Full-automatic stamping equipment for metal component and using method of full-automatic stamping equipment

By designing fully automated stamping equipment, hydraulic cylinders, motors and other components are used to achieve stable cutting and fixing of metal materials, solving the problems of tilting and shaking of metal materials during the stamping process, and improving the quality and production efficiency of stamped parts.

CN120394645APending Publication Date: 2025-08-01KUNSHAN JUP PRECISION PARTS CO LTD
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Patent Information

Application Number
CN202510654183.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

In existing metal stamping technology, metal materials are prone to tilting or shaking during the stamping process, which affects the quality of stamped parts and production efficiency.

Method used

A fully automatic metal component stamping equipment was designed, including a stamping table, a stamping and cutting device, a moving device, an auxiliary device, and a stabilizing device. Through the coordinated work of components such as hydraulic cylinders, motors, and electric suction cups, the equipment achieves stable cutting and stamping fixation of metal materials.

Benefits of technology

It improves the stability and production efficiency of metal materials during the stamping process, avoids deviations and vibrations in the cutting and stamping process of metal materials, and ensures the quality of stamped parts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of metal components, and discloses full-automatic stamping equipment for metal components and a using method thereof.The full-automatic stamping equipment comprises a stamping table, a stamping cut-off device, a second moving device and a first stamping device, the first stamping device is located on the upper side of the stamping table, and the stamping cut-off device is located on the right side of the stamping table; according to the scheme, metal materials can be cut off by arranging the stamping and cutting-off device, so that the situation that the heights of the metal materials on the left side and the right side are deviated due to the fact that the metal materials are too long in the machining process is avoided, and the using stability of the device is improved; and by arranging a fourth mounting plate, a third inserting rod, a second auxiliary plate and a fourth spring, the metal material to be cut off can be limited, the stability of the metal material in the cut-off process is improved, meanwhile, the displacement phenomenon of the metal material after follow-up cut-off is avoided, and the use stability of the device is improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of metal components, and particularly relates to a fully automatic stamping device for metal components and a using method thereof. Background Art

[0002] Metal stamping is a metal processing technology. By using stamping dies and stamping equipment, pressure is applied to metal sheets to cause plastic deformation, so as to obtain parts or products with the required shapes and sizes. Using equipment such as punching presses or presses to generate huge pressure, the metal sheets are sheared, stretched, bent, formed, etc. at normal temperature through stamping dies. In the existing technology, most stamping processes use large pieces of metal materials for stamping. This method is likely to cause the two sides of the metal material to tilt during subsequent stamping processes, or cause jitter, affecting the quality and production efficiency of stamped parts. For this reason, we propose a fully automatic stamping device for metal components and a using method thereof. Summary of the Invention

[0003] In view of the above situation, in order to overcome the defects of the prior art, the invention provides a fully automatic stamping device for metal components and a using method thereof, effectively solving the above problems.

[0004] To achieve the above object, the invention provides the following technical solution: A fully automatic stamping device for metal components includes a stamping table, a stamping truncation device, a second moving device and a first stamping device. The first stamping device is located above the stamping table, the stamping truncation device is located on the right side of the stamping table, the second moving device is located above the stamping truncation device, a first moving device is arranged above the stamping table, multiple groups of auxiliary devices are arranged above the stamping table, multiple groups of first dies are installed above the stamping table, a feeding device is arranged on the right side of the stamping table, and multiple groups of stabilizing devices are arranged above the stamping table;

[0005] The first moving device includes a U-shaped box. Multiple groups of third rotating rods are connected to the front and rear side walls of the U-shaped box. A first linear guide rail is installed below the U-shaped box. The moving ends of the two first linear guide rails are connected to a third mounting plate. The left side of the third mounting plate is connected to a support plate, and a placement groove is opened on the left side of the support plate;

[0006] The auxiliary device includes a first mounting plate. Two groups of first motors are connected to the upper side of the first mounting plate. Installation grooves are opened on the left and right sides of the first mounting plate. The upper side of the first motor is connected to a second rotating rod, and a blocking plate is connected to the upper side of the second rotating rod.

[0007] Preferably, the stamping and cutting device includes a cutting platform, a second hydraulic cylinder is installed on the upper side of the cutting platform, the telescopic end of the second hydraulic cylinder is connected to the fourth mounting plate, the lower side of the fourth mounting plate is connected to the third mold, the upper side of the cutting platform is installed with a fourth mold, a belt conveyor is provided on the left side of the cutting platform, two groups of second springs are connected to the right side of the cutting platform, the upper sides of the two groups of second springs are connected to the first auxiliary plate, the lower side of the first auxiliary plate is connected to the first insertion rod, the lower side of the first insertion rod passes through the body of the cutting platform, and the right side of the first auxiliary plate is inclined.

