working method have various beneficial effects such as improving production efficiency, adapting to panels of various sizes, avoiding operation interference, ensuring stamping quality, reducing labor intensity, and saving energy, which are of great significance to the production and development of enterprises. Description of the Drawings
[0026] In the drawings: Figure 1 is the structural schematic diagram of the present invention; Figure 2 is the structural schematic diagram of the stamping component of the present invention; Figure 3 is the exploded separation diagram of the loading and unloading suction attachment of the present invention; Figure 4 is the structural schematic diagram of the distance adjustment mechanism of the present invention; Figure 5 is the structural schematic diagram of the adsorption component of the present invention; Figure 6 is the structural schematic diagram of the loading and unloading transmission component of the present invention; Description of the reference numerals in the drawings: 1, workbench; 2, stamping lower die; 3, stamping component; 4, first sliding guide rail; 5, loading and unloading suction attachment; 6, loading and unloading transmission component; 7, mounting plate; 8, second sliding guide rail; 9, servo motor; 10, panel stacking box; 11, loading perforation; 21, connecting slider; 31, gantry; 32, first slider; 33, stamping upper die; 34, stamping cylinder; 51, mounting frame; 52, distance adjustment mechanism; 53, adsorption component; 521, double-axis reduction motor; 522, driving lead screw; 523, lead screw sleeve; 531, mounting rod; 532, pneumatic suction cup; 61, rotating disk; 62, transmission pin; 63, vertical guide frame; 64, vertical guide perforation; 65, second slider; 66, upper and lower guide ribs; 67, connecting rod; 71, semi-circular guide perforation; 101, stepping cylinder. Detailed implementation manners
[0027] The present invention will be further described in detail below in conjunction with the drawings and embodiments. Obviously, the described embodiments are only a part of the embodiments of the invention, rather than all of the embodiments. Without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. Based on the embodiments of the invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the invention.
[0028] It should be noted that if there are directional indications (such as up, down, left, right, front, back,...) involved in the embodiments of the invention, then the directional indications are only used to explain the relative positional relationship and movement conditions between components in a certain specific posture (as shown in the drawings). If the specific posture changes, the directional indications will also change accordingly.
[0029] In addition, "a plurality of" means two or more. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the invention.
[0030] Please refer to the accompanying drawings of the specification Figures 1-6 , the present invention provides an energy-saving stove panel stamping device for commercial kitchens and its working method. The device includes a workbench 1, and the top surface of the workbench 1 is sequentially divided into a loading area, a blanking and stamping area, and a waiting area from left to right.
[0031] At the loading area of the workbench 1, a loading perforation 11 is provided, and a panel stacking box 10 is installed at the lower port of the loading perforation 11. A number of stove panels to be stamped are stacked in the panel stacking box 10 in sequence from top to bottom, and a stepping cylinder 101 for intermittently pushing the internal materials is installed at the bottom of the panel stacking box 10.
[0032] At the blanking and stamping area of the workbench 1, a stamping lower die 2 is installed. Above the workbench 1, a mounting plate 7 perpendicular to the plane of its top surface is provided, and loading and unloading suction attachments 5 are distributed on the workbench 1. Second sliding rails 8 are installed at the upper and lower edges of the front plate surface of the mounting plate 7, and a loading and unloading transmission assembly 6 for driving the loading and unloading suction attachments 5 to perform loading and unloading operations between the loading area and the blanking and stamping area is installed on the two second sliding rails 8.
[0033] The loading and unloading transmission assembly 6 includes a rotating disk 61 rotatably mounted on the back of the mounting plate 7, a transmission pin 62 mounted at the edge of the rotating disk 61, two second sliders 65 slidably mounted on the upper and lower second sliding rails 8 correspondingly, a vertical guide frame 63 mounted between the upper and lower second sliders 63, vertical guide through holes 64 distributed on the vertical guide frame 63, a connecting rod 67 distributed in front of the vertical guide frame 63 and having its bottom end docked with the top of the loading and unloading suction attachment 5, the transmission pin 62 passing through the inside of the vertical guide through hole 64 and docking with the top end of the connecting rod 67, and upper and lower guiding ridges 66 mounted on the front end face of the lower second slider 65 to restrict the connecting rod 67 to only slide up and down. A connecting slider 21 is also mounted on the lower second sliding rail 8, the bottom of the connecting slider 21 is connected to the stamping assembly 3, and the right side is connected to the left side of the lower second slider 65, so as to drive the stamping assembly 3 to rotate in the blanking stamping area and the waiting area while the loading and unloading transmission assembly 6 drives the loading and unloading suction attachment 5 to move left and right, avoiding interference between the stamping operation and the blanking operation. A semi-circular arc-shaped guide through hole 71 for the movement of the transmission pin 62 is formed on the mounting plate 7, and a servo motor 9 that drives the rotating disk 61 to continuously rotate forward and backward by 180° is mounted on the back of the mounting plate 7.
