Stamping equipment for processing a vehicle-mounted sensor structure
By designing stamping equipment with components such as support frames, limiting components, and cutters, the problems of continuous and rapid stamping of vehicle sensor structural parts and collection of waste and finished products were solved, thereby improving stamping production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-13
- Publication Date
- 2026-03-27
AI Technical Summary
Existing stamping equipment cannot perform continuous and rapid stamping of vehicle sensor structural components, and it is not convenient to collect waste and finished products quickly and stably, which affects stamping production efficiency.
A stamping device was designed, which includes components such as a support frame, protective cover, fixing frame, limiting component, stamping mechanism, and receiving hopper. The limiting component supports and limits the material strip, and the cutting blade and ejection component are used to quickly separate and collect waste and finished products. Combined with slide rail and carrier plate, the waste and finished products are stably collected.
It enables continuous and rapid stamping production of vehicle-mounted sensor structural components, and rapid and stable collection of waste and finished products, thereby improving stamping efficiency.
Smart Images

Figure CN121491203B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of automotive sensor manufacturing technology, and more particularly to the field of automotive sensor structural component processing technology, specifically a stamping equipment for processing automotive sensor structural components. Background Technology
[0002] Vehicle sensors are the "sensing organs" of automotive electronic control systems. Their core function is to convert vehicle operating status or external environmental information into electrical signals and transmit them to the electronic control unit for vehicle status monitoring.
[0003] Vehicle-mounted sensor structural components are the mounting housing structures of sensors. Their accuracy and reliability directly affect sensor performance and vehicle safety. Currently, metal structural components are generally formed by stamping.
[0004] For example, the invention disclosed in patent application CN 109013920 B discloses a stamping die system for manufacturing sensor housings, including a feeding mechanism, a stamping mechanism for stamping material, and a pushing mechanism for pushing material to the stamping mechanism. The feeding mechanism includes a vibratory feeder for holding material and a feeding channel, which are interconnected. The feeding channel is connected to the pushing mechanism, and the vibratory feeder provides vibration force to transport the material through the feeding channel to the pushing mechanism. When the pushing mechanism pushes the material to the stamping mechanism, the stamping mechanism stamps the material. The stamping die system of this invention uses a cold forming process to process the sensor housing, which not only avoids the technical problems of frequent tool breakage existing in traditional machining methods, but also has high processing efficiency.
[0005] For example, the invention with authorization announcement number CN 113290111 B discloses a stamping device, including a base, a lower stamping die, a mounting frame, an upper stamping die, a continuous drive mechanism, and an auxiliary support guide seat. The lower stamping die includes a lower die body and a stamping guide assembly. The lower die body is disposed on the base, and the stamping guide assembly is connected to the side of the lower die body facing away from the base. The stamping guide assembly is used to guide the movement of the material strip. The mounting frame is connected to the base. The upper stamping die is slidably disposed on the mounting frame. The upper stamping die and the lower stamping die are correspondingly disposed and move relative to each other to jointly stamp the material strip. The continuous drive mechanism is disposed on the mounting frame. The material strip fed by the feeding mechanism of the stamping device is supported by the auxiliary support guide seat and guided to the inlet end of the stamping guide assembly. It is then guided by the stamping guide assembly to the position corresponding to the upper stamping die for stamping, avoiding the problem of material strip sagging between the feeding mechanism and the die base, and improving the stamping accuracy of the stamping device.
[0006] But combined with the actual stamping processing of the current vehicle sensor structure, the current stamping equipment still has many drawbacks: (1) the conventional vehicle sensor structure is generally a cylindrical structure with a groove, and the current stamping equipment cannot guarantee continuous and rapid stamping processing when stamping the structure; (2) when stamping, it is not convenient to quickly and stably collect the waste and finished products produced during processing, which is not conducive to avoiding jamming and affecting the stamping efficiency.
[0007] Therefore, we propose a stamping equipment for processing vehicle sensor structure to solve the problems raised in the above. SUMMARY
[0008] The purpose of the present application is to provide a stamping equipment for processing vehicle sensor structure to solve the problems raised in the above background art that the current stamping equipment cannot guarantee continuous stamping of groove structure such as sensor structure, cannot stably collect waste and finished products, and is not conducive to improving the stamping production efficiency.
[0009] To achieve the above purpose, the present application provides the following technical scheme: a stamping equipment for processing vehicle sensor structure, comprising a support frame placed in a workshop and a protective cover arranged above for protection, the inside of the protective cover is arranged with a stamping mechanism;
[0010] Further comprising:
[0011] The fixed frame is arranged outside the protective cover, and a rotating shaft for winding the material belt is rotatably installed at the top end of the fixed frame, the top end of the material belt enters the stamping mechanism through the slot in the side of the protective cover, and a limiting component capable of supporting the material belt is arranged between the fixed frame and the protective cover.
[0012] The stamping mechanism comprises a forming section and a separating section, and is respectively used for forming and separating and collecting the material belt, and a material receiving hopper is arranged below the stamping mechanism inside the support frame.