[0008] Preferably, the second moving device includes a third hydraulic cylinder, the telescopic end of the third hydraulic cylinder is installed with a second linear guide rail, the moving end of the second linear guide rail is connected to a fixed plate, and four groups of electric suction cups are installed on the lower side of the fixed plate.

[0009] Preferably, the first stamping device includes a first bracket, a first hydraulic cylinder is installed on the upper side of the first bracket, the telescopic end of the first hydraulic cylinder is connected to the second mounting plate, a plurality of second molds are provided on the lower side of the second mounting plate, a plurality of first springs are connected to the upper side of the second mold, the upper side of the first spring is connected to the second mounting plate, and a fourth insertion rod is connected to the left and right sides of the second mold, and the upper side of the fourth insertion rod passes through the body of the second mounting plate.

[0010] Preferably, two groups of first cylinders are installed on the upper side of the third mounting plate, the telescopic ends of the two groups of first cylinders are connected to a first connecting plate, and the left side of the first connecting plate is connected to a lower pressure plate.

[0011] Preferably, multiple groups of guide rods are connected to the lower side of the second mounting plate, and multiple groups of limiting devices are connected to the upper side of the stamping table. The limiting device includes a conduit, the upper side of the conduit is connected to a third spring, the upper side of the third spring is connected to a second insertion rod, the lower side of the second insertion rod is located inside the conduit, and the outer side of the second insertion rod is evenly connected to multiple groups of round balls.

[0012] Preferably, the stabilizing device comprises a U-shaped frame, the front and rear sides of the U-shaped frame are connected to screw rods, and the lower side of the screw rods is connected to an action block.

[0013] Preferably, two groups of third insertion rods are connected to the left side of the fourth mounting plate, the lower sides of the two groups of third insertion rods are connected to a second auxiliary plate, the second auxiliary plate is located on the upper side of the fourth mold, the upper side of the second auxiliary plate is connected to two groups of fourth springs, and the upper side of the fourth spring is connected to the fourth mounting plate.

[0014] Preferably, a second cylinder is provided on the upper side of the belt conveyor, and a baffle is connected to the telescopic end of the second cylinder.

[0015] Usage method of a fully automatic stamping device for metal components: The usage method specifically includes the following steps:

[0016] S1: During use, the feeding device conveys metal materials to the stamping and cutting device. Subsequently, the metal materials move to the upper sides of the first auxiliary plate and the fourth die. Then, the second hydraulic cylinder is started, and the second hydraulic cylinder drives the fourth mounting plate to move downward. The third die, the second auxiliary plate, and the fourth spring are driven to move downward by the fourth mounting plate. Subsequently, the second auxiliary plate contacts the metal material. Then, the fourth mounting plate continues to move downward to compress the fourth spring. The elastic force generated by the deformation of the fourth spring drives the second auxiliary plate to extrude the metal material. Subsequently, during the downward movement of the fourth mounting plate, the third die drives the metal material to be extruded, so that the metal material is cut off by the fourth die and the third die. During this process, the metal material cut off on the left side is continuously moved leftward by the belt conveyor on the belt conveyor until it touches the baffle. And for the metal material located above the first auxiliary plate on the right side, when the third die moves downward to extrude the metal material and the first auxiliary plate, the first auxiliary plate compresses the second spring. When the third die moves upward to return to its original position, the elastic force generated by the deformation of the second spring drives the first auxiliary plate to move upward until the metal material moves to the upper side of the fourth die. Subsequently, the feeding device continues to push the metal material so that the metal material moves leftward to wait for the next cutting operation;

[0017] S2: Start the third hydraulic cylinder. Drive the second linear guide rail to move up and down through the third hydraulic cylinder. Drive the fixed plate to move up and down through the up and down movement of the second linear guide rail. The up and down movement of the fixed plate drives the electric suction cup to move up and down. Start the electric suction cup, and adsorb the metal material through the electric suction cup. Then start the second linear guide rail to drive the fixed plate, the electric suction cup and the metal material to move back and forth. Then drop the metal material onto the upper side of the third rotating rod. Then start the first linear guide rail. The first linear guide rail drives the third mounting plate to move leftward. The third mounting plate drives the support plate to move leftward. The support plate pushes the metal material to move leftward. It should be noted that the right side of the metal material is located above the support plate. Then start the first cylinder. The first cylinder drives the first connecting plate and the lower pressing plate to move downward. The lower pressing plate presses and fixes the right side of the metal material, thereby improving the stability of the metal material during movement;

