A stamping device for automobile bracket parts with anti-sticking function

By using technical means such as positioning plates, blow pipes and suction components in the stamping equipment of automobile bracket parts, the problems of dimensional errors and mold adhesion of impurities in the metal sheet bending process were solved, and high-precision and high-quality metal sheet bending production was achieved.

CN119910091BActive Publication Date: 2025-09-26GUANGDONG QINGSHENG TECH CO LTD
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Patent Information

Application Number
CN202510280896.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2025-09-26
Estimated Expiration
2045-03-11

AI Technical Summary

Technical Problem

During the bending process of existing metal sheets, material rebound causes dimensional errors, and the mold is prone to adhesion of metal debris and impurities, affecting the bending quality and production qualification rate.

Method used

The stamping equipment for automobile bracket parts with anti-stick function is used to correct and position the metal plate through the positioning plate, and the impurities in the mold groove are removed using a blow pipe and suction component. The metal plate is supported by an elastic membrane and a telescopic airbag to prevent deformation and ensure the cleanliness and precision of the mold.

Benefits of technology

It improves the accuracy and production quality of metal plate bending, reduces the difficulty of mold cleaning, prevents metal plates from being scratched, and ensures production qualification rate and equipment cleanliness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of automobile parts processing, and in particular to a stamping device for automobile bracket parts with an anti-sticking function. It comprises a stamping bending machine, a mold base, a lower mold and an upper mold, etc.; a control panel is provided on the stamping bending machine; an upper mold is fixedly connected to the stamping bending machine; a mold base is fixedly connected to the stamping bending machine, and two lower molds are rotatably connected in the mold base. The present invention realizes the improvement of bending accuracy by correcting and positioning the metal plate through the positioning plate, blowing air into the mold groove through the blowing pipe during the bending process, and then sucking the air in the mold groove through the suction pipe; thereby forming a circulating airflow in the mold groove, sucking out metal debris and impurities in the mold groove and the collection groove, and at the same time, the positioning plate and the sealing curtain are used to seal the area in the mold base where the bending operation is not performed, preventing metal debris and impurities in the processing center from entering the upper surface of the lower mold where the bending operation is not performed, thereby increasing the difficulty of subsequent cleaning by workers.
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Description

Technical Field

[0001] The invention relates to the field of automobile parts processing, in particular to an automobile bracket part stamping device with an anti-sticking function. Background Art

[0002] A stamping and bending machine is a mechanical device used for sheet metal processing that integrates both stamping and bending functions. It is widely used in industries such as automotive manufacturing, aerospace, home appliances, and construction.

[0003] During the automobile production process, many automobile bracket parts are formed by stamping and bending metal sheets. However, when bending existing metal sheets, due to the compressive strength of the metal sheets, the material will rebound after the bending is completed, resulting in errors in the bending dimensions. In addition, existing bending machines are generally installed in machining centers. The environment in the machining center is poor, and there are many metal debris and impurities. Metal debris and impurities are easily adhered to the bending mold, causing the metal sheets to be scratched during extrusion, damaging the metal sheets, affecting the bending quality, and reducing the production qualification rate.

[0004] Furthermore, in order to adapt to the bending of some large metal plates, manufacturers usually purchase some bending machines with longer workbenches in machining centers. However, when bending metal plates of normal size, only a part of the bending die in the workbench is performing the bending operation. At this time, metal debris and impurities are easily accumulated in the bending die that is not performing the bending operation, which greatly increases the difficulty of subsequent cleaning. Summary of the Invention

[0005] In order to overcome the shortcomings that the metal plate will rebound after bending, resulting in errors in the bending size, and metal debris is easily adhered to the bending die groove. In the subsequent stamping and bending process, the metal debris is very likely to scratch the metal plate, affecting the bending quality and reducing the production qualification rate, the present invention provides an automobile bracket part stamping equipment with anti-sticking function.

