Gold stamping die-cutting machine
By designing the feeding and processing mechanism of the hot stamping die-cutting machine, the automatic conveying and cutting of cardboard was realized, solving the problems of low efficiency and poor safety of traditional die-cutting machines, and improving production efficiency and safety.
Patent Information
- Application Number
- CN202422841682.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-21
AI Technical Summary
Traditional die-cutting machines are inefficient and dangerous in the production of cardboard boxes and cartons, requiring manual placement of cardboard, which poses safety hazards.
Design a hot stamping die-cutting machine, which includes a worktable, a feeding mechanism and a processing mechanism. It uses a motor-driven synchronous belt to automatically feed the cardboard through a push plate and push rod. It combines linear guide rails and suction cups to achieve automatic feeding, and uses a cylinder to drive the die-cutting plate to cut the cardboard.
It enables automatic feeding and cutting of cardboard, improving work efficiency, reducing safety risks, and features a simple and reasonable structure and convenient operation.
Smart Images

Figure CN223558563U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of die-cutting machine technology, and more specifically, it relates to a hot stamping die-cutting machine. Background Technology
[0002] Die-cutting machines are widely used in industries such as printing, packaging, shoemaking, and automotive interiors. They are mainly used for cutting, punching, embossing, and die-cutting. They process various materials through mold pressing, enabling rapid completion of large-scale production tasks and improving production efficiency and quality.
[0003] Based on the above, the inventors have discovered the following problems: In the current production of paper boxes and cartons, die-cutting is a crucial process. Only after die-cutting can the required paper boxes and cartons be obtained. Specifically, a die-cutting plate is assembled according to the design requirements of the product using a die-cutting blade. After being extruded and die-cut by the upper and lower molds, the waste material falls off, forming the required flat paper boxes or cartons. However, traditional die-cutting machines require manual placement of the cardboard onto the mold, which is inefficient and has a high risk factor.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and provided a hot stamping die-cutting machine in order to achieve a more practical purpose. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a hot stamping die-cutting machine to address the issues in the current background technology.
[0006] The purpose and effect of this hot stamping and die-cutting machine are achieved by the following specific technical means:
[0007] A hot stamping die-cutting machine includes a worktable, a feeding mechanism, and a processing mechanism. The worktable has a feeding trough inside, and a processing box is installed on the top side of the worktable outside the feeding trough. First support rods are connected to the four corners of the bottom of the worktable. A placement rack is installed on the outer side of the worktable, and a placement groove is provided inside the placement rack. The feeding mechanism includes a rotating shaft. Second support rods are connected to the four corners of the bottom of the placement rack, and a pair of rotating shafts are inserted between a pair of second support rods. A motor is installed outside one of the second support rods, and the output end of the motor is connected to the rotating shaft. Synchronous pulleys are provided outside each pair of rotating shafts, and a synchronous belt meshes between the pair of synchronous pulleys. A push plate is connected to the top side of the synchronous belt, and a pair of push rods are installed on one side of the push plate. The processing mechanism includes a feeding plate, which is slidably installed inside the feeding trough. An installation groove is provided inside the feeding plate, and a mold is installed inside the installation groove.
[0008] Further, the top four corners of the placing frame are connected with anti-collision frames, and the inner center of the placing groove is provided with a groove, the bottom of the placing frame is installed with a limiting rod on both sides of the bottom of the groove, and the inner of the limiting rod is provided with a limiting groove.
[0009] Further, both sides of the placing frame are provided with through holes, and the through holes are communicated with the placing groove, the length of the push plate is slightly smaller than the length between the pair of limiting grooves, the outside of the placing frame is installed with a supporting plate on the side close to the workbench, and the inner of the supporting plate is provided with a supporting groove.
[0010] Further, one side of the supporting plate is connected with a flow guide plate, one end of the flow guide plate is connected with the workbench, a plurality of connecting grooves are equidistantly arranged in the inner of the flow guide plate, a plurality of rollers are hinged in the inner of the connecting grooves, and the outer of the rollers is adhered with silica gel pads.
[0011] Further, the inner of the workbench is provided with a sliding groove on both sides of the feeding groove, and the inner of the pair of sliding grooves is installed with a linear guide rail, the outer of the pair of linear guide rails is slidingly installed with a sliding block, and the pair of sliding blocks are connected with the feeding plate.
[0012] Further, the inner of the feeding groove is installed with a pump on one side, one side of the pump is connected with a first connecting pipe, the inner of the feeding plate is installed with a plurality of second connecting pipes equidistantly around the installation groove, and the first connecting pipe and the second connecting pipe are connected with each other.
