A pressure device for producing an automobile accessory mold and a process thereof
By designing an automated pressure device, and utilizing vision sensors and a motor-driven placement mechanism, precise positioning and automated operation of metal plates are achieved, solving the problems of positional deviation and safety hazards caused by manual placement, and improving production accuracy and waste recycling efficiency.
Patent Information
- Application Number
- CN202511476357.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-16
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2045-10-16
AI Technical Summary
In the production of automotive parts molds, manual placement of blanks can easily lead to positional deviations and safety hazards, and existing pressure devices are difficult to accurately position and automate.
A pressure device comprising a pressing base, a worktable, a stamping unit, a feeding unit, and a collection unit is designed. It utilizes a vision sensor and a motor-driven placement mechanism to achieve precise positioning and automated placement of metal plates, an oil-absorbing layer to remove oil stains, and a bottom mold assembly and a collection unit to achieve automatic separation and waste recycling.
It improves production accuracy, prevents oil contamination from affecting positioning, achieves automated positioning and efficient separation and recycling of waste materials, and reduces the safety risks of manual operation.
Smart Images

Figure CN120940469B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of automotive parts mold manufacturing technology, and in particular to a pressure device and process for automotive parts mold manufacturing. Background Technology
[0002] Pressure devices used in the production of automotive parts molds typically take the form of mechanical presses or hydraulic presses. Taking a common mechanical press as an example, it is generally powered by an electric motor, which transmits power to the crankshaft, connecting rod, and other mechanisms via belts, gears, and other transmission components. This drives a slide to perform reciprocating linear motion. During the slide's descent, the mold mounted on it applies pressure to the metal sheet or other blank, completing various stamping processes such as punching, blanking, bending, and deep drawing to process the blank into workpieces of specific shapes and sizes required for automotive parts mold production. Hydraulic presses, on the other hand, use a hydraulic pump to convert the mechanical energy of an electric motor into hydraulic energy. The hydraulic system precisely controls the pressure and slide movement. It offers high pressure and smooth operation, making it suitable for processes such as the forming of large automotive parts molds.
[0003] When placing blanks on the workbench, manual placement may cause positional shifts, and workers may also be injured by the machinery. Summary of the Invention
[0004] The purpose of this invention is to provide a pressure device and process for producing automotive parts molds.
[0005] The technical solution adopted by this invention to solve its technical problem is: a pressure device and its process for producing automotive parts molds, comprising:
[0006] The pressing base has a worktable on its top, a first T-slot on its worktable, a bottom mold assembly slidably connected to the first T-slot, and a collection unit at the bottom of the worktable.
[0007] A stamping unit is provided on the rear side of the pressing base. A feeding unit is provided on the outer surface of the stamping unit. A stabilizing pad is provided on the bottom of the pressing base and the bottom of the stamping unit.
[0008] An operating table for controlling the stamping unit and the placement unit, the operating table being connected to the stamping unit via a wire;
[0009] The feeding unit comprises support arms arranged on both sides of the stamping unit, the outer surface of the support arm on one side is bolted with a first support plate, the outer surface of the first support plate is provided with a first motor, the output end of the first motor is fixedly connected with a first reciprocating screw rod through a shaft coupling, the outer surface of the first reciprocating screw rod is threadedly provided with a placing mechanism;
[0010] The placing mechanism comprises a first moving block, the top of the first moving block is integrally provided with a second support plate, the outer surface of the second support plate is fixedly connected with a first telescopic rod, the output end of the first telescopic rod is fixedly connected with a placing box through welding, the outer surface of the placing box is provided with a placing groove, the bottom of the placing box is further provided with a falling groove, the side of the placing box away from the falling groove is provided with a pushing mechanism, the placing box is fixedly connected with a cylinder plate close to the falling groove, the outer surface of the cylinder plate is provided with a limiting plate, the bottom of the placing box is fixedly connected with a visual sensor, and the placing box is symmetrically provided with an oil absorption layer.
[0011] Further, the outer surface of the support arm is fixedly connected with the stamping unit through a bolt, the inner wall of the first moving block is threadedly connected with the outer surface of the first reciprocating screw rod, and the first moving block is in translational operation on the first reciprocating screw rod.