[0034] On the top of the workbench 1, two parallel first sliding rails 4 for the left and right sliding of the stamping assembly 3 are arranged in the front and back at the waiting area and the blanking stamping area. The stamping assembly 3 includes first sliders 32 slidably mounted on the front and back first sliding rails 4 correspondingly, a gantry 31 spanning between the tops of the front and back first sliders 32, a stamping cylinder 34 mounted at the center position on the top of the gantry 31, and a stamping upper die 33 docked on the output end of the stamping cylinder 34.
[0035] The loading and unloading suction attachment 5 includes a mounting frame 51 directly connected to the bottom end of the connecting rod 67, suction assemblies 53 distributed at the left and right ends below the mounting frame 51, and a distance adjustment mechanism 52 mounted inside the mounting frame 51 to adjust the distance between the two suction assemblies 53 on both sides to adapt to the suction transfer operation of stove panels of different sizes. The suction assembly 53 includes a longitudinally distributed mounting frame 531, and pneumatic suction cups 532 mounted at the front and back end positions of the bottom of the mounting frame 531 correspondingly. The distance adjustment mechanism 52 includes a double-shaft reduction motor 521 mounted at the center inside the mounting frame 51, drive lead screws 522 respectively docked on the output ends on both sides of the double-shaft reduction motor 521, lead screw sleeves 523 respectively threadedly sleeved on the two drive lead screws 522, and the bottom pipe walls of the two lead screw sleeves 523 are respectively connected to the centers of the tops of the two suction assemblies 53 on both sides.
[0036] The working method of this energy-saving stove panel stamping equipment for commercial kitchens is as follows: Step 1: Loading preparation stage: A number of stove panels to be stamped are stacked in the panel stacking box 10 in sequence from top to bottom. The stepping cylinder 101 at the bottom of the panel stacking box 10 is started to intermittently push the topmost stove panel inside, so that the panel is waiting for the loading operation above the loading perforation 11.
[0037] Step 2: Loading operation stage: The servo motor 9 on the back of the mounting plate 7 is started to drive the rotating disc 61 to rotate clockwise. The transmission pin 62 at the edge of the rotating disc 61 moves as the rotating disc 61 rotates, and the transmission pin 62 moves to the rightmost side in the semi-circular arc-shaped guiding perforation 71 of the mounting plate 7. The transmission pin 62 passes through the vertical guiding perforation 64 and docks with the top end of the connecting rod 67. As the rotating disc 61 rotates clockwise, the transmission pin 62 drives the vertical guiding frame 63 and the loading and unloading suction attachment 5 connected to the vertical guiding frame 63 to move to the right along the second sliding guide 8 through the second slider 65 towards the loading area direction, and then presses down on the top surface of the uppermost stove panel for suction operation. When the loading and unloading suction attachment 5 moves above the loading area, the suction component 53 in the loading and unloading suction attachment 5 is started, and the stove panel located above the loading perforation 11 is adsorbed through the pneumatic suction cup 532. If it is a stove panel of different sizes, the double-shaft reduction motor 521 in the distance adjustment mechanism 52 can be used to drive the driving lead screws 522 on both sides to rotate, and the lead screw sleeve 523 drives the suction component 53 to adjust the distance to adapt to the panel size and perform the suction operation.
[0038] Step 3: Transfer stage to the blanking and stamping area: The servo motor 9 continues to drive the rotating disc 61 to rotate counterclockwise. The transmission pin 62 drives the loading and unloading suction attachment 5 to move to the left along the second sliding guide 8 through the second slider 65 towards the blanking and stamping area direction, and then drives the just-adsorbed stove panel to be lowered to the top of the stamping lower die 2 and placed down, and returns to the loading area again. At this time, due to the connection of the connecting slider 21, the lower second slider 65 drives the stamping component 3 to transfer from the waiting area to the position of the blanking and stamping area.
