Nail suction type screw locking device
By designing a nail-sucking screw payment device, the screw payment of the PCB board and front shell of the vehicle camera is realized by using automation technology, which solves the problems of low efficiency and difficult quality control in traditional manual payment, improves efficiency and quality, and reduces costs.
Patent Information
- Application Number
- CN202421755122.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-23
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-07-23
AI Technical Summary
During the production process of vehicle cameras, traditional manual locking screws are inefficient, difficult to control quality, and high labor costs.
A nail-sucking screw locking device is designed, including main installation components, lifting guide components, auxiliary installation components, screw locking components, etc., and automatic screw locking devices are realized through components such as vacuum generators, down-pressure power cylinders and displacement sensors.
It improves the efficiency and quality of screw lock payment, reduces labor costs, and has a clever design of the device, strong practicality, stable work and easy maintenance.
Smart Images

Figure CN223012417U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of screw locking, in particular to a nail-sucking type screw locking device. Background Art
[0002] On-vehicle cameras, as a safety device on vehicles, play an increasingly important role in modern transportation. On-vehicle cameras are cameras installed on vehicles to capture and record the surrounding environment of the vehicles. Their main functions include: driving record: real-time recording of the pictures during the driving process of the vehicle, providing strong evidence for traffic accidents. Safety assistance: by shooting the pictures of the front, rear, left and right of the vehicle, assisting the driver to observe the blind areas and improving driving safety. Remote monitoring: some on-vehicle cameras support remote viewing and control, facilitating the vehicle owner to understand the vehicle condition at any time.
[0003] During the production process of on-vehicle cameras, it is necessary to lock the PCB board of the on-vehicle camera with the front shell with screws. In the traditional method, a screw gun is held manually to lock the screws. In this process, the screw locking efficiency is low, the locking quality is not easy to control, and the labor cost is high. Therefore, a nail-sucking type screw locking device is designed. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the above problems and design a nail-sucking type screw locking device.
[0005] To achieve the above purpose, the technical solution of the utility model is that a nail-sucking type screw locking device includes a main installation component. A lifting and guiding component is arranged on the main installation component. An auxiliary installation component is arranged on the moving part of the lifting and guiding component. A screw locking component is arranged on the auxiliary installation component. A screw bit is arranged at the output end of the screw locking component. A top installation plate is arranged at the top of the main installation component. A downward pressing power component is arranged on the top installation plate. A bottom installation plate is arranged on one side at the bottom of the main installation component. An installation groove is arranged on the bottom installation plate. A screw sleeve is arranged in the installation groove. A locking component is arranged on the bottom installation plate. A vacuum generator is arranged on the top side part of the main installation component.
[0006] As a further description of the technical solution, the main installation component includes a main installation vertical plate, and the lifting and guiding component is arranged on the main installation vertical plate.
[0007] As a further description of the technical solution, the lifting and guiding component includes a lifting and guiding rail arranged on the main installation component. A lifting slider is arranged on the lifting and guiding rail, and the auxiliary installation component is arranged on the lifting slider.
[0008] As a further description of the present technical solution, the auxiliary installation component includes an auxiliary installation plate frame provided at the moving part of the lowering and guiding component, and a screw locking component is provided on the auxiliary installation plate frame.
[0009] As a further description of the present technical solution, the screw locking component includes a screw gun provided on the auxiliary installation component. A screw bit is provided at the output end of the screw gun, and the screw bit penetrates into a screw sleeve.
[0010] As a further description of the present technical solution, the downward pressing power component includes a downward pressing power cylinder provided on the top installation plate, and the output end of the downward pressing power cylinder is connected to the moving part of the lifting and guiding component.
[0011] As a further description of the present technical solution, the locking component includes a locking plate connected by a pin shaft on the bottom installation plate, and a locking screw connecting the locking plate to the bottom installation plate is provided on the locking plate.
[0012] As a further description of the present technical solution, a side installation plate is provided at the bottom side of the main installation component, and a displacement sensor is provided on the side installation plate.