[0013] Further, the top end of the protective cover is fixedly installed with a connecting arm on both sides, the top end of the connecting arm is fixedly connected with the bottom end of the fixed frame, and the limiting component is fixedly arranged outside the fixed frame.
[0014] Further, the limiting component comprises:
[0015] The support rod is fixedly connected to the outer side of the middle part of the fixed frame, and the inner side of the support rod is fixedly installed with a limiting rod capable of bearing the material belt.
[0016] A first horizontal rod is symmetrically installed on the inner side of the top of the support rod, the outer side of the first horizontal rod is slidingly installed with a limiting post, the top end of the limiting post is threadedly connected with a first fixing pin;
[0017] A second horizontal rod is fixedly installed on the inner side of the top end of the support rod, the top surface of the second horizontal rod, the limiting post and the first horizontal rod below are flush;
[0018] An empty slot is formed on the top end of the support rod, the inner side of the empty slot is slidingly installed with a first sliding block, the inner part of the first sliding block is connected with an adjusting rod which is rotatably installed on the inner side of the support rod, the inner side of the first sliding block is fixed with a pressing rod corresponding to the support rod in the up-down direction.
[0019] Further, a table plate is fixedly installed on the top end of the support frame, a stamping mechanism is installed on the middle part of the top surface of the table plate, and the stamping mechanism comprises:
[0020] A rack is fixedly installed on the top surface of the table plate, and a stamping cylinder is installed on the top of the rack;
[0021] A first fixed mold is arranged on the bottom left side of the table plate, an inner mold is integrally arranged on the inner side and top of the first fixed mold, and an edge slot is arranged between the first fixed mold and the inner mold and penetrates the first fixed mold and the inner mold in the up-down direction;
[0022] A second fixed mold is arranged on the bottom right side of the table plate, and the second fixed mold has a hollow structure;
[0023] Further, a first movable mold and a second movable mold are arranged above the first fixed mold and the second fixed mold respectively, a forming section is formed between the first fixed mold and the first movable mold, and a separation section is formed between the second fixed mold and the second movable mold.
[0024] Further, a die core for piecewise press forming on a material belt is arranged on the bottom of the first movable mold and the second movable mold, a first cutter is arranged on the side of the bottom of the first movable mold, the first cutter is in abutment with the top surface of the first fixed mold and the inner mold to cut off the waste material between the material belt and the piece, and a second cutter is arranged on the side of the second movable mold, the second cutter is in abutment with the second fixed mold to separate the piece from the side strip.
[0025] Further, a ejection assembly is symmetrically arranged on the bottom surface of the first movable mold, and the ejection assembly is also arranged on the bottom end of the second movable mold, and the ejection assembly comprises a fixed sleeve, an ejection rod and a first spring, and the ejection rod is telescopically connected with the inside of the fixed sleeve through the first spring.
[0026] Further, a material ejection mechanism is arranged on the inner middle part of the table plate, and the material ejection mechanism comprises:
[0027] The fixed frame is horizontally arranged between the first movable mold and the first fixed mold, the side of the fixed frame is symmetrically provided with an extension rod, and the bottom of the extension rod is fixed to the bottom surface of the table plate.
[0028] The end of the fixed frame is rotatably provided with a rotating roller, and the rotating roller is provided with a fixed rod fixed to the end of the fixed frame.
[0029] The second sliding block is symmetrically and slidably arranged on the outer side of the fixed rod, the top end of the second sliding block is screwedly provided with a second fixing bolt, and the bottom end of the second sliding block is rotatably provided with a pressure roller in the outer side.
[0030] Further, the material feeding mechanism further comprises:
[0031] The bottom plate is symmetrically and equidistantly fixed to the inner side of the fixed frame, the upper side of the bottom plate is provided with a pressing plate, and the inside of the bottom plate and the pressing plate is rotatably provided with a clamping wheel.
[0032] The extension rod is slidably connected to the top end of the bottom plate, the extension rod is fixedly connected to the top surface of the pressing plate, and the second spring is sleeved on the outer side of the extension rod and connected between the pressing plate and the bottom plate.
[0033] Further, the material receiving hopper is provided with a sliding mechanism, which comprises:
[0034] The mounting frame is fixedly arranged in the inner side of the supporting frame, and the top end of the mounting frame is fixedly provided with a mounting plate.
[0035] The slide rails are symmetrically arranged on the top surface of the mounting plate, and the upper side of the slide rails is slidably connected with a third sliding block.
[0036] The connecting plate is fixedly arranged on the upper side of the third sliding block, and the upper side of the connecting plate is fixedly provided with a carrier plate for abutting the material receiving hopper.
[0037] Further, the side corner of the carrier plate is fixedly provided with a limiting hook in an "L" shape structure for limiting the material receiving hopper.
