A stamping forming die tool for an automobile mounting belt assembly
By using modular design and an automated slag removal and material guiding mechanism, the problems of low mold compatibility and the impact of dust and slag collection on accuracy in stamping equipment have been solved, thus achieving a highly efficient and safe stamping process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-29
- Publication Date
- 2026-03-27
AI Technical Summary
Existing stamping equipment has limited mold compatibility, and after long-term use, dust and slag accumulation affects accuracy. In addition, the loading and unloading efficiency is low, and the safety is not high.
The modular horizontal main unit is equipped with a follow-up slag removal module, an electrically controlled tilting and guiding mechanism, and a side tilting and feeding mechanism. Combined with the bottom hydraulic support rod and optical ranging probe, it realizes automated slag removal, material guiding and feeding.
It improves mold adaptability and stamping accuracy, ensures the stability of the equipment during long-term use, enhances loading and unloading efficiency and safety, and reduces maintenance costs.
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Figure CN121402494B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of automobile safety belt assembly stamping tooling, in particular to a stamping forming die tooling for automobile mounting belt assembly. BACKGROUND
[0002] The automobile safety belt is the core component of the passive safety system of the vehicle, and its design and manufacturing directly determine the passenger collision protection effect; and the safety belt assembly, such as the safety belt support, is the key structural part connecting the safety belt and the vehicle body, and the stamping forming quality thereof directly affects the stable play of the safety belt function, and both of them need to form a complete protection system from the "protection logic" to the "manufacturing precision".
[0003] In the stamping forming process, the raw material needs to be introduced between the upper and lower die seats, and the stamping equipment is used for integrated stamping forming, but the current stamping forming equipment cannot effectively support the bottom side of the raw material, and needs to rely on the bottom limiting table for limiting, which leads to limited adaptability of the die, and at the same time, in the long stamping process, the upper and lower dies are easily affected by the external environment and the raw material to cause surface dust and slag accumulation, which can easily affect the stamping precision if not cleaned in time, and the current feeding and discharging needs to rely on external manual operation, which is not only low in efficiency, but also low in safety. SUMMARY
[0004] The technical problem to be solved by the present application is that the adaptability of the current stamping forming equipment to the die is limited, and at the same time, in the long stamping process, the dust and slag accumulation on the upper and lower dies can easily affect the stamping precision if not cleaned in time, and the feeding and discharging efficiency is low and the safety is not high.
[0005] The technical scheme adopted by the present application to solve the technical problem is: a stamping forming die tooling for automobile mounting belt assembly, comprising a horizontal main seat, the horizontal main seat is internally provided with an upper die seat with an upper assembly chamber at the lower end and a lower die seat with a lower assembly chamber at the upper end, a follow-up slag removal module is arranged on the upper die seat and the lower die seat, an upper stamping die is installed in the upper assembly chamber, a lower forming die is installed in the lower assembly chamber, a lateral control chamber is arranged on both sides of the lower die seat, an electric control type turnover material guiding mechanism is movably installed in the lateral control chamber, and a lateral turnover type feeding mechanism is installed on the both sides of the horizontal main seat.
[0006] The follow-up slag removal module comprises a rectangular adjusting groove opened on the surface of the upper die seat and the lower die seat, a H-shaped telescopic frame slidably installed in the rectangular adjusting groove, an internal lifting support rod for controlling the H-shaped telescopic frame, a side-hung dust collection box fixed on the side wall of the H-shaped telescopic frame, and a side-hung air blowing pump.
[0007] The internal chamber is connected with the side-hung dust collecting box and the side-hung air blowing pump, and the internal chamber has an internal partition plate for separating the air inlet of the side-hung dust collecting box and the air outlet of the side-hung air blowing pump.
[0008] The bottom support plate and the bottom hydraulic support rod for controlling the bottom support plate are arranged on the periphery of the lower forming die.
