Circuit board extrusion device
By designing a movable processing table and positioning system in the circuit board extrusion device, the problem of limited operating space in the extrusion mechanism is solved, enabling convenient placement and efficient extrusion of circuit boards.
Patent Information
- Application Number
- CN202421960130.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-08-13
AI Technical Summary
In traditional circuit board extrusion equipment, the extrusion mechanism restricts the operator's free operating space on the processing table, making it inconvenient to adjust the position of the circuit board.
Design a circuit board extrusion device with a movable processing table. Through the cooperation of the processing table, positioning block and positioning spring that are slidably connected on the base, the processing table can be precisely positioned and moved, ensuring that the circuit board is placed in a position that is not interfered with by the extrusion mechanism.
It improves the efficiency of circuit board placement and adjustment, simplifies operation steps, and ensures the accuracy of position and the stability of processing during the extrusion of circuit boards.
Smart Images

Figure CN223528281U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of circuit board processing equipment, and particularly relates to a circuit board extruding device. BACKGROUND
[0002] A conventional circuit board extruding device generally comprises a base and a processing table. The processing table is located below an extruding mechanism, and a circuit board is placed below the processing table and extruded by the extruding mechanism. When placing the circuit board on the processing table, the processing table is located below the extruding mechanism, and the circuit board is generally placed between the extruding mechanism and the processing table during extrusion. At this time, the action of placing the circuit board is limited by the extruding mechanism, and the circuit board can only be placed from both sides. This leads to the fact that the circuit board is easily interfered by the extruding mechanism during the process of being placed and adjusted, thereby increasing the complexity and time cost of operation. In particular, the existence of the extruding mechanism limits the free operation space of an operator on the processing table, and makes it inconvenient to adjust the position of the circuit board.
[0003] To solve the problem that the extruding mechanism limits the free operation space of an operator on the processing table and makes it inconvenient to adjust the position of the circuit board, it is necessary to design a circuit board extruding device with a movable processing table. When the circuit board needs to be placed on the processing table, the processing table can be moved to a position not interfered by the extruding mechanism, so as to solve the above problem. CONTENT OF THE UTILITY MODEL
[0004] Therefore, it is necessary to provide a circuit board extruding device with a movable processing table to solve the above problem.
[0005] Embodiments of the present application provide a circuit board extruding device, comprising:
[0006] a base;
[0007] a processing table, which is slidingly connected to the base, and is provided with a positioning groove;
[0008] a positioning block, which is arranged on the base, and is elastically connected to the base through a positioning spring, the positioning spring pushes the positioning block into the positioning groove to be clamped with the processing table;
[0009] an extruding mechanism, which is opposite to the processing table when the positioning block is in the positioning groove, and extends into the processing table to extrude the circuit board.
[0010] In at least one embodiment of the present application, the sliding direction of the processing table is recorded as a first direction, and the extension direction of the positioning spring is recorded as a second direction, the second direction being perpendicular to the first direction.
[0011] In at least one embodiment of the present application, the base is provided with a first sliding table, the processing table is provided with a first sliding groove, the first sliding table is slidingly connected in the first sliding groove, and the processing table slides along the length direction of the first sliding table.
[0012] In at least one embodiment of the present application, the processing table is detachably connected with a first sliding block, and the first sliding groove is provided on the first sliding block.
[0013] In at least one embodiment of the present application, the first sliding block is bolted with the processing table.
[0014] In at least one embodiment of the present application, the extrusion mechanism comprises a motor, an extrusion plate drivingly connected with the motor, and a guide rod provided on the extrusion plate and slidingly connected with the base, and the motor drives the extrusion plate to move along the length direction of the guide rod towards the processing table.
[0015] In at least one embodiment of the present application, the base is provided with a protective shell, the extrusion mechanism is provided on the protective shell, the processing table slides into the protective shell, the positioning block enters the positioning groove for positioning, and the extrusion mechanism extrudes the circuit board in the processing table.
