Stamping equipment for automobile part machining
By designing stamping equipment for automotive parts, stamping and forming using molds and stamping mechanisms, and automatic discharge through discharge mechanisms, the problem of manual cutting in the prior art affecting efficiency is solved, and production efficiency and product quality are improved.
Patent Information
- Application Number
- CN202510519308.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2025-06-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing automotive parts stamping equipment requires manual unloading after stamping, resulting in low production efficiency.
A stamping equipment for processing automobile parts is designed, and stamping is made using molds and stamping mechanisms, and automatic discharge is achieved through the discharge mechanism. The feeding mechanism includes a hinged shaft, abutment rod, a spring and a top plate. The mold is flipped under the action of gravity, and the top plate pushes out the stamping member to achieve automatic discharge.
Through the automatic discharge function, production efficiency is improved, manual discharge steps are reduced, and the impact of residues on the quality of stamped parts is avoided.
Smart Images

Figure CN120133358A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of metal stamping, and particularly to a stamping device for processing automotive parts. Background Art
[0002] As an important part of the global economy, the development of the automotive industry not only promotes scientific and technological progress but also drives the development of upstream and downstream related industries. During the automotive manufacturing process, the quality of parts directly affects the safety and reliability of the entire vehicle. Therefore, improving the precision and efficiency in the production process of automotive parts has become the goal pursued by many manufacturers. Among them, various tools such as molds, fixtures, and jigs used for processing automotive parts play a crucial role.
[0003] The shaping process of automotive parts is usually carried out by stamping. The material is placed in a mold, and then the material is stamped and formed by a stamping machine.
[0004] Existing stamping equipment, such as Chinese Patent Application CN202311335144.8, discloses a stamping die for automotive parts, including a base. A plurality of guide rods are fixed on the base, and an upper die is slidably connected to the plurality of guide rods. It is characterized in that a die head is installed on the lower surface of the upper die, a lower die is fixed on the upper surface of the base, a forming cavity is opened on the lower die, a forming block is fixed on the bottom wall of the forming cavity, and the die head cooperates with the forming block to stamp and form a blank. The base is a rectangular cavity structure, and two heat dissipation mechanisms are arranged on the base. The heat dissipation mechanism includes a heat dissipation fan installed on the inner surface of the bottom wall of the base, and the heat dissipation mechanism further includes a heat dissipation component connected to the heat dissipation fan.
[0005] Although this application can stamp and form automotive parts, after stamping and forming, the formed parts need to be manually removed from the mold. Although the shaping work can also be carried out, the manual blanking method is likely to affect the work efficiency, thereby reducing the production quantity.
[0006] Therefore, the present invention provides a stamping device for processing automotive parts to solve the above problems. Summary of the Invention
[0007] In view of the above situation, to overcome the deficiencies of the prior art, the present invention provides a stamping device for processing automotive parts, effectively solving the problem that manual blanking is required after stamping and forming automotive parts, which is likely to affect production efficiency.
[0008] To achieve the above object, the technical solution adopted by the present invention is as follows:
[0009] A stamping device for processing automotive parts, including a base. The base includes a seat body, and an installation groove with upper and lower openings is formed in the seat body. A mold is arranged in the installation groove. The mold includes a mold body. One end of the mold body is fixedly connected with a hinge shaft, and the hinge shaft is rotatably connected with the inner wall of the installation groove. A mold cavity is formed in the mold body. A stamping mechanism is arranged on the seat body, and a discharging mechanism is arranged under the mold body. The discharging mechanism includes an opening formed in the bottom wall of the mold cavity. A top plate is slidably connected in the opening. The lower side surface of the top plate is fixedly connected with a butting rod. The butting rod extends downward through the mold body. A first spring is arranged between the bottom end of the butting rod and the mold body. A butting plate is fixedly connected to the lower side of the seat body. The butting rod can abut against the butting plate. A locking mechanism is arranged between the end of the mold body far from the hinge shaft and the seat body.