[0013] The beneficial effects are as follows. The screw locking device of the present technical solution has a clever structural design, strong practicability, stable operation, and is easy to maintain. Using this screw locking device replaces manual screw locking operations on the PCB board and the front shell of the vehicle-mounted camera, effectively improving the screw locking efficiency and the screw locking quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is the overall structural schematic diagram of the present utility model;
[0015] Figure 2 is the overall structural schematic diagram of another perspective of the present utility model;
[0016] Figure 3 is Figure 1 the partial enlarged view of part A in
[0017] In the figure, 1, main installation component; 2, lifting and guiding component; 3, auxiliary installation component; 4, screw locking component; 5, screw bit; 6, top installation plate; 7, downward pressing power component; 8, bottom installation plate; 9, installation groove; 10, screw sleeve; 11, locking component; 12, vacuum generator; 13, main installation vertical plate; 14, lifting and guiding rail; 15, lifting slider; 16, auxiliary installation plate frame; 17, screw gun; 18, downward pressing power cylinder; 19, locking plate; 20, locking screw; 21, side installation plate; 22, displacement sensor. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] First, the design concept of the present utility model will be described. During the production process of in-vehicle cameras, it is necessary to lock the PCB board of the in-vehicle camera to the front shell with screws. In the traditional method, a manual screw gun is used to lock the screws. In this process, the screw locking efficiency is low, the locking quality is not easy to control, and the labor cost is high. Therefore, the present utility model designs a nail-sucking screw locking device.
[0019] The following will specifically describe the present utility model in conjunction with the accompanying drawings. As Figures 1 - 3 shown, a nail-sucking screw locking device includes a main installation component 1. The main installation component 1 will be introduced in detail below. The main installation component 1 includes a main installation vertical plate 13, and a lifting guide component 2 is provided on the main installation vertical plate 13.
[0020] In order to facilitate the lifting of the screw locking component 4, a lifting guide component 2 is provided on the main installation component 1. The lifting guide component 2 will be introduced in detail below. The lifting guide component 2 includes a lifting guide rail 14 provided on the main installation component 1, a lifting slider 15 is provided on the lifting guide rail 14, and an auxiliary installation component 3 is provided on the lifting slider 15.
[0021] In order to facilitate the installation of the screw locking component 4, an auxiliary installation component 3 is provided at the moving part of the lifting guide component 2. The auxiliary installation component 3 will be introduced in detail below. The auxiliary installation component 3 includes an auxiliary installation plate frame 16 provided at the moving part of the descending guide component, and a screw locking component 4 is provided on the auxiliary installation plate frame 16.
[0022] In order to facilitate the locking of the screws, a screw locking component 4 is provided on the auxiliary installation component 3. The screw locking component 4 will be introduced in detail below. The screw locking component 4 includes a screw gun 17 provided on the auxiliary installation component 3, a screw bit 5 is provided at the output end of the screw gun 17, and the screw bit 5 penetrates into the screw sleeve 10.
[0023] A screw bit 5 is provided at the output end of the screw locking component 4. In order to facilitate the installation of the downward pressure power component 7, a top installation plate 6 is provided at the top of the main installation component 1.
[0024] In order to facilitate the provision of power for the lifting of the auxiliary installation component 3, a downward pressure power component 7 is provided on the top installation plate 6. The downward pressure power component 7 will be introduced in detail below. The downward pressure power component 7 includes a downward pressure power cylinder 18 provided on the top installation plate 6, and the output end of the downward pressure power cylinder 18 is connected to the moving part of the lifting guide component 2.
[0025] In order to facilitate the installation of the screw sleeve 10, a bottom installation plate 8 is provided on one side of the bottom of the main installation component 1, an installation groove 9 is provided on the bottom installation plate 8, and a screw sleeve 10 is provided in the installation groove 9.
[0026] To facilitate locking the screw sleeve 10 in the installation groove 9, a locking assembly 11 is provided on the bottom mounting plate 8. The locking assembly 11 will be introduced in detail below. The locking assembly 11 includes a locking plate 19 provided on the bottom mounting plate 8 and connected by a pin shaft. A locking screw 20 connected to the bottom mounting plate 8 is provided on the locking plate 19.
