Aluminum profile stamping die

By integrating detection and marking modules into aluminum profile stamping dies, the problem of aluminum profile wear detection has been solved, enabling real-time detection and marking of wear levels, thereby improving forming efficiency and product quality.

CN120038237BActive Publication Date: 2026-02-06JIANGSU HUALAIXIN ALUMINUM CO LTD
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Patent Information

Application Number
CN202510532620.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2026-02-06
Estimated Expiration
2045-04-25

AI Technical Summary

Technical Problem

Existing aluminum profile stamping and stretching equipment cannot effectively detect the degree of wear, affecting forming efficiency and product quality.

Method used

Design an aluminum profile stamping die that integrates a detection module, a data processing module, a control module, and a marking module. The die uses a laser rangefinder to detect wear depth and marks and sorts the parts according to the degree of wear.

Benefits of technology

It enables real-time detection and marking of wear on aluminum profiles, improving forming efficiency, ensuring product quality, and promptly identifying defective products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an aluminum profile stamping die and belongs to the technical field of aluminum profile machining, which comprises a machine body, a hydraulic part is arranged in a linear array at the upper end of the vertical part of the machine body, a male die is fixedly connected to the extension end of the hydraulic part, a female die is arranged in a linear array at the upper end of the horizontal part of the machine body, and a gas cylinder is arranged at the lower side of the female die. The detection module, the data processing module, the control module and the marking module are arranged on the aluminum profile stamping die, the aluminum profile can be detected, and the aluminum profile with low quality but not reaching the defective product can be marked according to the detection data. The wear depth of the surface of the aluminum profile can be detected after the shaping is completed, and whether to mark the aluminum profile is selected according to the wear depth of the aluminum profile, so that the quality of the aluminum profile after shaping is distinguished, and the stamping and drawing forming efficiency of the aluminum profile is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of aluminum profile processing, more particularly, to an aluminum profile stamping die. BACKGROUND

[0002] Aluminum profile is a kind of metal material with aluminum as the main component, which is processed by extrusion, rolling, stretching and other processes, and has the characteristics of light weight, high strength, corrosion resistance, easy processing and recycling, and is widely used in building, transportation, electronics, machinery, decoration and other fields. Aluminum profile stamping forming is a process of placing aluminum profile between the dies and applying pressure to make it produce plastic deformation, so as to obtain the required shaped parts.

[0003] During the stretching process, aluminum profile is affected by uneven stress and strain distribution, and various stress states such as shear stress, compression stress and tensile stress are generated. By reasonably designing the die structure and controlling the forming parameters, the aluminum profile can be uniformly deformed to obtain the required product. However, when the aluminum profile is subjected to stamping and stretching forming, the aluminum profile will be deformed due to the pressure and some wear will occur.

[0004] In the prior art, the wear degree of the aluminum profile after stamping and stretching forming determines the quality and application site of the aluminum profile, and the stamping and stretching forming equipment itself usually does not have the function of detecting the wear degree of the aluminum profile. Therefore, other detection equipment is needed to detect the aluminum profile, which affects the stamping and stretching forming efficiency of the aluminum profile. SUMMARY

[0005] In view of the problems existing in the prior art, the purpose of the present application is to provide an aluminum profile stamping die.

[0006] To solve the above problems, the present application adopts the following technical scheme, which can detect the wear depth of the aluminum profile after shaping, and select whether to mark the aluminum profile according to the wear depth of the aluminum profile.

[0007] An aluminum profile stamping die, comprising a body, a hydraulic part is arranged in a linear array inside the upper end of the vertical part of the body, a convex die is fixedly connected to the extension end of the hydraulic part, a concave die is arranged in a linear array inside the upper end of the horizontal part of the body, a gas cylinder is arranged inside the lower side of the concave die, a support plate is fixedly connected to the extension end of the gas cylinder, the support plate is slidingly connected inside the concave die, a fixed frame is fixedly connected to the upper end of the horizontal part of the body, an embedding groove is arranged in a linear array on the front surface of the fixed frame, the embedding groove is above the concave die, and the convex die slides inside the concave die after moving downward.