[0006] The technical solution is as follows: A stamping device for automobile bracket parts with anti-sticking function includes a stamping bending machine, a mold base, a lower mold and an upper mold; a control panel is provided on the stamping bending machine; an upper mold is fixedly connected to the stamping bending machine; a mold base is fixedly connected to the stamping bending machine, and two lower molds are rotatably connected in the mold base; it also includes a first electric guide rail, a positioning plate, a sealing curtain, a collection box and a suction component; the stamping bending machine is fixedly connected to the first electric guide rail; both sliders of the first electric guide rail are detachably connected with a tool for clamping and adjusting the metal plate A positive positioning plate; a plurality of sliding grooves are provided on the mold base; each positioning plate slides on the sliding groove; two left-right symmetrical sealing curtains are fixedly connected to the upper side of the mold base for covering the unused area of ​​the lower mold surface; each sealing curtain is fixedly connected to the corresponding positioning plate; a collection box for collecting impurities in the mold base is fixedly connected to the lower side of the mold base; a collection groove is provided in the collection box; contact parts are provided on the opposite sides of the two lower molds; mold grooves are formed on the upper sides of the two lower molds; a suction component for sucking impurities in the mold base is connected to the mold base.

[0007] More preferably, the suction assembly includes a suction pipe and a blowing pipe; an air pump is fixedly connected to the lower side of the stamping and bending machine; a suction pipe is connected between the air inlet of the air pump and the collection box; a blowing pipe is connected between the air outlet of the air pump and the mold base; the blowing pipe is connected to the mold groove; the suction pipe is located on the right side of the mold base; and the blowing pipe is located on the left side of the mold base.

[0008] More preferably, a plurality of first air openings are provided at the air outlet of the air blowing pipe; and each first air opening is arranged obliquely from the upper left to the lower right.

[0009] More preferably, a guide groove is provided on the right side of the mold groove; a through groove is provided on the right side of the collecting box; the guide groove is communicated with the through groove; and the collecting groove is communicated with the through groove.

[0010] More preferably, an elastic membrane is further included; an elastic membrane is fixedly connected between each lower mold and the mold base; and each elastic membrane is located at the connection point between the mold groove and the collecting groove.

[0011] More preferably, a branch pipe is provided in the air blowing pipe; the branch pipe is connected to the external refrigeration equipment; a plurality of second air blowing ports are provided on the upper side of the air outlet of the air blowing pipe; each second air blowing port is connected to the branch pipe in the air blowing pipe.

[0012] More preferably, it also includes a fixed tube, a telescopic airbag and a connecting tube; a fixed tube is fixedly connected to each positioning plate; an air intake pipe is provided on the lower side of the fixed tube on the left side, a pressure valve is provided in the air intake pipe, and the air intake pipe is connected to the mold groove; a connecting tube is connected between the two fixed tubes.

[0013] More preferably, a cleaning tube is also included; cleaning tubes are fixedly connected to the opposite sides of the two positioning plates; each cleaning tube is connected to the corresponding telescopic airbag, and a micro air pump is provided on the air pipe between the cleaning tube and the telescopic airbag; the air outlet of each cleaning tube faces the upper surface of the corresponding positioning plate.

[0014] More preferably, it also includes a second electric guide rail, an electric slide, an electric lifting plate and a rear baffle; several second electric guide rails are fixed to the rear side of the stamping and bending machine; all the second electric guide rails are slidably connected to the electric slide; the electric slide is slidably connected to the electric lifting plate; and the electric lifting plate is connected to the rear baffle.

[0015] More preferably, the electric lifting plate and the tailgate are detachably connected.