[0038] Compared with the prior art, the stamping equipment for processing the vehicle-mounted sensor structural member has at least the following beneficial effects: the stamping equipment can quickly and stably produce the continuous stamping of the structural member, facilitate the quick collection of waste materials and finished products, and improve the stamping processing efficiency.
[0039] 1. The fixed frame, the rotating shaft and the transmission wheel are arranged in the scheme, the rotating shaft is supported by the fixed frame, the material belt can be supported and coiled by the rotating shaft, and the feeding is facilitated.
[0040] Meanwhile, the outer side of the fixing frame is fixed with the limiting rod, the first horizontal rod and the second horizontal rod through the supporting rod, so as to conveniently support the material belt, and the spacing adjustment can be made according to the material belt through the sliding of the limiting column outside the first horizontal rod and the lifting of the pressing rod above the second horizontal rod, so as to conveniently make the limiting conveying.
[0041] 2. In the scheme, the first fixed mold, the inner mold and the first movable mold are arranged, the first cutter is arranged on the side of the first movable mold, and after the first cutter is lowered and contacts the top surface of the first fixed mold and the inner mold, the waste between the material belt and the finished piece can be cut off, and the waste can fall and be collected through the interval gap between the first fixed mold and the inner mold.
[0042] 3. In the scheme, the second fixed mold and the second movable mold are arranged, the finished piece can be separated from the edge strip through the contact between the second cutter and the second fixed mold, and the finished piece can fall and be collected through the hollow structure in the second fixed mold.
[0043] 4. In the scheme, the fixed sleeve, the ejection rod and the first spring are arranged, the ejection rod can be automatically ejected in the fixed sleeve through the elasticity of the first spring, the cut waste and finished product can be extruded downward through the ejection rod after the first movable mold and the second movable mold are pressed downward, and the ejection rod is convenient for collection and use.
[0044] 5. In the scheme, the fixed frame, the telescopic rod, the rotating roller and the second sliding block are arranged, the material belt is borne through the rotating roller, the sliding of the second sliding block outside the fixed rod is convenient for the rolling of the pressing wheel at the bottom of the second sliding block to assist the material belt conveying, and the telescopic rod is convenient for the lifting of the material belt and the transmission of the stamping.
[0045] 6. In the scheme, the bottom plate, the pressing plate and the clamping wheel are arranged, the up-down telescopic structure of the pressing plate inside the bottom plate is convenient for the clamping and conveying of the material belt through the bottom plate and the pressing plate by the clamping wheel, which is beneficial to maintain the stability of the material belt and improve the stamping efficiency.
[0046] 7. In the scheme, the material receiving hopper, the sliding rail and the carrier plate are arranged, the sliding connection between the sliding rail and the third sliding block is convenient for the sliding use of the carrier plate to the material receiving hopper through the third sliding block installation, so as to conveniently collect and process the waste and the finished product. BRIEF DESCRIPTION OF DRAWINGS
[0047] The drawings described herein are used to provide further understanding of the present application, and constitute a part of the present application. The schematic embodiments of the present application and the description thereof are used to explain the present application, and do not constitute an improper limitation on the present application. In the drawings:
[0048] Figure 1 It is a whole front structure schematic view of the present application;
[0049] Figure 2 It is a whole disassembly schematic view of the present application;
[0050] Figure 3 The feeding mechanism of the application;
[0051] Figure 4 The fixed frame and the supporting rod structure of the application;
[0052] Figure 5 The sectional structure of the limiting column and the pressing rod of the application;
[0053] Figure 6 The working surface structure of the punch of the application;
[0054] Figure 7 The corresponding distribution between the first movable die and the second movable die and the first fixed die and the second fixed die of the application;
[0055] Figure 8 The sectional structure of the first fixed die and the second fixed die of the application;
[0056] Figure 9 The overall structure of the first movable die of the application;
[0057] Figure 10 The sectional structure of the first movable die of the application;
[0058] Figure 11 The overall structure of the second movable die of the application;
[0059] Figure 12 The sectional structure of the second movable die of the application;
[0060] Figure 13 The structure of the ejection mechanism of the application;
[0061] Figure 14 The sectional structure of the ejection mechanism of the application;
[0062] Figure 15 The working surface structure of the receiving mechanism of the application;
[0063] Figure 16 The exploded view of the receiving mechanism of the application.
[0064] In the figure: 1, support frame; 2, protective cover; 3, connecting arm; 4, fixed frame; 5, rotating shaft; 6, transmission wheel; 7, support rod; 8, limiting rod; 9, first cross rod; 10, limiting column; 101, first fixed bolt; 11, second cross rod; 12, hollow groove; 13, first sliding block; 14, adjusting rod; 15, pressing rod; 16, material belt; 1601, piece; 1602, edge strip; 17, table plate; 18, rack; 19, first fixed mold; 20, inner module; 21, edge groove; 22, second fixed mold; 23, stamping cylinder; 24, first movable mold; 2401, first cutter; 25, second movable mold; 2501, second cutter; 26, fixed sleeve; 27, ejection rod; 28, first spring; 29, fixed frame; 30, telescopic rod; 31, rotating roller; 32, fixed rod; 33, second sliding block; 34, second fixed bolt; 35, pressing wheel; 36, bottom plate; 37, pressing plate; 38, clamping wheel; 39, extension rod; 40, second spring; 41, receiving hopper; 42, mounting frame; 43, mounting plate; 44, sliding rail; 45, third sliding block; 46, connecting plate; 47, carrier plate; 48, limiting hook. DETAILED DESCRIPTION
[0065] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, so that the implementation process of how the technical means is applied to solve the technical problems and achieve the technical effects in the present application can be fully understood and implemented. Obviously, the described embodiments are only part of the embodiments of the present application, not all.