[0012] Further, the pushing mechanism comprises a frame, the outer surface of the frame is fixedly connected with a second motor, the output end of the second motor is fixedly connected with a second reciprocating screw rod through a shaft coupling, the outer surface of the second reciprocating screw rod is threadedly connected with a second moving block, the second moving block is in translational motion on the second reciprocating screw rod, and the outer surface of the second moving block is fixedly connected with a pushing plate through welding.
[0013] Further, the frame is integrally connected with the placing box;
[0014] The metal plate is placed through the placing groove, and the pushing mechanism drives the metal plate to move.
[0015] Further, the stamping unit comprises a shell plate, the inner wall of the shell plate is bolted with a press, the front surface of the shell plate is provided with a main pressure gauge, the back surface of the shell plate is provided with an instrument panel, the top of the press is fixedly provided with a third motor through a bolt, the output end of the third motor is fixedly connected with a transmission assembly through a shaft coupling, the bottom of the transmission assembly is provided with a stamping mechanism, and the inside of the press is provided with a main control rod.
[0016] Further, the stamping mechanism comprises a connecting rod arranged in the transmission assembly, a sliding block seat is welded and fixed at the bottom of the connecting rod, a second T-shaped groove is arranged on the outer surface of the sliding block seat, a top die plate is slidably connected on the second T-shaped groove, a first supporting rod is welded and fixedly connected at the bottom of the sliding block seat, and a collecting plate is welded and fixed at the bottom of the first supporting rod.
[0017] Further, the bottom die assembly comprises a supporting block, a third supporting plate is placed on the top of the supporting block, the third supporting plate is fixed by a pressing plate, the third supporting plate is tightly pressed on the supporting block by tightening the bolt and using the pressing plate, a fourth motor is fixedly connected on the workbench by a bolt, a rotating shaft is fixedly connected to the output end of the fourth motor through a shaft coupling, a bottom die plate is welded and fixedly connected to the end of the rotating shaft away from the fourth motor, a clamping rod is symmetrically inserted into the third supporting plate, the clamping rod extends into the bottom die plate, a sliding groove is symmetrically arranged on the top of the bottom die plate, a third moving block is slidably connected to the outer surface of the sliding groove, and a scraping plate is welded and fixed to the opposite surface of the third moving block.
[0018] Further, the supporting block is placed on the workbench and moves along the first T-shaped groove, and the bottom of the scraping plate is in contact with the top of the bottom die plate.
[0019] Further, the collecting unit comprises a drooping column, an isolation plate is welded and fixed to the bottom of the drooping column, the isolation plate is provided with an isolation hole, an inclined chute is arranged on the top of the isolation plate, a bottom groove is integrally formed on the bottom of the isolation plate, a second supporting rod is fixedly connected to the outer surface of the bottom groove, and an extrusion bottom block is slidably connected to the outer surface of the second supporting rod.
[0020] Further, the top of the drooping column is welded and fixed to the bottom of the workbench, and the shape of the extrusion bottom block is matched with the shape of the collecting plate.
[0021] A process of a pressure device for producing an automobile accessory mold, comprising the following steps:
[0022] S1: First, place the metal plate into the feeding unit, which will accurately position and place the metal plate into the bottom die assembly;
[0023] S2: The stamping unit starts working, stamping the metal plate of the bottom die assembly to form a specific shape of automobile accessory mold;
[0024] S3: After stamping, the bottom die assembly will pour the formed automobile accessory mold and waste into the collecting unit, and separate them.
[0025] S4: In cooperation with the reset of the stamping unit, the waste in the collecting unit will be extruded into blocks for subsequent recycling.
[0026] The beneficial effects of the pressure device and process for producing automotive parts molds provided by this invention are as follows:
[0027] (1) The visual sensor at the bottom of the feeding unit and the placement box will detect the position where the metal plate needs to be placed. The first motor will drive the first reciprocating screw to rotate, thereby controlling the first moving block to move and moving the placement box to the top of the bottom mold assembly. The first telescopic rod will drive the placement box to get as close as possible to the bottom mold assembly. Then the second motor will drive the second reciprocating screw to rotate, thereby controlling the second moving block and the push plate to move and push the metal plate into the drop groove. When the limit plate is in the extended state, it will block the metal plate from falling. By retracting the limit plate, the metal plate will fall onto the bottom mold assembly.