[0039] Step 4: Stamping operation stage: The stamping cylinder 34 in the stamping component 3 is started to push the stamping upper die 33 to move downward, and cooperate with the stamping lower die 2 to perform the stamping operation on the stove panel.
[0040] Step 5: Blanking operation stage: After stamping, the stamped panel is taken off, and the stamping upper die 33 is reset driven by the stamping cylinder 34. At this time, the loading and unloading suction attachment 5 is started again to adsorb a new stove panel in the loading area and repeat the above operations.
Claims
1. An energy-saving stove panel stamping device for commercial kitchens, comprising a workbench (1), characterized in that: The top surface of the workbench (1) is divided into a loading area, a blanking stamping area, and a waiting area from left to right. The workbench (1) is provided with a loading perforation (11) at the loading area, and a panel stacking box (10) is installed at the lower end of the loading perforation (11). The workbench (1) is provided with a stamping lower die (2) at the blanking stamping area. A mounting plate (7) perpendicular to the plane where the top surface is located is provided above the workbench (1). Loading and unloading adsorption parts (5) are distributed on the workbench (1). Second sliding guide rails (8) are installed at the upper and lower edges of the plate surface in front of the mounting plate (7). Loading and unloading transmission components (6) for driving the loading and unloading adsorption parts (5) to perform loading and unloading operations between the loading area and the blanking stamping area are installed on the two second sliding guide rails (8); The loading and unloading transmission assembly (6) specifically comprises the following structure: Rotating a rotary disk (61) mounted on the back side of the mounting plate (7); A transmission pin (62) mounted on the edge of the rotating disk (61); Two second sliding blocks (65) correspondingly slidably mounted on the upper and lower second sliding guide rails (8); A vertical guide frame (63) installed between the upper and lower second sliding blocks (63); Vertical guide through holes (64) distributed on the vertical guide frame (63); A connecting rod (67) is distributed in front of the vertical guide frame (63) and the bottom end of which is connected to the top of the loading and unloading adsorption member (5), and the transmission pin (62) passes through the vertical guide through hole (64) and is connected to the top of the connecting rod (67); An up-and-down guide convex strip (66) installed on the front end surface of the second sliding block (65) at the bottom to limit the connecting rod (67) to only slide up and down; A connecting slider (21) is also installed on the second sliding guide rail (8) below. The bottom of the connecting slider (21) is connected to the stamping assembly (3), and the right side is connected to the left side of the second slider (65) below. It is used to drive the stamping assembly (3) to rotate in the blanking stamping area and the waiting area while the upper and lower material transmission assembly (6) drives the upper and lower material adsorption member (5) to move left and right, so as to avoid interference between the stamping operation and the blanking operation.
2. The energy-saving stove panel stamping equipment for commercial kitchens according to claim 1 is characterized in that: The mounting plate (7) is provided with a semicircular arc-shaped guide through-hole (71) for the driving pin (62) to move.
3. The energy-saving stove panel stamping equipment for commercial kitchens according to claim 1 is characterized in that: The top of the workbench (1) is provided with two parallel front and rear first sliding guide rails (4) at the waiting area and the blanking stamping area for the stamping assembly (3) to slide left and right. The stamping assembly (3) specifically comprises the following structure: A first sliding block (32) slidably mounted on the front and rear two first sliding guide rails (4) in a corresponding manner; A gantry (31) spanning between the tops of the two front and rear first sliding blocks (32); A stamping cylinder (34) installed at the center of the top of the gantry (31); A stamping upper die (33) butted against the output end of the stamping cylinder (34).
4. The energy-saving stove panel stamping equipment for commercial kitchens according to claim 1 is characterized in that: The loading and unloading adsorption member (5) specifically comprises the following structure: A mounting frame (51) directly connected to the bottom end of the connecting rod (67); Adsorption components (53) distributed at the left and right ends below the mounting frame (51); A distance adjustment mechanism (52) is installed inside the mounting frame (51) to adjust the distance between the adsorption components (53) on both sides to adapt to the adsorption transfer operation of stove panels of different sizes.