[0013] Further, one end of the plurality of second connecting pipes penetrates the feeding plate and is connected with a suction cup, the inner of the processing box is provided with a processing groove, and the top of the processing box is installed with an air cylinder, the output end of the air cylinder penetrates the processing box and is connected with a cutter, and the size of the cutter is matched with the mold.
[0014] Compared with the prior art, the present application has the following advantages:
[0015] 1. The gilding die-cutting machine, through the cooperation of the placing rack, the anti-collision frame, the groove, the shaft, the motor, the synchronous wheel, the synchronous belt, the limiting rod, the push plate and the push rod, the paperboard to be processed is placed in the placing groove of the placing rack, the paperboard is induced and protected through the anti-collision frame, then the motor is started, one of the shafts is driven to rotate by the motor, a pair of synchronous wheels are cooperated, the synchronous belt is driven to rotate, the push plate moves on the synchronous belt, when the push plate and the push rod move to the most side of the placing rack, the push plate moves between a pair of limiting grooves, the push rod extends into the through hole, the paperboard at the bottom of the placing groove is pushed forward, moves to the supporting plate through the other through hole, the paperboard is dropped on the guide plate through the supporting plate, a plurality of rollers are cooperated, the paperboard is conveniently conveyed to the workbench, the size of the feeding groove is smaller than the size of the paperboard, the paperboard is placed on the workbench, and the synchronous wheels continue to rotate, the paperboard is automatically conveyed in turn;
[0016] 2. The gilding die-cuting machine, through the cooperation of the feeding plate, the die, the sliding groove, the sliding block, the pump, the first connecting pipe, the second connecting pipe and the suction cup, after the paperboard is dropped on the workbench, a pair of linear guides are started, the linear guides drive the sliding block and the feeding plate to move, when the paperboard is moved to the bottom, the movement is stopped, the pump is started, the first connecting pipe and the second connecting pipe are cooperated, the pump generates negative pressure, the suction cup adsorbs the paperboard, then the feeding plate is moved to the lower side of the die-cutting plate, the cylinder is started, the die-cutting plate is driven downward by the cylinder, the paperboard is cut, automatic feeding is completed, the work efficiency is improved, and the danger is reduced; the gilding die-cutting machine has the advantages of simple and reasonable structure, novel design, simple and convenient operation, automatic conveying and processing of raw materials, improved cutting efficiency and high practical value. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a perspective view of the utility model.
[0018] Figure 2 It is a perspective view of the workbench of the utility model.
[0019] Figure 3 It is a top view of the workbench of the utility model.
[0020] Figure 4 It is a Figure 1 enlarged view of the structure at A in the utility model.
[0021] In the drawing, the correspondence between the component names and the drawing numbers is as follows:
[0022] 1001, workbench; 1002, feeding groove; 1003, first support rod; 1004, processing box; 1005, air cylinder; 1006, placing rack; 1007, second support rod; 2001, placing groove; 2002, anti-collision frame; 2003, groove; 2004, rotating shaft; 2005, motor; 2006, synchronous wheel; 2007, synchronous belt; 2008, limiting rod; 2009, limiting groove; 2010, push plate; 2011, push rod; 2012, through hole; 2013, supporting plate; 2014, flow guide plate; 2015, roller; 3001, feeding plate; 3002, mold; 3003, sliding groove; 3004, sliding block; 3005, pump; 3006, first connecting pipe; 3007, second connecting pipe; 3008, suction cup. DETAILED DESCRIPTION
[0023] The embodiments of the present application will be further described in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0024] Embodiment:
[0025] As shown in the accompanying drawings: Figure 1 to the accompanying drawings: Figure 4 As shown in the accompanying drawings:
[0026] The present application provides a gilding die-cutting machine, including workbench 1001, feeding mechanism and processing mechanism, the inside of the workbench 1001 is equipped with feeding groove 1002, and the top of the workbench 1001 One side outside the feeding groove 1002 is provided with processing box 1004, the bottom of the workbench 1001 Four corners are connected with first support rod 1003, the outside of the workbench 1001 One side is provided with placing rack 1006, and the inside of the placing rack 1006 Is equipped with placing groove 2001, the feeding mechanism includes rotating shaft 2004, the bottom of the placing rack 1006 Four corners are connected with second support rod 1007, and a pair of rotating shafts 2004 Are inserted between a pair of second support rods 1007, wherein the outside of one of the second support rods 1007 Is provided with motor 2005, and the output end of the motor 2005 Is drivingly connected with the rotating shaft 2004, the outside of a pair of rotating shafts 2004 Is equipped with synchronous wheel 2006, and a pair of synchronous wheels 2006 Meshing has synchronous belt 2007, the top of the synchronous belt 2007 One side is connected with push plate 2010, and one side of the push plate 2010 Is provided with a pair of push rods 2011, the processing mechanism includes feeding plate 3001, and the feeding plate 3001 Is slidingly installed in the inside of the feeding groove 1002, the inside of the feeding plate 3001 Is equipped with mounting groove, and the inside of the mounting groove Is provided with mold 3002.