[0008] The left and right sides of the embedding groove are provided with detection modules, the front of the machine body is provided with a data processing module and a control module from top to bottom, and the inner and outer parts of the fixed frame are provided with a marking module.

[0009] Further, the embedding groove is in the shape of "U";

[0010] Detection module: laser range finder for detecting the wear degree of aluminum profile after stamping and drawing forming;

[0011] Data processing module: used for calculating real-time data transmitted by the detection module, and transmitting different data to the control module according to the calculation result, when the wear degree is in the preset interval, the data is transmitted to the control module;

[0012] Control module: used for receiving data transmitted by the data processing module, and controlling the marking module to run when the wear degree is in the preset interval;

[0013] Marking module: used for marking the aluminum profile after stamping and drawing forming, and the nozzle and conveying pipeline;

[0014] The data processing module calculates the wear degree of the aluminum profile according to the data transmitted by the detection module through the following formula:

[0015] dt;

[0016] ( ≤Z≤ )

[0017] Wherein, Z is the wear depth of the aluminum profile, K is the correction coefficient of the aluminum profile, P is the pressure on the surface of the aluminum profile, V is the slip speed of the aluminum profile during stamping and drawing forming, H is the hardness of the mold material, t is the time consumed by the aluminum profile during stamping and drawing forming, is the preset minimum wear depth, is the preset maximum wear depth, when Z is within the preset interval, the aluminum profile is determined to be slightly poor in quality, and the nozzle connected with the fixed frame sprays the marking liquid provided by the external liquid supply device to the aluminum profile after the control module controls it for a few seconds.

[0018] Further, the outer surface of the fixed frame is provided with a prompt module, the upper side of the machine body is provided with a discharging module, and the prompt module and the discharging module are controlled by the control module;

[0019] Prompt module: used for prompting after the detection module detects the wear depth of the aluminum profile;

[0020] Discharging module: used for stopping conveying the aluminum profile for a period of time after the prompt module operates;

[0021] The data processing module calculates the numerical range of the wear degree of the aluminum profile based on the data transmitted by the detection module using the following formula:

[0022] - 0;

[0023] Among them, when If the aluminum profile is deemed defective, the control module will stop the feeding module for a period of time after the control prompt module has been running for a few seconds.

[0024] Furthermore, the upper side of the machine body is provided with a feeding component, which includes a conveyor belt disposed on the upper side of the machine body.

[0025] Furthermore, a fixed platform is fixedly connected to the front of the machine body. A first hinge seat is fixedly connected to the inner front of the fixed platform in a circular array. An electric push rod is hinged inside the first hinge seat. A second hinge seat is hinged to the telescopic end of the electric push rod. A push plate is fixedly connected to the other side of the second hinge seat. After the push plate moves, it is slidably connected to the upper side of the conveyor belt and the machine body, respectively.

[0026] Furthermore, a first magnetic block is fixedly connected to both the left and right sides of the push plate. A movable groove is opened on the side of the embedded groove on both the left and right sides that are far apart. A trapezoidal block is fixedly connected to the center of the movable groove. A second magnetic block is fixedly connected to both the front and rear parts of the upper part of the movable groove. The second magnetic block located at the rear is magnetically attracted to the first magnetic block, and the second magnetic block located at the front is magnetically repelled by the first magnetic block. The first magnetic block slides around the trapezoidal block.

[0027] Furthermore, the upper side of the machine body is also provided with a drying component, which includes a hollow cavity opened inside the fixed frame.

[0028] Furthermore, a front baffle is rotatably connected to the back of the embedded groove, the embedded groove is connected to the hollow cavity, a side baffle is rotatably connected to the back of the left end of the fixed frame, and a drying component is provided on the right side of the inside of the hollow cavity.

[0029] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0030] This invention, through its detection module, data processing module, control module, and marking module, can simultaneously detect aluminum profiles and mark those of lower quality but not yet defective based on the detection data. Since the wear depth of the aluminum profile surface can be detected after shaping, and whether to mark the aluminum profile is selected based on the wear depth, the invention aims to distinguish the quality of the aluminum profile after shaping, while also improving the stamping and stretching forming efficiency of the aluminum profile.