[0010] Specifically, in the initial state, under the action of the locking mechanism, the top surface of the mold body is in the same plane as the top surface of the seat body, and the top surface of the top plate is in the same plane as the bottom wall of the mold cavity. When in use, place the stamping material in the mold cavity, and then start the stamping mechanism. The stamping mechanism stamps the stamping material, making the stamping material fit against the inner wall of the mold cavity and forming the parts. After stamping is completed, the stamping mechanism resets. Then the locking mechanism is unlocked, and the mold body rotates downward around the hinge shaft under the action of its own gravity. During the downward rotation of the mold body, the butting rod is driven to rotate downward. Then the butting rod abuts against the butting plate. Under the butting action of the butting plate, the butting rod moves upward relative to the mold body. At the same time, the butting rod compresses the first spring. At the same time, the butting rod drives the top plate to move upward, ejecting the stamped part from the mold cavity. And because the stamped part is in an inclined state at this time, the stamped part slides off the mold body under the action of gravity. Then the mold body rotates upward to reset, and then the locking mechanism locks the mold body again. At the same time, the top plate resets under the action of the first spring.
[0011] Preferably, a processing mechanism is arranged on the seat body. The processing mechanism includes a processing cylinder slidably arranged on the seat body. A fan is rotatably arranged in the processing cylinder. A plurality of air outlets with upward openings and downward openings are formed on the circumferential surface of the processing cylinder.
[0012] Specifically, when in use, after the stamping mechanism stamps the stamping material, start the fan. The fan drives the air flow in the processing cylinder, making the air outlets blow air outwards. And due to the setting of the air outlets, upward and downward airflows are generated in the processing cylinder. Then move the processing cylinder so that the processing cylinder slides from one end of the seat body to the other end. During the movement of the processing cylinder, the scraps on the stamping mechanism and the stamped part are blown off. Then the mold body rotates downward to discharge the stamped part. Then the mold body rotates upward to reset. At the same time, the processing cylinder moves in the opposite direction to reset. During the movement of the processing cylinder, the scraps in the mold cavity are blown off.
[0013] Preferably, two of the locking mechanisms are symmetrically arranged on the die body. The locking mechanism includes a locking groove formed on the side wall of the mounting groove with an opening facing the die body. An embedding groove is formed in the die body, and the embedding groove communicates with the locking groove. A locking block is slidably connected in the embedding groove. A second spring is connected between the locking block and the locking groove. The upper side surface of the end of the locking block away from the second spring is an inclined surface. A through hole with an upward opening is formed in the top wall of the embedding groove. A sliding rod is slidably connected in the through hole. The top end of the sliding rod is fixedly connected with a contact rod. The upper side surfaces of both ends of the contact rod are inclined surfaces. The contact rod can contact the processing cylinder.
[0014] Specifically, during use, when the processing cylinder moves, when the processing cylinder contacts the inclined surface of the contact rod, as the processing cylinder moves, the processing cylinder presses the contact rod downward. The bottom end of the contact rod contacts the inclined surface of the locking block, so that the locking block moves out of the locking groove, and the locking block compresses the second spring, thereby unlocking the die body. Then the die body flips downward under the action of gravity; after the die body is removed from the mounting groove, the locking block extends out of the embedding groove under the action of the second spring, and the contact rod moves upward under the action of the locking block; when the die body is reset, the inclined surface of the locking block contacts the bottom edge of the mounting groove, so that the locking block re-enters the embedding groove. When the embedding groove communicates with the locking groove, the locking block is inserted into the locking groove again under the action of the second spring.
[0015] Through the arrangement of the locking mechanism, when the locking block is inserted into the locking groove, the die body can be locked with the seat body, which is convenient for the stamping work. And through the arrangement of the contact rod, during the movement of the processing cylinder, the locking mechanism can be unlocked, which is convenient for the blanking of the stamping parts.
[0016] Preferably, two reset mechanisms are symmetrically arranged between the die body and the seat body. The reset mechanism includes a slide rail fixedly connected to the seat body. The slide rail is arranged near one end of the die body away from the hinge shaft. A slider is slidably connected in the slide rail. A third spring is connected between the slider and the slide rail. A connection cavity is formed in the seat body. One end of the connection cavity communicates with the mounting groove, and the other end of the connection cavity opens upward. A pull rope is fixedly connected to the slider. The pull rope extends into the connection cavity from the open end of the connection cavity. The pull rope is fixedly connected to the die body through the connection cavity.
[0017] Specifically, during use, when the locking mechanism is unlocked, the die body flips downward, the die body pulls the pull rope to extend downward, the pull rope pulls the slider to move away from the hinge shaft, and at the same time the slider compresses the third spring; when the die body is reset, the slider is moved so that the slider moves toward the hinge shaft, the slider pulls the pull rope to move, and the pull rope pulls the die body upward to reset.