[0009] The electric control type turnover material guiding mechanism comprises an inner side turnover telescopic arm movably arranged in the lateral control chamber, an internal adjustment support rod for controlling the inner side turnover telescopic arm, an external adjustment frame arranged at the extending end of the inner side turnover telescopic arm, an inclined guide rail arranged at the upper end of the external adjustment frame, an electric control type translation mechanism arranged on the inclined guide rail, and an electric control type clamping mechanism arranged on the electric control type translation mechanism.
[0010] The lateral turnover type material feeding mechanism comprises an external turnover frame hingedly arranged on the outside of the horizontal main base, a lateral electric control support rod, an electric control type material feeding belt, an angle adjustment plate hingedly arranged on the side wall of the external turnover frame, and an angle adjustment support rod.
[0011] The electric control type translation mechanism comprises an electric control type screw rod arranged in the inclined guide rail and an internal thread translation block screw-coupled on the electric control type screw rod.
[0012] The electric control type clamping mechanism comprises an external limiting plate screw-fixed on the internal thread translation block, a locking support rod fixed on the external limiting plate, and a telescopic limiting plate controlled by the locking support rod.
[0013] The clamping surfaces of the external limiting plate and the telescopic limiting plate are provided with non-metallic extrusion blocks on which internal installation pressure sensor modules are arranged.
[0014] The external limiting plate is externally provided with an optical distance measuring probe for positioning the material feeding position.
[0015] The beneficial effects of the present application are:
[0016] (1) The automobile mounting belt assembly punching forming die tool of the present application can install the upper punching die on the upper die seat through the upper assembly chamber, install the lower forming die on the lower die seat through the lower assembly chamber, and adopt a modularization mode, so that the die can be quickly replaced according to the needs, and the bottom support plate controlled by the bottom hydraulic support rod is arranged on the lower die seat, so that the adaptive height limiting of the bottom support plate can be performed during the punching process, so that the punching stroke of various dies can be adapted, the bottom support property is ensured, the punching forming stability is good, and the tool is suitable for a wide range of applications.
[0017] (2) The upper die holder and the lower die holder are both provided with a follow-up slag removal module, which can be lifted after forming separation to remove dust and slag on the mold by high-pressure blowing, and meanwhile, the follow-up slag removal module can be separated in another direction to avoid affecting the external environment, so that the precision is unchanged after long-time stamping, and the maintenance cost in the later period is reduced;
[0018] (3) The lower die holder is provided with a lateral control chamber on both sides, and an electric control type turnover material guiding mechanism is movably installed in the lateral control chamber, which can guide the raw material on the lateral turnover material feeding mechanism to the lower die holder, or unload the finished product on the lower die holder, and then transport it from different sides to improve the feeding and unloading efficiency;
[0019] (4) The entire tooling integrates stamping, electric control limiting adjustment, electric control self-maintenance, electric control feeding and unloading functions, and the function integration degree is greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0020] The application will be further described below in combination with the drawings and examples.
[0021] Figure 1 is a structural schematic diagram of the application.
[0022] Figure 2 is a schematic diagram of the internal structure of the application.
[0023] Figure 3 is a schematic diagram of the internal structure of the application.
[0024] Figure 4 is a schematic diagram of the internal structure of the application.
[0025] Figure 5 is a schematic diagram of the upper feeding end lateral turnover material feeding mechanism of the application.
[0026] Figure 6 is a schematic diagram of the lower feeding end lateral turnover material feeding mechanism of the application.