[0031] The application distinguishes defective products in the detection process of the aluminum profile by the setting of the prompt module and the discharging module, since the aluminum profile to be detected is in the preset interval of wear depth, the prompt will be issued in the process of the aluminum profile being conveyed to the discharging module, and then the aluminum profile is transferred when the discharging module stops running, so as to quickly distinguish defective products and timely transfer them out.

[0032] The application pushes the aluminum profile by the setting of the push plate, and reaches the side of the undetected aluminum profile after resetting, since the push plate will move following the movement of the first magnetic block in the process of the electric push rod pushing the aluminum profile by the push plate, so that the push plate can cross the aluminum profile which is not shaped when returning to the original position, so that the pushing efficiency of the push plate to the aluminum profile is guaranteed. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 It is a structural schematic diagram of the application;

[0034] Figure 2 It is a sectional structural schematic diagram of the application;

[0035] Figure 3 It is a left view sectional structural schematic diagram of the body of the application;

[0036] Figure 4 It is a structural schematic diagram of the push plate of the application;

[0037] Figure 5 It is a bottom view sectional structural schematic diagram of the fixed frame of the application;

[0038] Figure 6 It is a bottom view sectional structural schematic diagram of the hollow cavity of the application;

[0039] Figure 7 It is a partial working frame schematic diagram of the detection module, data processing module, control module, marking module, prompt module and discharging module of the application;

[0040] Figure 8 It is a working flow schematic diagram of the detection module, data processing module, control module, marking module, prompt module and discharging module of the application.

[0041] Explanation of figure marks:

[0042] 1, body; 11, hydraulic; 12, male die; 13, female die; 14, cylinder; 15, support plate; 16, fixed frame; 161, embedded groove; 17, detection module; 18, data processing module; 19, control module; 2, marking module; 3, prompting module; 4, blanking module; 5, feeding component; 51, conveying belt; 52, fixed table; 521, first hinge seat; 53, electric push rod; 54, second hinge seat; 55, push plate; 56, first magnetic block; 57, moving groove; 58, trapezoidal block; 59, second magnetic block; 6, air drying component; 61, hollow cavity; 62, front baffle; 63, side baffle; 64, drying component. DETAILED DESCRIPTION

[0043] 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. Obviously, the described embodiments are only part of the embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the present application.

[0044] Please refer to Figures 1 to 8 An aluminum profile stamping die, comprising a body 1, a linear array of hydraulic components 11 is arranged inside the upper end of the vertical part of the body 1, the telescopic end of the hydraulic component 11 is fixedly connected with a male die 12, a linear array of female dies 13 is arranged inside the upper end of the horizontal part of the body 1, a cylinder 14 is arranged inside the lower side of the female die 13, the telescopic end of the cylinder 14 is fixedly connected with a support plate 15, the support plate 15 is slidingly connected inside the female die 13, a fixed frame 16 is fixedly connected to the upper end of the horizontal part of the body 1, a linear array of embedded grooves 161 is arranged on the front surface of the fixed frame 16, the embedded grooves 161 are above the female die 13, the male die 12 moves downward and slides inside the female die 13;

[0045] Detection modules 17 are arranged on both sides inside the embedded grooves 161, a data processing module 18 and a control module 19 are arranged on the front surface of the body 1 from top to bottom, and a marking module 2 is arranged inside and outside the fixed frame 16.

[0046] The embedded grooves 161 are in the shape of "U";

[0047] Detection module 17: a laser range finder for detecting the degree of wear of the aluminum profile after stamping and drawing forming;

[0048] Data processing module 18: for calculating real-time data transmitted by the detection module 17, and transmitting different data to the control module 19 according to the calculation result, when the degree of wear is in the preset interval, the data is transmitted to the control module 19;

[0049] Control module 19: used for receiving data delivered by data processing module 18, and controlling the operation of marking module 2 when the wear degree is in the preset interval;

[0050] Marking module 2: a nozzle and a conveying pipeline used for marking the aluminum profile subjected to the stretch forming;

[0051] Data processing module 18 calculates the wear degree of the aluminum profile according to the data delivered by detection module 17 through the following formula:

[0052] dt;

[0053] ( ≤Z≤ )

[0054] wherein Z is the wear depth of the aluminum profile, K is the correction coefficient of the aluminum profile, P is the pressure on the surface of the aluminum profile, V is the slip speed of the aluminum profile during the stretch forming, H is the hardness of the die material, t is the time consumed for the stretch forming of the aluminum profile, is the preset minimum wear depth, is the preset maximum wear depth, when Z is in the preset interval, the aluminum profile is determined to be of slightly poor quality, and control module 19 controls the nozzle in communication with fixed frame 16 to spray the conveying pipeline with the marking liquid provided by the external liquid supply device to the aluminum profile after several seconds.