[0066] Please refer to Figures 1-16 The present application provides the following technical solutions:
[0067] A stamping device for processing vehicle-mounted sensor structural parts, comprising: a support frame 1, a protective cover 2, a connecting arm 3, a fixed frame 4, a rotating shaft 5, a transmission wheel 6, a support rod 7, a limiting rod 8, a first cross rod 9, a limiting column 10, a first fixed bolt 101, a second cross rod 11, a hollow groove 12, a first sliding block 13, an adjusting rod 14, a pressing rod 15, a material belt 16, a piece 1601, an edge strip 1602, a table plate 17, a rack 18, a first fixed mold 19, an inner module 20, an edge groove 21, a second fixed mold 22, a stamping cylinder 23, a first movable mold 24, a first cutter 2401, a second movable mold 25, a second cutter 2501, a fixed sleeve 26, an ejection rod 27, a first spring 28, a fixed frame 29, a telescopic rod 30, a rotating roller 31, a fixed rod 32, a second sliding block 33, a second fixed bolt 34, a pressing wheel 35, a bottom plate 36, a pressing plate 37, a clamping wheel 38, an extension rod 39, a second spring 40, a receiving hopper 41, a mounting frame 42, a mounting plate 43, a sliding rail 44, a third sliding block 45, a connecting plate 46, a carrier plate 47, and a limiting hook 48.
[0068] Wherein:Figure 1 And Figure 2 In the above-mentioned, the support frame 1 is provided with a protective cover 2 for protection, the inside of the protective cover 2 is arranged with a punching mechanism, the fixed frame 4 is arranged outside the protective cover 2, and the top end of the fixed frame 4 is rotatably installed with a rotating shaft 5 for coiling the material belt 16, the top end of the material belt 16 enters the punching mechanism through the slot on the side of the protective cover 2, and the fixed frame 4 and the protective cover 2 are provided with a limiting assembly capable of supporting the material belt 16.
[0069] The punching mechanism includes a forming section and a separating section, and is respectively used for forming and separating and collecting the structural member of the material belt 16, and the lower part of the punching mechanism is provided with a material receiving hopper 41 located inside the support frame 1.
[0070] In a specific application scenario, the material belt 16 is wound outside the rotating shaft 5, and the transmission belt is connected through the transmission wheel 6 integrally fixed at the end of the rotating shaft 5, so as to facilitate the unwinding of the material belt 16, the unwound material belt 16 is limited to enter the inside of the protective cover 2 through the limiting assembly arranged between the fixed frame 4 and the protective cover 2, and the material belt 16 enters the inside of the protective cover 2 and sequentially completes the forming and separation in the punching mechanism, so as to cut and separate the waste and the finished product and complete the punching forming, and the finished product and the waste are respectively collected through the communication of the bottom and the material receiving hopper 41.
[0071] By adopting the above technical scheme, a structural member punching mode and equipment capable of completing the forming and waste cutting in steps are provided, and the forming and collection of the finished product can be quickly completed.
[0072] Among them: Figures 1-5 In the above-mentioned, the top end of the protective cover 2 is fixedly installed with a connecting arm 3, the top end of the connecting arm 3 is fixedly connected between the bottom end of the fixed frame 4, the limiting assembly is transversely fixed outside the fixed frame 4, and the limiting assembly includes a supporting rod 7, a limiting rod 8, a first cross rod 9, a limiting column 10, a first fixed bolt 101, a second cross rod 11, a hollow groove 12, a first sliding block 13, an adjusting rod 14 and a pressing rod 15, the supporting rod 7 is fixedly connected to the middle part outside the fixed frame 4, the inner side of the supporting rod 7 is fixedly installed with the limiting rod 8 capable of bearing the material belt 16, the first cross rod 9 is symmetrically installed on the top inside of the supporting rod 7, the outer side of the first cross rod 9 is slidably installed with the limiting column 10, the top end of the limiting column 10 is threadedly connected with the first fixed bolt 101, the second cross rod 11 is fixedly installed on the top inside of the supporting rod 7, the top surface of the second cross rod 11, the limiting rod 8 and the first cross rod 9 below are flush, the hollow groove 12 is opened in the top end of the supporting rod 7, the inner side of the hollow groove 12 is slidably installed with the first sliding block 13, the inside of the first sliding block 13 is connected with the adjusting rod 14 rotatably installed on the inner side of the supporting rod 7, and the inner side of the first sliding block 13 is fixed with the pressing rod 15 corresponding to the supporting rod 7 upward and downward.
