Automobile engine ECU (Electronic Control Unit) mounting bracket mold
By using a motor-driven lead screw and a strong magnet in conjunction with a damping slide rail, the blanking process of the automotive engine ECU mounting bracket mold is simplified, solving the problem of requiring two sets of actuators in the existing technology, and realizing a fast and convenient blanking operation.
Patent Information
- Application Number
- CN202520425127.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-03-12
AI Technical Summary
The existing process for cutting molds for automotive engine ECU mounting brackets requires two sets of actuators, which is cumbersome and costly.
The system uses a motor-driven lead screw and a strong magnet in conjunction with a damping slide rail. The motor drives the lead screw to rotate, causing the movable frame to move. The strong magnet attracts the main body of the support to achieve separation. The damping slide rail and damping spring buffer the unloading process, simplifying the unloading process.
This enables rapid and simple material cutting of the support body, reduces equipment costs and structural complexity, and improves operational efficiency.
Smart Images

Figure CN223811491U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of engine accessory machining, in particular to a kind of automobile engine ECU mounting bracket mould. BACKGROUND
[0002] Automobile engine ECU refers to the engine controller of automobile engine, mainly the electronic device of the operation of each part of internal combustion engine, for example, the control of the oil injection amount of each cycle of engine, ignition time etc.
[0003] The existing stamping die is usually completed by two-step method when carrying out automatic discharging, the first step is to separate the shaped mounting bracket from the die by driving ejector pin or grabbing structure of executing element, the second step is to send the mounting bracket from the die again by another group of executing elements, such as into collecting box, transfer trolley, conveying belt and other equipment, such discharging mode needs two groups of executing elements, and the structure is complicated and the cost is high. UTILITY MODEL CONTENT
[0004] Therefore, the utility model provides a kind of automobile engine ECU mounting bracket mould to solve the technical problem mentioned in the above background art.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of automobile engine ECU mounting bracket mould, including shell, the outer surface one side of shell is equipped with motor, and motor output end is connected with screw rod, the screw rod one side is connected with second movable frame, and strong magnet is installed in second movable frame, the both sides of shell inside are connected with damping slide rail, and the one side of damping slide rail is connected with first movable frame, and the first movable frame is located in the bottom of second movable frame.
[0006] By adopting the technical scheme, when blanking, the staff starts the motor, the motor drives the lead screw to rotate after starting, the second movable frame is displaced towards the lower die, then the bottom of the second movable frame abuts against the first movable frame, so that the second movable frame drives the first movable frame to displace together, the first movable frame and the second movable frame enter the shell, the support body is attracted by the magnetic attraction of the strong magnet, the support body moves upwards to complete the separation work from the lower die, the support body extends out of the outer surface of the shell as the second movable frame continues to displace, then the motor output end drives the lead screw to reverse, the second movable frame retreats, the strong magnet starts to move away from the support body, at the same time, the support body is abutted by the first movable frame and cannot retreat together, the first movable frame is prevented from being pushed by the support body due to the existence of the damping slide rail, then the support body falls due to the gravity as the strong magnet moves away, the second movable frame abuts against the first movable frame to drive the first movable frame to retreat, and the next blanking is prepared.
[0007] Further, the first movable frame is slidably connected with the damping slide rail, and the second movable frame abuts against the first movable frame.
[0008] By adopting the technical scheme, the second movable frame is displaced towards the lower die, then the bottom of the second movable frame abuts against the first movable frame, so that the second movable frame drives the first movable frame to displace together.
[0009] Further, the second movable frame is threadedly connected with the lead screw, and the second movable frame is slidably connected with the shell.
[0010] By adopting the technical scheme, the motor drives the lead screw to rotate after starting, so as to displace the second movable frame, so as to start the blanking work.
[0011] Further, the first movable frame and the second movable frame are both made of aluminum alloy material.
[0012] By adopting the technical scheme, since the first movable frame and the second movable frame are both made of aluminum alloy material, the first movable frame is prevented from being displaced together with the second movable frame due to the attraction of the strong magnet.
[0013] Further, the shell top is provided with a hydraulic cylinder, the hydraulic cylinder output end is connected with an upper die, the shell inside lower part is connected with a lower die, and the lower die top is placed with a support body.