[0016] In at least one embodiment of the present application, the processing table is provided with a handle, and a pushing force is applied to the handle to push the processing table to slide.
[0017] In at least one embodiment of the present application, the base is provided with a second sliding groove, the positioning block is slidingly connected with the second sliding groove, and the length direction of the second sliding groove is parallel to the second direction.
[0018] In at least one embodiment of the present application, the base has a bottom surface, the processing table and the extrusion mechanism are located on one side of the bottom surface, the bottom surface is provided with a damping block, the damping block is arranged away from the extrusion mechanism, and the damping block protrudes from the base.
[0019] The circuit board extrusion device provided above can move the processing table to a position not interfered by the extrusion mechanism when the circuit board needs to be placed on the processing table, and the positioning block is provided to ensure the accuracy of the position of the processing table during processing, so that the extrusion mechanism of the circuit board can ensure the accuracy of extrusion, thereby solving the problem that the extrusion mechanism limits the free operation space of the operator on the processing table, and making it inconvenient to adjust the position of the circuit board. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a structure perspective view of the circuit board extrusion device when the positioning block is located in the positioning groove.
[0021] Figure 2 is a structural perspective view of the circuit board extruding device when the positioning block is located in the positioning slot;
[0022] Figure 3 is a front view of the circuit board extruding device when the positioning block is located in the positioning slot;
[0023] Figure 4 is a sectional view A-A of Figure 3 ;
[0024] Figure 5 is a structural perspective view of the circuit board extruding device after the processing platform moves out of the protection slot;
[0025] Figure 6 is a structural perspective view of the circuit board extruding device after the processing platform moves out of the protection slot;
[0026] Figure 7 is a front view of the circuit board extruding device after the processing platform moves out of the protection slot;
[0027] Figure 8 is a sectional view B-B of Figure 7 ;
[0028] Main component symbol explanation
[0029] 100, circuit board extruding device; 1, base platform; 11, first sliding platform; 12, protection shell; 13, second sliding slot; 14, bottom surface; 2, processing platform; 21, positioning slot; 22, first sliding block; 221, first sliding slot; 23, handle; 3, positioning block; 4, extruding mechanism; 41, motor; 42, extruding plate; 43, guide rod; 5, positioning spring; 6, shock absorbing block. DETAILED DESCRIPTION
[0030] The embodiments of the present application will be described below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of, but not all of the embodiments of the present application.
[0031] It should be noted that when one component is considered to be "connected" to another component, it can be directly connected to the other component or can exist with a middle component. When one component is considered to be "provided on" another component, it can be directly provided on the other component or can exist with a middle component. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and the like used herein are for illustrative purposes only.
[0032] The embodiments of the present application provide a circuit board extruding device, comprising:
[0033] base platform;
[0034] A processing table is slidingly connected to the base table, and a positioning groove is formed in the processing table.
[0035] A positioning block is arranged on the base table, and a positioning spring is arranged between the positioning block and the base table. The positioning block is elastically connected to the base table through the positioning spring, and the positioning spring pushes the positioning block into the positioning groove to be clamped with the processing table.
[0036] When the positioning block enters the positioning groove, the extrusion mechanism is right opposite to the processing table, and the extrusion mechanism extends into the processing table to extrude the circuit board. The circuit board extrusion device provided above is a circuit board extrusion device with a movable processing table. When the circuit board needs to be placed on the processing table, the processing table can be moved to a position not interfered by the extrusion mechanism. The positioning block is arranged to ensure the accuracy of the position of the processing table during processing. The extrusion mechanism of the circuit board can ensure the accuracy of extrusion, thereby solving the problem that the extrusion mechanism limits the free operation space of the operator on the processing table, and making it inconvenient to adjust the position of the circuit board.
[0037] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.