[0073] In a specific application scenario, the shaft 5 is stably supported through the sequential fixed connection between the protective cover 2, the connecting arm 3 and the fixing frame 4, facilitating the transmission and use of the shaft 5, so as to facilitate the unwinding and use of the material belt 16. The middle part of the fixing frame 4 is fixedly installed with a support rod 7 through bolts, and the inner side of the support rod 7 is fixedly installed with a limiting rod 8, which can support and bear the material belt 16, avoid the downward falling of the material belt 16 due to gravity, and avoid affecting the conveying. Meanwhile, the first cross rod 9 is symmetrically arranged on the end of the support rod 7 and located on the upper and lower sides of the material belt 16. The limiting column 10 is slid on the first cross rod 9, which can limit the material belt 16 through the spacing adjustment of the limiting column 10. The top end of the limiting column 10 is threadedly connected with the first fixing bolt 101. By screwing the first fixing bolt 101 into the first cross rod 9, the top end of the first fixing bolt 101 is pressed and attached to the upper side of the first cross rod 9, so as to fix the position of the limiting column 10, thereby maintaining the limiting conveying of the material belt 16. The adjusting rod 14 is rotated at the top end of the support rod 7, and the first sliding block 13 is slid up and down in the inner space 12 through the threaded transmission between the adjusting rod 14 and the first sliding block 13. The material belt 16 can be clamped by the second cross rod 11 and the pressing rod 15, so as to avoid being easily pulled and ensure stable conveying.
[0074] The above technical scheme has the following advantages: the limiting rod 8, the first cross rod 9 and the second cross rod 11 can stably support the material belt 16, the limiting column 10 is limited through sliding, and the material belt 16 is clamped and conveyed by the second cross rod 11 and the pressing rod 15, so as to facilitate stable processing and use.
[0075] Among them: Figure 1 , Figure 2 , Figures 6-12The top end of the support frame 1 is fixedly installed with a table plate 17, the top surface of the table plate 17 is installed with a stamping mechanism, the stamping mechanism comprises a rack 18, a first fixed die 19, an inner module 20, a side slot 21, a second fixed die 22, a stamping cylinder 23, a first movable die 24, a first cutter 2401, a second movable die 25 and a second cutter 2501, the rack 18 is fixedly installed on the top surface of the table plate 17, the top of the rack 18 is installed with the stamping cylinder 23, the first fixed die 19 is arranged on the bottom left side of the table plate 17, the inner side top of the first fixed die 19 is integrally provided with the inner module 20, the side slot 21 penetrating up and down is arranged between the first fixed die 19 and the inner module 20, the second fixed die 22 is arranged on the bottom right side of the table plate 17, the second fixed die 22 is in a hollow structure, the first movable die 24 and the second movable die 25 are respectively arranged above the first fixed die 19 and the second fixed die 22, a forming section is formed between the first fixed die 19 and the first movable die 24, a separation section is formed between the second fixed die 22 and the second movable die 25, a die core for pressing and forming a piece 1601 on the material belt 16 is arranged at the bottom of the first movable die 24 and the second movable die 25, the first cutter 2401 is arranged at the bottom side of the first movable die 24, the first cutter 2401 is in close contact with the top surface of the first fixed die 19 and the inner module 20 to cut off the waste between the material belt 16 and the piece 1601, and the second cutter 2501 is arranged at the side of the second movable die 25, the second cutter 2501 is in close contact with the second fixed die 22 to separate the piece 1601 from the side strip 1602.
[0076] In a specific application scenario, when the material belt 16 enters between the first fixed die 19 and the first movable die 24, the first movable die 24 is lowered by starting the stamping cylinder 23, the forming die core at the bottom end of the first movable die 24 first presses downward on the material belt 16, and the die cavity on the surface of the inner module 20 completes the forming of the piece 1601, at the same time, the bottom side of the first movable die 24 presses downward to make the first cutter 2401 deviate from the inner side wall between the first fixed die 19 and the inner module 20 to complete the stamping cutting of the waste between the material belt 16 and the piece 1601, so that the cut waste falls through the side slot 21 between the first fixed die 19 and the inner module 20, and after the conveyed piece 1601 and the side strip 1602 enter between the second fixed die 22 and the second movable die 25, the piece 1601 is pressed into the hollow structure inside the inner module 20 by the falling of the second movable die 25, and the second cutter 2501 completes the cutting between the piece 1601 and the side strip 1602, so that the piece 1601 falls and is collected through the inner hole of the inner module 20;
[0077] At the same time, the stamping cylinder 23 can drive the first movable die 24 and the second movable die 25 to synchronously descend for continuous stamping, so that the piece 1601 does not collide with the first fixed die 19 and the second fixed die 22 after the material belt 16 is conveyed and stamped.