[0018] Through the setting of the reset mechanism, after the locking mechanism is unlocked, the die body can be turned downward, and the pulling rope can limit the turning angle of the die body. When the die body needs to be reset, by moving the slider, the die body can be reset through the pulling rope, which is convenient for the subsequent stamping work.
[0019] Preferably, the reset mechanism further includes a fixed rod fixedly connected to the slider, and a rotating rod is rotatably connected to the end of the processing cylinder, and the rotating rod can contact the fixed rod.
[0020] Specifically, during use, when the processing cylinder moves, the processing cylinder drives the rotating rod to move. When the rotating rod is about to abut against the fixed rod, the rotating rod rotates to the upper side so that the rotating rod passes through from the upper side of the fixed rod to avoid contacting the fixed rod; when the processing cylinder is reset, the processing cylinder drives the rotating rod to reset. When the rotating rod is about to abut against the fixed rod, the rotating rod is on the lower side and the rotating rod stops rotating. After the rotating rod abuts against the fixed rod, under the driving action of the processing cylinder, the rotating rod drives the fixed rod to move towards the direction close to the hinge axis, and the fixed rod drives the slider to move, so that the slider resets the die body through the pulling rope; after the die body is reset, rotate the rotating rod so that the rotating rod flips upward and passes through from the upper side of the fixed rod.
[0021] Through the setting of the fixed rod and the rotating rod, during the reset process of the processing cylinder, the fixed rod can be driven by the rotating rod to move towards the direction close to the hinge axis, so that the slider drives the die body to reset through the pulling rope, which is convenient for the subsequent stamping work.
[0022] Preferably, moving members are symmetrically arranged at both ends of the processing cylinder. The moving member includes a motor fixedly connected to the seat body. The output end of the motor is fixedly connected with a lead screw. A threaded block is in threaded fit connection with the lead screw. A support plate is fixedly connected to the threaded block, and the support plate is connected to the end of the processing cylinder.
[0023] Specifically, during use, when the processing cylinder needs to move, start the motor. The output end of the motor drives the lead screw to rotate. During the rotation of the lead screw, due to the threaded fit connection with the threaded block, the threaded block moves on the lead screw, and the threaded block drives the support plate to move, and the support plate drives the processing cylinder to move.
[0024] Preferably, the processing cylinder is connected to the support plate through a connecting member. The connecting member includes a power motor fixedly connected to one of the support plates. The output end of the power motor is fixedly connected with a rotating shaft. The rotating shaft extends into the processing cylinder, and the rotating shaft is rotatably connected to the processing cylinder. The fan is fixedly sleeved on the rotating shaft, and the rotating rod is fixedly sleeved on the rotating shaft.
[0025] Specifically, when in use, when the fan needs to rotate, start the power motor. The output end of the power motor drives the rotating shaft to rotate, and the rotating shaft drives the fan to rotate.
[0026] Preferably, the connecting member further includes a fixed shaft fixedly connected to the other support plate, and the fixed shaft is fixedly connected to the end of the processing cylinder through a connecting rod.
[0027] Preferably, an air inlet is provided at the end of the processing cylinder.
[0028] Preferably, the stamping mechanism includes a mounting frame fixedly connected to the seat body, a stamping rod fixedly connected to the mounting frame, and a forming die fixedly connected to the bottom end of the stamping rod.
[0029] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0030] 1. Through the setting of the mold and the stamping mechanism, the stamping material can be stamped and formed in the mold groove by the stamping of the stamping mechanism; and through the setting of the discharging mechanism, after the stamping part is stamped and formed, one end of the mold body can be turned downward, so that the top plate ejects the stamping part from the mold groove and makes the stamping part detach from the mold body, thereby realizing automatic discharging, improving production efficiency, and during the downward turning process of the mold body, the debris and other substances in the mold groove can be poured out, avoiding the influence of debris on the quality of the stamping part.
[0031] 2. Through the setting of the processing mechanism, after the stamping work is completed, the rotation of the fan can generate upward and downward airflows in the processing cylinder, and as the processing cylinder moves, the debris and other substances on the stamping mechanism and the stamping part can be blown off, improving the quality of the produced stamping parts, reducing the debris on the stamping mechanism, improving the quality of the next stamping, and during the reset process of the processing cylinder, the debris in the mold groove can be blown off, further improving the quality of the next stamping.
