Die cutting and creasing device capable of achieving automatic discharging
By combining the feeding component driven by a motor and pneumatic with a suction fan, the problem of inaccurate manual feeding in traditional die-cutting and creasing devices is solved, realizing automated feeding and improving production efficiency and material stability.
Patent Information
- Application Number
- CN202422784308.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-15
AI Technical Summary
Traditional die-cutting and creasing devices require manual or semi-automatic removal and unloading, which makes it difficult to ensure that the material is accurately removed from the equipment, easily leading to material accumulation or misalignment, affecting production efficiency and automation.
An automated die-cutting and creasing device was designed, which combines a motor- and pneumatically driven feeding component. The feeding and feeding are precisely controlled by a limiting roller and a feeding device. Combined with a suction fan and a support frame, the device ensures the stability and accurate positioning of the material, thus achieving automated feeding.
It improves automation and work efficiency, ensures accurate material cutting, avoids deviation or unevenness, enhances production reliability and adaptability, and achieves precise material cutting and feeding control.
Smart Images

Figure CN223604485U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a die -cutting machine equipment field, concretely relates to a die -cutting indentation device of automatic unloading. BACKGROUND
[0002] Die -cutting indentation device plays a vital role in modern production process, especially in the field such as packaging, paper product, printing industry, is widely used in the processing of paperboard, film, paper and other materials. The basic function of these devices is to cut and indent the material through the die and the pressure plate, so as to form the required product shape or mark. In today's increasingly popular automatic production line, the automation degree of die -cutting indentation device has important influence on production efficiency, product quality and cost control etc.
[0003] The traditional die -cutting indentation device is generally composed of a die, a pressure plate, a driving system, etc. When working, the material to be processed is sent into the device, and the die cuts and indents the material by a certain pressure. After processing, the formed material usually needs to be taken out and unloaded manually or semi-automatically. However, the traditional manual or simple mechanical unloading method can hardly ensure that the material is accurately removed from the equipment, which may cause accumulation or misplacement, thereby affecting the subsequent processing link. Moreover, the traditional unloading method requires more manual intervention and adjustment, and cannot realize complete automation. SUMMARY
[0004] To solve the problem that the traditional die -cutting indentation device needs to be taken out and unloaded manually or semi-automatically, which can hardly ensure that the material is accurately removed from the equipment and may cause accumulation or misplacement of the material, the present application provides a die -cutting indentation device for automatic unloading to solve the above-mentioned problems.
[0005] To achieve the above-mentioned purposes, the technical scheme adopted by the present application is as follows:
[0006] A die -cutting indentation device for automatic unloading, comprising a bottom box body and a bearing plate, the bearing plate is installed on the top surface of the bottom box body, the top surface of the bearing plate is provided with a unloading component and an indentation component respectively, the indentation component is installed at the middle position of the bearing plate.
[0007] The unloading component comprises a fixed frame, a feeding piece, a pushing piece and a limiting roller, the fixed frame and the pushing piece are located on both sides of the indentation component respectively, the feeding piece is fixed on the top surface of the fixed frame, and the limiting roller is rotatably connected to the end surface of the fixed frame and located in front of the indentation component.
[0008] As a further improvement of the utility model, the feeding part comprises a first driving motor, an air source box, a transmission part and a transmission seat, the transmission seat is fixedly installed on the top surface of the fixed frame, one end of the transmission seat is connected with a connecting box, the other end of the transmission seat is connected with an air expansion shaft, the transmission part is connected with the connecting box, the air expansion shaft penetrates the transmission part and the connecting box and is communicated with the air source box, and the first driving motor is drivingly connected with the air source box.
[0009] As a further improvement of the utility model, the feeding part comprises a first driving motor, an air source box, a transmission part and a transmission seat, the transmission seat is fixedly installed on the top surface of the fixed frame, one end of the transmission seat is connected with a connecting box, the other end of the transmission seat is connected with an air expansion shaft, the transmission part is connected with the connecting box, the air expansion shaft penetrates the transmission part and the connecting box and is communicated with the air source box, and the first driving motor is drivingly connected with the air source box.