[0028] (2) The placement mechanism will wipe the metal plate with the oil-absorbing layers on the upper and lower sides during the pushing process of the push plate, thereby removing the oil stains that may be attached to the surface of the metal plate, such as cutting fluid and rust-preventive oil, to prevent these oil stains from affecting the fit between the metal plate and the mold, resulting in inaccurate positioning, and may also contaminate the mold and affect the quality of the stamped parts during the stamping process, thus further improving the production precision.
[0029] (3) After the bottom mold assembly and stamping unit are stamped once, the formed automotive parts mold and waste will be on the bottom mold plate. First, pull out the locking rod, and then the fourth motor will drive the rotating shaft to rotate, thereby tilting the bottom mold plate and causing the automotive parts mold and waste to fall into the collection unit. At the same time, the third moving block will slide along the slide and drive the scraping plate to scrape off the small waste particles that are not easy to fall off.
[0030] (4) The collection unit will then move the first support rod and the collection plate upward as the stamping unit is reset, so that the extrusion block and the collection plate will make extrusion contact, extruding the waste in the collection plate into pieces, which will facilitate subsequent recycling and reuse. Attached Figure Description
[0031] Figure 1 This is a front structural schematic diagram of a pressure device for producing automotive parts molds provided by the present invention;
[0032] Figure 2 This is a schematic diagram of the back structure of a pressure device for producing automotive parts molds provided by the present invention;
[0033] Figure 3 This is a bottom view of the structure of a pressure device for producing automotive parts molds provided by the present invention;
[0034] Figure 4 This is a schematic diagram of the structure of a pressure device feeding unit for the production of automotive parts molds provided by the present invention;
[0035] Figure 5 It is a structure schematic view of the pressure device placing mechanism for automobile accessory mold production provided by the present application;
[0036] Figure 6 It is a bottom structure schematic view of the pressure device placing mechanism for automobile accessory mold production provided by the present application;
[0037] Figure 7 It is a structure schematic view of the pressure device pushing mechanism for automobile accessory mold production provided by the present application;
[0038] Figure 8 It is a structure schematic view of the pressure device stamping unit for automobile accessory mold production provided by the present application;
[0039] Figure 9 It is a structure schematic view of the pressure device stamping unit for automobile accessory mold production provided by the present application;
[0040] Figure 10 It is a back structure schematic view of the pressure device stamping mechanism for automobile accessory mold production provided by the present application;
[0041] Figure 11 It is a structure schematic view of the pressure device bottom die assembly for automobile accessory mold production provided by the present application;
[0042] Figure 12 It is a local structure schematic view of the pressure device bottom die assembly for automobile accessory mold production provided by the present application;
[0043] Figure 13 It is a structure schematic view of the pressure device collecting unit for automobile accessory mold production provided by the present application;
[0044] In the figure: 1, pressing base;
[0045] 2, workbench;
[0046] 3, first T-shaped groove;
[0047] 4, bottom die assembly; 41, support block; 42, third support plate; 43, pressing plate; 44, fourth motor; 45, rotating shaft; 46, bottom die plate; 47, clamping rod; 48, sliding groove; 49, third moving block; 410, scraping plate;
[0048] 5, stamping unit; 51, shell plate; 52, press; 53, instrument panel; 54, third motor; 55, transmission assembly; 56, main control rod; 57, stamping mechanism; 571, connecting rod; 572, sliding block seat; 573, second T-shaped groove; 574, top die plate; 575, first support rod; 576, collecting plate; 58, main pressure gauge;
[0049] 6, a feeding unit; 61, a supporting arm; 62, a first supporting plate; 63, a first motor; 64, a first reciprocating screw rod; 65, a placing mechanism; 651, a first moving block; 652, a second supporting plate; 653, a first telescopic rod; 654, a placing box; 655, a placing groove; 656, a falling groove; 657, a pushing mechanism; 6571, a frame shell; 6572, a second motor; 6573, a second reciprocating screw rod; 6574, a second moving block; 6575, a pushing plate; 658, a cylinder plate; 659, a limiting plate; 6510, a visual sensor; 6511, an oil absorption layer;
[0050] 7, a collecting unit; 71, a drooping column; 72, an isolation plate; 73, an isolation hole; 74, an inclined chute; 75, a bottom chute; 76, a second supporting rod; 77, a pressing bottom block;
[0051] 8, a stabilizing pad;
[0052] 9, an operation table;
[0053] 10, a wire. DETAILED DESCRIPTION
[0054] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application is further described in detail below in combination with the drawings and examples. It should be understood that the further examples described herein are only used to explain the present application and do not limit the present application.