[0032] 3. Through the setting of the locking mechanism, when the locking block is inserted into the locking groove, the mold body and the seat body can be locked, facilitating the stamping work, and through the setting of the contact rod, during the movement of the processing cylinder, the locking mechanism can be unlocked, facilitating the blanking of the stamping part. Through the setting of the fixed rod and the rotating rod, during the reset process of the processing cylinder, the fixed rod can be driven by the rotating rod to move towards the hinge axis, so that the slider drives the mold body to reset through the pull rope, facilitating the subsequent stamping work. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 is a three-dimensional state diagram of the present invention;
[0034] Figure 2 is the front view of the present invention;
[0035] Figure 3 Isometric cross-sectional view at A-A in the present invention Figure 2 ;
[0036] Figure 4 Isometric cross-sectional view at B-B in the present invention Figure 2 ;
[0037] Figure 5 Partial enlarged view at C in the present invention Figure 3 ;
[0038] Figure 6 Partial enlarged view at D in the present invention Figure 4 ;
[0039] Figure 7 Right view of the present invention
[0040] Figure 8 Isometric cross-sectional view at E-E in the present invention Figure 7 ;
[0041] Figure 9 Isometric cross-sectional view at F-F in the present invention Figure 7 ;
[0042] Figure 10 Partial enlarged view at G in the present invention Figure 7 ;
[0043] Figure 11 Partial enlarged view at H in the present invention Figure 9 ;
[0044] Markings in the figure:
[0045] 1. Base; 11. Seat body; 12. Installation groove
[0046] 2. Mold; 21. Mold body; 22. Hinge shaft; 23. Mold cavity
[0047] 3. Stamping mechanism; 31. Mounting frame; 32. Stamping rod; 33. Forming mold
[0048] 4. Discharging mechanism; 41. Opening; 42. Top plate; 43. Contact rod; 44. First spring; 45. Contact plate
[0049] 5. Locking mechanism; 51. Locking groove; 52. Embedding groove; 53. Locking block; 54. Second spring; 55. Through hole; 56. Sliding rod; 57. Contact rod
[0050] 6. Processing mechanism; 61. Processing cylinder; 62. Fan; 63. Air outlet; 64. Rotating rod; 65. Moving part; 651. Motor; 652. Lead screw; 653. Threaded block; 654. Support plate; 66. Connecting part; 661. Power motor; 662. Rotating shaft; 663. Fixed shaft; 664. Connecting rod; 67. Air inlet;
[0051] 7. Reset mechanism; 71. Slide rail; 72. Slide block; 73. Third spring; 74. Connecting cavity; 75. Pull rope; 76. Fixed rod. Detailed implementation manners
[0052] The following will refer to the drawings to describe each embodiment of the present invention in detail. Those skilled in the art should understand that these implementation manners are only used to explain the technical principle of the present invention and are not intended to limit the protection scope of the present invention.
[0053] A stamping device for processing automotive parts, as Figure 1 、 3 shown in Figure 8, includes a base 1. The base 1 includes a base body 11. An installation groove 12 with upper and lower openings is formed in the base body 11. A mold 2 is arranged in the installation groove 12. The mold 2 includes a mold body 21. One end of the mold body 21 is fixedly connected with a hinge shaft 22. The hinge shaft 22 is rotatably connected with the inner wall of the installation groove 12. A mold cavity 23 is formed in the mold body 21. A stamping mechanism 3 is arranged on the base body 11. A discharging mechanism 4 is arranged below the mold body 21. The discharging mechanism 4 includes an opening 41 formed in the bottom wall of the mold cavity 23. A top plate 42 is slidably connected in the opening 41. A contact rod 43 is fixedly connected to the lower side surface of the top plate 42. The contact rod 43 extends downward through the mold body 21. A first spring 44 is arranged between the bottom end of the contact rod 43 and the mold body 21. A contact plate 45 is fixedly connected to the lower side of the base body 11. The contact rod 43 can be in contact with the contact plate 45. A locking mechanism 5 is arranged between the end of the mold body 21 far from the hinge shaft 22 and the base body 11.