[0016] The beneficial effects are as follows: the present invention realizes the improvement of bending accuracy by correcting and positioning the metal plate through the positioning plate, blows the mold groove through the blowing pipe during the bending process, and then sucks the air in the mold groove through the suction pipe; thereby forming a circulating airflow in the mold groove, sucking out metal debris and impurities in the mold groove and the collecting groove, and at the same time, through the positioning plate and the sealing curtain, the area of ​​the mold base where the bending operation is not performed is sealed, thereby preventing metal debris and impurities in the machining center from entering the upper surface of the lower mold where the bending operation is not performed, and after the metal plate is placed on the positioning plate, the upper side of the mold groove is in a closed state, so the mold groove is in a closed state, and at this time, air is blown on the left side of the mold base and air is sucked on the right side, which greatly increases the flow rate of the airflow in the process of entering the collecting groove from the mold groove and finally being sucked, thereby improving the airflow blowing effect on the metal debris and impurities on the upper surface of the lower mold, improving the cleaning effect, improving the mold cleanliness, and ensuring production quality;

[0017] For thinner and larger metal plates that need to be bent multiple times, when bending, the mold groove is divided into left and right parts through the lower mold, and the gas in the left part of the mold groove is introduced into the fixed tube, and then introduced into the telescopic airbag, so that the telescopic airbag expands and extends upward, and contacts the front side of the metal plate after bending, and supports the metal plate to prevent the front side of the metal plate from falling downward, causing deformation and damage to the metal plate, affecting subsequent production and processing, and the telescopic airbag will expand and contract with the downward pressure and upward movement of the upper mold, to prevent the telescopic airbag from affecting the bending operation of the metal plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the three-dimensional structure of the automobile bracket stamping equipment with anti-sticking function of the present invention;

[0019] Figure 2 This is a diagram of the initial state of the lower mold of the present invention;

[0020] Figure 3 This is a diagram showing the lower mold under pressure of the present invention;

[0021] Figure 4 This is a schematic diagram of the three-dimensional structure of the mold base, collection box and blowing pipe combination of the present invention;

[0022] Figure 5 This is a schematic diagram of the three-dimensional structure of the mold base, collection box and suction tube of the present invention;

[0023] Figure 6 This is a schematic diagram of the three-dimensional structure of the positioning plate, fixing tube and telescopic airbag combination of the present invention;

[0024] Figure 7 is a cross-sectional view of a positioning plate of the present invention;

[0025] Figure 8 This is a diagram of a metal plate in a bent state according to the present invention;

[0026] Figure 9 It is a schematic diagram of the three-dimensional structure of the second electric guide rail, electric slide, electric lifting plate and rear baffle combination of the present invention.

[0027] In the accompanying drawings: 1-stamping bending machine, 2-metal plate, 3-mold base, 3001-sliding groove, 3002-mold groove, 3003-guide groove, 4-lower mold, 4001-contact part, 5-upper mold, 11-fixed tube, 1101-air inlet pipe, 12-telescopic airbag, 13-connecting tube, 14-cleaning tube, 101-first electric guide rail, 102-positioning plate, 103-sealing curtain, 104-collecting box, 10401-collecting groove, 10402-through groove, 105-suction tube, 106-elastic membrane, 107-blowing tube, 10701-first blowing port, 10702-second blowing port, 201-second electric guide rail, 202-electric slide, 203-electric lifting plate, 204-rear baffle. DETAILED DESCRIPTION

[0028] The embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0029] Example 1: A stamping device for automobile bracket parts with anti-sticking function, such as Figures 1-6 As shown, it includes a stamping and bending machine 1, a die base 3, a lower die 4 and an upper die 5; a control panel is provided on the stamping and bending machine 1; the upper die 5 is bolted to the stamping and bending machine 1; the die base 3 is fixed to the stamping and bending machine 1, and two lower dies 4 are rotatably connected in the die base 3 through a torsion spring;