[0027] The top four corners of the placing rack 1006 are connected with anti-collision racks 2002, the inner center of the placing groove 2001 is provided with a groove 2003, the bottom of the placing rack 1006 is provided with a limiting rod 2008 on both sides of the bottom of the groove 2003, the inner of the limiting rod 2008 is provided with a limiting groove 2009, and the placing rack 1006 is installed, so as to conveniently store and place the paperboards.
[0028] The two sides of the placing rack 1006 are provided with through holes 2012, the through holes 2012 are communicated with the placing groove 2001, the length of the push plate 2010 is slightly smaller than the length between the pair of limiting grooves 2009, the outer of the placing rack 1006 is provided with a supporting plate 2013 on one side close to the workbench 1001, the inner of the supporting plate 2013 is provided with a supporting groove, and the push plate 2010 is installed, so as to conveniently push the paperboards in sequence.
[0029] The side of the supporting plate 2013 is connected with a flow guide plate 2014, one end of the flow guide plate 2014 is connected with the workbench 1001, a plurality of connecting grooves are equidistantly arranged in the inner of the flow guide plate 2014, a plurality of rollers 2015 are hinged in the inner of the connecting grooves, and the outer of the rollers 2015 is adhered with a silica gel pad.
[0030] The inner of the workbench 1001 is provided with a sliding groove 3003 on both sides of the feeding groove 1002, the inner of the pair of sliding grooves 3003 is provided with a linear guide rail, the outer of the pair of linear guide rails is slidably provided with a sliding block 3004, and the pair of sliding blocks 3004 are connected with the feeding plate 3001.
[0031] The inner of the feeding groove 1002 is provided with a pump 3005 on one side, one side of the pump 3005 is connected with a first connecting pipe 3006, the inner of the feeding plate 3001 is provided with a plurality of second connecting pipes 3007 equidistantly around the installation groove, the first connecting pipe 3006 and the second connecting pipe 3007 are connected with each other, and the pump 3005 is installed, so that the pump 3005 generates negative pressure to adsorb the paperboard, and the paperboard is conveniently conveyed.
[0032] The one end of the plurality of second connecting pipes 3007 penetrates the feeding plate 3001 and is connected with a suction disc 3008, the inner of the processing box 1004 is provided with a processing groove, the top of the processing box 1004 is provided with an air cylinder 1005, the output end of the air cylinder 1005 penetrates the processing box 1004 and is connected with a cutter, and the size of the cutter is matched with the mold 3002.
[0033] The specific use mode and effect of the embodiment are as follows:
[0034] In use of the product, first, detect whether the joint of the product is fastened, after ensuring the integrity, place the paperboard to be processed in the placement groove 2001 of the placement rack 1006, guide and protect the paperboard through the anti-collision frame 2002, then start the motor 2005, make the motor 2005 drive one of the rotating shafts 2004 to rotate, cooperate with a pair of synchronous wheels 2006, drive the synchronous belt 2007 to rotate, make the push plate 2010 move on the synchronous belt 2007, when the push plate 2010 and the push rod 2011 move to the most side of the placement rack 1006, the push plate 2010 moves to between a pair of limiting grooves 2009, the push rod 2011 extends into the through hole 2012, pushes the paperboard at the bottom of the placement groove 2001 forward, moves to the supporting plate 2013 through another through hole 2012, makes the paperboard fall on the flow guide plate 2014 through the supporting plate 2013, cooperates with a plurality of rollers 2015, facilitates conveying the paperboard to the workbench 1001, and the size of the feeding groove 1002 is smaller than that of the paperboard, so that the paperboard is placed on the workbench 1001, and the synchronous wheel 2006 continues to rotate, and the paperboard is automatically conveyed in sequence, after the paperboard falls on the workbench 1001, a pair of linear guides are started, the linear guides drive the sliding block 3004 and the feeding plate 3001 to move, when moving to the bottom of the paperboard, stop moving, start the pump 3005, cooperate with the first connecting pipe 3006 and the second connecting pipe 3007, make the pump 3005 generate negative pressure, make the suction disc 3008 adsorb the paperboard, then move the feeding plate 3001 to the lower side of the die cutting plate, start the air cylinder 1005, make the air cylinder 1005 drive the die cutting plate to move downward, cut the paperboard, complete automatic feeding, improve work efficiency and reduce danger.