[0054] Specifically, in the initial state, under the action of the locking mechanism 5, the top surface of the die body 21 is in the same plane as the top surface of the base body 11, and the top surface of the top plate 42 is in the same plane as the bottom wall of the die groove 23; during use, the stamping material is placed in the die groove 23, and then the stamping mechanism 3 is started. The stamping mechanism 3 stamps the stamping material, so that the stamping material fits against the inner wall of the die groove 23, and the parts are formed; after stamping is completed, the stamping mechanism 3 resets, and then the locking mechanism 5 is unlocked. The die body 21 rotates downward around the hinge shaft 22 under the action of its own gravity. During the downward rotation of the die body 21, the abutting rod 43 is driven to rotate downward. Then, the abutting rod 43 abuts against the abutting plate 45. Under the abutting action of the abutting plate 45, the abutting rod 43 moves upward relative to the die body 21. At the same time, the abutting rod 43 compresses the first spring 44. At the same time, the abutting rod 43 drives the top plate 42 to move upward, ejecting the stamped part from the die groove 23. And because the stamped part is in an inclined state at this time, the stamped part slides off the die body 21 under the action of gravity. Then, the die body 21 rotates upward to reset, and then the locking mechanism 5 locks the die body 21 again. At the same time, the top plate 42 resets under the action of the first spring 44.
[0055] Through the setting of the mold 2 and the stamping mechanism 3, the stamping material can be stamped and formed in the die groove 23 by the stamping of the stamping mechanism 3; and through the setting of the discharging mechanism 4, after the stamped part is stamped and formed, one end of the die body 21 can rotate downward, so that the top plate 42 ejects the stamped part from the die groove 23, and the stamped part is separated from the die body 21, thereby realizing automatic discharging, improving production efficiency, and during the downward rotation of the die body 21, the debris and other substances in the die groove 23 can be poured out, avoiding the influence of debris on the quality of the stamped part.
[0056] As Figure 1 、 3 As shown in FIGS. 5, a processing mechanism 6 is provided on the base body 11. The processing mechanism 6 includes a processing cylinder 61 slidably provided on the base body 11. A fan 62 is rotatably provided in the processing cylinder 61. A plurality of air outlets 63 opening upward and downward are formed on the circumferential surface of the processing cylinder 61.
[0057] Specifically, during use, after the stamping mechanism 3 finishes stamping the stamping material, the fan 62 is started. The fan 62 drives the air flow in the processing cylinder 61, so that the air outlets 63 blow air outwards. And due to the setting of the air outlets 63, upward and downward airflows are generated in the processing cylinder 61. Then, the processing cylinder 61 is moved, so that the processing cylinder 61 slides from one end of the base body 11 to the other end. During the movement of the processing cylinder 61, the debris on the stamping mechanism 3 and the stamped part is blown off. Then, the die body 21 rotates downward to discharge the stamped part. Then, the die body 21 rotates upward to reset. At the same time, the processing cylinder 61 moves in the opposite direction to reset. During the movement of the processing cylinder 61, the debris and the like in the die groove 23 are blown off.
[0058] Through the arrangement of the processing mechanism 6, after the stamping work is completed, the rotation of the fan 62 can generate upward and downward airflows in the processing cylinder 61. Along with the movement of the processing cylinder 61, the debris on the stamping mechanism 3 and the stamped parts can be blown off, improving the quality of the produced stamped parts, reducing the debris on the stamping mechanism 3, improving the quality of the next stamping, and during the reset process of the processing cylinder 61, the debris in the die groove 23 can be blown off, further improving the quality of the next stamping.
[0059] Such as Figure 6 , 10 As shown, two of the locking mechanisms 5 are symmetrically arranged on the die body 21. The locking mechanism 5 includes a locking groove 51 opened on the side wall of the installation groove 12 with an opening facing the die body 21. An embedding groove 52 is opened in the die body 21. The embedding groove 52 communicates with the locking groove 51. A locking block 53 is slidably connected in the embedding groove 52. A second spring 54 is connected between the locking block 53 and the locking groove 51. The upper side of the end of the locking block 53 away from the second spring 54 is an inclined surface. A through hole 55 with an upward opening is opened on the top wall of the embedding groove 52. A sliding rod 56 is slidably connected in the through hole 55. The top end of the sliding rod 56 is fixedly connected with a contact rod 57. The upper side surfaces of both ends of the contact rod 57 are inclined surfaces. The contact rod 57 can contact the processing cylinder 61.
[0060] Specifically, during use, when the processing cylinder 61 moves, when the processing cylinder 61 contacts the inclined surface of the contact rod 57, along with the movement of the processing cylinder 61, the processing cylinder 61 presses the contact rod 57 downward. The bottom end of the contact rod 57 contacts the inclined surface of the locking block 53, causing the locking block 53 to move out of the locking groove 51 and compressing the second spring 54, thereby unlocking the die body 21. Then the die body 21 flips downward under the action of gravity; after the die body 21 moves out of the installation groove 12, the locking block 53 extends out of the embedding groove 51 under the action of the second spring 54, and the contact rod 57 moves upward under the action of the locking block 53; when the die body 21 resets, the inclined surface of the locking block 53 contacts the bottom edge of the installation groove 12, causing the locking block 53 to re-enter the embedding groove 52. When the embedding groove 52 communicates with the locking groove 51, the locking block 53 is re-inserted into the locking groove 51 under the action of the second spring 54.