[0055] A pressure device for producing an automobile accessory mold and a process thereof, comprising:
[0056] The pressing base 1 is provided with a workbench 2 at the top, the workbench 2 is provided with a first T-shaped groove 3, the first T-shaped groove 3 is slidably connected with a bottom mold assembly 4, and the bottom of the workbench 2 is provided with a collecting unit 7;
[0057] The stamping unit 5 is arranged at the rear side of the pressing base 1, the outer surface of the stamping unit 5 is provided with a feeding unit 6, and the bottom of the pressing base 1 and the bottom of the stamping unit 5 are provided with a stabilizing pad 8;
[0058] An operation table 9 for controlling the stamping unit 5 and the placing unit, the operation table 9 is connected with the stamping unit 5 through a wire 10;
[0059] When the present application works, first, the metal plate is placed into the feeding unit 6, the feeding unit 6 places the metal plate into the bottom mold assembly 4, then the stamping unit 5 stamps the metal plate of the bottom mold assembly 4, finally the bottom mold assembly 4 pours the formed automobile accessory mold and waste into the collecting unit 7 and realizes separation.
[0060] The discharging unit 6 comprises support arms 61 arranged on both sides of the stamping unit 5, the outer surface of the support arm 61 on one side is bolted with a first support plate 62, the outer surface of the first support plate 62 is provided with a first motor 63, the output end of the first motor 63 is fixedly connected with a first reciprocating screw rod 64 through a shaft coupling, one end of the first reciprocating screw rod 64 away from the first support plate 62 is rotatably connected with the outer surface of the support arm 61 on the other side, and the outer surface of the first reciprocating screw rod 64 is threadedly provided with a placing mechanism 65;
[0061] When producing automobile accessory molds, the metal plate needs to be placed directly below the stamping unit 5, and manual placement has the problems of inaccurate positioning and causing personal injury, so the metal plate is placed into the placing box 654 through the placing slot 655, the visual sensor 6510 at the bottom of the placing box 654 detects the position where the metal plate needs to be placed, and the first motor 63 drives the first reciprocating screw rod 64 to rotate, so as to control the movement of the placing mechanism 65.
[0062] The placing mechanism 65 comprises a first moving block 651, the top of the first moving block 651 is integrally provided with a second support plate 652, the outer surface of the second support plate 652 is fixedly connected with a first telescopic rod 653, the output end of the first telescopic rod 653 is welded and fixedly connected with a placing box 654, the outer surface of the placing box 654 is provided with a placing slot 655, the bottom of the placing box 654 is further provided with a falling slot 656, one side of the placing box 654 away from the falling slot 656 is provided with a pushing mechanism 657, the placing box 654 close to the falling slot 656 is fixedly connected with an electric cylinder plate 658, the outer surface of the electric cylinder plate 658 is provided with a limiting plate 659, the bottom of the placing box 654 is fixedly connected with a visual sensor 6510, and the placing box 654 is symmetrically provided with an oil absorption layer 6511.
[0063] With the movement of the first moving block 651, the placing box 654 is moved to the top of the bottom die assembly 4, and the first telescopic rod 653 drives the placing box 654 to be as close to the bottom die assembly 4 as possible.
[0064] The outer surface of the support arm 61 is fixedly connected with the stamping unit 5 through bolts, the inner wall of the first moving block 651 is threadedly connected with the outer surface of the first reciprocating screw rod 64, and the first moving block 651 moves in translation on the first reciprocating screw rod 64.
[0065] The pushing mechanism 657 comprises a frame 6571, the outer surface of the frame 6571 is fixedly connected with a second motor 6572, the output end of the second motor 6572 is fixedly connected with a second reciprocating screw rod 6573 through a shaft coupling, the outer surface of the second reciprocating screw rod 6573 is threadedly connected with a second moving block 6574, the second moving block 6574 moves in translation on the second reciprocating screw rod 6573, and the outer surface of the second moving block 6574 is welded and fixedly connected with a pushing plate 6575.