[0018] S3: During the movement of the metal material, it enters between the two groups of second rotating rods. The first motor is started, and the second rotating rods are driven to rotate by the first motor. The metal material is driven to move leftward by the rotation of the second rotating rods. During this process, the baffle plate assists in limiting the upper side of the metal material. The outer shape of the second rotating rod is convex, and the metal material is located on the upper side of the second rotating rod. The first hydraulic cylinder is started, and the second mounting plate is driven to move downward by the first hydraulic cylinder. During the downward pressing of the second mounting plate, the second mold contacts the metal material and fixes the metal material, so that the metal material is clamped and fixed by the second mold and the first mold, avoiding the shaking of the metal material. Subsequently, the second mounting plate continues to move downward and squeezes the first spring until the second mounting plate touches the convex platform on the upper side of the second mold. Then, the second mounting plate continues to move downward under the drive of the second mold to stamp the metal material. Then, the metal material completes the stamping work under the cooperation of the second mold and the first mold, and the impurities stamped out fall to the lower side of the stamping table through the groove of the first mold;

[0019] S4: During the downward movement of the second mounting plate, the guide rod is driven to move downward. Then, the guide rod is sleeved on the outer side of the second plug rod, and the guide rod contacts the round beads on the outer side of the second plug rod, thereby completing the auxiliary limiting work during the long-term use of the second mounting plate. During the downward pressing of the second mounting plate, it contacts the round beads and squeezes the third spring.

[0020] Compared with the prior art, the beneficial effects of the present invention are:

[0021] 1. By setting the stamping and truncating device, the metal material can be truncated, so that during the processing of the metal material, the height of the metal materials on the left and right sides will not deviate due to its too long length, improving the stability of the use of this device. By setting the fourth mounting plate, the third plug rod, the second auxiliary plate, and the fourth spring, the metal material to be truncated can be restricted, improving its stability during the truncating process and also avoiding the displacement phenomenon after subsequent truncation, improving the stability of the use of this device;

[0022] 2. By setting the first stamping device, the metal material can be stamped. During the stamping process, the metal material can be pre-fixed to avoid the jumping of the metal material during the stamping process, improving the stamping processing efficiency of this device;

[0023] 3. By setting the auxiliary device, when limiting the up and down positions of the metal material, the metal material can also be moved. Not only can the side surface of the second rotating rod drive the metal material to move, but also the position where the second rotating rod contacts the lower side of the metal material during the rotation of the second rotating rod can drive the metal material to move, improving the stability of the use of this device;

[0024] 4. By setting up a stabilizing device, the stabilizing device can adjust the height of the metal material to avoid large-amplitude vibrations during the stamping process of the metal material, thereby improving the stability of the device during use. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention, and do not constitute a limitation to the present invention.

[0026] In the drawings:

[0027] Figure 1 is a schematic structural diagram of the present invention;

[0028] Figure 2 is a schematic structural diagram of the first stamping device of the present invention;

[0029] Figure 3 is a schematic structural diagram of the first moving device of the present invention;

[0030] Figure 4 is a schematic structural diagram of the second moving device of the present invention;

[0031] Figure 5 is a schematic structural diagram of the stamping and cutting-off device of the present invention;

[0032] Figure 6 is a schematic structural diagram of the auxiliary device of the present invention;

[0033] Figure 7 is a schematic structural diagram of the stabilizing device of the present invention;

[0034] Figure 8 is a schematic structural diagram of the limiting device of the present invention.

[0035] In the figure: 100, stamping table; 110, first moving device; 111, U-shaped box; 112, third rotating rod; 113, first linear guide; 114, third mounting plate; 115, support plate; 116, first cylinder; 117, first connecting plate; 118, lower pressing plate; 120, auxiliary device; 121, first mounting plate; 122, first motor; 123, second rotating rod; 124, partition plate; 130, first die; 140, limiting device; 141, conduit; 142, third spring; 143, second inserting rod; 144, ball; 200, stamping and cutting device; 210, cutting table; 220, second hydraulic cylinder; 230, fourth mounting plate; 231, third inserting rod; 232, second auxiliary plate; 233, fourth spring; 240, third die; 250, fourth die; 260, belt conveyor; 261, second cylinder; 262, baffle; 270, second spring; 280, first auxiliary plate; 290, first inserting rod; 300, second moving device; 310, third hydraulic cylinder; 320, second linear guide; 330, fixing plate; 340, electro-suction cup; 400, first stamping device; 410, first bracket; 420, first hydraulic cylinder; 430, second mounting plate; 431, guide rod; 440, second die; 450, first spring; 460, fourth inserting rod; 500, feeding device; 600, stabilizing device; 610, U-shaped frame; 620, screw; 630, acting block. Detailed implementation mode