[0038] Please refer to Figures 1-8 The embodiment of the present application provides a circuit board extrusion device 100, which comprises a base table 1, a processing table 2, a positioning block 3 and an extrusion mechanism 4. The processing table 2 is slidingly connected to the base table 1, and a positioning groove 21 is formed in the processing table 2. The positioning block 3 is arranged on the base table 1, and a positioning spring 5 is arranged between the positioning block 3 and the base table 1. The positioning block 3 is elastically connected to the base table 1 through the positioning spring 5, and the positioning spring 5 pushes the positioning block 3 into the positioning groove 21 to be clamped with the processing table 2. When the positioning block 3 enters the positioning groove 21, the extrusion mechanism 4 is right opposite to the processing table 2, and the extrusion mechanism 4 extends into the processing table 2 to extrude the circuit board.
[0039] Specifically, the base 1 provides a stable base platform to support the operation of the entire device. It ensures the stability and safety of the device, preventing vibration or displacement during operation. The processing table 2 serves as a work platform for placing circuit boards and can slide on the base 1. Through the sliding connection, the position of the processing table 2 can be easily adjusted, facilitating the placement and removal of circuit boards and improving work efficiency. The positioning groove 21 provides an accurate positioning structure that works with the positioning block 3. It ensures that the processing table 2 can be accurately positioned after sliding to the predetermined position, avoiding positional deviation and ensuring processing accuracy. The positioning block 3 cooperates with the positioning groove 21 to achieve precise positioning of the processing table 2. It provides stable positioning effect, making the processing table 2 remain stationary during the extrusion process, improving the stability and accuracy of processing. The positioning spring 5 provides elastic force to push the positioning block 3 into the positioning groove 21. It ensures that the positioning block 3 can quickly enter the positioning groove 21, achieving fast and accurate positioning, simplifying the operation steps and improving work efficiency. The extrusion mechanism 4 extrudes the circuit board after the positioning block 3 enters the positioning groove 21. It provides stable extrusion force for effective processing of the circuit board, ensuring processing quality.
[0040] In a specific example, the sliding direction of the processing table 2 is referred to as the first direction, and the extension direction of the positioning spring 5 is referred to as the second direction, which is perpendicular to the first direction.
[0041] Specifically, the sliding direction of the processing table 2 (first direction) is the path or direction of the processing table 2 moving on the base 1. It can be understood as the direction of the processing table 2 sliding from one position to another. In the actual device, the processing table 2 may slide in the X-axis direction or horizontal plane, depending on the design of the base 1. This direction is to enable the processing table 2 to move to the appropriate position for processing. The extension direction of the positioning spring 5 (second direction) is the direction along which the positioning spring 5 works during compression and extension. The positioning spring 5 usually works in a direction perpendicular to the sliding direction of the processing table 2, possibly in the Y-axis or Z-axis direction. This is to automatically pop into the positioning groove 21 when the processing table 2 slides to the correct position, achieving the fixation of the processing table 2. The extension direction of the positioning spring 5 is perpendicular to the sliding direction of the processing table 2, meaning they form a 90-degree angle in three-dimensional space. The sliding of the processing table 2 and the positioning of the positioning block 3 are independent and complementary. The processing table 2 can slide freely, while the positioning spring 5 ensures fixation when in the correct position. The design of the perpendicular direction enables the positioning block 3 to quickly enter the positioning groove 21 after the processing table 2 moves into position, ensuring the stability and accuracy of the processing table 2.
[0042] Further, the operator or automatic system pushes the processing table 2 to slide on the base table 1. The sliding direction is the first direction, for example, along the length direction of the base table 1. When the processing table 2 slides to the predetermined position, the positioning slot 21 is just aligned with the positioning block 3. The positioning spring 5 extends in the second direction, pushing the positioning block 3 into the positioning slot 21. After the positioning block 3 enters the positioning slot 21, the sliding of the processing table 2 in the first direction stops, keeping a fixed state. The positioning spring 5 ensures that the positioning block 3 maintains a certain pressure in the positioning slot 21, preventing the processing table 2 from moving.