[0030] It also includes a first electric guide rail 101, a positioning plate 102, a sealing curtain 103, a collection box 104 and a suction assembly; the stamping and bending machine 1 is fixedly connected to the first electric guide rail 101; the two sliders of the first electric guide rail 101 are detachably connected to the positioning plates 102; two sliding grooves 3001 are provided on the mold base 3; each positioning plate 102 slides on the sliding groove 3001; two left-right symmetrical sealing curtains 103 are fixedly connected to the upper side of the mold base 3; each sealing curtain 103 is fixed to the corresponding positioning plate 102; a collection box 104 is fixedly connected to the lower side of the mold base 3; a collection groove 10401 is provided in the collection box 104; contact parts 4001 are provided on the facing sides of the two lower molds 4; mold grooves 3002 are formed on the upper sides of the two lower molds 4. In the initial state, the two contact parts 4001 are not in contact, and the mold groove 3002 is connected to the collection groove 10401; a suction assembly is connected to the mold base 3.

[0031] The suction assembly includes a suction pipe 105 and a blowing pipe 107; an air pump is fixedly connected to the lower side of the stamping and bending machine 1; a suction pipe 105 is connected between the air inlet of the air pump and the collection box 104; a blowing pipe 107 is connected between the air outlet of the air pump and the mold base 3; the blowing pipe 107 is connected to the mold groove 3002; the suction pipe 105 is located on the right side of the mold base 3; the blowing pipe 107 is located on the left side of the mold base 3, and the metal debris and impurities in the collection box 104 are extracted through the air pump on the lower side of the stamping and bending machine 1, and then filtered and discharged from the stamping and bending machine 1.

[0032] Two first air ports 10701 are provided at the air outlet of the air blowing pipe 107 ; and each first air port 10701 is tilted from the upper left to the lower right.

[0033] A guide groove 3003 is opened on the right side of the mold groove 3002, and the guide groove 3003 is wide at the top and narrow at the bottom; a through groove 10402 is opened on the right side of the collection box 104; the guide groove 3003 is connected to the through groove 10402; and the collection groove 10401 is connected to the through groove 10402.

[0034] It also includes an elastic membrane 106 ; an elastic membrane 106 is fixedly connected between each lower mold 4 and the mold base 3 ; each elastic membrane 106 is located at the connection point between the mold groove 3002 and the collection groove 10401 .

[0035] A branch pipe is provided in the air blowing pipe 107 ; the branch pipe is connected to an external refrigeration device; three second air blowing ports 10702 are opened on the upper side of the air outlet of the air blowing pipe 107 ; each second air blowing port 10702 is connected to a branch pipe in the air blowing pipe 107 .

[0036] The following is a detailed description of the process for improving the pass rate of extrusion bending of metal plate 2: Because metal plate 2 has compressive strength, and existing bending equipment does not have a good rebound compensation facility when extruding and bending metal plate 2, and metal plate 2 is usually placed manually, there is an error in the position of metal plate 2. As a result, the metal plate 2 has dimensional errors after extrusion bending, the precision is not up to standard, and the pass rate is low. Therefore, the following measures are proposed: First, the worker controls the first electric guide rail 101 through the control panel on the stamping and bending machine 1 to drive the two positioning plates 102 to move toward the opposite sides, so that a clamping area is formed between the two positioning plates 102; then the worker places the metal plate 2 on the upper side of the two positioning plates 102, and then the worker controls the first electric guide rail 101 to drive the two positioning plates 102 to correct and position the metal plate 2, thereby avoiding When the metal plate 2 is manually placed, there is an error that affects the subsequent bending accuracy; it should be noted here that the positioning plate 102 is detachably connected to the slider on the first electric guide rail 101, and the worker can install the matching positioning plate 102 according to the shape of the metal plate 2, thereby adapting to the correction clamping of different metal plates 2; after the metal plate 2 is corrected and positioned, the first electric guide rail 101 will control the two positioning plates 102 to move toward the opposite sides, so that the distance between the two positioning plates 102 is greater than the width of the metal plate 2, to avoid the positioning plates 102 interfering with the normal operation of the upper mold 5 and affecting the subsequent bending of the metal plate 2, and then the stamping and bending machine 1 controls the upper mold 5 to move downward so that the upper mold 5 contacts the metal plate 2; and gradually press the metal plate 2 into the mold groove 3002 composed of the two lower molds 4; and in the process of the metal plate 2 entering the mold groove 3002, such as Figure 2 and Figure 3 As shown, in the initial state, the contact portion 4001 of the upper and lower molds 4 is in an upward tilted state. When viewed from right to left, the two lower molds 4 will rotate toward each other after being squeezed, and eventually the two contact portions 4001 will contact each other, and then the metal plate 2 will be compacted by the lower mold 4, and the metal plate 2 will be squeezed and bent into shape by cooperating with the upper mold 5. After the extrusion is completed, the upper mold 5 is controlled to rise and reset to release the squeeze on the lower mold 4, and the lower mold 4 is rotated and reset, and the contact portion 4001 is tilted upward again. While the contact portion 4001 is tilted upward, the metal plate 2 in the mold groove 3002 will be lifted upward to complete the demolding.