[0078] Adopting the technical scheme, continuous and rapid stamping can be realized, the first cutter 2401 and the second cutter 2501 are arranged, so that the waste and the finished product can be quickly separated, and the forming and the separate collection can be ensured.
[0079] In the first movable mold 24, Figure 1 、 Figure 9 、 Figure 11 and Figure 12 the bottom surface of the first movable mold 24 is symmetrically provided with a ejection assembly, and the bottom end of the second movable mold 25 is also provided with an ejection assembly, the ejection assembly comprising a fixed sleeve 26, an ejection rod 27 and a first spring 28, the ejection rod 27 being telescopically connected to the inside of the fixed sleeve 26 through the first spring 28.
[0080] In a specific application scenario, the ejection assembly is arranged on the inner side of the first cutter 2401 and the bottom end of the second movable mold 25, when the first movable mold 24 and the fixed sleeve 26 descend, the bottom end of the ejection rod 27 is in contact with the surface of the material belt 16, so that the ejection rod 27 is retracted into the inside of the fixed sleeve 26, when the first cutter 2401 and the second cutter 2501 complete the separation and cutting, the ejection rod 27 is ejected through the elastic action of the first spring 28, so as to respectively extrude the waste and the finished product 1601 downward, so as to facilitate the rapid separation and collection, and avoid material jamming.
[0081] Adopting the technical scheme, the waste and the finished product can be quickly separated and collected, material jamming can be avoided, and the processing efficiency can be improved.
[0082] In the first movable mold 24, Figure 1 、 Figure 2 、 Figure 6 、 Figure 13 and Figure 14 the inner side of the base plate 17 is provided with a material lifting mechanism, the material lifting mechanism comprising a fixed frame 29, a telescopic rod 30, a rotating roller 31, a fixed rod 32, a second sliding block 33, a second fixed pin 34 and a compression wheel 35, the fixed frame 29 being transversely arranged between the first movable mold 24 and the first fixed mold 19, the telescopic rod 30 being symmetrically mounted on the side of the fixed frame 29, the bottom of the telescopic rod 30 being fixed to the bottom surface of the base plate 17, the rotating roller 31 being rotatably mounted on the end of the fixed frame 29, the fixed rod 32 being arranged above the rotating roller 31 and fixed to the end of the fixed frame 29, the second sliding block 33 being symmetrically and slidingly mounted on the outside of the fixed rod 32, the second fixed pin 34 being threadedly mounted on the top end of the second sliding block 33, the compression wheel 35 being rotatably mounted on the outside of the bottom end of the second sliding block 33 and being in a conical structure.
[0083] In a specific application scenario, when the material belt 16 enters the stamping mechanism, it first passes between the rotating roller 31 and the fixed rod 32, and slides on the outside of the fixed rod 32 to make the second sliding block 33 limit the position of the pressure roller 35 installed at the bottom end of the second sliding block 33, so that the material belt 16 can cover the forming die cavity above the first fixed die 19 and the inner die 20. After the position of the second sliding block 33 slides, it is positioned by rotating the second fixed bolt 34, and the pressure roller 35 has a conical structure and can be used to limit the position of the material belt 16 with different thicknesses. When the material belt 16 is conveyed, the driving mechanism can be connected to the end of the rotating roller 31, which conveys the material belt 16 by contacting and rubbing the material belt 16. The conveying distance is determined by the non-collision between the stamped part 1601 and the outer wall of the first fixed die 19 and the inner die 20. After the material belt 16 is formed by the first fixed die 19 and the first movable die 24, the material belt 16 and the part 1601 are lifted by the extension of the telescopic rod 30, and the material belt 16 is conveyed forward by the rotation of the rotating roller 31. After the conveying is completed, the bottom surface of the material belt 16 is reattached to the top surface of the first fixed die 19 by retracting the telescopic rod 30, and the material belt 16 is used for forming again.
[0084] The above technical scheme has the advantages that the material belt 16 can be conveniently lifted and conveyed to avoid collision between the part 1601 and the die cavity, which is beneficial to rapid and continuous stamping forming and improves the stamping production efficiency.
[0085] Among them: Figure 13 and Figure 14 The top material mechanism further includes a bottom plate 36, a pressing plate 37, a clamping wheel 38, a telescopic rod 39, and a second spring 40. The bottom plate 36 is fixed symmetrically at equal intervals on the inner side of the fixed frame 29. The pressing plate 37 is arranged above the bottom plate 36. The clamping wheel 38 is rotatably installed at equal intervals in the bottom plate 36 and the pressing plate 37. The telescopic rod 39 is slidably connected to the top end of the bottom plate 36. The telescopic rod 39 is fixedly connected to the top surface of the pressing plate 37. The second spring 40 is connected between the bottom plate 36 and the pressing plate 37 and is sleeved around the telescopic rod 39.