[0014] By adopting the technical scheme, the staff places the punched support body on the lower die top, then the staff starts the hydraulic cylinder, the hydraulic cylinder drives the upper die to move downwards after starting, the upper die moves downwards to press the support body, and the support body is bent into shape in cooperation with the shape of the lower die, then the hydraulic cylinder drives the upper die to move upwards to complete the machining.
[0015] Further, the shell is connected with a receiving plate and a damping spring respectively on one side, and the receiving plate is connected with a roller inside.
[0016] By adopting the above technical scheme, the support body will fall on the receiving plate, at this time the receiving plate is forced to rotate downward to form a slope, and the damping spring will be compressed for buffering, and the silicone wrapped on the surface of the roller will also buffer to avoid the support body from being injured, then the support body will slide downward under the influence of the slope generated by the rotation of the receiving plate and gravity, and the friction between the support body and the receiving plate is reduced by the roller to facilitate stable unloading.
[0017] Further, the roller is provided in plurality, and the plurality of rollers are distributed equidistantly.
[0018] By adopting the above technical scheme, the number of rollers is increased to reduce the contact area between the support body and the receiving plate, so as to reduce the friction between the support body and the receiving plate.
[0019] Further, the surface of the roller is wrapped with a layer of silicone.
[0020] By adopting the above technical scheme, the damping spring will be compressed for buffering, and the silicone wrapped on the surface of the roller will also buffer to avoid the support body from being injured, so as to facilitate stable unloading.
[0021] Further, the receiving plate is rotationally connected with the shell, and the damping spring is rotationally connected with the receiving plate and the shell respectively at two ends.
[0022] By adopting the above technical scheme, the support body will fall on the receiving plate, at this time the receiving plate is forced to rotate downward to form a slope, and the damping spring will be compressed for buffering.
[0023] In summary, the utility model mainly has the following beneficial effects:
[0024] The utility model discloses a motor, screw rod, damping slide rail, first movable frame, second movable frame and strong magnet's setting, when needing to unload, the motor output end drive screw rod rotation makes second movable frame downward mould direction displacement, subsequently second movable frame bottom presses against first movable frame, thereby make second movable frame drive first movable frame together displacement, first movable frame and second movable frame enter the shell, and through the magnetic attraction of strong magnet, hold up the support main part, make support main part upward movement complete and the separation work of lower mould, with second movable frame continues displacement, make support main part from the shell outer surface extension, after the motor output end drive screw rod reverse, make second movable frame back off and make strong magnet start away from support main part, and simultaneously support main part is pressed against first movable frame and cannot back off together, and first movable frame is because the damping slide rail exists greater damping, avoid first movable frame to be pushed by support main part, subsequently because strong magnet's away, make support main part drop under the influence of gravity and complete unloading work, after with second movable frame continues back off, make second movable frame press against first movable frame, thereby drive first movable frame back off, simple structure convenient operation, convenient and fast unloading. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is the structural schematic diagram of the utility model;
[0026] Figure 2 It is the side cross section structural schematic diagram of the utility model;
[0027] Figure 3 It is the first movable frame back structure schematic diagram of the utility model;
[0028] Figure 4 It is the first movable frame structure schematic diagram of the utility model.
[0029] In the drawing: 1, shell;2, hydraulic cylinder;3, upper mould;4, lower mould;5, support main part;6, motor;7, screw rod;8, damping slide rail;9, first movable frame;10, second movable frame;11, strong magnet;12, bearing plate;13, damping spring;14, cylinder. DETAILED DESCRIPTION
[0030] The technical scheme in the embodiments of the utility model will be described clearly and completely below in combination with the drawings of the embodiments of the utility model. The embodiments described below with reference to the drawings are exemplary and are used only for explaining the utility model, and cannot be understood as limiting the utility model.
[0031] The embodiments of the utility model will be described below according to the overall structure.