[0061] Through the arrangement of the locking mechanism 5, when the locking block 53 is inserted into the locking groove 51, the die body 21 can be locked with the base body 11, facilitating the stamping work. And through the arrangement of the contact rod 57, during the movement of the processing cylinder 61, the locking mechanism 5 can be unlocked, facilitating the blanking of the stamped parts.
[0062] Such as Figure 1, 11 As shown, two reset mechanisms 7 are symmetrically arranged between the mold body 21 and the seat body 11. The reset mechanism 7 includes a slide rail 71 fixedly connected to the seat body 11. The slide rail 71 is arranged near one end of the mold body 21 away from the hinge shaft 22. A slider 72 is slidably connected in the slide rail 71. A third spring 73 is connected between the slider 72 and the slide rail 71. A connection cavity 74 is formed in the seat body 11. One end of the connection cavity 74 communicates with the installation groove 12, and the other end of the connection cavity 74 opens upward. A pull rope 75 is fixedly connected to the slider 72. The pull rope 75 extends from the open end of the connection cavity 74 into the connection cavity 74. The pull rope 75 is fixedly connected to the mold body 21 through the connection cavity 74.
[0063] Specifically, during use, when the locking mechanism 5 is unlocked, the mold body 21 flips downward. The mold body 21 pulls the pull rope 75 to extend downward. The pull rope 75 pulls the slider 72 to move away from the hinge shaft 22. At the same time, the slider 72 compresses the third spring 73. When the mold body 21 is reset, the slider 72 is moved so that the slider 72 moves toward the hinge shaft 22. The slider 72 pulls the pull rope 75 to move, and the pull rope 75 pulls the mold body 21 upward to reset.
[0064] Through the setting of the reset mechanism 7, after the locking mechanism 5 is unlocked, the mold body 21 can flip downward, and the pull rope 75 can limit the flipping angle of the mold body 21. When the mold body 21 needs to be reset, by moving the slider 72, the mold body 21 can be reset through the pull rope 75, which is convenient for the subsequent stamping work.
[0065] As Figure 5 , 10 , 11 shown, the reset mechanism 7 further includes a fixed rod 76 fixedly connected to the slider 72. A rotating rod 64 is rotatably connected to the end of the processing cylinder 61. The rotating rod 64 can contact the fixed rod 76.
[0066] Specifically, during use, when the processing cylinder 61 moves, the processing cylinder 61 drives the rotating rod 64 to move. When the rotating rod 64 is about to abut against the fixed rod 76, the rotating rod 64 rotates to the upper side, so that the rotating rod 64 passes through from the upper side of the fixed rod 76 to avoid contacting the fixed rod 76. When the processing cylinder 61 resets, the processing cylinder 61 drives the rotating rod 64 to reset. When the rotating rod 64 is about to abut against the fixed rod 76, the rotating rod 64 is at the lower side and the rotating rod 64 stops rotating. After the rotating rod 64 abuts against the fixed rod 76, under the driving action of the processing cylinder 61, the rotating rod 64 drives the fixed rod 76 to move in the direction close to the hinge shaft 22, and the fixed rod 76 drives the slider 72 to move, so that the slider 72 resets the die body 21 through the pull rope 75. After the die body 21 resets, rotate the rotating rod 64 so that the rotating rod 64 flips upward and passes through from the upper side of the fixed rod 76.
[0067] Through the arrangement of the fixed rod 76 and the rotating rod 64, during the reset process of the processing cylinder 61, the fixed rod 76 can be driven by the rotating rod 64 to move in the direction close to the hinge shaft 22, so that the slider 72 drives the die body 21 to reset through the pull rope 75, facilitating the subsequent stamping work.
[0068] As Figure 3 、 5 As shown in FIGS. 9, moving members 65 are symmetrically arranged at both ends of the processing cylinder 61. The moving member 65 includes a motor 651 fixedly connected to the base body 11. The output end of the motor 651 is fixedly connected with a lead screw 652. A threaded block 653 is in threaded engagement with the lead screw 652. A support plate 654 is fixedly connected to the threaded block 653. The support plate 654 is connected to the end of the processing cylinder 61.