[0055] The upper side of the machine body 1 is provided with a feeding component 5.

[0056] By adopting the above technical scheme, when the aluminum profile is conveyed to the upper side of the concave die 13 by the feeding component 5, the hydraulic part 11 arranged on the upper side of the machine body 1 pushes the convex die 12 to move downward, the convex die 12 continues to move downward after contacting the aluminum profile, so that the aluminum profile is shaped by the concave die 13, in the process of moving upward of the convex die 12 driven by the hydraulic part 11, the air cylinder 14 pushes the support plate 15 to push upward, when the support plate 15 is horizontal with the upper side of the horizontal part of the machine body 1, the aluminum profile completes the material withdrawal, at this time, the aluminum profile is embedded in the embedded groove 161, then the feeding component 5 continues to push the aluminum profile processed, in the process of moving of the aluminum profile, the detection module 17 on both sides of the embedded groove 161 detects the surface of the aluminum profile, then the detection module 17 transmits the real-time collected data to the data processing module 18, the data processing module 18 calculates the data, and after calculation, different data are transmitted to the control module 19, when the wear depth of the detected aluminum profile is in the preset interval, the control module 19 controls the marking module 2 to spray marks on the corresponding aluminum profile, for example, the control module 19 controls the marking module 2 to run once after receiving the data for five seconds, and when the wear depth is below the preset interval, the marking module 2 does not start, since the wear depth of the surface of the aluminum profile can be detected after shaping, whether the aluminum profile is marked is selected according to the wear depth of the aluminum profile, so as to achieve the purpose of distinguishing the quality of the aluminum profile after shaping, and improve the stamping and drawing forming efficiency of the aluminum profile.

[0057] As shown in Figures 1 to 3 , the outer surface of the fixed frame 16 is provided with a prompt module 3, and the upper side of the machine body 1 is provided with a discharging module 4, the prompt module 3 and the discharging module 4 are controlled by the control module 19;

[0058] The prompt module 3 is used for prompting after the detection module 17 detects the wear depth of the aluminum profile;

[0059] The discharging module 4 is used for stopping conveying the aluminum profile for a period of time after the prompt module 3 runs;

[0060] The data processing module 18 calculates the numerical range of the wear degree of the aluminum profile according to the data transmitted by the detection module 17 through the following formula:

[0061] - 0;

[0062] Wherein, when , the aluminum profile can be determined as a defective product, the control module 19 controls the discharging module 4 to stop running for a period of time after controlling the prompt module 3 to run for a few seconds.

[0063] By adopting the above technical scheme, when the data calculated by the data processing module 18 is greater than the preset interval, the data processing module 18 transmits the data to the control module 19, and then the prompting module 3 is controlled to operate first. After the prompting module 3 operates for a few seconds, the control module 19 controls the discharging module 4 to stop operating for a period of time. For example, after the prompting module 3 operates for ten seconds, the control module 19 controls the discharging module 4 to stop operating for thirty seconds. During the period of time when the discharging module 4 stops operating, the workers can transfer the aluminum profiles that stay above the discharging module 4 away. Since the aluminum profile that is detected has a wear depth exceeding the preset interval, the aluminum profile will issue a prompt during the process of being conveyed to the discharging module 4, and then the aluminum profile is transferred when the discharging module 4 stops operating, so as to quickly distinguish the defective products and transfer them away in time.

[0064] As shown in Figures 1 to 5 The feeding component 5 includes a conveying belt 51 arranged on the upper side of the machine body 1.