[0027] Fig. 1. Horizontal main seat; 2. Upper die seat; 3. Lower die seat; 4. Follow-up slag removal module; 41. Mouth-shaped telescopic frame; 42. Built-in lifting support rod; 43. Side-hung dust collection box; 44. Side-hung air blowing pump; 45. Internal partition; 5. Upper stamping die; 6. Lower forming die; 7. Lateral control chamber; 8. Electric control type turnover material guiding mechanism; 81. Inner side turnover telescopic arm; 82. Built-in adjusting support rod; 83. External adjusting frame; 84. Inclined guide rail; 85. Electric control type translation mechanism; 851. Electric control screw; 852. Internal threaded translation block; 86. Electric control clamping mechanism; 861. External limiting plate; 862. Locking support rod; 863. Telescopic limiting plate; 864. Non-metallic extrusion block; 865. Optical distance measuring probe; 9. Lateral turnover type feeding mechanism; 91. External turnover frame; 92. Lateral electric control support rod; 93. Electric control material conveying belt; 94. Angle adjusting plate; 95. Angle adjusting support rod; 10. Bottom support plate; 11. Bottom hydraulic support rod. DETAILED DESCRIPTION
[0028] The application will now be described in further detail with reference to the drawings. These drawings show only the essential features of the application and are therefore purely schematic. They show, in:
[0029] In the description of the application, it needs to be explained that unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.
[0030] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6 A stamping forming die tool for an automobile mounting belt assembly is shown in the drawings, which comprises a horizontal main seat 1, the horizontal main seat 1 is internally provided with an upper die seat 2 with an upper assembly chamber at the lower end and a lower die seat 3 with a lower assembly chamber at the upper end, the upper assembly chamber and the lower assembly chamber are modularly designed, which is convenient for adaptation, the upper die seat 2 and the lower die seat 3 are both provided with a follow-up slag removal module 4, the upper assembly chamber is internally installed with an upper stamping die 5, the lower assembly chamber is internally installed with a lower forming die 6, the lower die seat 3 is provided with a lateral control chamber 7 on both sides, the lateral control chamber 7 is internally movably installed with an electric control type turnover material guiding mechanism 8, the horizontal main seat 1 is installed with a lateral turnover type feeding mechanism 9 on the lateral surface.
[0031] To facilitate the electronically controlled telescopic movement, the follow-up slag removal module 4 includes a rectangular adjustment groove formed on the surfaces of the upper mold base 2 and the lower mold base 3, a U-shaped telescopic frame 41 slidably installed inside the rectangular adjustment groove, a built-in lifting support rod 42 for controlling the U-shaped telescopic frame 41, a side-mounted dust collection box 43 fixed to the side wall of the U-shaped telescopic frame 41, and a side-mounted air pump 44.
[0032] The extended end of the built-in lifting support rod 42 is connected to the U-shaped telescopic frame 41, and the U-shaped telescopic frame 41 is controlled to slide and adjust inside the rectangular adjustment groove by telescopic movement.
[0033] To facilitate internal airflow, the U-shaped telescopic frame 41 has an internal chamber that communicates with the side-mounted dust collection box 43 and the side-mounted air pump 44. The internal chamber has an internal partition 45 that separates the air inlet of the side-mounted dust collection box 43 and the air outlet of the side-mounted air pump 44. The side-mounted air pump 44 is connected to the inside of the side-mounted dust collection box 43 through a lateral air inlet pipe passing through the U-shaped telescopic frame 41.
[0034] The U-shaped telescopic frame 41 has openings at the top and bottom of the internal partition 45 on the outside. One opening is for exhaust and the other is for dust collection. Side-mounted dust collection boxes 43 and side-mounted air pumps 44 are installed on both sides of the U-shaped telescopic frame 41. The side-mounted dust collection box 43 on one side is connected to the side-mounted air pump 44 on the other side. This allows one side to exhaust and blow dust while the other side to draw in and collect dust. By switching the side-mounted air pumps 44 to operate in different directions, multi-directional dust removal can be achieved.
[0035] In order to control and limit the stamping stroke, the side control chamber 7 is provided with a bottom support plate 10 and a bottom hydraulic strut 11 for controlling the bottom support plate 10, located outside the lower forming mold 6.