[0069] Specifically, during use, when the processing cylinder 61 needs to move, start the motor 651. The output end of the motor 651 drives the lead screw 652 to rotate. During the rotation of the lead screw 652, due to the threaded engagement with the threaded block 653, the threaded block 653 moves on the lead screw 652. The threaded block 653 drives the support plate 654 to move, and the support plate 654 drives the processing cylinder 61 to move.
[0070] Through the arrangement of the moving member 65, when the processing cylinder 61 needs to move, start the motor 651, so that the motor 651 drives the lead screw 652 to rotate, thereby driving the processing cylinder 61 to move through the threaded block 653.
[0071] As Figure 3 、 5As shown, the processing cylinder 61 is connected to the support plate 654 through a connecting member 66. The connecting member 66 includes a power motor 661 fixedly connected to one of the support plates 654. The output end of the power motor 661 is fixedly connected to a rotating shaft 662. The rotating shaft 662 extends into the processing cylinder 61. The rotating shaft 662 is rotatably connected to the processing cylinder 61. The fan 62 is fixedly sleeved on the rotating shaft 662. The rotating rod 64 is fixedly sleeved on the rotating shaft 662.
[0072] Specifically, when in use, when the fan 62 needs to rotate, start the power motor 661. The output end of the power motor 661 drives the rotating shaft 662 to rotate, and the rotating shaft 662 drives the fan 62 to rotate.
[0073] Through the arrangement of the rotating shaft 662, the power motor 661 can drive the fan 62 to rotate, so that the processing cylinder 61 generates upward and downward airflows.
[0074] As Figure 10 shown, the connecting member 66 further includes a fixed shaft 663 fixedly connected to the other support plate 654. The fixed shaft 663 is fixedly connected to the end of the processing cylinder 61 through a connecting rod 664.
[0075] Through the arrangement of the fixed shaft 663 and the rotating shaft 662, the processing cylinder 61 can be installed. And through the arrangement of the connecting rod 664, the processing cylinder 61 is fixed, so that the airflows blown out from the processing cylinder 61 always maintain upward and downward directions.
[0076] As Figure 5 shown, an air inlet 67 is provided at the end of the processing cylinder 61.
[0077] Through the arrangement of the air inlet 67, the outside airflows can enter the processing cylinder 61.
[0078] As Figure 2 shown, the stamping mechanism 3 includes a mounting frame 31 fixedly connected to the base body 11. A stamping rod 32 is fixedly connected to the mounting frame 31. A forming die 33 is fixedly connected to the bottom end of the stamping rod 32.
[0079] Specifically, when in use, when the stamping material needs to be stamped, start the stamping rod 32. The stamping rod 32 drives the forming die 33 to move downward and cooperate with the die body 21 to stamp the stamping material into shape.
[0080] Furthermore, the stamping mechanism 3 is an existing technology and will not be elaborated here.
[0081] It should be noted that in the description of the present invention, the terms indicating directions or positional relationships such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings. This is only for convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present invention. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.
[0082] In addition, it should also be noted that in the description of the present invention, unless otherwise clearly specified and defined, the terms "installed", "connected", "coupled" should be understood in a broad sense. For example, it can be a fixed installation, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0083] So far, the technical solution of the present invention has been described in conjunction with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.
Claims
1. A stamping device for processing automobile parts, comprising a base (1), the base (1) comprising a base body (11), a mounting groove (12) with upper and lower openings being provided in the base body (11), a mold (2) being provided in the mounting groove (12), the mold (2) comprising a mold body (21), one end of the mold body (21) being fixedly connected to a hinge shaft (22), the hinge shaft (22) being rotatably connected to the inner wall of the mounting groove (12), a mold groove (23) being provided in the mold body (21), a stamping mechanism (3) being provided on the base body (11), a discharging mechanism (4) being provided on the lower side of the mold body (21), the discharging mechanism (4) The invention comprises an opening (41) formed on the bottom wall of the mold groove (23), a top plate (42) being slidably connected in the opening (41), a contact rod (43) being fixedly connected to the lower side of the top plate (42), the contact rod (43) extending downwardly through the mold body (21), a first spring (44) being arranged between the bottom end of the contact rod (43) and the mold body (21), a contact plate (45) being fixedly connected to the lower side of the seat body (11), the contact rod (43) being capable of contacting the contact plate (45), and a locking mechanism (5) being arranged between the end of the mold body (21) away from the hinge shaft (22) and the seat body (11).