[0010] The second driving motor is installed on the side surface of the mounting frame, a first feeding roller is rotatably connected in the mounting frame, the first feeding roller is drivingly connected with the driving shaft of the second driving motor, a pair of bearing seats are arranged on the inner wall surface of the mounting frame, a connecting seat is further sleeved on each bearing seat, a second feeding roller is rotatably connected between the connecting seats, and a gap is left between the first feeding roller and the second feeding roller.
[0011] As a further improvement of the utility model, the top surface of the fixed plate is further provided with a first air cylinder and an adjusting spring, the first air cylinder is arranged on the top surface of the fixed plate close to the guide plate, and a pressing shaft for pressing the material plate is arranged on the piston end of the first air cylinder.
[0012] The adjusting spring is installed on one end of the fixed plate close to the connecting seat, the other end of the adjusting spring is fixedly connected with the connecting seat, and the specific gap between the first feeding roller and the second feeding roller is adjusted.
[0013] As a further improvement of the utility model, a plurality of first feeding rings and second feeding rings are further sleeved on the first feeding roller and the second feeding roller respectively, and a ring surface pattern for increasing friction is further arranged on the outer wall surface of the first feeding ring.
[0014] As a further improvement of the utility model, the indentation component comprises a second air cylinder, a supporting plate, a bottom plate and a supporting frame, the supporting frame is screwed on the top surface of the bearing plate, the bottom plate is installed on the top surface of the supporting frame, guide columns are arranged at the four corners of the bottom plate, an air cylinder pressing plate is slidably connected to the middle position of the guide columns, the supporting plate is installed on the top surface of the guide columns, the second air cylinder is installed on the top surface of the supporting plate, an air cylinder connecting piece is connected to the piston end of the second air cylinder, the air cylinder connecting piece is connected with the top surface of the air cylinder pressing plate, and an indentation part for processing is connected to the bottom surface of the air cylinder pressing plate.
[0015] As a further improvement of the utility model, the bottom box body includes a main box frame with one side end face being an opening and a suction fan, a pair of box doors are hinged to the opening end of the main box frame, ventilation plates are formed on both sides of the main box frame, the suction fan is installed inside the main box frame, and a cushioning part is further arranged on the top surface of the bearing plate corresponding to the suction fan.
[0016] The cushioning part includes a cushioning frame, a plurality of ventilation holes corresponding to the suction fan are formed on the top surface of the cushioning frame close to the support frame for sucking down the material plate, a pair of sliding bar holes are formed on the top surface of the cushioning frame close to the support frame, sliding rods are slidably arranged in the sliding bar holes, an adjusting head is arranged on the top surface of each sliding rod, and an auxiliary part for aligning the material plate is further arranged on the top surface of the cushioning part.
[0017] As a further improvement of the utility model, the auxiliary part includes a fixing seat, a connecting round seat, a hanging column and a limiting folding plate, at least two fixing seats are arranged and respectively installed on both sides of the cushioning frame, an abutting roller is rotatably connected between the fixing seats, one end of the abutting roller is fixedly connected with the connecting round seat, a groove is formed on the abutting roller, an inclined plate in the limiting folding plate is fixed in the groove, and a plane plate in the limiting folding plate abuts against the top surface of the cushioning frame.
[0018] The hanging column is arranged on one side of the cushioning frame, and a hanging spring for limiting is further arranged between the hanging column and the connecting round seat.
[0019] As a further improvement of the utility model, the bottom surface of the main box frame is further provided with adjustable height support feet and universal wheels, at least four support feet and universal wheels are arranged, the support feet are fixedly connected at four corners of the bottom surface of the main box frame, and the universal wheels are fixedly installed on the pads of the support feet.
[0020] As a further improvement of the utility model, the top surface of the bearing plate is further provided with a control box, and the control box is electrically connected with the discharging part and the indentation part.
[0021] Compared with the prior art, the technical scheme of the utility model has the following advantages and effects:
[0022] 1、In the application, the blanking component is combined with the indentation component: the blanking and processing indentation of the material can be efficiently completed, the automation level and work efficiency are improved, the design of the blanking part is combined through the motor and pneumatic driving, the blanking action can be accurately controlled, the flexibility and stability of operation are improved, the gap between the first material distributing roller and the second material distributing roller can be adjusted through the spring and the cylinder control, the process requirements of different material plates can be adapted, the adaptability and precision of the device are improved, accurate blanking and distributing control are achieved, through the pad support and the air suction machine, the material can be accurately adsorbed in the appropriate position, the smoothness of the blanking process is ensured, material deviation or unevenness is avoided, the combination of the fixing seat and the limiting folding plate and other components ensures the stability and accurate positioning of the material in the processing process, and the reliability of production is improved. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0024] Figure 1 is the isometric view of the utility model.