[0036] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0037] Embodiment 1:

[0038] A full-automatic stamping device for metal components and its usage method:

[0039] It includes a stamping table 100, a stamping and cutting device 200, a second moving device 300 and a first stamping device 400. The first stamping device 400 is located above the stamping table 100, the stamping and cutting device 200 is located on the right side of the stamping table 100, the second moving device 300 is located above the stamping and cutting device 200. A first moving device 110 is arranged above the stamping table 100. Multiple groups of auxiliary devices 120 are arranged above the stamping table 100. Multiple groups of first dies 130 are fixedly installed above the stamping table 100 by bolts. A feeding device 500 is arranged on the right side of the stamping table 100. Multiple groups of stabilizing devices 600 are arranged above the stamping table 100. The first moving device 110 includes a U-shaped box 111. Multiple groups of third rotating rods 112 are rotatably connected to the front and rear side walls of the U-shaped box 111. A first linear guide 113 is fixedly installed below the U-shaped box 111. The moving ends of the two first linear guides 113 are fixedly connected to a third mounting plate 114. The left side of the third mounting plate 114 is fixedly connected to a support plate 115 by bolts. A placement groove is formed on the left side of the support plate 115. When the first linear guide 113 is started, the first linear guide 113 drives the third mounting plate 114 to move leftward. The third mounting plate 114 drives the support plate 115 to move leftward. The support plate 115 pushes the metal material leftward. It should be noted that the right side of the metal material is located above the support plate 115. By setting the first moving device 110, the metal material can be driven to move above the stamping table 100, and it can cooperate with the auxiliary device 120 to move the metal material. After the auxiliary device 120 moves the metal material, the first moving device 110 drives the metal material to move to prevent the previous group of metal materials from not reaching the predetermined position, thereby improving the stability of the subsequent processing of this device. Subsequently, the first cylinder 116 is started. The first cylinder 116 drives the first connecting plate 117 and the lower pressing plate 118 to move downward. The lower pressing plate 118 presses and fixes the right side of the metal material, thereby improving the stability of the metal material during the moving process. By setting the first cylinder 116, the first connecting plate 117 and the lower pressing plate 118, the right side of the metal material can be limited, improving the stability of the metal material during the moving process and the stability of entering the stamping table 100 subsequently, and improving the usage efficiency of this device. The auxiliary device 120 includes a first mounting plate 121. Two first motors 122 are fixedly connected to the upper side of the first mounting plate 121. Installation grooves are formed on the left and right sides of the first mounting plate 121. The upper side of the first motor 122 is connected to a second rotating rod 123. The upper side of the second rotating rod 123 is connected to a partition plate 124. It should be noted that the height of the position where the second rotating rod 123 contacts the lower side of the metal material is the same as the top of the first die 130. By setting the auxiliary device 120, when the upper and lower positions of the metal material are limited, the metal material can also be moved. Not only can the side of the second rotating rod 123 drive the metal material to move,Meanwhile, during the rotation of the second rotating rod 123, the position where the second rotating rod 123 contacts the lower side of the metal material can also drive the metal material to move, improving the stability of the device. On the upper side of the third mounting plate 114, two groups of first cylinders 116 are fixedly installed. The telescopic ends of the two groups of first cylinders 116 are fixedly connected to a first connecting plate 117. On the left side of the first connecting plate 117, a lower pressing plate 118 is fixedly connected. On the lower side of the second mounting plate 430, multiple guide rods 431 are fixedly connected. On the upper side of the stamping table 100, multiple limiting devices 140 are connected. The limiting device 140 includes a conduit 141. On the upper side of the conduit 141, a third spring 142 is fixedly connected. On the upper side of the third spring 142, a second insertion rod 143 is fixedly connected. The lower side of the second insertion rod 143 is located inside the conduit 141. Multiple beads 144 are evenly connected to the outer side of the second insertion rod 143. During the downward movement of the second mounting plate 430, the guide rods 431 are driven to move downward. Then, the guide rods 431 are sleeved on the outer side of the second insertion rod 143. The guide rods 431 contact the beads 144 on the outer side of the second insertion rod 143, thereby completing the auxiliary limiting work during the long-term use of the second mounting plate 430. During the downward pressing of the second mounting plate 430, it contacts the beads 144 and squeezes the third spring 142.,

[0040] The stabilizing device 600 includes a U-shaped frame 610. On the front and rear sides of the U-shaped frame 610, screw rods 620 are threadedly connected. On the lower side of the screw rod 620, an acting block 630 is fixedly connected.