[0032] Embodiment one:
[0033] A kind of automobile engine ECU mounting support mould, such as Figures 1-4As shown, including the shell 1, the shell 1 outer surface side is provided with motor 6, the output end of motor 6 is connected with lead screw 7, one side of lead screw 7 is connected with second movable frame 10, second movable frame 10 is connected with lead screw 7 by screw thread, second movable frame 10 is connected with shell by sliding, second movable frame 10 is internally provided with strong magnet 11, both sides of shell 1 inside are connected with damping slide rail 8, one side of damping slide rail 8 is connected with first movable frame 9, first movable frame 9 is located at the bottom of second movable frame 10, first movable frame 9 and second movable frame 10 are both made of aluminum alloy material, first movable frame 9 is connected with damping slide rail 8 by sliding, second movable frame 10 is in abutment with first movable frame 9, when discharging, the staff starts motor 6, the output end of motor 6 drives lead screw 7 to rotate after starting to make second movable frame 10 displace towards the direction of lower die 4, then the bottom of second movable frame 10 abuts against first movable frame 9, so that second movable frame 10 drives first movable frame 9 to displace together, after first movable frame 9 and second movable frame 10 enter into shell 1, the magnetic attraction force of strong magnet 11 attracts support main body 5, so that support main body 5 moves upwards to complete the separation work with lower die 4, along with the continuous displacement of second movable frame 10, support main body 5 extends from the outer surface of shell 1, then the output end of motor 6 drives lead screw 7 to reverse, so that second movable frame 10 retreats to make strong magnet 11 start to move away from support main body 5, at the same time, support main body 5 is abutted by first movable frame 9 and cannot retreat together, and first movable frame 9 is prevented from being pushed by support main body 5 due to the existence of large damping of damping slide rail 8, then due to the moving away of strong magnet 11, support main body 5 falls due to the influence of gravity to complete the discharging work, then along with the continuous retreat of second movable frame 10, second movable frame 10 abuts against first movable frame 9, so as to drive first movable frame 9 to retreat, in preparation for the next discharging.
[0034] Referring to Figure 1 and Figure 2 In the above embodiment, the top of shell 1 is provided with hydraulic cylinder 2, the output end of hydraulic cylinder 2 is connected with upper die 3, the inside of shell 1 is connected with lower die 4 below, support main body 5 is placed on the top of lower die 4, the staff places punched support main body 5 on the top of lower die 4, then the staff starts hydraulic cylinder 2, the output end of hydraulic cylinder 2 drives upper die 3 to move downwards after starting, upper die 3 moves downwards to press support main body 5, and cooperates with the shape of lower die 4 to bend support main body 5 into shape, then hydraulic cylinder 2 drives upper die 3 to move upwards to complete the processing.
[0035] Embodiment two:
[0036] On the basis of the above embodiment one, in order to facilitate stable discharging, now through the following settings.
[0037] Referring to Figure 1 and Figure 2In the above embodiment, the shell 1 is connected with the receiving plate 12 and the damping spring 13 on one side respectively, the receiving plate 12 is rotatably connected with the shell 1, the damping spring 13 is rotatably connected with the receiving plate 12 and the shell 1 at both ends respectively, the receiving plate 12 is internally connected with the plurality of rollers 14, the plurality of rollers 14 are equidistantly distributed, the surface of the roller 14 is wrapped with a layer of silica gel, the support body 5 will fall on the receiving plate 12, at this time, the receiving plate 12 is stressed to rotate downward to form an inclined slope, and the damping spring 13 will be compressed to buffer, and the silica gel wrapped on the surface of the roller 14 buffers to avoid the support body 5 from being injured, then the support body 5 will slide downward under the influence of the gravity and the inclined slope generated by the rotation of the receiving plate 12, and the friction between the support body 5 and the receiving plate 12 is reduced through the roller 14, so as to facilitate stable unloading.
[0038] The implementation principle of the utility model is: first, the staff places the punched support body 5 on the top of the lower die 4, then the staff starts the hydraulic cylinder 2, the output end of the hydraulic cylinder 2 drives the upper die 3 to move downward after starting, the upper die 3 moves downward to press the support body 5, and cooperates with the shape of the lower die 4 to bend the support body 5 into shape, then the hydraulic cylinder 2 drives the upper die 3 to move upward to complete processing.