[0025] Figure 2 is Figure 1 the local enlarged view of A area in the figure.
[0026] Figure 3 is the other angle of the utility model of the side view.
[0027] Figure 4 is Figure 3 the local enlarged view of B area in the figure.
[0028] Figure 5 is Figure 3 the local enlarged view of C area in the figure.
[0029] Figure 6 is the front view of the utility model.
[0030] Figure 7 is the left view of the utility model.
[0031] Figure 8 is Figure 7 the sectional view along the section symbol A-A.
[0032] In the figure: 10, bottom box body; 110, main box frame; 120, box door; 130, ventilation plate; 140, air suction fan; 20, bearing plate; 30, blanking component; 310, fixing frame; 320, discharging piece; 3210, first driving motor; 3220, air source box; 3230, transmission piece; 3240, connecting box; 3250, transmission seat; 3260, gas expansion shaft; 330, poking piece; 3310, mounting frame; 3320, second driving motor; 3330, first poking roller; 3340, fixing plate; 3350, first air cylinder; 3360, connecting seat; 3370, adjusting spring; 3380, guide plate; 3390, second poking roller; 340, limiting roller; 40, indentation component; 410, second air cylinder; 420, supporting plate; 430, guide column; 440, air cylinder pressing plate; 450, air cylinder connecting piece; 460, indentation piece; 470, bottom plate; 480, supporting frame; 50, control box; 60, cushioning component; 610, cushioning frame; 620, ventilation hole; 630, sliding bar hole; 640, sliding rod; 650, adjusting head; 70, auxiliary component; 710, fixing seat; 720, connecting round seat; 730, hanging column; 740, hanging spring; 750, limiting folding plate; 80, supporting leg; 90, universal wheel. DETAILED DESCRIPTION
[0033] In order to make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the following will be combined with the accompanying drawings for the embodiments of the present application to make a clear and complete description of the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the accompanying drawings can be arranged and designed in various different configurations.
[0034] Therefore, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative labor are within the scope of protection of the present application.
[0035] It should be noted that: similar reference numerals and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in the subsequent drawings.
[0036] In the description of the present application, it should be noted that if the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, or the orientation or positional relationship commonly used when the product of the application is used, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, if the terms "first", "second" and the like appear in the description of the present application, they are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0037] In addition, if the terms "horizontal", "vertical" and the like appear in the description of the present application, they do not mean that the component must be absolutely horizontal or vertical, but can be slightly inclined. For example, "horizontal" only means that its direction is relatively more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.
[0038] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, if the terms "arrangement", "installation", "connection", "connection" appear, they should be understood in a broad sense. For example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication between the two elements inside. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0039] Embodiment:
[0040] An automatic blanking die cutting indentation device, comprising a bottom box body 10 and a bearing plate 20, the bearing plate 20 is installed on the top surface of the bottom box body 10, the top surface of the bearing plate 20 is respectively provided with a blanking component 30 and a indentation component 40, the indentation component 40 is installed at the middle position of the bearing plate 20;
[0041] The blanking component 30 comprises a fixed frame 310, a feeding piece 320, a stirring piece 330 and a limiting roller 340, the fixed frame 310 and the stirring piece 330 are respectively located on both sides of the indentation component 40, the feeding piece 320 is fixed on the top surface of the fixed frame 310, and the limiting roller 340 is rotatably connected to the end surface of the fixed frame 310 and located in front of the indentation component 40.
[0042] To make an explanation, the bottom box 10 is used to accommodate and support other components, and provide stable support for the whole device. The bearing plate 20 is installed on the top surface of the bottom box 10 as a support platform for other components. The bearing plate 20 is provided with a blanking component 30 and an indentation component 40. The main function of the blanking component 30 is to orderly feed the material plate to be die-cut from the feeding end into the die-cutting indentation area, ensuring the continuity and accuracy of the die-cutting process. The indentation component 40 is located in the middle position of the bearing plate 20 and is responsible for indentation operation on the material plate.