[0036] When the upper die holder 2 drives the upper stamping die 5 to press downwards, when the upper stamping die 5 presses against the upper surface of the raw material, the pressure sensing unit on the bottom hydraulic support rod 11 detects the downward pressure and controls the bottom support plate 10 to descend, ensuring a certain bottom support force. When the downward pressure decreases, it means that the stamping has reached the specified stroke. At this time, the bottom hydraulic support rod 11 stops retracting, maintaining the bottom support of the bottom support plate 10.
[0037] To facilitate bottom assembly, the follow-up slag removal module 4 on the lower mold base 3 is integrated on the bottom support plate 10.
[0038] In order to match the electric control flip telescopic feeding, the electric control flip feeding mechanism 8 includes the inner side flip telescopic arm 81 movably installed in the inside of the lateral control chamber 7, the built-in adjusting support rod 82 for controlling the inner side flip telescopic arm 81, the outer adjusting frame 83 installed at the extending end of the inner side flip telescopic arm 81, the inclined guide rail 84 installed at the upper end of the outer adjusting frame 83, the electric control translation mechanism 85 installed on the inclined guide rail 84, and the electric control clamping mechanism 86 installed on the electric control translation mechanism 85.
[0039] When stamping, the built-in adjusting support rod 82 controls the outer flip of the inner side flip telescopic arm 81 connected with the extending end thereof through telescopic expansion, then the inner side flip telescopic arm 81 drives the outer adjusting frame 83 at the extending end to flip outward, then the inclined guide rail 84 is driven to move to one side of the electric control translation mechanism 85, the electric control translation mechanism 85 drives the raw material to move to one side of the inclined guide rail 84, then the raw material is controlled to flip and adhere to the outside of the inclined guide rail 84, then the raw material is inserted into the electric control clamping mechanism 86 through translation, then the electric control clamping mechanism 86 is used to clamp and position the raw material, then the built-in adjusting support rod 82 controls the inner flip of the inner side flip telescopic arm 81, at the same time, the telescopic support rod in the inner side flip telescopic arm 81 drives the outer adjusting frame 84 and the inclined guide rail 84 to expand outward through telescopic expansion, so as to avoid interference with the lower die base 3, then the inclined guide rail 84 is translated above the lower die base 3, then the raw material is placed in the lower forming die 6 through the electric control translation mechanism 85, then the reverse operation is separated and reset, and then the stamping forming operation is performed; after stamping, the electric control clamping mechanism 86 on the other side of the electric control flip feeding mechanism 8 clamps the edge of the finished product, and then separates and flips to the other side of the lateral flip feeding mechanism 9, and then the feeding operation is performed.
[0040] In order to match the outer electric control feeding, the lateral flip feeding mechanism 9 includes the outer flip frame 91 hinged to the outside of the horizontal main base 1, the lateral electric control support rod 92, the electric control feeding belt 93, the angle adjusting plate 94 hinged to the side wall of the outer flip frame 91, and the angle adjusting support rod 95.
[0041] The outer flip frame 91 and the lateral electric control support rod 92 are hinged to the outside of the horizontal main base 1, the extending end of the lateral electric control support rod 92 is movably connected with the outer flip frame 91, the lateral electric control support rod 92 controls the angle adjustment of the outer flip frame 91 through telescopic expansion, the electric control feeding belt 93 is installed inside the outer flip frame 91, the angle adjusting plate 94 and the angle adjusting support rod 95 are hinged to the side wall of the outer flip frame 91, the extending end of the angle adjusting support rod 95 is movably connected with the angle adjusting plate 94, and the angle adjusting support rod 95 controls the angle adjustment of the angle adjusting plate 94 through telescopic expansion.
[0042] In order to match the electric control translation, the electric control translation mechanism 85 includes an electric control screw rod 851 installed inside the inclined guide rail 84 and a threaded translation block 852 screwed on the electric control screw rod 851.
[0043] The electric control screw rod 851 is rotated to control the threaded translation block 852 to translate along the inclined guide rail 84.