[0039] When unloading, the staff starts the motor 6, the output end of the motor 6 drives the screw rod 7 to rotate to make the second movable frame 10 displace to the direction of the lower die 4, then the bottom of the second movable frame 10 abuts against the first movable frame 9, so that the second movable frame 10 drives the first movable frame 9 to displace together, after the first movable frame 9 and the second movable frame 10 enter the shell 1, the support body 5 is attracted by the magnetic attraction force of the strong magnet 11 to make the support body 5 move upward to complete the separation work from the lower die 4, as the second movable frame 10 continues to displace, the support body 5 extends out of the outer surface of the shell 1, then the output end of the motor 6 drives the screw rod 7 to reverse to make the second movable frame 10 retreat to make the strong magnet 11 start to move away from the support body 5, at the same time, the support body 5 is abutted by the first movable frame 9 and cannot retreat together, and the first movable frame 9 is prevented from being pushed by the support body 5 due to the existence of the damping slide rail 8 with large damping, then the support body 5 is affected by the gravity to fall to complete the unloading work, then as the second movable frame 10 continues to retreat, the second movable frame 10 abuts against the first movable frame 9 to drive the first movable frame 9 to retreat, preparing for the next unloading.
[0040] The support body 5 will fall on the receiving plate 12, at this time, the receiving plate 12 is stressed to rotate downward to form an inclined slope, and the damping spring 13 will be compressed to buffer, and the silica gel wrapped on the surface of the roller 14 buffers to avoid the support body 5 from being injured, then the support body 5 will slide downward under the influence of the gravity and the inclined slope generated by the rotation of the receiving plate 12, and the friction between the support body 5 and the receiving plate 12 is reduced through the roller 14, so as to facilitate stable unloading.
[0041] Although the embodiments of the utility model have been shown and described, the specific embodiments are only the interpretation of the utility model, and are not the limitation of the utility model, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable way, and the person skilled in the art can make the modification, replacement and change of the embodiments without the creative contribution after reading the specification without departing from the principles and purposes of the utility model, but as long as it is in the scope of the claims of the utility model, it is protected by the patent law.
Claims
1. An automobile engine ECU mounting bracket mold comprising a housing (1), characterized in that: The outer shell (1) is provided with a motor (6) on the outer surface, and the output end of the motor (6) is connected with a lead screw (7), one side of the lead screw (7) is connected with a second movable frame (10), and a strong magnet (11) is installed inside the second movable frame (10), both sides of the inside of the outer shell (1) are connected with a damping slide rail (8), one side of the damping slide rail (8) is connected with a first movable frame (9), and the first movable frame (9) is located at the bottom of the second movable frame (10).
2. The automobile engine ECU mounting bracket mold according to claim 1, characterized by: The first movable frame (9) is slidably connected with the damping slide rail (8), and the second movable frame (10) is in abutment with the first movable frame (9).
3. The automobile engine ECU mounting bracket mold according to claim 2, characterized by: The second movable frame (10) is threadedly connected with the lead screw (7), and the second movable frame (10) is slidably connected with the outer shell.
4. The automobile engine ECU mounting bracket mold according to claim 3, characterized by: The first movable frame (9) and the second movable frame (10) are both made of aluminum alloy material.
5. The automobile engine ECU mounting bracket mold according to claim 1, characterized by: The outer shell (1) is provided with a hydraulic cylinder (2) on the top, and the output end of the hydraulic cylinder (2) is connected with an upper die (3), the lower part of the inside of the outer shell (1) is connected with a lower die (4), and the top of the lower die (4) is placed with a support body (5).
6. The automobile engine ECU mounting bracket mold according to claim 5, characterized by: One side of the outer shell (1) is connected with a receiving plate (12) and a damping spring (13), respectively, and the inside of the receiving plate (12) is connected with a roller (14).
7. The automobile engine ECU mounting bracket mold according to claim 6, characterized by: The roller (14) is provided with a plurality of rollers (14), and the plurality of rollers (14) are distributed at equal intervals.
8. The automobile engine ECU mounting bracket mold according to claim 7, characterized by: The surface of the roller (14) is wrapped with a layer of silica gel.
9. The automobile engine ECU mounting bracket mold according to claim 6, characterized by: The receiving plate (12) is rotatably connected with the outer shell (1), and the damping spring (13) is rotatably connected with the receiving plate (12) and the outer shell (1) at both ends.