[0043] Specifically, the fixed frame 310 serves as a support structure for installing other accessories and ensuring their stability. The feeding part 320 is fixed to the top surface of the fixed frame 310 and is responsible for smoothly feeding the material into the die-cutting device. The material pushing part 330 is located on both sides of the fixed frame 310 and is used to push the material plate to the correct position to ensure smooth passage of the material plate through the die-cutting or indentation area. The limiting roller 340 is connected to the end surface of the fixed frame 310 and is located in front of the indentation component 40. The main function of the limiting roller 340 is to assist the material plate in entering the indentation component 40 without excessive movement or misalignment, thereby avoiding uneven die-cutting effects.
[0044] In combination with the drawings Figures 1-8 As shown, the feeding part 320 includes a first drive motor 3210, an air source box 3220, a transmission part 3230, and a transmission seat 3250. The transmission seat 3250 is fixedly installed on the top surface of the fixed frame 310. One end of the transmission seat 3250 is connected with a connecting box 3240, and the other end is connected with an air expansion shaft 3260. The transmission part 3230 is connected with the connecting box 3240. The air expansion shaft 3260 penetrates through the transmission part 3230 and the connecting box 3240 and is in communication with the air source box 3220. The first drive motor 3210 is drivingly connected with the air source box 3220.
[0045] To make an explanation, the feeding part 320 includes a first drive motor 3210, an air source box 3220, a transmission part 3230, and a transmission seat 3250. The first drive motor 3210 serves as the power source of the system and provides driving force. The air source box 3220 provides air source, usually compressed air, for controlling the operation of the air expansion shaft 3260. The transmission seat 3250 is a structural element for supporting and fixing other components and is located on the top of the fixed frame 310. One end of the transmission seat 3250 is connected with the connecting box 3240, and the other end is connected with the air expansion shaft 3260. Its function is to transmit the driving force from the motor and adjust the operation of the pneumatic part by connecting the air expansion shaft 3260. The air expansion shaft 3260 is used in the pneumatic system and realizes certain deformation action through the compressed air provided by the air source box 3220. The air expansion shaft 3260 penetrates through the transmission part 3230, the connecting box 3240, and is connected with the air source box 3220.
[0046] Specifically, the air source tank 3220 is connected to the air inflation shaft 3260 through a pipeline to provide compressed air to the air inflation shaft 3260. The air pressure of the air source tank 3220 acts on the material discharge of the air inflation shaft 3260, and the material discharge amount and speed can be adjusted by expanding or contracting the diameter of the air inflation shaft 3260, for example, when the air inflation shaft 3260 expands, the material discharge channel can be increased to allow more material to pass through; when the air inflation shaft 3260 contracts, the material flow can be reduced. By controlling the first driving motor 3210 and the air source tank 3220, the speed, amount and time of material discharge can be accurately adjusted to ensure that the system accurately discharges according to the demand.
[0047] In combination with the drawings Figures 1-8 As shown, the material stirring part 330 includes a mounting frame 3310, a second driving motor 3320, a fixed plate 3340 and a guide plate 3380. The mounting frame 3310 is screwed to the top surface of the bearing plate 20. The fixed plate 3340 is installed on the top surface of the mounting frame 3310. The guide plate 3380 is installed on the end surface of the mounting frame 3310 facing the indentation component 40.
[0048] The second driving motor 3320 is installed on the side surface of the mounting frame 3310. A first material stirring roller 3330 is rotatably connected inside the mounting frame 3310. The first material stirring roller 3330 is drivingly connected with the driving shaft of the second driving motor 3320. A pair of bearing seats are provided on the inner wall surface of the mounting frame 3310. A connecting seat 3360 is further sleeved on each bearing seat. A second material stirring roller 3390 is rotatably connected between the connecting seats 3360. A gap is left between the first material stirring roller 3330 and the second material stirring roller 3390.
[0049] It is explained that the structural design of the first material stirring roller 3330 and the second material stirring roller 3390 enables them to work cooperatively to effectively stir and guide the material to move along a predetermined path. The first material stirring roller 3330 is mainly responsible for the initial contact and stirring of the material, while the second material stirring roller 3390 further ensures the stable conveying of the material after the material is stirred by the first material stirring roller 3330. The gap between the two material stirring rollers can be adjusted according to the size and shape of the material to adapt to different specifications of the material. In addition, the use of the second driving motor 3320 makes the stirring action more flexible and controllable, and the stirring speed and force can be adjusted according to the actual production needs.