[0044] In order to match the electric control clamping, the electric control clamping mechanism 86 includes an external limiting plate 861 fixed on the threaded translation block 852 by bolts, a locking support rod 862 fixed on the external limiting plate 861, and a telescopic limiting plate 863 controlled by the locking support rod 862.
[0045] The locking support rod 862 is an electric telescopic support rod, which adjusts the gap between the control 861 and the telescopic limiting plate 863 by telescoping.
[0046] In order to improve the clamping stability and avoid damage to the raw materials, the clamping surfaces of the external limiting plate 861 and the telescopic limiting plate 863 are provided with non-metallic extrusion blocks 864, which are internally provided with pressure sensor modules.
[0047] When the locking support rod 862 controls the telescopic limiting plate 863 to move towards the external limiting plate 861, the non-metallic extrusion blocks 864 located on the clamping surfaces of the external limiting plate 861 and the telescopic limiting plate 863 will extrude on the workpiece, and then the clamping force is monitored through the internally installed pressure sensor module, to avoid excessive or insufficient clamping force.
[0048] The non-metallic extrusion blocks 864 can be detached and replaced, which is convenient for later maintenance.
[0049] In order to match the optical monitoring and positioning of the position of the feeding and discharging workpieces, the external limiting plate 861 is externally provided with an optical distance measuring probe 865 for positioning the feeding position.
[0050] The optical distance measuring probe 865 controls the electric control conveying belt 93 and the electric control clamping mechanism 86 by scanning the position of the workpiece, so as to align the electric control clamping mechanism 86 with the workpiece on the electric control conveying belt 93, and then guide one side of the workpiece into the electric control clamping mechanism 86 through the electric control conveying belt 93, and then control the feeding through the electric control clamping mechanism 86; or control the electric control clamping mechanism 86 to move to the side of the finished product, and then clamp the finished product by the electric control clamping mechanism 86 to discharge.
[0051] Working principle of the device
[0052] The device is aimed at the stamping needs of automobile safety belt components, and through the collaborative work of "modular adaptation-electric control material guiding-intelligent stamping-automatic slag removal", the core principles are as follows: 1. Modular die adaptation: the upper assembly chamber of the upper die seat 2 and the lower assembly chamber of the lower die seat 3 can quickly install different specifications of the upper stamping die 5 and the lower forming die 6, and meet the stamping of various components; in the lateral control chamber 7 of the lower die seat 3, the bottom hydraulic support rod 11 drives the bottom support plate 10 to rise and fall, and the support height is adjusted according to the stamping stroke of the die, so as to avoid the problem of unstable support caused by limited die adaptability. 2. Follow-up slag removal: after stamping is completed, the built-in lifting support rod 42 of the follow-up slag removal module 4 drives the mouth-shaped telescopic frame 41 to rise to the surface of the die along the rectangular adjusting groove; the side-hung air blowing pump 44 blows air to the die through the internal chamber of the mouth-shaped telescopic frame 41, which blows away the dust and waste slag, and at the same time, the other side-hung dust collection box 43 removes the waste slag through the internal chamber (the internal partition plate 45 separates the air blowing and air extraction paths to prevent air path interference), and the lateral air inlet pipe ensures smooth air path to avoid waste slag residue affecting subsequent stamping precision. 3. Electric control material guiding: the built-in adjusting support rod 82 of the electric control type turnover material guiding mechanism 8 controls the turnover telescopic arm 81 inside to turn over, which drives the external adjusting frame 83 and the inclined guide rail 84 to move; the electric control screw rod 851 of the electric control type translation mechanism 85 drives the internal threaded translation block 852 to slide along the inclined guide rail 84, and then drives the electric control clamping mechanism 86 to move; the locking support rod 862 of the electric control clamping mechanism 86 controls the telescopic limiting plate 863 and the external limiting plate 861 to clamp the material, and the pressure sensor module in the non-metallic extrusion block 864 monitors the clamping force to prevent the material from being damaged or loosened; the optical distance measuring probe 865 scans the material position to ensure accurate material guiding. 4. Side turnover feeding: the side electric control support rod 92 of the side turnover feeding mechanism 9 adjusts the angle of the external turnover frame 91, the angle adjusting support rod 95 adjusts the angle adjusting plate 94, so that the electric control material conveying belt 93 adapts to the material guiding height; the electric control material conveying belt 93 realizes the conveying of raw materials and the discharging of finished products, and cooperates with the electric control type turnover material guiding mechanism 8 to complete automatic feeding and discharging, replacing manual operation to improve efficiency and safety.