[0037] Furthermore, the existing bending machine is generally set in a machining center, the environment in the machining center is poor, there are many metal debris and impurities, and the bending mold is easily adhered to metal debris and impurities, causing the metal plate 2 to be scratched during extrusion, damaging the metal plate 2, affecting the bending quality, and reducing the production qualification rate; therefore, Figure 2-Figure 5As shown: in the initial state, the contact portion 4001 of the upper and lower molds 4 is in an upwardly tilted state. At this time, the mold groove 3002 and the collection groove 10401 are in a connected state. At this time, the air pump on the stamping and bending machine 1 is started to blow air into the blowing pipe 107, and then the gas will be blown out from the first blowing port 10701, thereby blowing away the metal debris and impurities on the surface of the lower mold 4, and the first blowing port 10701 is tilted from the upper left to the lower right to blow the metal debris and impurities on the surface of the lower mold 4 into the collection groove 10401 on the lower side of the mold groove 3002. In this process, the air pump on the stamping and bending machine 1 is used to suck the suction pipe 105, thereby forming a circulating airflow in the mold groove 3002, and sucking away the metal debris and impurities in the mold groove 3002 and the collection groove 10401, thereby improving the cleanliness of the mold and ensuring production quality.

[0038] Furthermore, when the contact portion 4001 of the lower mold 4 is tilted upward, the pressure surface of the upper surface of the lower mold 4 is V-shaped. Metal debris and impurities are easily adhered to the angle of the upper surface of the lower mold 4, and are difficult to be blown into the connecting channel between the mold groove 3002 and the collection groove 10401. Therefore, a guide groove 3003 is opened on the right side of the mold groove 3002. The gas blown out from the first blowing port 10701 will blow the dust and impurities at the angle of the upper surface of the lower mold 4 directly to the right into the guide groove 3003, and then enter the collection groove 10401 through the through groove 10402. The guide groove 3003 is wide at the top and narrow at the bottom. When the airflow flows downward from the upper side of the guide groove 3003, the flow rate will be greatly increased, thereby improving the suction effect.

[0039] Furthermore, when the metal plates 2 of different sizes are corrected and positioned by the two positioning plates 102, the positioning plate 102 will move on the sliding groove 3001, and then pull out the corresponding sealing curtain 103, and then seal the area of ​​the mold base 3 where the bending operation is not performed, to prevent metal debris and impurities in the machining center from entering the upper surface of the lower mold 4 where the bending operation is not performed, and continuously accumulating; and after the metal plate 2 is placed on the positioning plate 102, the upper side of the mold groove 3002 is in a closed state, so when the first blowing port 10701 blows out gas to blow away the metal debris and impurities on the upper surface of the lower mold 4, the mold groove 3002 is in a closed state, and the mold base 3 blows air on the left side and inhales air on the right side, which greatly increases the flow rate of the airflow from the mold groove 3002 into the collection groove 10401 and is finally sucked away, thereby improving the airflow blowing effect on the metal debris and impurities on the upper surface of the lower mold 4, thereby improving the cleaning effect.