[0086] In a specific application scenario, when the material belt 16 is conveyed on the first fixed die 19 and the second fixed die 22, the side of the material belt 16 can extend into the inside of the bottom plate 36. When the material belt 16 limited by the pressure roller 35 is conveyed, the clamping wheel 38 clamps the side of the material belt 16 by the bottom plate 36 and the pressing plate 37, which can keep the material belt 16 stable. The telescopic rod 39 is slidably connected to the inside of the bottom plate 36. The second spring 40 can ensure that the bottom plate 36 and the pressing plate 37 stably clamp the material belt 16 by the clamping wheel 38, which is beneficial to maintaining stable conveying and avoiding warping of the side of the material belt 16 by clamping.
[0087] Adopting the technical scheme, the material belt 16 with different thicknesses can be stably clamped and conveyed, and the stamping forming precision is maintained.
[0088] Wherein, as Figure 1 、 Figure 2 、 Figure 15 And Figure 16 The lower part of the connecting hopper 41 is provided with a sliding mechanism, which comprises a mounting frame 42, a mounting plate 43, a sliding rail 44, a third sliding block 45, a connecting plate 46, a carrier plate 47 and a limiting hook 48, the mounting frame 42 is fixedly installed in the inner part of the support frame 1, the top end of the mounting frame 42 is fixedly installed with the mounting plate 43, the sliding rails 44 are symmetrically arranged on the top surface of the mounting plate 43, the upper part of the sliding rail 44 is slidably connected with the third sliding block 45, the connecting plate 46 is fixedly installed above the third sliding block 45, the upper part of the connecting plate 46 is fixedly provided with the carrier plate 47 for placing the connecting hopper 41, the edge side corner part of the carrier plate 47 is fixedly installed with the limiting hook 48, and the limiting hook 48 is in the shape of an "L" for limiting the connecting hopper 41.
[0089] In a specific application scenario, the bottom end of the edge groove 21 and the bottom end of the inner module 20 are directly communicated to the lower part of the table plate 17, the waste and the finished product 1601 cut off by stamping directly fall to the lower part of the table plate 17 and are collected by the connecting hopper 41, and through the sliding structure between the third sliding block 45 and the sliding rail 44, the connecting plate 46 and the carrier plate 47 can be slid by the sliding of the third sliding block 45, so that the connecting hopper 41 is taken out by sliding, so as to facilitate the collection of waste and finished products, and the limiting hook 48 fixed on the edge side of the carrier plate 47 limits the connecting hopper 41, so as to avoid the sliding caused by the unstable center of gravity in the connecting hopper 41 when the waste and the finished product fall, and facilitate stable collection and use.
[0090] Adopting the technical scheme, the waste and the finished product cut by stamping can be stably collected and treated, and the stamping processing efficiency is improved.
[0091] Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the application; the contents not described in detail in the specification belong to the prior art known by those skilled in the art, and the orientation terms such as up, down, left, right, front and back in the specification only represent relative positions but not absolute positions.
[0092] The standard parts used in the application can be purchased from the market, the special-shaped parts can be ordered according to the description and the drawings, the specific connection modes of the parts are the conventional means such as bolts, rivets and welding in the prior art, the machinery, parts and equipment are the conventional types in the prior art, the circuit connection adopts the conventional connection mode in the prior art, and details are not described herein.
[0093] Although the present application has been described in detail with reference to the foregoing embodiments, the technical solutions recorded in the foregoing embodiments can be modified, or some of the technical features can be replaced by equivalent features, by those skilled in the art, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A stamping equipment for processing structural parts of vehicle sensors, comprising a support frame (1) placed in a workshop and a protective cover (2) disposed above it for protection, wherein a stamping mechanism is arranged inside the protective cover (2); Its features are, Also includes: A fixing frame (4) is arranged on the outside of the protective cover (2), and a rotating shaft (5) for winding the strip (16) is rotatably installed on its top. The top of the strip (16) enters the stamping mechanism through a slot on the side of the protective cover (2). A limiting component that can support the strip (16) is provided between the fixing frame (4) and the protective cover (2). The stamping mechanism includes a forming section and a separating section, which are used to form structural parts and separate and collect the strip (16) respectively. A receiving hopper (41) located inside the support frame (1) is provided below the stamping mechanism. A platform (17) is fixedly installed at the top of the support frame (1), and a stamping mechanism is installed in the middle of the top surface of the platform (17). The stamping mechanism includes: The first fixed mold (19) is located on the bottom left side of the table (17); The second fixed mold (22) is located on the bottom right side of the table (17); A material-ejecting mechanism is provided at the center of the inner side of the platform (17), the material-ejecting mechanism comprising: A fixed frame (29) is horizontally arranged between the first moving mold (24) and the first fixed mold (19). Telescopic rods (30) are symmetrically installed on the sides of the fixed frame (29). The bottom of the telescopic rods (30) is fixed to the bottom surface of the platform (17). A rotating roller (31) is rotatably mounted on the end of the fixed frame (29), and a fixing rod (32) fixed to the end of the fixed frame (29) is provided above the rotating roller (31). The second slider (33) is symmetrically slidably mounted on the outside of the fixed rod (32). The top end of the second slider (33) is threaded with a second fixing bolt (34). The bottom end of the second slider (33) is rotatably mounted with a pressure wheel (35). The pressure wheel (35) has a conical structure. The top-feeding mechanism also includes: The base plate (36) is symmetrically fixed at equal intervals on the inner side of the fixed frame (29). A pressure plate (37) is provided above the base plate (36). Clamping wheels (38) are rotatably installed at equal intervals inside the base plate (36) and the pressure plate (37).