[0053] Working process of the device
[0054] 1. Pretreatment: according to the specifications of the safety belt components to be stamped, the upper stamping die 5 is installed to the upper assembly chamber of the upper die seat 2, and the lower forming die 6 is installed to the lower assembly chamber of the lower die seat 3; start the bottom hydraulic support rod 11, adjust the height of the bottom support plate 10 to be flush with the upper surface of the lower forming die 6; adjust the angle of the external turnover frame 91 through the side electric control support rod 92, adjust the angle adjusting plate 94 through the angle adjusting support rod 95, so that the electric control material conveying belt 93 is aligned with the material guiding path of the electric control type turnover material guiding mechanism 8.
[0055] 2. Feeding: The electric control feeding belt 93 of the automatic guide and positioning start-up lateral flip-over feeding mechanism 9 feeds the raw material to the designated area; the built-in adjusting support rod 82 of the electric control flip-over guide mechanism 8 controls the outer flip-over of the inner flip-over telescopic arm 81, drives the outer adjusting frame 83, the inclined guide rail 84 and the electric control clamping mechanism 86 to move to the side of the raw material; the optical distance measuring probe 865 scans and positions the raw material, the electric control screw rod 851 drives the inner threaded translation block 852 to slide along the inclined guide rail 84, so that the electric control clamping mechanism 86 is aligned with the raw material, and the electric control feeding belt 93 drives the raw material to move horizontally to the clamping position; the locking support rod 862 is retracted, the telescopic limiting plate 863 cooperates with the outer limiting plate 861, and the non-metallic extrusion block 864 clamps the raw material (the pressure sensor module ensures that the clamping force is moderate); the built-in adjusting support rod 82 controls the inner flip-over of the inner flip-over telescopic arm 81, the inner flip-over telescopic arm 81 is stretched to avoid collision with the lower mold base 3, the electric control translation mechanism 85 drives the raw material to move to the designated position above the lower placed forming mold 6, the electric control clamping mechanism 86 is loosened, the raw material falls into the lower placed forming mold 6, and the guide mechanism is reset.
[0056] 3. Punching and slag removal: The precise forming and slag cleaning start the punching system, the upper mold base 2 drives the upper placed punching mold 5 to move downward to extrude the raw material on the lower placed forming mold 6; during the punching process, the bottom support plate 10 adjusts the height by the bottom hydraulic support rod 11 to keep the bottom support stable until the raw material is formed into a safety belt assembly; after the punching is completed, the upper mold base 2 drives the upper placed punching mold 5 to rise, the built-in lifting support rod 42 of the follow-up slag removal module 4 drives the mouth-shaped telescopic frame 41 to rise or fall, the side-hung air blowing pump 44 blows air, and the side-hung dust collection tank 43 removes slag, and the mouth-shaped telescopic frame 41 is reset after slag removal.