[0043] In a specific example, the base table 1 is provided with a first sliding table 11, and the processing table 2 is provided with a first sliding slot 221, the first sliding table 11 is slidingly connected in the first sliding slot 221, and the processing table 2 slides along the length direction of the first sliding table 11.
[0044] Specifically, the first sliding table 11 is a fixed sliding structure installed on the base table 1, which is usually a long strip-shaped guide rail or slide rail. A stable and precise track is provided to enable the processing table 2 to slide in a predetermined direction. The first sliding slot 221 is a slot provided on the processing table 2, which is usually matched in shape and size with the first sliding table 11 to facilitate sliding connection. The first sliding slot 221 is used to accommodate the first sliding table 11, enabling the processing table 2 to slide along the first sliding table 11. The connection between the first sliding table 11 and the first sliding slot 221 is usually achieved by mechanical cooperation to realize sliding connection. It ensures that the processing table 2 can slide smoothly along the first sliding table 11, while providing necessary guidance and support. The main extension direction of the first sliding table 11 is also the sliding direction of the processing table 2. The sliding path of the processing table 2 is determined to enable it to move in a predetermined direction on the base table 1.
[0045] In a specific example, the processing table 2 is detachably connected with a first sliding block 22, and the first sliding slot 221 is provided on the first sliding block 22.
[0046] Specifically, the first sliding block 22 is an additional component attached to the machining table 2, which usually contains a sliding groove for cooperating with the sliding table. The sliding groove is provided to enable the machining table 2 to slide along the sliding table. The detachable design makes it convenient to install and remove the first sliding block 22, facilitating maintenance, replacement, or adjustment.
[0047] In a specific example, the first sliding block 22 is bolted to the machining table 2.
[0048] Specifically, the first sliding block 22 is an additional component attached to the machining table 2, which usually contains a sliding groove for cooperating with the sliding table. The sliding groove is provided to enable the machining table 2 to slide along the sliding table. The detachable design makes it convenient to install and remove the first sliding block 22, facilitating maintenance, replacement, or adjustment.
[0049] In a specific example, the extrusion mechanism 4 includes a motor 41, an extrusion plate 42 in transmission connection with the motor 41, and a guide rod 43 provided on the extrusion plate 42 and in sliding connection with the base table 1. The motor 41 drives the extrusion plate 42 to move along the length direction of the guide rod 43 towards the machining table 2.
[0050] Specifically, the motor 41 is a powered device, usually an electric motor. It drives the extrusion plate 42 to move through the transmission system. It provides a stable and controllable power source, making the extrusion operation efficient and precise. The extrusion plate 42 is a flat plate connected to the motor 41 through the transmission system, used for the extrusion operation of the circuit board. Under the drive of the motor 41, it slides along the guide rod 43 and applies extrusion force. By precisely controlling the extrusion force, the processing quality is improved. The guide rod 43 is a long rod installed on the base 1, located on the extrusion plate 42, used to guide the movement of the extrusion plate 42. It provides a sliding path for the extrusion plate 42, ensuring the direction and stability of the movement. It provides a stable sliding track to avoid the extrusion plate 42 deviating during the movement. The sliding connection is the connection between the guide rod 43 and the extrusion plate 42, allowing the extrusion plate 42 to slide along the guide rod 43. It ensures that the extrusion plate 42 can move smoothly and accurately along the guide rod 43. It improves the smoothness and precision of the extrusion process.
[0051] In a specific example, the base 1 is provided with a protective shell 12, the extrusion mechanism 4 is arranged on the protective shell 12, the processing table 2 slides into the protective shell 12, the positioning block 3 enters the positioning groove 21 for positioning, and the extrusion mechanism 4 extrudes the circuit board in the processing table 2.