2. The stamping equipment for processing vehicle-mounted sensor structural parts according to claim 1, characterized in that: Connecting arms (3) are fixedly installed on both sides of the top of the protective cover (2). The top of the connecting arm (3) is fixedly connected to the bottom of the fixing frame (4). The limiting component is horizontally fixed on the outside of the fixing frame (4).
3. A stamping equipment for processing vehicle-mounted sensor structural parts according to claim 2, characterized in that: The limiting component includes: Support rod (7), the support rod (7) is fixedly connected to the outer side of the middle part of the fixed frame (4), and a limiting rod (8) capable of bearing the material strip (16) is fixedly installed on the inner side of the support rod (7). The first crossbar (9) is symmetrically installed on the top inner side of the support rod (7). A limit post (10) is slidably installed on the outer side of the first crossbar (9). The top end of the limit post (10) is threaded with a first fixing bolt (101). The second crossbar (11) is fixedly installed on the inner side of the top of the support rod (7). The top surfaces of the second crossbar (11), the limiting rod (8), and the first crossbar (9) below are flush. A slot (12) is formed at the top of the support rod (7). A first slider (13) is slidably installed on the inner side of the slot (12). An adjusting rod (14) is rotatably installed on the inner side of the support rod (7) inside the first slider (13). A pressure rod (15) corresponding to the upper and lower parts of the support rod (7) is fixed on the inner side of the first slider (13).
4. A stamping equipment for processing vehicle-mounted sensor structural parts according to claim 1, characterized in that: The stamping mechanism further includes: A frame (18) is fixedly installed on the top surface of a table (17), and a stamping cylinder (23) is installed on the top of the frame (18). An inner module (20) is integrally provided on the inner top of the first fixed mold (19), and a vertically penetrating side groove (21) is provided between the first fixed mold (19) and the inner module (20). The second fixed mold (22) has a hollow structure; The first fixed mold (19) and the second fixed mold (22) are respectively provided with a first moving mold (24) and a second moving mold (25) directly above them. A forming section is formed between the first fixed mold (19) and the first moving mold (24), and a separation section is formed between the second fixed mold (22) and the second moving mold (25).
5. A stamping equipment for processing vehicle-mounted sensor structural parts according to claim 4, characterized in that: The bottom of the first moving mold (24) and the second moving mold (25) are provided with mold cores for pressing and forming parts (1601) on the strip (16). The bottom side of the first moving mold (24) is provided with a first cutter (2401). The first cutter (2401) is attached to the top surface of the first fixed mold (19) and the inner module (20) to remove waste between the strip (16) and the parts (1601). The side of the second moving mold (25) is provided with a second cutter (2501). The second cutter (2501) is attached to the second fixed mold (22) to separate the parts (1601) from the edge strip (1602).
6. A stamping equipment for processing vehicle-mounted sensor structural parts according to claim 5, characterized in that: The bottom surface of the first moving mold (24) is symmetrically provided with a pop-out component, and the bottom end of the second moving mold (25) is also provided with a pop-out component. The pop-out component includes a fixed sleeve (26), a pop-out rod (27) and a first spring (28). The pop-out rod (27) is telescopically connected inside the fixed sleeve (26) through the first spring (28).
7. A stamping equipment for processing vehicle-mounted sensor structural parts according to claim 1, characterized in that: The top-feeding mechanism also includes: The extension rod (39) is slidably connected to the top of the base plate (36) and fixedly connected to the top surface of the pressure plate (37). A second spring (40) sleeved on the outside of the extension rod (39) is connected between the pressure plate (37) and the base plate (36).
8. A stamping equipment for processing vehicle-mounted sensor structural parts according to claim 1, characterized in that: A sliding mechanism is provided below the receiving hopper (41), which includes: Mounting bracket (42), which is fixedly installed inside the support frame (1), and a mounting plate (43) is fixedly installed on the top of the mounting bracket (42). A slide rail (44) is symmetrically arranged on the top surface of the mounting plate (43), and a third slider (45) is slidably connected above the slide rail (44). A connecting plate (46) is fixedly installed above the third slider (45), and a carrier plate (47) for placing the docking hopper (41) is fixed above the connecting plate (46).
9. A stamping equipment for processing vehicle-mounted sensor structural parts according to claim 8, characterized in that: Limiting hooks (48) are fixedly installed on the side corners of the carrier plate (47). The limiting hooks (48) have an "L" shaped structure and are used to limit the connection of the hopper (41).
Citation Information
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