[0066] Second motor 6572 will drive the second reciprocating screw 6573 rotation, thereby controlling the second moving block 6574 and push plate 6575 move and push the metal plate into the drop chute 656, when the limit plate 659 is in the extended state, will block the metal plate drop, by retracting the limit plate 659 to make the metal plate drop to the bottom die assembly 4.
[0067] In the process of pushing the metal plate by the push plate 6575, the upper and lower oil absorption layer 6511 will wipe the metal plate, thereby removing the oil stains such as cutting fluid, rust-proof oil and the like that may be attached to the surface of the metal plate, preventing these oil stains from affecting the fit between the metal plate and the die, causing inaccurate positioning, and also possibly contaminating the die during stamping and affecting the quality of the stamped part, further improving the production accuracy.
[0068] Frame 6571 and the placement box 654 are integrally connected;
[0069] The metal plate is placed in the slot 655, and the push-in mechanism 657 drives the metal plate to move.
[0070] The stamping unit 5 comprises an outer shell plate 51, a press 52 is bolted to the inner wall of the outer shell plate 51, a front surface of the outer shell plate 51 is provided with a main pressure gauge 58, a back surface of the outer shell plate 51 is provided with an instrument panel 53, a top of the press 52 is fixedly provided with a third motor 54 through bolts, an output end of the third motor 54 is fixedly connected with a transmission assembly 55 through a shaft coupling, the transmission assembly 55 comprises a belt, a gear, a crankshaft and the like, which will not be described in detail here, a bottom of the transmission assembly 55 is provided with a stamping mechanism 57, and an inside of the press 52 is provided with a main control rod 56.
[0071] The third motor 54 drives the transmission assembly 55 to work, thereby driving the stamping mechanism 57 to move downward or reset.
[0072] The stamping mechanism 57 comprises a connecting rod 571 arranged in the transmission assembly 55, a slider block 572 is welded and fixed to a bottom of the connecting rod 571, a second T-shaped groove 573 is arranged on an outer surface of the slider block 572, a top die plate 574 is slidably connected to the second T-shaped groove 573, a first support rod 575 is welded and fixedly connected to a bottom of the slider block 572, and a collecting plate 576 is welded and fixed to a bottom of the first support rod 575.
[0073] During stamping, the connecting rod 571 moves downward, thereby driving the slider block 572 to also move downward and finally making the top die plate 574 stamp the metal plate.
[0074] The bottom die assembly 4 comprises a support block 41, the top of the support block 41 is provided with a third supporting plate 42, the third supporting plate 42 is fixed by a pressing plate 43, the third supporting plate 42 is tightly pressed on the support block 41 by tightening the bolt, the workbench 2 is fixedly connected with a fourth motor 44 through the bolt, the output end of the fourth motor 44 is fixedly connected with a rotating shaft 45 through a shaft coupling, the end of the rotating shaft 45 away from the fourth motor 44 is welded and fixedly connected with a bottom die plate 46, the third supporting plate 42 is symmetrically inserted with a clamping rod 47, in the process of stamping, the clamping rod 47 can limit the rotation of the bottom die plate 46, the clamping rod 47 extends into the bottom die plate 46, the top of the bottom die plate 46 is symmetrically provided with a sliding groove 48, the outer surface of the sliding groove 48 is slidably connected with a third moving block 49, the opposite surface of the third moving block 49 is welded and fixedly connected with a scraping plate 410.
[0075] After the stamping unit 5 is stamped once, the formed automobile accessory mold and waste will be on the bottom die plate 46, first pull out the clamping rod, then the fourth motor 44 drives the rotating shaft 45 to rotate, so that the bottom die plate 46 is inclined, so that the automobile accessory mold and waste are all dropped into the collecting unit 7, at the same time, the third moving block 49 will slide along the sliding groove 48 and drive the scraping plate 410 to scrape off the small and difficult-to-fall waste particles.
[0076] The support block 41 is placed on the workbench 2 and moves along the first T-shaped groove 3, the bottom of the scraping plate 410 is in contact with the top of the bottom die plate 46.
[0077] The collecting unit 7 comprises a drooping column 71, the bottom of the drooping column 71 is welded and fixedly connected with an isolation plate 72, the isolation plate 72 is provided with an isolation hole 73, the top of the isolation plate 72 is provided with an inclined chute 74, the bottom of the isolation plate 72 is integrally formed with a bottom groove 75, the outer surface of the bottom groove 75 is fixedly connected with a second supporting rod 76, and the outer surface of the second supporting rod 76 is slidably connected with an extrusion bottom block 77.