[0040] Furthermore, a branch pipe is provided in the air blowing pipe 107. After the upper mold 5 is pressed down to bend the metal plate 2, the second air blowing port 10702 will blow out cooling gas. At this time, the two contact parts 4001 are in contact with each other, and the mold groove 3002 and the collecting groove 10401 are in a separated state. At this time, the upper left part of the upper mold 5 is sealed by the sealing curtain 103, and the upper mold 5 will enter the mold groove 3002 after pressing the metal plate 2. Therefore, the cold air will flow directly from the left side of the mold groove 3002 to the middle, and then directly contact the upper mold 5 and the lower mold 4, and then cool the upper mold 5 and the lower mold 4, so as to avoid the upper mold 5 and the lower mold 4 from generating metal fatigue during the continuous stamping and bending process, and the strength reduction will affect the subsequent stamping and bending effect. At the same time, it prevents the upper mold 5 and the lower mold 4 from overheating and adhering to the metal plate 2, affecting the subsequent demolding.

[0041] On the basis of the above technical effects, the present invention also has the following advantages:

[0042] An elastic membrane 106 is fixedly connected between each lower mold 4 and the mold base 3 to prevent metal debris and impurities from entering the collection tank 10401 from the mold groove 3002 and entering the rotating connection between the lower mold 4 and the mold base 3, thereby affecting the subsequent use of the lower mold 4.

[0043] Example 2: Based on Example 1, Figure 6-Figure 8 As shown, it also includes a fixed tube 11, a telescopic airbag 12 and a connecting tube 13; a fixed tube 11 is fixedly connected to each positioning plate 102; an air intake pipe 1101 is provided on the lower side of the fixed tube 11 located on the left side, and a pressure valve is provided in the air intake pipe 1101, and the air intake pipe 1101 is connected to the mold groove 3002; a connecting tube 13 is connected between the two fixed tubes 11, and the connecting tube 13 is a telescopic tube; the opposite sides of the two positioning plates 102 are fixedly connected to the telescopic airbags 12, and the telescopic airbags 12 are connected to the fixed tube 11; each telescopic airbag 12 is located on the upper front side of the mold base 3.

[0044] It also includes a cleaning tube 14; cleaning tubes 14 are fixedly connected to the opposite sides of the two positioning plates 102; each cleaning tube 14 is connected to the corresponding telescopic airbag 12 through an air pipe, and a micro air pump is provided on the air pipe between the cleaning tube 14 and the telescopic airbag 12; the air outlet of each cleaning tube 14 faces the upper surface of the corresponding positioning plate 102.

[0045] The working principle of the above embodiment is as follows:

[0046] The existing bending and stamping equipment has a wide range of uses. In order to improve the applicability of the equipment and ensure production efficiency, this equipment can also be used for the bending production of other plates. For thinner and larger metal plates 2 that need to be bent multiple times, when bending, since the front side of the bending part of the metal plate 2 is too long, the front side of the metal plate 2 is heavier after bending and will naturally bend downward, which can easily cause the metal plate 2 located at the corner of the positioning plate 102 and the mold groove 3002 to be deformed and damaged under the downward pressure of the upper mold 5, affecting the subsequent bending process. Therefore, when bending the thinner and larger metal plates 2, workers are required to hold the metal plates 2 for auxiliary operations, but the worker's auxiliary operation is more dangerous and prone to safety accidents. Therefore, when the upper mold 5 moves down to bend the metal plate 2 , the upper mold 5 contacts the metal plate 2, the metal plate 2 contacts the lower mold 4, and the contact parts 4001 of the two lower molds 4 fit together. At this time, a closed space is formed between the mold base 3, the lower mold 4, the upper mold 5 and the sealing curtain 103. The mold groove 3002 is divided into left and right parts by the upper mold 5. The gas blown out by the blowing pipe 107 on the left side of the mold groove 3002 cannot enter the collecting tank 10401. At this time, the air pressure on the left side of the mold groove 3002 continues to increase. When the air pressure is greater than the pressure valve in the air inlet pipe 1101, the air inlet pipe 1101 opens, and the gas on the left side of the mold groove 3002 enters the air inlet pipe 1101 and enters the two telescopic air bags 12 through the fixed pipe 11 and the connecting pipe 13, and then as shown Figure 8 As shown, the two telescopic airbags 12 expand and extend upward, and contact the front side of the metal plate 2 after bending, and support the metal plate 2 to prevent the front side of the metal plate 2 from falling downward, causing the metal plate 2 to be deformed and damaged, affecting subsequent production and processing. When the upper mold 5 moves upward and resets, the contact parts 4001 of the two lower molds 4 are gradually separated, and the mold groove 3002 is connected to the collection groove 10401. At this time, the air flow on the left side of the mold groove 3002 will enter the collection groove 10401 and be extracted by the suction pipe 105. Therefore, the air pressure on the left side of the mold groove 3002 will continue to decrease, and the gas will no longer enter the air inlet pipe 1101, and then the cleaning pipe 1 is started. 4 and the telescopic airbag 12, draws the gas in the telescopic airbag 12 into the cleaning tube 14 and blows it out, thereby shrinking and resetting the telescopic airbag 12 and cleaning the upper surface of the positioning plate 102 with the blown gas. The worker can then take out the bent metal sheet 2, and the telescopic airbag 12 can support the front side of the thicker and thinner metal sheets 2 instead of the worker. At the same time, the telescopic airbag 12 will expand and contract with the downward pressure and upward movement of the upper mold 5, preventing the telescopic airbag 12 from affecting the bending operation of the metal sheet 2. It should be noted that during the operation, the blowing tube 107 is always in the blowing state, and the suction tube 105 is always in the suction state.

[0047] Example 3: Based on Example 1, Figure 9As shown, it also includes a second electric guide rail 201, an electric slide 202, an electric lifting plate 203 and a rear baffle 204; two second electric guide rails 201 are fixed to the rear side of the stamping and bending machine 1; all the second electric guide rails 201 are slidably connected to the electric slide 202; the electric lift plate 203 is slidably connected to the electric slide 202; the electric lift plate 203 is connected to the rear baffle 204, and the height of the rear baffle 204 is consistent with the height of the metal plate 2 placed on the positioning plate 102.

[0048] The electric lifting plate 203 and the tailgate 204 are detachably connected.

[0049] The working principle of the above embodiment is as follows:

[0050] When the metal plate 2 is corrected and positioned by the positioning plate 102, the worker can control the second electric guide rail 201, the electric slide 202 and the electric lifting plate 203 to accurately push the workpiece to the predetermined bending starting point with the rear baffle 204. When the worker places the metal plate 2 on the upper side of the positioning plate 102, the worker can directly push the back side of the metal plate 2 to the rear baffle 204 to ensure that each bending operation starts from the same position, thereby ensuring the consistency and accuracy of the bending. At the same time, moving the rear baffle 204 can fix the workpiece to prevent it from moving during bending, reducing material Elastic rebound makes the final bending angle closer to the expected value, thereby improving the bending accuracy; and for workpieces that need to be bent multiple times or processed into complex shapes, the rear baffle 204 can be brought to different positions and stopped by the second electric guide rail 201, the electric slide 202 and the electric lifting plate 203 to achieve multi-stage bending positioning, ensuring that each stage of bending is accurate; and the electric lifting plate 203 and the rear baffle 204 are detachably connected, and workers can replace different rear baffles 204 according to different metal plates 2, thereby adapting to the stamping and bending of different metal plates 2.