[0052] Specifically, the base 1 is the foundation of the device, used to support and fix other components. It provides a stable foundation to ensure the normal operation of other components. It provides stability and support to ensure the overall stability of the device. The protective shell 12 is a protective cover that covers the key parts of the device. It protects the extrusion mechanism 4 and other internal components from the external environment, and prevents the operator from contacting the moving parts, improving safety. It improves the safety of the device, prolongs the service life of the device, and reduces the damage of the external environment to the device. The extrusion mechanism 4 includes the motor 41, the extrusion plate 42, and the guide rod 43, etc., used for the extrusion operation of the circuit board. Under the drive of the motor 41, the extrusion plate 42 moves along the length direction of the guide rod 43 to extrude the circuit board. It realizes efficient and precise extrusion of the circuit board, improving the processing quality. The processing table 2 is a workbench used to place and fix the circuit board. It supports the circuit board and provides a stable working surface during processing. It ensures that the circuit board is stable during the extrusion process, improving the processing accuracy. The positioning block 3 is installed on the base 1, and the positioning groove 21 is opened on the processing table 2. When the processing table 2 slides into the protective shell 12, the positioning block 3 enters the positioning groove 21 to position the processing table 2. It ensures that the processing table 2 is fixed in the predetermined position, improving the accuracy and consistency of the processing.
[0053] In a specific example, the processing table 2 is provided with a handle 23, and a pushing force is applied to the handle 23 to push the processing table 2 to slide.
[0054] Specifically, the processing table 2 is a workbench for placing and fixing circuit boards. A stable work surface is provided to support and fix circuit boards for extrusion operations. It ensures that the circuit board remains stable during processing, improving processing accuracy. The handle 23 is a handle fixed on the processing table 2, used for manually pushing the processing table 2. By manually applying a pushing force, it is convenient for the operator to push the processing table 2 along the sliding rail. Increase the convenience of operation, so that the operator can easily and accurately move the processing table 2. The operator applies force through the handle 23 to push the processing table 2 along the sliding rail. By manually controlling the movement of the processing table 2, precise control of the position of the processing table 2 is achieved.
[0055] In a specific example, the base 1 is provided with a second sliding groove 13, and the positioning block 3 is in sliding connection with the second sliding groove 13, and the length direction of the second sliding groove 13 is parallel to the second direction.
[0056] Specifically, the base 1 is the basic part of the equipment, used to support and fix other components. A stable foundation is provided to ensure the normal operation of other components. Provide stability and support to ensure the overall stability of the equipment. The second sliding groove 13 is a guide groove provided on the base 1 for guiding the sliding of the positioning block 3. Allow the positioning block 3 to slide on the base 1, thereby positioning the processing table 2. Provide an accurate sliding path to ensure the stability and accuracy of the sliding of the positioning block 3. The positioning block 3 is a block structure installed on the base 1 for positioning the processing table 2. By sliding into the positioning groove 21 on the processing table 2, the positioning of the processing table 2 is achieved. Ensure that the processing table 2 is fixed in place to improve the accuracy and consistency of processing. The sliding connection is the connection mode of the positioning block 3 sliding through the second sliding groove 13. Allow the positioning block 3 to slide in the second sliding groove 13 in order to position the processing table 2. Provide a smooth sliding path to ensure smooth and accurate movement of the positioning block 3. The second direction is the extension direction of the positioning spring 5. Ensure that the positioning block 3 slides in a specific direction on the base 1. Provide a clear sliding direction to improve the accuracy and consistency of positioning.
[0057] In a specific example, the base 1 has a bottom surface 14, and the processing table 2 and the extrusion mechanism 4 are located on one side of the bottom surface 14, and the bottom surface 14 is provided with a damping block 6, the damping block 6 is arranged away from the extrusion mechanism 4, and the damping block 6 protrudes from the base 1.