[0078] After the automobile accessory mold and waste fall on the isolation plate 72, the waste will pass through the isolation hole 73 and enter the collecting plate 576, and the formed automobile accessory mold will slide along the inclined chute 74 and fall into another place, realizing separation, after collecting a certain amount of waste, the extrusion bottom block 77 needs to be manually placed into the bottom groove 75, then with the reset of the stamping unit 5, the first supporting rod 575 and the collecting plate 576 will move upwards, so that the extrusion bottom block 77 is in extrusion contact with the collecting plate 576, the waste in the collecting plate 576 is extruded into a sheet, facilitating subsequent recycling and reuse.
[0079] The top of the drooping column 71 is welded and fixedly connected with the bottom of the workbench 2, and the shape of the extrusion bottom block 77 is matched with the shape of the collecting plate 576.
[0080] A process of a pressure device for automobile accessory mold production, comprising the following steps:
[0081] S1: First, the metal plate is put into the feeding unit 6, which accurately positions and places the metal plate into the bottom die assembly 4;
[0082] S2: The stamping unit 5 starts working, stamping the metal plate of the bottom die assembly 4 to form a specific shape of automobile accessory mold;
[0083] S3: After stamping is completed, the bottom die assembly 4 will pour the formed automobile accessory mold and waste into the collection unit 7 and realize separation.
[0084] S4: In cooperation with the reset of the stamping unit 5, the waste in the collection unit 7 is extruded into blocks, facilitating subsequent recycling.
[0085] The pressure device and process working procedure for producing automobile accessory mold provided by the application: the metal plate is put into the placing box 654 through the feeding slot 655, the visual sensor 6510 at the bottom of the placing box 654 detects the position where the metal plate needs to be put, the first motor 63 drives the first reciprocating lead screw 64 to rotate, thereby controlling the first moving block 651 to move and drive the placing box 654 to move above the bottom die assembly 4, the first telescopic rod 653 drives the placing box 654 to be as close to the bottom die assembly 4 as possible, then the second motor 6572 drives the second reciprocating lead screw 6573 to rotate, thereby controlling the second moving block 6574 and the push-in plate 6575 to move and push the metal plate into the falling slot 656, when the limiting plate 659 is in the extended state, it will resist the falling of the metal plate, and the metal plate falls onto the bottom die assembly 4 by retracting the limiting plate 659, then the third motor 54 drives the transmission assembly 55 to start working, thereby driving the stamping mechanism 57 to move downward, the connecting rod 571 moves downward, thereby driving the slide block seat 572 to also move downward and finally making the top die plate 574 stamp the metal plate, after stamping is completed, the clamping block is pulled out, then the fourth motor 44 drives the rotating shaft 45 to rotate, thereby making the bottom die plate 46 tilt, so that the automobile accessory mold and the waste fall into the collection unit 7, at the same time, the third moving block 49 slides along the sliding groove 48 and drives the scraping plate 410 to scrape off the small and difficult-to-fall waste particles, the waste passes through the isolation hole 73 and enters the collection plate 576, and the formed automobile accessory mold slides along the inclined chute 74 to another place.
[0086] The above is only a preferred embodiment of the application and is not intended to limit the application. Any modification, equivalent replacement and improvement made within the spirit and principle of the application shall be included in the protection scope of the application.