[0041] The stamping and cutting device 200 includes a cutting table 210. A second hydraulic cylinder 220 is fixedly installed on the upper side of the cutting table 210. The telescopic end of the second hydraulic cylinder 220 is fixedly connected to a fourth mounting plate 230. A third die 240 is fixedly connected to the lower side of the fourth mounting plate 230. A fourth die 250 is fixedly installed on the upper side of the cutting table 210. A belt conveyor 260 is fixedly arranged on the left side of the cutting table 210. Two groups of second springs 270 are fixedly connected to the right side of the cutting table 210. A first auxiliary plate 280 is fixedly connected to the upper sides of the two groups of second springs 270. A first insertion rod 290 is fixedly connected to the lower side of the first auxiliary plate 280. The lower side of the first insertion rod 290 penetrates through the body of the cutting table 210. The right side of the first auxiliary plate 280 is inclined. Two groups of third insertion rods 231 are inserted and connected to the left side of the fourth mounting plate 230. A second auxiliary plate 232 is fixedly connected to the lower sides of the two groups of third insertion rods 231. The second auxiliary plate 232 is located above the fourth die 250. Two groups of fourth springs 233 are fixedly connected to the upper side of the second auxiliary plate 232. The upper sides of the fourth springs 233 are fixedly connected to the fourth mounting plate 230. By setting the fourth mounting plate 230, the third insertion rods 231, the second auxiliary plate 232, and the fourth springs 233, the metal material to be cut can be restricted, improving its stability during the cutting process and also avoiding displacement after subsequent cutting, thus improving the stability of the use of this device. A second air cylinder 261 is fixedly arranged on the upper side of the belt conveyor 260. The telescopic end of the second air cylinder 261 is fixedly connected to a baffle 262. When the second air cylinder 261 is started, the baffle 262 is driven by the second air cylinder 261 to move left and right. The metal material located on the upper side of the belt conveyor 260 is limited by the baffle 262, improving the stability and convenience of the use of this device. During the use process, the feeding device 500 conveys metal materials to the stamping and cutting device 200. Subsequently, the metal materials move to the upper sides of the first auxiliary plate 280 and the fourth die 250. Then the second hydraulic cylinder 220 is started. The second hydraulic cylinder 220 drives the fourth mounting plate 230 to move downward. The third die 240, the second auxiliary plate 232, and the fourth springs 233 are driven by the fourth mounting plate 230 to move downward. Subsequently, the second auxiliary plate 232 contacts the metal material. Then the fourth mounting plate 230 continues to move downward to squeeze the fourth springs 233. The elastic force generated by the deformation of the fourth springs 233 drives the second auxiliary plate 232 to squeeze the metal material. Then, during the process of the fourth mounting plate 230 moving downward, the third die 240 drives the third die 240 to squeeze the metal material, so that the metal material is cut by the fourth die 250 and the third die 240. During this process, the metal material cut on the left side is continuously moved leftward by the belt conveyor 260 on the belt conveyor 260 until it touches the baffle 262. And for the metal material located on the upper side of the first auxiliary plate 280 on the right side, when the third die 240 moves downward to squeeze the metal material and the first auxiliary plate 280, the first auxiliary plate 280 squeezes the second springs 270.When the third mold 240 moves upward to return to its original position, the elastic force generated by the deformation of the second spring 270 drives the first auxiliary plate 280 to move upward until the metal material moves to the upper side of the fourth mold 250. Subsequently, the feeding device 500 continues to push the metal material, causing the metal material to move leftward and wait for the next cutting operation. By setting the stamping and cutting device 200, the metal material can be cut, thereby preventing the height deviation of the metal material on both left and right sides due to its excessive length during the processing of the metal material, and improving the stability of the device.

[0042] The second moving device 300 includes a third hydraulic cylinder 310. A second linear guide rail 320 is fixedly installed at the telescopic end of the third hydraulic cylinder 310. A fixing plate 330 is fixedly connected to the moving end of the second linear guide rail 320. Four groups of electric suction cups 340 are fixedly installed on the lower side of the fixing plate 330. When the third hydraulic cylinder 310 is started, the second linear guide rail 320 is driven to move up and down by the third hydraulic cylinder 310. The fixing plate 330 is driven to move up and down by the up and down movement of the second linear guide rail 320. The electric suction cups 340 are driven to move up and down by the up and down movement of the fixing plate 330. When the electric suction cups 340 are started, the metal material is adsorbed by the electric suction cups 340. Then, the second linear guide rail 320 is started to drive the fixing plate 330, the electric suction cups 340 and the metal material to move back and forth, and then the metal material is dropped onto the upper side of the third rotating rod 112.