[0057] 4. Discharging: The electric control flip-over guide mechanism 8 on the other side is started to automatically feed the finished product, the built-in adjusting support rod 82 controls the inner flip-over of the inner flip-over telescopic arm 81, and drives the electric control clamping mechanism 86 to move to the side of the finished product on the lower placed forming mold 6; the optical distance measuring probe 865 positions the finished product, and the electric control clamping mechanism 86 clamps the finished product; the inner flip-over telescopic arm 81 is stretched and flipped outward, and drives the finished product to move above the electric control feeding belt 93 of the lateral flip-over feeding mechanism 9; the electric control clamping mechanism 86 is loosened, the finished product falls into the electric control feeding belt 93, and is fed to the finished product collection area by the electric control feeding belt 93, completing a single punching cycle, and the equipment can repeat the process to realize batch production.
[0058] Based on the above ideal embodiments according to the present application, through the above description, relevant personnel can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the contents in the specification, and must be determined according to the scope of claims.
Claims
1. A stamping die tooling for mounting components on automobiles, comprising a horizontal main unit base (1), characterized in that: The horizontal main unit base (1) is provided with an upper mold base (2) with an upper assembly chamber at the lower end and a lower mold base (3) with a lower assembly chamber at the upper end. Both the upper mold base (2) and the lower mold base (3) are provided with a follow-up slag removal module (4). The follow-up slag removal module (4) includes a rectangular adjustment groove opened on the surface of the upper mold base (2) and the lower mold base (3), a U-shaped telescopic frame (41) slidably installed inside the rectangular adjustment groove, and a built-in lifting support rod (42) for controlling the U-shaped telescopic frame (41). A side-mounted dust collection box (43) and a side-mounted air pump (44) are fixed on the side wall of the U-shaped telescopic frame (41). An upper stamping die (5) is installed inside the upper assembly chamber, and a lower forming die (6) is installed inside the lower assembly chamber. Lateral control chambers (7) are provided on both sides of the lower die base (3). An electrically controlled flipping material guiding mechanism (8) is movably installed inside the lateral control chamber (7). Lateral flipping feeding mechanisms (9) are installed on both sides of the horizontal main body base (1). The lateral control chamber (7) is located inside the lower molding mold (6) and is provided with a bottom support plate (10) and a bottom hydraulic strut (11) for controlling the bottom support plate (10). The electrically controlled tilting and guiding mechanism (8) includes an inner tilting telescopic arm (81) movably installed inside the lateral control chamber (7), a built-in adjusting support rod (82) for controlling the inner tilting telescopic arm (81), an outer adjusting frame (83) installed at the extended end of the inner tilting telescopic arm (81), an inclined guide rail (84) installed at the upper end of the outer adjusting frame (83), an electrically controlled translation mechanism (85) installed on the inclined guide rail (84), and an electrically controlled clamping mechanism (86) installed on the electrically controlled translation mechanism (85). The lateral tilting feeding mechanism (9) includes an external tilting frame (91) hinged to the outside of the horizontal main body (1), a lateral electric control support rod (92), an electric control conveyor belt (93), an angle adjustment plate (94) hinged to the side wall of the external tilting frame (91), and an angle adjustment support rod (95). The electrically controlled translation mechanism (85) includes an electrically controlled lead screw (851) installed inside the inclined guide rail (84) and an internally threaded translation block (852) threaded onto the electrically controlled lead screw (851).
2. The stamping die tooling for automotive mounting belt components according to claim 1, characterized in that: The electrically controlled clamping mechanism (86) includes an external limiting plate (861) bolted to an internal threaded translation block (852), a locking support rod (862) fixed to the external limiting plate (861), and a telescopic limiting plate (863) controlled by the locking support rod (862).
3. The stamping die tooling for automotive mounting belt components according to claim 2, characterized in that: Non-metallic extrusion blocks (864) with internally installed pressure sensor modules are installed on the clamping surfaces of the external limiting plate (861) and the telescopic limiting plate (863).
4. The stamping die tooling for automotive mounting belt components according to claim 2, characterized in that: An optical ranging probe (865) for positioning the feeding position is installed on the outside of the external limiting plate (861).
Citation Information
Patent Citations
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CN119216439A
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