[0051] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A stamping device for automobile bracket parts with an anti-sticking function, comprising a stamping and bending machine (1), a die base (3), a lower die (4) and an upper die (5); a control panel is provided on the stamping and bending machine (1); the upper die (5) is fixedly connected to the stamping and bending machine (1); a die base (3) is fixedly connected to the stamping and bending machine (1), and two lower dies (4) are rotatably connected in the die base (3); the feature is that The invention also includes a first electric guide rail (101), a positioning plate (102), a sealing curtain (103), a collecting box (104) and a suction assembly; the first electric guide rail (101) is fixedly connected to the stamping bending machine (1); the two sliders of the first electric guide rail (101) are detachably connected to the positioning plates (102) for clamping and correcting the metal plate (2); a plurality of sliding grooves (3001) are opened on the mold base (3); each positioning plate (102) slides on the sliding groove (3001); two left-right symmetrical positioning plates (3001) are fixedly connected to the upper side of the mold base (3) for clamping and correcting the metal plate (2); A sealing curtain (103) covers an unused area on the surface of the lower mold (4); each sealing curtain (103) is fixedly connected to a corresponding positioning plate (102); a collection box (104) for collecting impurities in the mold base (3) is fixedly connected to the lower side of the mold base (3); a collection groove (10401) is provided in the collection box (104); contact portions (4001) are provided on the facing sides of the two lower molds (4); a mold groove (3002) is formed on the upper sides of the two lower molds (4); and a suction component for sucking impurities in the mold base (3) is connected to the mold base (3).

2. The automobile bracket stamping equipment with anti-sticking function according to claim 1 is characterized in that: The suction assembly comprises a suction pipe (105) and an air blowing pipe (107); an air pump is fixedly connected to the lower side of the stamping and bending machine (1); a suction pipe (105) is connected between the air inlet of the air pump and the collection box (104); an air blowing pipe (107) is connected between the air outlet of the air pump and the mold base (3); the air blowing pipe (107) is connected to the mold groove (3002); the suction pipe (105) is located on the right side of the mold base (3); and the air blowing pipe (107) is located on the left side of the mold base (3).

3. The automobile bracket stamping equipment with anti-sticking function according to claim 2, characterized in that: A plurality of first air ports (10701) are provided at the air outlet of the air blowing pipe (107); and each first air port (10701) is arranged to be inclined from the upper left to the lower right.

4. The automobile bracket stamping equipment with anti-sticking function according to claim 2, characterized in that: A guide groove (3003) is provided on the right side of the mold groove (3002); a through groove (10402) is provided on the right side of the collection box (104); the guide groove (3003) is connected to the through groove (10402); and the collection groove (10401) is connected to the through groove (10402).

5. The automobile bracket stamping equipment with anti-sticking function according to claim 2, characterized in that: It also includes an elastic membrane (106); an elastic membrane (106) is fixedly connected between each lower mold (4) and the mold base (3); and each elastic membrane (106) is located at the connection point between the mold groove (3002) and the collection groove (10401).

6. The automobile bracket stamping equipment with anti-sticking function according to claim 3, characterized in that: A branch pipe is provided in the air blowing pipe (107); the branch pipe is connected to an external refrigeration device; a plurality of second air blowing ports (10702) are provided on the upper side of the air outlet of the air blowing pipe (107); each second air blowing port (10702) is connected to a branch pipe in the air blowing pipe (107).

7. The automobile bracket stamping equipment with anti-sticking function according to claim 1, characterized in that: The machine further comprises a second electric guide rail (201), an electric slide (202), an electric lifting plate (203) and a rear baffle (204); a plurality of second electric guide rails (201) are fixedly connected to the rear side of the stamping and bending machine (1); all the second electric guide rails (201) are slidably connected to the electric slide (202); the electric lifting plate (203) is slidably connected to the electric slide (202); and the rear baffle (204) is connected to the electric lifting plate (203).

8. The automobile bracket stamping equipment with anti-sticking function according to claim 7, characterized in that: The electric lifting plate (203) and the rear baffle (204) are detachably connected.

Citation Information

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