[0050] In combination with the drawings Figures 1-8As shown, the top surface of the fixed plate 3340 is also provided with a first cylinder 3350 and an adjusting spring 3370. The first cylinder 3350 is arranged on the top surface of the fixed plate 3340 close to the guide plate 3380. The piston end of the first cylinder 3350 is provided with a pressing shaft for pressing the material plate downward. The adjusting spring 3370 is arranged on one end of the fixed plate 3340 close to the connecting seat 3360. The other end of the adjusting spring 3370 is fixedly connected with the connecting seat 3360, which is used for adjusting the specific gap between the first material pushing roller 3330 and the second material pushing roller 3390. A plurality of first material pushing rings and second material pushing rings are respectively sleeved on the first material pushing roller 3330 and the second material pushing roller 3390. The outer wall surface of the first material pushing ring is also provided with a torus pattern for increasing friction.
[0051] It is explained that the first cylinder 3350 is mainly used for providing power. The piston end of the first cylinder 3350 is provided with a pressing shaft for pressing the material plate downward. The cylinder provides adjustable pressure, which can adjust the pressing degree of the material plate according to the needs, so as to ensure the proper treatment and distribution of the material. The adjusting spring 3370 is arranged on one end of the fixed plate 3340 close to the connecting seat 3360. The adjusting spring 3370 is mainly used for providing elastic action and adjusting the gap between the first material pushing roller 3330 and the second material pushing roller 3390. The elasticity of the adjusting spring 3370 can keep a certain gap between the first material pushing roller 3330 and the second material pushing roller 3390, so as to ensure that the material is not compressed too tightly or too loosely during the transmission process.
[0052] Specifically, the first material pushing roller 3330 and the second material pushing roller 3390 are mainly used for conveying the material in the equipment. The material pushing roller pushes the material by rotating action, so that the material flows or enters the next processing link. By adjusting the gap between the two rollers through the adjusting spring 3370, the treatment effect of the material can be affected. For example, appropriate gap can avoid the material from being stuck or excessively compressed during the conveying process. The first material pushing ring and the second material pushing ring are respectively sleeved on the first material pushing roller 3330 and the second material pushing roller 3390. The main function of these material pushing rings is to increase the contact surface with the material, so as to improve the efficiency and stability of the material pushing. The outer wall surface of the first material pushing ring is provided with a torus pattern. The purpose of this pattern is to increase the friction between the material and the material pushing ring, so as to prevent the material from slipping or failing during the conveying process. The torus pattern ensures that the material is uniformly and orderly conveyed and treated by increasing the friction.
[0053] In combination with the drawings Figures 1-8As shown, the indentation component 40 includes a second cylinder 410, a support plate 420, a bottom plate 470, and a support frame 480, the support frame 480 is screwed on the top surface of the bearing plate 20, the bottom plate 470 is installed on the top surface of the support frame 480, the four corners of the bottom plate 470 are provided with guide columns 430, the middle position of the guide columns 430 is slidingly connected with a cylinder pressing plate 440, the support plate 420 is installed on the top surface of the guide columns 430, the second cylinder 410 is installed on the top surface of the support plate 420, the piston end of the second cylinder 410 is connected with a cylinder connecting piece 450, the cylinder connecting piece 450 is connected with the top surface of the cylinder pressing plate 440, and the bottom surface of the cylinder pressing plate 440 is connected with an indentation piece 460 for processing.