[0065] The front surface of the machine body 1 is fixedly connected with a fixed table 52. The inner front surface of the fixed table 52 is fixedly connected with a first hinge base 521 arranged in an annular array. The inner part of the first hinge base 521 is hingedly connected with an electric push rod 53. The telescopic end of the electric push rod 53 is hingedly connected with a second hinge base 54. The other side of the second hinge base 54 is fixedly connected with a pushing plate 55. The pushing plate 55 is movably connected to the conveying belt 51 and the upper side of the machine body 1 after moving.

[0066] The left and right sides of the pushing plate 55 are fixedly connected with first magnetic blocks 56. The side away from the inner part of the embedding groove 161 is provided with a moving groove 57. The inner center of the moving groove 57 is fixedly connected with a trapezoidal block 58. The front and rear parts of the upper end of the moving groove 57 are fixedly connected with second magnetic blocks 59. The rear second magnetic block 59 is magnetically attracted to the first magnetic block 56, and the front second magnetic block 59 is magnetically repelled from the first magnetic block 56. The first magnetic block 56 slides around the trapezoidal block 58.

[0067] By adopting the above technical scheme, after the conveying belt 51 conveys the aluminum profile to be processed, the electric push rod 53 inside the fixing table 52 pushes the push plate 55 through the second hinge seat 54. At this time, the first magnetic block 56 on both sides of the push plate 55 will slide inside the moving groove 57 and be kept below the trapezoidal block 58. When the aluminum profile is directly above the die 13, the electric push rod 53 stops running. When the aluminum profile is shaped, the electric push rod 53 continues to push the push plate 55. When the aluminum profile is pushed into the fixed frame 16, because the first magnetic block 56 will reach below the second magnetic block 59 at the rear, and the two are magnetically attracted, the electric push rod 53 is hinged with the fixing table 52 through the first hinge seat 521, so that the first magnetic block 56 is attracted by the second magnetic block 59. At this time, the electric push rod 53 and the push plate 55 will be in an inclined state, and when the electric push rod 53 starts to retract, the attraction of the second magnetic block 59 to the first magnetic block 56 gradually decreases, so that the first magnetic block 56 starts to descend until it reaches above the trapezoidal block 58. At this time, the first magnetic block 56 will slide above the trapezoidal block 58. When the first magnetic block 56 moves below the second magnetic block 59 in front, because the two repel each other magnetically, the second magnetic block 59 quickly descends and finally returns to the original position and is in front of the next batch of aluminum profiles. Because the electric push rod 53 pushes the aluminum profile through the push plate 55, the push plate 55 will move with the movement of the first magnetic block 56, so that the push plate 55 can cross the aluminum profile that has not been shaped when it returns to the original position, so that the pushing efficiency of the push plate 55 on the aluminum profile is guaranteed.

[0068] As Figure 6 shown, the upper side of the machine body 1 is also provided with a air drying part 6, which includes a hollow cavity 61 opened in the fixed frame 16.

[0069] The inside back of the embedded groove 161 is rotationally connected with a front baffle 62. The embedded groove 161 is in communication with the hollow cavity 61. The left end back of the fixed frame 16 is rotationally connected with a side baffle 63. The right side inside the hollow cavity 61 is provided with a drying piece 64.

[0070] By adopting the above technical scheme, when the shaped aluminum profile is pushed into the internal hollow cavity 61 of the fixed frame 16, the aluminum profile will first push the front baffle 62, and when the pushing plate 55 rotates by 90 degrees, the aluminum profile can smoothly enter the hollow cavity 61 and reach above the blanking module 4. After the aluminum profile leaves, the front baffle 62 returns to the original position. At the same time, because the drying piece 64 is always in an open state, the heat generated by the drying piece 64 will accelerate the evaporation of the lubricant on the surface of the aluminum profile. At the same time, the front baffle 62 and the side baffle 63 can reduce the loss of heat. During the process of the aluminum profile leaving the fixed frame 16, the aluminum profile will push the side baffle 63, and the side baffle 63 will also automatically reset after the aluminum profile leaves. Since the aluminum profile can be dried by the drying piece 64 after processing, not only is the drying of the lubricant accelerated, but also a foundation is provided for subsequent stress reduction of the aluminum profile, avoiding the phenomenon of too low temperature of the aluminum profile.