Claims
1. A pressure device for producing automotive parts molds, characterized in that, The utility model provides a press -in base, the top of press -in base is provided with workbench, be provided with first T -shaped groove on the workbench, the first T -shaped groove is slidably connected with bottom die assembly, the bottom of workbench is provided with collection unit, The press unit is provided on the rear side of the press-in base, and the outer surface of the press unit is provided with a material placing unit. The bottom of the press-in base and the bottom of the press unit are provided with a stable pad. An operation table is used to control the operation of the press unit and the material placing unit. The operation table is connected to the press unit through wires. The material placing unit includes support arms provided on both sides of the press unit. The outer surface of the support arm on one side is bolted with a first support plate. The outer surface of the first support plate is provided with a first motor. The output end of the first motor is fixedly connected with a first reciprocating screw rod through a shaft coupling. The outer surface of the first reciprocating screw rod is threadedly provided with a placing mechanism. The placing mechanism includes a first moving block. The top of the first moving block is integrally provided with a second support plate. The outer surface of the second support plate is fixedly connected with a first telescopic rod. The output end of the first telescopic rod is welded and fixedly connected with a placing box. The outer surface of the placing box is provided with a placing groove. The bottom of the placing box is also provided with a falling groove. The side of the placing box away from the falling groove is provided with a pushing mechanism. The placing box is fixedly connected with an electric cylinder plate near the falling groove. The outer surface of the electric cylinder plate is provided with a limiting plate. The bottom of the placing box is fixedly connected with a visual sensor. The placing box is symmetrically provided with an oil absorption layer. The press unit includes a press mechanism. The press mechanism includes a connecting rod provided in a transmission assembly. The bottom of the connecting rod is welded and fixedly connected with a sliding block seat. The outer surface of the sliding block seat is provided with a second T-shaped groove. The second T-shaped groove is slidably connected with a top die plate. The bottom of the sliding block seat is welded and fixedly connected with a first support rod. The bottom of the first support rod is welded and fixedly connected with a collecting plate. The collecting unit includes a drooping column. The bottom of the drooping column is welded and fixedly connected with an isolation plate. The isolation plate is provided with an isolation hole. The top of the isolation plate is provided with an inclined groove. The bottom of the isolation plate is integrally formed with a bottom groove. The outer surface of the bottom groove is fixedly connected with a second support rod. The outer surface of the second support rod is slidably connected with a squeezing bottom block. The outer surface of the support arm is fixedly connected with the press unit through bolts. The inner wall of the first moving block is threadedly connected with the outer surface of the first reciprocating screw rod. The first moving block translates on the first reciprocating screw rod.
2. A pressure device for producing an automobile part mold according to claim 1, characterized in that: The pushing mechanism includes a frame. The outer surface of the frame is fixedly connected with a second motor. The output end of the second motor is fixedly connected with a second reciprocating screw rod through a shaft coupling. The outer surface of the second reciprocating screw rod is threadedly connected with a second moving block. The second moving block translates on the second reciprocating screw rod. The outer surface of the second moving block is welded and fixedly connected with a pushing plate.
3. A pressure device for producing an automobile part mold according to claim 1, characterized in that: The frame is integrally connected with the placing box.
4. A pressure device for producing an automobile part mold according to claim 3, characterized in that: The metal plate is placed in the placing groove. The pushing mechanism moves the metal plate. 5. The pressure device for producing an automobile part mold according to Claim 1, characterized by: The stamping unit includes a shell plate, the inner wall of the shell plate is bolted with a press, the front of the shell plate is provided with a main pressure gauge, the back of the shell plate is provided with an instrument panel, the top of the press is bolted with a third motor, the output end of the third motor is fixedly connected with a transmission assembly through a shaft coupling, the bottom of the transmission assembly is provided with a stamping mechanism, and the inside of the press is provided with a master control rod.
6. A pressure device for producing an automobile part mold according to claim 1, characterized in that: The bottom die assembly includes a support block, the top of the support block is placed with a third support plate, the third support plate is fixed by a pressing plate, the third support plate is tightly pressed on the support block by tightening the bolt, a fourth motor is fixedly connected on the workbench through a bolt, the output end of the fourth motor is fixedly connected with a rotating shaft through a shaft coupling, the end, away from the fourth motor, of the rotating shaft is welded and fixedly connected with a bottom die plate, a clamping rod is symmetrically inserted into the third support plate, the clamping rod extends into the bottom die plate, the top of the bottom die plate is symmetrically provided with a sliding groove, the outer surface of the sliding groove is slidably connected with a third moving block, and the opposite surface of the third moving block is welded and fixedly connected with a scraping plate.
7. A pressure device for producing an automobile part mold according to claim 6, characterized in that: The support block is placed on the workbench and moves along the first T-shaped groove, and the bottom of the scraping plate is in contact with the top of the bottom die plate.
8. A pressure device for producing an automobile part mold according to claim 1, characterized in that: The top of the drooping column is welded and fixedly connected with the bottom of the workbench, and the shape of the extrusion bottom block is matched with the shape of the collecting plate.
Citation Information
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