[0054] It is explained that the second cylinder 410 is responsible for providing the force required for indentation. The piston end of the second cylinder 410 is connected with the cylinder pressing plate 440 through the cylinder connecting piece 450, so that the linear motion of the cylinder is converted into the up-down movement of the indentation component 40, thereby exerting an indentation force on the processed material. The support plate 420 plays a role in supporting the second cylinder 410 and other components, ensuring that the cylinder can work stably and guaranteeing the structural stability of the entire indentation component 40. The support plate 420 is installed on the top surface of the guide columns 430, ensuring that the pressure of the cylinder can be effectively transmitted to the indentation component 40. The bottom plate 470 is installed on the top of the support frame 480, bearing the key components such as the support frame 480 and the guide columns 430, ensuring that these components can operate stably. The guide columns 430 at the four corners of the bottom plate 470 help to limit the movement trajectory of the cylinder pressing plate 440, making it slide in the vertical direction and avoiding lateral displacement, thus maintaining the precision of the operation. The support frame 480 is screwed on the top surface of the bearing plate 20, playing a role in supporting the bottom plate 470, the guide columns 430 and other components, ensuring the stable connection of each component. The design of the support frame 480 enables the entire system to withstand a certain force and maintain the rigidity of the structure. The guide columns 430 play a role in limiting the movement direction of the cylinder pressing plate 440, ensuring that the sliding of the cylinder pressing plate 440 is limited to the vertical direction, preventing lateral displacement or unstable movement, thereby guaranteeing the accuracy of the indentation process.
[0055] Specifically, when the second cylinder 410 is activated, the piston of the cylinder pushes the cylinder connecting piece 450 and the cylinder pressing plate 440 to move. Since the cylinder pressing plate 440 slides in the vertical direction through the guide columns 430, its bottom surface will drive the indentation piece 460 (usually the material to be processed) to produce indentation. The action of the cylinder will be transmitted to the cylinder pressing plate 440 through the connecting piece, causing it to move up and down and exert pressure on the processed piece to form the required indentation.
[0056] In combination with the drawings of the specification Figures 1-8As shown, the bottom box body 10 includes a main box frame 110 with an open side end face and an air suction fan 140, the open end of the main box frame 110 is hinged with a pair of box doors 120, both sides of the main box frame 110 are provided with ventilation plates 130, the air suction fan 140 is installed inside the main box frame 110, and the top surface of the bearing plate 20 is also provided with a cushioning component 60 corresponding to the air suction fan 140; the cushioning component 60 includes a cushioning frame 610, a plurality of ventilation holes 620 corresponding to the air suction fan 140 are opened on the top surface of the cushioning frame 610 close to the support frame 480, for sucking the material plate downward, a pair of sliding bar holes 630 are opened on the top surface of the cushioning frame 610 close to the support frame 480, a sliding rod 640 is slidably arranged in each of the sliding bar holes 630, and an adjusting head 650 is arranged on the top surface of each sliding rod 640, and the top surface of the cushioning component 60 is also provided with an auxiliary component 70 for adjusting the material plate.
[0057] It is explained that the main box frame 110 is the main frame part of the bottom box body 10, and the side end face thereof is open to form a containing space. The open end face is hinged with a pair of box doors 120 for facilitating the understanding or maintenance of the inside. Ventilation plates 130 are opened on both sides of the main box frame 110, which provide air flow paths to ensure the effective flow of air and support the work of the air suction fan 140. The air suction fan 140 is installed inside the main box frame 110, and the air suction fan 140 is used to generate negative pressure to suck air and exhaust it through the ventilation plates 130. The function of the air suction fan 140 is to suck the material plate downward to ensure its stability.
[0058] It is worth mentioning that the cushioning frame 610 is installed on the top surface of the main box frame 110 close to the support frame 480, which provides support and cushioning functions. The top surface of the cushioning frame 610 is designed with a plurality of ventilation holes 620, which cooperate with the air suction fan 140 to ensure that the air suction fan 140 can effectively suck the material plate downward. The design of the cushioning frame 610 can ensure that the material plate is not sucked too tightly under the action of the air suction fan, avoiding damage. These ventilation holes 620 correspond to the air outlet of the air suction fan 140, and the design of the ventilation holes 620 can increase the efficiency of air flow, ensuring that the air flow can pass through the cushioning frame 610 and the material plate below evenly.
[0059] In combination with the drawings Figures 1-8As shown, the auxiliary component 70 includes a fixed base 710, a connecting round base 720, a hanging post 730, and a limiting baffle 750. At least two fixed bases 710 are provided and are respectively installed on both sides of the raised frame 610. An abutment roller is rotatably connected between the fixed bases 710. One end of the abutment roller is fixedly connected to the connecting round base 720. A groove is provided on the abutment roller. The inclined plate in the limiting baffle 750 is fixed in the groove. The flat plate in the limiting baffle 750 abuts against the top surface of the raised frame 610. The hanging post 730 is provided on one side of the raised frame 610. A hanging spring 740 for limiting is also provided between the hanging post 730 and the connecting round base 720.