[0043] The first stamping device 400 includes a first bracket 410. A first hydraulic cylinder 420 is fixedly installed on the upper side of the first bracket 410. The telescopic end of the first hydraulic cylinder 420 is fixedly connected to a second mounting plate 430. A plurality of second dies 440 are fixedly arranged on the lower side of the second mounting plate 430. A plurality of first springs 450 are fixedly connected to the upper side of the second dies 440. The upper side of the first springs 450 is fixedly connected to the second mounting plate 430. Fourth insertion rods 460 are fixedly connected to both the left and right sides of the second dies 440. The upper sides of the fourth insertion rods 460 penetrate through the body of the second mounting plate 430. During the movement of the metal material, it enters between two second rotating rods 123. The first motor 122 is started, and the second rotating rods 123 are driven to rotate by the first motor 122. The metal material is driven to move leftward by the rotation of the second rotating rods 123. During this process, the baffle 124 performs auxiliary limiting on the upper side of the metal material. The outer shape of the second rotating rods 123 is convex, and the metal material is located on the upper side of the second rotating rods 123. It is worth mentioning that when the next metal material moves leftward under the push of the first moving device 110, it will also perform auxiliary pushing on the left metal material. The first hydraulic cylinder 420 is started, and the second mounting plate 430 is driven to move downward by the first hydraulic cylinder 420. During the downward pressing of the second mounting plate 430, the second dies 440 come into contact with the metal material and fix the metal material, so that the metal material is clamped and fixed by the second dies 440 and the first die 130, avoiding the shaking of the metal material. Subsequently, the second mounting plate 430 continues to move downward and compresses the first springs 450 until the second mounting plate 430 touches the convex platform on the upper side of the second dies 440. Subsequently, the second mounting plate 430 continues to move downward under the drive of the second dies 440 to stamp the metal material. Then, the metal material completes the stamping work under the cooperation of the second dies 440 and the first die 130. The impurities stamped out fall to the lower side of the stamping table 100 through the groove of the first die 130. By setting the first stamping device 400, the stamping work can be carried out on the metal material. During the stamping process, the metal material can be pre-fixed to avoid the jumping of the metal material during the stamping process and improve the stamping processing efficiency of the device.

[0044] Two first cylinders 116 are fixedly installed on the upper side of the third mounting plate 114. The telescopic ends of the two first cylinders 116 are fixedly connected to a first connecting plate 117. The left side of the first connecting plate 117 is fixedly connected to a lower pressing plate 118.

[0045] The lower side of the second mounting plate 430 is fixedly connected to multiple groups of guide rods 431, and the upper side of the stamping table 100 is connected to multiple groups of limit devices 140. The limit device 140 includes a guide tube 141, and the upper side of the guide tube 141 is fixedly connected to a third spring 142. The upper side of the third spring 142 is fixedly connected to a second plug rod 143. The lower side of the second plug rod 143 is located inside the guide tube 141. The outer side of the second plug rod 143 is evenly connected to multiple groups of round balls 144. When the second mounting plate 430 moves downward, it drives the guide rod 431 to move downward, and then the guide rod 431 Sleeved on the outside of the second insertion rod 143, the guide rod 431 contacts the ball 144 on the outside of the second insertion rod 143, thereby completing the auxiliary limiting work of the second mounting plate 430 during long-term use. During the downward pressing process of the second mounting plate 430, it contacts the ball 144 and squeezes the third spring 142. By setting the guide rod 431 and the limiting device 140, the first stamping device 400 can be limited during the downward pressing process, thereby improving the stability and precision of the subsequent contact between the first mold 130 and the second mounting plate 430, and improving the production stability of subsequent metal workpieces.

[0046] The stabilizing device 600 includes a U-shaped frame 610, and the front and rear sides of the U-shaped frame 610 are both screwed with screws 620, and the lower side of the screw 620 is fixedly connected with an action block 630. By setting the stabilizing device 600, the stabilizing device 600 can fiberize the height of the metal material, avoid large vibrations during the stamping process of the metal material, and improve the stability of the use of this device.