[0035] Embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments are chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.
Claims
1. A hot stamping die cutter characterized by: The utility model provides a kind of automatic processing device for sheet metal, including workbench (1001), feeding mechanism and processing mechanism, the inside of the workbench (1001) is equipped with feeding groove (1002), and the top side of the workbench (1001) is equipped with processing box (1004) outside feeding groove (1002), the bottom four corners of the workbench (1001) are connected with first support rod (1003), the outside of the workbench (1001) is equipped with rack (1006), and the inside of the rack (1006) is equipped with placing groove (2001), the feeding mechanism includes rotating shaft (2004), the bottom four corners of the rack (1006) are connected with second support rod (1007), and a pair of rotating shaft (2004) are inserted between a pair of second support rod (1007), the outside of one second support rod (1007) is equipped with motor (2005), and the output of the motor (2005) is drivingly connected with rotating shaft (2004), the outside of a pair of rotating shaft (2004) is equipped with synchronous wheel (2006), and a pair of synchronous wheel (2006) are engaged with synchronous belt (2007), the top side of the synchronous belt (2007) is connected with push plate (2010), and the side of the push plate (2010) is equipped with a pair of push rod (2011), the processing mechanism includes feeding plate (3001), and the feeding plate (3001) is slidingly installed in the inside of feeding groove (1002), the inside of the feeding plate (3001) is equipped with installation groove, and the inside of the installation groove is equipped with mould (3002).
2. The gilding die-cutter as claimed in claim 1, wherein: The top four corners of the rack (1006) are connected with anti-collision frame (2002), and the inside center of the placing groove (2001) is equipped with recess (2003), the bottom of the rack (1006) is equipped with limiting rod (2008) on both sides of the bottom of recess (2003), and the inside of the limiting rod (2008) is equipped with limiting groove (2009).
3. The gilding die-cutter as claimed in claim 1, wherein: The two sides of the rack (1006) are equipped with through hole (2012), and the through hole (2012) is communicated with placing groove (2001), the length of the push plate (2010) is slightly smaller than the length between a pair of limiting grooves (2009), the outside of the rack (1006) is equipped with supporting plate (2013) on the side close to workbench (1001), and the inside of the supporting plate (2013) is equipped with supporting groove.
4. The gilding die-cutter as claimed in claim 3, wherein: The side of the supporting plate (2013) is connected with guide plate (2014), and one end of the guide plate (2014) is connected with workbench (1001), the inside of the guide plate (2014) is equipped with several connecting grooves at equal distance, and the inside of several connecting grooves is hinged with roller (2015), and the outside of the roller (2015) is adhered with silica gel pad.
5. The gilding die-cutter as claimed in claim 1, wherein: The inside of the workbench (1001) is provided with a chute (3003) on both sides of the feeding groove (1002), the inside of a pair of chutes (3003) is provided with a linear guide rail, the outside of a pair of linear guide rails is slidably provided with a sliding block (3004), and a pair of sliding blocks (3004) are connected with the feeding plate (3001).
6. The gilding die-cutter according to claim 1, wherein: The inside of the feeding groove (1002) is provided with a pump (3005) on one side, one side of the pump (3005) is connected with a first connecting pipe (3006), the inside of the feeding plate (3001) is provided with a plurality of second connecting pipes (3007) at equal intervals around the mounting groove, and the first connecting pipe (3006) and the second connecting pipe (3007) are connected with each other.
7. The gilding die-cutter according to claim 6, characterized in that: The end of a plurality of second connecting pipes (3007) penetrates the feeding plate (3001) and is connected with a suction cup (3008), the inside of the processing box (1004) is provided with a processing groove, the top of the processing box (1004) is provided with a pneumatic cylinder (1005), the output end of the pneumatic cylinder (1005) penetrates the processing box (1004) and is connected with a cutter, and the size of the cutter matches the mold (3002).