[0060] As explained, at least two fixed seats 710 are installed on both sides of the raised frame 610, serving as support and fixation. A connecting round seat 720 is connected to the fixed seats 710 via an abutment roller. The abutment roller is rotatably connected between the fixed seats 710, with one end fixed to the connecting round seat 720 and the other end adjustable. The abutment roller has a groove on its surface, and the inclined plate of the limiting folding plate 750 is installed in the groove to ensure the stable fixation of the limiting folding plate 750. The limiting folding plate 750 consists of an inclined plate and a flat plate. The inclined plate is inserted into the groove to ensure stable positioning of the folding plate on the top surface of the raised frame 610, while the flat plate contacts the top surface of the raised frame 610 to prevent displacement. A hanging post 730 is installed on one side of the raised frame 610 and connected to the connecting round seat 720 via a hanging spring 740, primarily serving to limit movement and provide elastic support.
[0061] These components work together to provide a stable, adjustable system that ensures the robustness and safety of the 610 platform and its additional components.
[0062] Refer to the attached diagrams in the instruction manual. Figures 1-8 As shown, the bottom surface of the main box frame 110 is also provided with adjustable height support feet 80 and casters 90, with at least four support feet 80 and casters 90. The support feet 80 are fixedly connected to the four corners of the bottom surface of the main box frame 110, and the casters 90 are fixedly installed on the pad of each support foot 80. The top surface of the bearing plate 20 is also provided with a control box 50, which is electrically connected to the unloading component 30 and the indentation component 40.
[0063] To make an explanation, the design of the supporting feet 80 allows the main box frame 110 to be adjusted in height according to the flatness of the ground, ensuring the stability of the entire device and the convenience of operation. The setting of the universal wheels 90 gives the device the ability to move flexibly, facilitating quick position adjustment in different working environments. The integration of the control box 50 not only optimizes space utilization but also improves the intelligent level of operation, making the unloading and indentation process more accurate and efficient. Through electrical connection, the control box 50 can accurately control the unloading component 30 and the indentation component 40, realizing automatic operation, reducing manual intervention, and improving production efficiency.
[0064] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An automated die-cutting and creasing device, comprising a base box (10) and a support plate (20), characterized in that: The support plate (20) is installed on the top surface of the bottom box (10). The top surface of the support plate (20) is provided with a feeding component (30) and an indentation component (40). The indentation component (40) is installed in the middle position of the support plate (20). The feeding component (30) includes a fixed frame (310), a feeding component (320), a feeding component (330), and a limiting roller (340). The fixed frame (310) and the feeding component (330) are located on both sides of the indentation component (40). The feeding component (320) is fixed to the top surface of the fixed frame (310). The limiting roller (340) is rotatably connected to the end face of the fixed frame (310) and is located in front of the indentation component (40).
2. The automated die-cutting and creasing device according to claim 1, characterized in that, The feeding component (320) includes a first drive motor (3210), an air source box (3220), a transmission component (3230), and a transmission seat (3250). The transmission seat (3250) is fixedly installed on the top surface of the fixed frame (310). One end of the transmission seat (3250) is connected to a connecting box (3240), and the other end of the transmission seat (3250) is connected to an air expansion shaft (3260). The transmission component (3230) is connected to the connecting box (3240), and the air expansion shaft (3260) passes through the transmission component (3230), the connecting box (3240), and the air source box (3220), communicating with each other. The first drive motor (3210) is drivenly connected to the air source box (3220).
3. The automated die-cutting and creasing device according to claim 2, characterized in that, The feeding component (330) includes a mounting bracket (3310), a second drive motor (3320), a fixing plate (3340), and a guide plate (3380). The mounting bracket (3310) is screwed to the top surface of the bearing plate (20), the fixing plate (3340) is mounted on the top surface of the mounting bracket (3310), and the guide plate (3380) is mounted on the end face of the mounting bracket (3310) facing the indentation component (40). The second drive motor (3320) is mounted on the side of the mounting frame (3310). The mounting frame (3310) is rotatably connected to the first feeding roller (3330). The first feeding roller (3330) is driven by the drive shaft of the second drive motor (3320). The inner wall of the mounting frame (3310) is provided with a pair of bearing seats, and each bearing seat is also fitted with a connecting seat (3360). The connecting seats (3360) are rotatably connected to the second feeding roller (3390). There is a gap between the first feeding roller (3330) and the second feeding roller (3390).