Claims

1. A fully automatic stamping device for metal components, characterized in that: It includes a stamping table (100), a stamping and cutting device (200), a second moving device (300) and a first stamping device (400). The first stamping device (400) is located above the stamping table (100), the stamping and cutting device (200) is located on the right side of the stamping table (100), the second moving device (300) is located above the stamping and cutting device (200). A first moving device (110) is provided above the stamping table (100), multiple groups of auxiliary devices (120) are provided above the stamping table (100), multiple groups of first molds (130) are installed above the stamping table (100), a feeding device (500) is provided on the right side of the stamping table (100), and multiple groups of stabilizing devices (600) are provided above the stamping table (100); The first moving device (110) includes a U-shaped box (111). Multiple groups of third rotating rods (112) are connected to the front and rear side walls of the U-shaped box (111). A first linear guide rail (113) is installed below the U-shaped box (111). The moving ends of the two first linear guide rails (113) are connected to a third mounting plate (114). The left side of the third mounting plate (114) is connected to a support plate (115), and a placement groove is provided on the left side of the support plate (115); The auxiliary device (120) includes a first mounting plate (121). Two first motors (122) are connected to the upper side of the first mounting plate (121). Installation grooves are provided on the left and right sides of the first mounting plate (121). A second rotating rod (123) is connected to the upper side of the first motor (122), and a partition plate (124) is connected to the upper side of the second rotating rod (123).

2. The full-automatic stamping equipment for a metal component according to claim 1, characterized in that: The stamping and cutting device (200) includes a cutting table (210). A second hydraulic cylinder (220) is installed above the cutting table (210). The telescopic end of the second hydraulic cylinder (220) is connected to a fourth mounting plate (230). A third mold (240) is connected to the lower side of the fourth mounting plate (230). A fourth mold (250) is installed above the cutting table (210). A belt conveyor (260) is provided on the left side of the cutting table (210). Two second springs (270) are connected to the right side of the cutting table (210). A first auxiliary plate (280) is connected to the upper sides of the two second springs (270). A first insertion rod (290) is connected to the lower side of the first auxiliary plate (280). The lower side of the first insertion rod (290) penetrates through the body of the cutting table (210), and the right side of the first auxiliary plate (280) is inclined; 3. The full-automatic stamping equipment for a metal component according to claim 1, wherein: The second moving device (300) includes a third hydraulic cylinder (310). The telescopic end of the third hydraulic cylinder (310) is installed with a second linear guide rail (320). The moving end of the second linear guide rail (320) is connected to a fixing plate (330). Four electric suction cups (340) are installed on the lower side of the fixing plate (330).

4. The fully automatic stamping equipment for a metal component according to claim 1, characterized in that: The first stamping device (400) includes a first bracket (410). A first hydraulic cylinder (420) is installed on the upper side of the first bracket (410). The telescopic end of the first hydraulic cylinder (420) is connected to a second mounting plate (430). Multiple groups of second dies (440) are arranged on the lower side of the second mounting plate (430). Multiple groups of first springs (450) are connected to the upper side of the second dies (440). The upper sides of the first springs (450) are connected to the second mounting plate (430). Fourth insertion rods (460) are connected to both the left and right sides of the second dies (440). The upper sides of the fourth insertion rods (460) penetrate through the body of the second mounting plate (430).

5. The fully automatic stamping equipment for a metal component according to claim 1, characterized in that: Two first cylinders (116) are installed on the upper side of the third mounting plate (114). The telescopic ends of the two first cylinders (116) are connected to a first connecting plate (117). A lower pressing plate (118) is connected to the left side of the first connecting plate (117).

6. The fully automatic stamping equipment for a metal component according to claim 4, characterized in that: Multiple guide rods (431) are connected to the lower side of the second mounting plate (430). Multiple limiting devices (140) are connected to the upper side of the stamping table (100). The limiting device (140) includes a conduit (141). A third spring (142) is connected to the upper side of the conduit (141). A second insertion rod (143) is connected to the upper side of the third spring (142). The lower side of the second insertion rod (143) is located inside the conduit (141). Multiple groups of beads (144) are evenly connected to the outer side of the second insertion rod (143).

7. The fully automatic stamping equipment for a metal component according to claim 1, characterized in that: The stabilizing device (600) includes a U-shaped frame (610). Screws (620) are connected to both the front and rear sides of the U-shaped frame (610). A acting block (630) is connected to the lower side of the screw (620).

8. The fully automatic stamping equipment for a metal component according to claim 2, wherein: Two third insertion rods (231) are connected to the left side of the fourth mounting plate (230). The lower sides of the two third insertion rods (231) are connected to a second auxiliary plate (232). The second auxiliary plate (232) is located above the fourth die (250). Two fourth springs (233) are connected to the upper side of the second auxiliary plate (232). The upper sides of the fourth springs (233) are connected to the fourth mounting plate (230).