[0058] Specifically, the base 1 is the foundation of the device, used to support and fix other components. Provides a stable foundation, ensuring the normal operation of other components. Provides stability and support, ensuring the stability of the device as a whole. The bottom surface 14 is the bottom surface of the base 1. Support the processing table 2 and the extrusion mechanism 4, and serve as the surface for installing the shock-absorbing block 6. Provide a solid foundation to ensure the stable installation of the processing table 2 and the extrusion mechanism 4. The processing table 2 is a workbench for placing and fixing circuit boards. Provides a stable working surface to support and fix circuit boards for extrusion operations. Ensure the stability of the circuit board during processing, improve processing accuracy. The extrusion mechanism 4 is a mechanism for extruding circuit boards, usually including components such as motor 41, extrusion plate 42, and guide rod 43. Extrude the circuit board through mechanical force to achieve processing requirements. Provide strong extrusion force to ensure effective extrusion and shaping of the circuit board. The shock-absorbing block 6 is a shock-absorbing device installed on the bottom surface 14 of the base 1. Absorb and alleviate the vibration generated during processing, protect the device and circuit board. Reduce the impact of vibration on the device and circuit board, prolong the service life of the device, and improve the processing quality. The shock-absorbing block 6 is installed away from the extrusion mechanism 4, which is set away from the extrusion mechanism 4. Maximize the reduction of vibration transmission to the extrusion mechanism 4, improve the stability of the extrusion operation. Improve the stability and accuracy of the extrusion operation, ensure the processing quality. The shock-absorbing block 6 protrudes from the bottom surface 14 of the base 1, which is set to protrude from the bottom surface 14 of the base 1. Provide effective shock-absorbing effect to ensure that the shock-absorbing block 6 can fully play its role in the vibration transmission process. Provide better shock-absorbing effect to protect the device and circuit board from vibration.
[0059] The above is only an embodiment of the present application, and it should be noted that those skilled in the art can make improvements without departing from the inventive concept of the present application, but these are within the scope of protection of the present application.
Claims
1. A circuit board pressing apparatus characterized by comprising: Include: Base; Processing platform, the processing platform is slidingly connected to the base, the processing platform is provided with a positioning slot; Positioning block, the positioning block is provided on the base, the positioning block and the base are provided with a positioning spring, the positioning block is elastically connected with the base through the positioning spring, the positioning spring pushes the positioning block into the positioning slot and engages with the processing platform; Extrusion mechanism, when the positioning block enters the positioning slot, the extrusion mechanism is opposite to the processing platform, the extrusion mechanism extends into the processing platform to extrude the circuit board; The base is provided with a protective shell, the extrusion mechanism is arranged on the protective shell, the processing platform slides into the protective shell, the positioning block enters the positioning slot for positioning, and the extrusion mechanism extrudes the circuit board in the processing platform.
2. The circuit board pressing apparatus according to claim 1, wherein The sliding direction of the processing platform is recorded as the first direction, the extension direction of the positioning spring is recorded as the second direction, and the second direction is perpendicular to the first direction.
3. The circuit board press apparatus of claim 2, wherein The base is provided with a first sliding table, the processing platform is provided with a first sliding slot, the first sliding table is slidingly connected in the first sliding slot, and the processing platform slides along the length direction of the first sliding table.
4. The circuit board press apparatus of claim 3, wherein The first sliding block is detachably connected to the processing platform, and the first sliding slot is formed in the first sliding block.
5. The circuit board press apparatus of claim 4, wherein The first sliding block and the processing platform are bolted.
6. The circuit board press apparatus of claim 1, wherein The extrusion mechanism includes a motor, an extrusion plate drivingly connected with the motor, and a guide rod provided on the extrusion plate and slidingly connected with the base, the motor drives the extrusion plate to move along the length direction of the guide rod towards the processing platform.
7. The circuit board press apparatus of claim 1, wherein The processing platform is provided with a handle, and the processing platform is pushed to slide by applying a pushing force to the handle.
8. The circuit board press apparatus of claim 2, wherein The base is provided with a second sliding slot, the positioning block is slidingly connected with the second sliding slot, and the length direction of the second sliding slot is parallel to the second direction.
9. The circuit board press apparatus of claim 6, wherein The base has a bottom surface, the processing platform and the extrusion mechanism are located on one side of the bottom surface, the bottom surface is provided with a damping block, the damping block is arranged away from the extrusion mechanism, and the damping block protrudes from the base.