4. The automated die-cutting and creasing device according to claim 3, characterized in that, The top surface of the fixed plate (3340) is also provided with a first cylinder (3350) and an adjusting spring (3370). The first cylinder (3350) is located on the top surface of the fixed plate (3340) near the guide plate (3380). The piston end of the first cylinder (3350) is provided with a pressure shaft for pressing the lower pressure plate. The adjusting spring (3370) is installed on one end of the fixed plate (3340) near the connecting seat (3360), and the other end of the adjusting spring (3370) is fixedly connected to the connecting seat (3360) to adjust the specific gap between the first feeding roller (3330) and the second feeding roller (3390).
5. The automated die-cutting and creasing device according to claim 4, characterized in that, The first feeding roller (3330) and the second feeding roller (3390) are respectively fitted with a plurality of first feeding rings and second feeding rings, and the outer wall surface of the first feeding ring is provided with a ring surface pattern for increasing friction.
6. The automated die-cutting and creasing device according to claim 5, characterized in that, The indentation component (40) includes a second cylinder (410), a support plate (420), a base plate (470), and a support frame (480). The support frame (480) is screwed onto the top surface of the bearing plate (20). The base plate (470) is mounted on the top surface of the support frame (480). Guide posts (430) are provided at the four corners of the base plate (470). A cylinder pressure plate (440) is slidably connected to the middle position of the guide posts (430). The support plate (420) is mounted on the top surface of the guide posts (430). The second cylinder (410) is mounted on the top surface of the support plate (420). A cylinder connector (450) is connected to the piston end of the second cylinder (410). The cylinder connector (450) is connected to the top surface of the cylinder pressure plate (440). An indentation component (460) for processing is connected to the bottom surface of the cylinder pressure plate (440).
7. The automated die-cutting and creasing device according to claim 6, characterized in that, The bottom box (10) includes a main box frame (110) with an open end face on one side and a suction fan (140). The open end of the main box frame (110) is hinged with a pair of box doors (120). Ventilation plates (130) are provided on both sides of the main box frame (110). The suction fan (140) is installed inside the main box frame (110). The top surface of the bearing plate (20) is also provided with a raising component (60) corresponding to the suction fan (140). The raising component (60) includes a raising frame (610). The raising frame (610) has multiple ventilation holes (620) corresponding to the suction fan (140) on its top surface near the support frame (480) for sucking the material plate downwards. The raising frame (610) has a pair of sliding strip holes (630) on its top surface near the support frame (480). Each sliding strip hole (630) has a sliding rod (640) slidably installed in it. Each sliding rod (640) has an adjusting head (650) on its top surface. The raising component (60) also has an auxiliary component (70) for aligning the material plate on its top surface.
8. The automated die-cutting and creasing device according to claim 7, characterized in that, The auxiliary component (70) includes a fixed base (710), a connecting round base (720), a hanging column (730), and a limiting folding plate (750). At least two fixed bases (710) are provided and are respectively installed on both sides of the raised frame (610). An abutting roller is rotatably connected between the fixed bases (710). One end of the abutting roller is fixedly connected to the connecting round base (720). A groove is provided on the abutting roller. The inclined plate in the limiting folding plate (750) is fixed in the groove. The flat plate in the limiting folding plate (750) abuts against the top surface of the raised frame (610). The hanging post (730) is located on one side of the raised frame (610), and a hanging spring (740) for limiting the position is also provided between the hanging post (730) and the connecting round seat (720).
9. The automated die-cutting and creasing device according to claim 8, characterized in that, The bottom surface of the main frame (110) is also provided with adjustable height support feet (80) and casters (90). There are at least four support feet (80) and casters (90). The support feet (80) are fixedly connected to the four corners of the bottom surface of the main frame (110), and the casters (90) are fixedly installed on the pad of each support foot (80).
10. The automated die-cutting and creasing device according to claim 9, characterized in that, The top surface of the support plate (20) is also provided with a control box (50), which is electrically connected to the feeding component (30) and the indentation component (40).