[0071] Working principle: when the aluminum profile above the conveying belt 51 is conveyed to the upper side of the concave die 13 by the electric push rod 53 and the push plate 55, the hydraulic part 11 cooperates with the convex die 12 and the concave die 13 to shape the aluminum profile, and then the cylinder 14 pushes the support plate 15 upwards to push the material out, at this time the detection module 17 embedded in the two sides of the groove 161 detects the surface of the aluminum profile, then the detection module 17 transmits the real-time collected data to the data processing module 18, and the data processing module 18 calculates the data and transmits different data to the control module 19 after calculation, at the same time, the electric push rod 53 cooperates with the push plate 55 to continue to push the aluminum profile, when the aluminum profile passes through the front baffle 62 and enters the hollow cavity 61, because the drying part 64 is always in an open state, the heat generated by the drying part 64 will accelerate the evaporation of the lubricant on the surface of the aluminum profile, at the same time, the front baffle 62 and the side baffle 63 can reduce the loss of heat, if the wear depth of the detected aluminum profile is between the preset interval, the control module 19 will control the marking module 2 to spray the corresponding mark on the aluminum profile, if the wear depth is below the preset interval, the marking module 2 does not start, if the calculated data is greater than the preset interval, the data processing module 18 transmits the data to the control module 19, and then controls the prompt module 3 to operate first, at this time the discharging module 4 continuously conveys the aluminum profile, and the prompt module 3 operates for a few seconds, and then the control module 19 controls the discharging module 4 to stop operating for a period of time, and during the period of time when the discharging module 4 stops operating, the workers can transfer the aluminum profile which stays above the discharging module 4 and passes through the side baffle 63 out, when the electric push rod 53 starts to retract, because the electric push rod 53 inside the fixed table 52 pushes the push plate 55 through the second hinge 54, the first magnetic block 56 on both sides of the push plate 55 slides in the moving groove 57 and stays below the trapezoidal block 58, because the first magnetic block 56 reaches below the second magnetic block 59 in the rear, and the two are magnetically attracted, the electric push rod 53 is hinged with the fixed table 52 through the first hinge 521, so that the first magnetic block 56 is attracted by the second magnetic block 59, at this time the electric push rod 53 and the push plate 55 are in an inclined state, if the electric push rod 53 retracts, the attraction of the second magnetic block 59 to the first magnetic block 56 gradually decreases, so that the first magnetic block 56 starts to descend until it reaches above the trapezoidal block 58, at this time the first magnetic block 56 slides above the trapezoidal block 58, when the first magnetic block 56 moves below the second magnetic block 59 in front, because the two repel each other, the second magnetic block 59 quickly descends and finally returns to the original position and is in front of the next batch of aluminum profile.

[0072] The above merely illustrates the preferred embodiments of the present application; however, the protection scope of the present application is not limited to this. Any skilled person in the art can make equivalent replacements or changes within the technical range disclosed by the present application according to the technical solution and the improvement concept of the present application, which should be covered within the protection scope of the present application.