2. A stamping equipment for automobile parts processing according to claim 1, characterized in that: The base (11) is provided with a processing mechanism (6), the processing mechanism (6) comprising a processing cylinder (61) slidably arranged on the base (11), a fan (62) rotatably arranged in the processing cylinder (61), and a plurality of air outlets (63) opening upward and downward are provided on the circumferential surface of the processing cylinder (61).
3. A stamping equipment for automobile parts processing according to claim 2, characterized in that: Two locking mechanisms (5) are symmetrically arranged on the mold body (21), and the locking mechanism (5) comprises a locking groove (51) opened on the side wall of the installation groove (12) and opening toward the mold body (21); an embedding groove (52) is opened in the mold body (21), the embedding groove (52) is communicated with the locking groove (51), a locking block (53) is slidably connected in the embedding groove (52), and a locking block (53) is provided between the locking groove (51) and the locking groove (51). A second spring (54) is connected, and the upper side surface of one end of the locking block (53) away from the second spring (54) is an inclined surface, and the top wall of the embedding groove (52) is provided with a through hole (55) opening upward, and a sliding rod (56) is slidably connected in the through hole (55), and a contact rod (57) is fixedly connected to the top of the sliding rod (56), and the upper side surfaces of both ends of the contact rod (57) are inclined surfaces, and the contact rod (57) can contact the processing cylinder (61).
4. A stamping equipment for automobile parts processing according to claim 3, characterized in that: Two reset mechanisms (7) are symmetrically arranged between the mold body (21) and the base body (11), and the reset mechanism (7) comprises a slide rail (71) fixedly connected to the base body (11), the slide rail (71) being arranged at one end close to the mold body (21) and away from the hinge shaft (22), a slider (72) being slidably connected in the slide rail (71), a third spring (73) being connected between the slider (72) and the slide rail (71), a connecting cavity (74) being provided in the base body (11), one end of the connecting cavity (74) being communicated with the mounting groove (12), and the other end of the connecting cavity (74) being open upwards, a pull rope (75) being fixedly connected to the slider (72), the pull rope (75) extending from the open end of the connecting cavity (74) into the connecting cavity (74), and the pull rope (75) being fixedly connected to the mold body (21) through the connecting cavity (74).
5. The stamping equipment for automobile parts processing according to claim 4, characterized in that: The reset mechanism (7) further comprises a fixed rod (76) fixedly connected to the slider (72); the end of the treatment cylinder (61) is rotatably connected to a rotating rod (64); and the rotating rod (64) is capable of contacting the fixed rod (76).
6. The stamping equipment for automobile parts processing according to claim 5, characterized in that: Moving parts (65) are symmetrically arranged at both ends of the processing cylinder (61), and the moving parts (65) include a motor (651) fixedly connected to the base body (11), and the output end of the motor (651) is fixedly connected to a lead screw (652), and a threaded block (653) is threadedly connected to the lead screw (652), and a support plate (654) is fixedly connected to the threaded block (653), and the support plate (654) is connected to the end of the processing cylinder (61).
7. A stamping equipment for automobile parts processing according to claim 6, characterized in that: The processing cylinder (61) is connected to the support plate (654) via a connecting member (66), and the connecting member (66) includes a power motor (661) fixedly connected to one of the support plates (654), and the output end of the power motor (661) is fixedly connected to a rotating shaft (662), and the rotating shaft (662) extends into the processing cylinder (61), and the rotating shaft (662) is rotatably connected to the processing cylinder (61), and the fan (62) is fixedly sleeved on the rotating shaft (662), and the rotating rod (64) is fixedly sleeved on the rotating shaft (662).
8. The stamping equipment for automobile parts processing according to claim 7, characterized in that: The connecting member (66) further comprises a fixed shaft (663) fixedly connected to the other supporting plate (654), and the fixed shaft (663) is fixedly connected to the end of the processing cylinder (61) via a connecting rod (664).
9. The stamping equipment for automobile parts processing according to claim 8, characterized in that: An air inlet (67) is provided at the end of the treatment cylinder (61).
10. The stamping equipment for automobile parts processing according to claim 1, characterized in that: The punching mechanism (3) comprises a mounting frame (31) fixedly connected to the base body (11), a punching rod (32) fixedly connected to the mounting frame (31), and a forming die (33) fixedly connected to the bottom end of the punching rod (32).
Citation Information
Patent Citations
A stamping die and stamping process for automobile parts
CN117299923B
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