5. The energy-saving stove panel stamping equipment for commercial kitchens according to claim 4, characterized in that: The adsorption component (53) specifically comprises the following structure: a longitudinally distributed mounting frame (531); A pneumatic suction cup (532) is correspondingly mounted at the front and rear ends of the bottom of the mounting frame (531).
6. The energy-saving stove panel stamping equipment for commercial kitchens according to claim 4, characterized in that: The distance adjustment mechanism (52) specifically comprises the following structure: A dual-axis reduction motor (521) mounted at the inner center of the mounting frame (51); Drive screw rods (522) respectively connected to the output ends on both sides of the dual-axis reduction motor (521); The screw sleeves (523) are respectively threadedly sleeved on the driving screws (522) on both sides, and the bottom tube walls of the screw sleeves (523) on both sides are respectively connected to the top centers of the adsorption components (53) on both sides.
7. The energy-saving stove panel stamping equipment for commercial kitchens according to claim 1 is characterized in that: A servo motor (9) is mounted on the back of the mounting plate (7) for driving the rotating disk (61) to continuously rotate 180° in both forward and reverse directions.
8. The energy-saving stove panel stamping equipment for commercial kitchens according to claim 1, characterized in that: A plurality of stove panels to be punched are sequentially stacked from top to bottom inside the panel stacking box (10), and a stepping cylinder (101) for intermittently pushing the internal materials is installed at the bottom of the panel stacking box (10).
9. A working method of an energy-saving stove panel stamping device for commercial kitchens, characterized in that: Step 1: Loading preparation stage: Stacking a plurality of stove panels to be punched sequentially from top to bottom inside a panel stacking box (10); Start the stepping cylinder (101) at the bottom of the panel stacking box (10) to intermittently push the uppermost stove panel inside so that the panel is above the loading perforation (11) to wait for loading operation; Step 2: Loading operation stage: The servo motor (9) on the back of the mounting plate (7) is started, driving the rotary disc (61) to rotate clockwise; The driving pin (62) at the edge of the rotating disk (61) moves along with the rotation of the rotating disk (61), and the driving pin (62) moves to the rightmost side in the semicircular guide through hole (71) of the mounting plate (7); The transmission pin (62) passes through the vertical guide through-hole (64) and docks with the top of the connecting rod (67). As the rotating disk (61) rotates clockwise, the transmission pin (62) drives the vertical guide frame (63) and the loading and unloading adsorption member (5) connected to the vertical guide frame (63) to move rightward (toward the loading area) on the second sliding guide rail (8) through the second sliding slider (65), and then presses downward on the top surface of the stove panel to perform the adsorption operation; When the loading and unloading suction piece (5) moves to the top of the loading area, the suction assembly (53) in the loading and unloading suction piece (5) is activated, and the stove panel located above the loading perforation (11) is sucked by the pneumatic suction cup (532); if the stove panel is of different sizes, the driving screws (522) on both sides can be driven to rotate by the double-axis reduction motor (521) in the distance adjustment mechanism (52), and the screw sleeve (523) drives the suction assembly (53) to adjust the spacing to adapt to the panel size and perform the suction operation; Step 3: Transfer stage of blanking and stamping area: The servo motor (9) continues to drive the rotary disk (61) to rotate counterclockwise, and the transmission pin (62) drives the loading and unloading adsorption member (5) to move to the left (towards the unloading stamping area) on the second sliding guide rail (8) through the second slider (65), thereby driving the newly adsorbed stove panel to be lowered to the top of the stamping lower die (2) and put down, and then return to the loading area. At this time, due to the connection effect of the connecting slider (21), the second slider (65) below drives the stamping assembly (3) to move from the waiting area to the position of the unloading stamping area; Step 4: Stamping operation stage: The stamping cylinder (34) in the stamping assembly (3) is started, pushing the stamping upper die (33) to move downward, and cooperating with the stamping lower die (2) to perform a stamping operation on the stove panel; Step 5: Cutting operation stage: After the stamping is completed, the stamped panel is removed, and the stamping upper die (33) is reset under the drive of the stamping cylinder (34); At this time, the loading and unloading suction member (5) is started again to suck a new stove panel in the loading area again, and the above operation is repeated.