Claims

1. An aluminum profile stamping die comprising a machine body (1), characterized in that: The upper end of the vertical part of the machine body (1) is internally arranged with a linear array of hydraulic components (11), the telescopic end of the hydraulic component (11) is fixedly connected with a male die (12), the upper end of the horizontal part of the machine body (1) is internally arranged with a linear array of female dies (13), the inside of the female die (13) is provided with a cylinder (14) on the lower side, the telescopic end of the cylinder (14) is fixedly connected with a support plate (15), the support plate (15) is slidingly connected inside the female die (13), the upper end of the horizontal part of the machine body (1) is fixedly connected with a fixed frame (16), the front surface of the fixed frame (16) is provided with a linear array of embedding grooves (161), the embedding grooves (161) are above the female die (13), the male die (12) moves downward and slides inside the female die (13); The left and right sides of the embedding groove (161) are both provided with detection modules (17), the front surface of the machine body (1) is provided with a data processing module (18) and a control module (19) from top to bottom, the inside and outside of the fixed frame (16) are jointly provided with a marking module (2); The embedding groove (161) is in the shape of "U"; The detection module (17) is a laser range finder for detecting the wear degree of the aluminum profile after stamping and drawing forming; The data processing module (18) is used for calculating the real-time data transmitted by the detection module (17), and different data is transmitted to the control module (19) according to the calculation result, when the wear degree is in the preset interval, the data is transmitted to the control module (19); The control module (19) is used for receiving the data transmitted by the data processing module (18), and controlling the marking module (2) to operate when the wear degree is in the preset interval; The marking module (2) is a nozzle and a conveying pipeline for marking the aluminum profile after stamping and drawing forming; The data processing module (18) calculates the wear degree of the aluminum profile according to the data transmitted by the detection module (17) through the following formula: (Z i ≤Z≤Z1) Wherein, Z is the wear depth of the aluminum profile, K is the correction coefficient of the aluminum profile, P is the pressure on the surface of the aluminum profile, V is the sliding speed of the aluminum profile during stamping and drawing forming, H is the hardness of the die material, t is the time consumed by the stamping and drawing forming of the aluminum profile, Z0 is the preset minimum wear depth, Z1 is the preset maximum wear depth, when Z is within the preset interval, the aluminum profile is determined to be slightly poor in quality, and the nozzle connected with the fixed frame (16) sprays the marking liquid provided by the external liquid supply equipment to the aluminum profile after the control module (19) controls the conveying pipe for a few seconds; The outer surface of the fixed frame (16) is provided with a prompt module (3), the upper side of the machine body (1) is provided with a blanking module (4), and the prompt module (3) and the blanking module (4) are both controlled by the control module (19); The prompt module (3) is used for prompting after the detection module (17) detects the wear depth of the aluminum profile; The blanking module (4) is used for stopping conveying the aluminum profile for a period of time after the prompt module (3) operates; The data processing module (18) calculates the numerical range of the wear degree of the aluminum profile according to the data transmitted by the detection module (17) through the following formula: Z-Z1 >= 0; Wherein, when Z >= Z1, the aluminum profile can be defined as defective, the control module (19) controls the blanking module (4) to stop running for a period of time after the control prompt module (3) runs for a few seconds.

2. The aluminum profile punching die according to claim 1, characterized in that: The upper side of the machine body (1) is provided with an upper feeding component (5), which comprises a conveying belt (51) arranged on the upper side of the machine body (1).

3. The aluminum profile stamping die according to claim 2, characterized in that: The front of the machine body (1) is fixedly connected with a fixed table (52), the inner front of the fixed table (52) is fixedly connected with a first hinge seat (521) in an annular array, the inner of the first hinge seat (521) is hingedly connected with an electric push rod (53), the telescopic end of the electric push rod (53) is hingedly connected with a second hinge seat (54), the other side of the second hinge seat (54) is fixedly connected with a push plate (55), the push plate (55) is movably connected to the upper side of the conveying belt (51) and the machine body (1) after moving.

4. The aluminum profile stamping die according to claim 3, characterized in that: The left and right sides of the push plate (55) are fixedly connected with first magnetic blocks (56), the inner sides of the embedding grooves (161) far away from each other are provided with moving grooves (57), the inner center of the moving grooves (57) is fixedly connected with a trapezoidal block (58), the front and rear parts of the upper end of the moving grooves (57) are fixedly connected with second magnetic blocks (59), the second magnetic blocks (59) on the rear side are magnetically attracted to the first magnetic blocks (56), the second magnetic blocks (59) on the front side are magnetically repelled from the first magnetic blocks (56), and the first magnetic blocks (56) slide around the trapezoidal block (58).

5. The aluminum profile stamping die according to claim 1, characterized in that: The upper side of the machine body (1) is also provided with an air drying component (6), which comprises a hollow cavity (61) arranged in the fixed frame (16).

6. The aluminum profile stamping die according to claim 5, characterized in that: The inner back of the embedding groove (161) is rotatably connected with a front baffle (62), the embedding groove (161) is communicated with the hollow cavity (61), the left end back of the fixed frame (16) is rotatably connected with a side baffle (63), and the right side of the inner of the hollow cavity (61) is provided with a drying piece (64).

Citation Information

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