9. The fully automatic stamping equipment for a metal component according to claim 2, characterized in that: A second cylinder (261) is arranged on the upper side of the belt conveyor (260). The telescopic end of the second cylinder (261) is connected to a baffle (262).

10. A method for using a fully automatic stamping device for metal components according to any one of claims 1, characterized in that: The usage method specifically includes the following steps: S1: During the use process, the feeding device (500) conveys metal materials to the stamping and cutting device (200). Subsequently, the metal materials move to the upper side of the first auxiliary plate (280) and the fourth die (250). Then, the second hydraulic cylinder (220) is started. The second hydraulic cylinder (220) drives the fourth mounting plate (230) to move downward, and drives the third die (240), the second auxiliary plate (232), and the fourth spring (233) to move downward through the fourth mounting plate (230). Subsequently, the second auxiliary plate (232) contacts the metal material. Then, the fourth mounting plate (230) continues to move downward to compress the fourth spring (233). The elastic force generated by the deformation of the fourth spring (233) drives the second auxiliary plate (232) to extrude the metal material. Then, during the downward movement of the fourth mounting plate (230), the third die (240) drives to extrude the metal material, so that the metal material is cut off by the fourth die (250) and the third die (240). During this process, the metal material cut off on the left side is continuously moved leftward by the belt conveyor (260) on the belt conveyor (260) until it touches the baffle (262). And for the metal material located on the upper side of the first auxiliary plate (280) on the right side, when the third die (240) moves downward to extrude the metal material and the first auxiliary plate (280), the first auxiliary plate (280) extrudes the second spring (270). When the third die (240) moves upward to return to its original position, the elastic force generated by the deformation of the second spring (270) drives the first auxiliary plate (280) to move upward until the metal material moves to the upper side of the fourth die (250). Then, the feeding device (500) continues to push the metal material so that the metal material moves leftward to wait for the next cutting work; S2: Start the third hydraulic cylinder (310). Drive the second linear guide rail (320) to move up and down through the third hydraulic cylinder (310). Drive the fixed plate (330) to move up and down through the up and down movement of the second linear guide rail (320). The up and down movement of the fixed plate (330) drives the electric suction cup (340) to move up and down. Start the electric suction cup (340) to adsorb the metal material through the electric suction cup (340). Then start the second linear guide rail (320) to drive the fixed plate (330), the electric suction cup (340) and the metal material to move back and forth. Then drop the metal material onto the upper side of the third rotating rod (112). Then start the first linear guide rail (113). The first linear guide rail (113) drives the third mounting plate (114) to move leftward. The third mounting plate (114) drives the support plate (115) to move leftward. The support plate (115) pushes the metal material to move leftward. It is worth mentioning that the right side of the metal material is located on the upper side of the support plate (115). Then start the first cylinder (116). The first cylinder (116) drives the first connecting plate (117) and the lower pressing plate (118) to move downward. The lower pressing plate (118) presses and fixes the right side of the metal material, thereby improving the stability of the metal material during the movement process; S3: During the movement of the metal material, it enters between the two groups of second rotating rods (123). Start the first motor (122), drive the second rotating rod (123) to rotate through the first motor (122), and drive the metal material to move leftward through the rotation of the second rotating rod (123). During this process, the baffle plate (124) performs auxiliary limit on the upper side of the metal material. The outer shape of the second rotating rod (123) is convex, and the metal material is located on the upper side of the second rotating rod (123). Start the first hydraulic cylinder (420), drive the second mounting plate (430) to move downward through the first hydraulic cylinder (420). During the downward pressing of the second mounting plate (430), the second mold (440) contacts the metal material and fixes the metal material, so that the metal material is clamped and fixed by the second mold (440) and the first mold (130), avoiding the shaking of the metal material. Subsequently, the second mounting plate (430) continues to move downward and presses the first spring (450) until the second mounting plate (430) touches the boss on the upper side of the second mold (440). Subsequently, the second mounting plate (430) continues to move downward under the drive of the second mold (440) to punch the metal material. Then, the metal material completes the punching work under the cooperation of the second mold (440) and the first mold (130), and the punched impurities fall to the lower side of the punching table (100) through the groove of the first mold (130). S4: During the downward movement of the second mounting plate (430), it drives the guide rod (431) to move downward. Then, the guide rod (431) is sleeved on the outer side of the second insertion rod (143), and the guide rod (431) contacts the ball (144) on the outer side of the second insertion rod (143), thereby completing the auxiliary limit work during the long-term use of the second mounting plate (430). During the downward pressing of the second mounting plate (430), it contacts the ball (144) and presses the third spring (142).