[0027] To facilitate providing a vacuum environment for the screw sleeve 10, a vacuum generator 12 is provided on the top side of the main mounting assembly 1.
[0028] To facilitate the installation of the displacement sensor 22, a side mounting plate 21 is provided on the bottom side of the main mounting assembly 1. To facilitate the feedback of the screw height information, a displacement sensor 22 is provided on the side mounting plate 21.
[0029] The specific structure of the present invention has been described in detail above. The working principle of the present invention will be described below: When the screw sleeve 10 reaches the screw-taking position, after the vacuum generator 12 evacuates the screw sleeve 10, the screw sleeve 10 sucks the screw. Then, after this screwing device moves to the screw-locking position, the pressing power cylinder 18 drives the screw bit 5 to press down and align with the threaded hole. The screw gun 17 is started to drive the bit to lock the screw. After the locking is completed, the displacement sensor 22 feeds back the screw height information. The screw-locking device of this technical solution has a clever structural design, strong practicability, stable operation, and is easy to maintain. Using this screw-locking device replaces manual screw-locking operations on the in-vehicle camera PCB board and the front shell, effectively improving the screw-locking efficiency and the screw-locking quality.
[0030] The above technical solutions only reflect the preferred technical solutions of the technical solutions of the present invention. Some changes that those skilled in the art may make to some parts thereof all reflect the principles of the present invention and are within the protection scope of the present invention.
Claims
1. A nail suction type screw locking device, characterized in that: The invention comprises a main mounting component (1), wherein the main mounting component (1) is provided with a lifting guide component (2), the moving part of the lifting guide component (2) is provided with an auxiliary mounting component (3), the auxiliary mounting component (3) is provided with a screw locking component (4), the output end of the screw locking component (4) is provided with a screwdriver head (5), the top of the main mounting component (1) is provided with a top mounting plate (6), the top mounting plate (6) is provided with a downward pressing power component (7), a bottom mounting plate (8) is provided on one side of the bottom of the main mounting component (1), a mounting groove (9) is provided on the bottom mounting plate (8), a screw sleeve (10) is provided in the mounting groove (9), a locking component (11) is provided on the bottom mounting plate (8), and a vacuum generator (12) is provided on the top side of the main mounting component (1).
2. The nail-absorbing screw locking device according to claim 1, characterized in that: The main installation assembly (1) comprises a main installation vertical plate (13), and a lifting guide assembly (2) is arranged on the main installation vertical plate (13).
3. The nail-absorbing screw locking device according to claim 1, characterized in that: The lifting guide assembly (2) comprises a lifting guide rail (14) arranged on the main installation assembly (1), a lifting slider (15) is arranged on the lifting guide rail (14), and an auxiliary installation assembly (3) is arranged on the lifting slider (15).
4. The nail-absorbing screw locking device according to claim 1, characterized in that: The auxiliary installation component (3) comprises an auxiliary installation plate frame (16) arranged at the moving position of the descending guide component, and a screw locking component (4) is arranged on the auxiliary installation plate frame (16).
5. The nail-absorbing screw locking device according to claim 1, characterized in that: The screw locking assembly (4) comprises a screw gun (17) arranged on the auxiliary mounting assembly (3), the output end of the screw gun (17) is provided with a screwdriver head (5), and the screwdriver head (5) is inserted into a screw sleeve (10).
6. The nail-absorbing screw locking device according to claim 1, characterized in that: The downward pressing power assembly (7) comprises an upward pressing power cylinder (18) arranged on the top mounting plate (6), and the output end of the downward pressing power cylinder (18) is connected to the moving part of the lifting guide assembly (2).
7. The nail-absorbing screw locking device according to claim 1, characterized in that: The locking assembly (11) comprises a locking plate (19) arranged on the bottom mounting plate (8) and connected via a pin shaft, and a locking screw (20) connected to the bottom mounting plate (8) is arranged on the locking plate (19).
8. The nail-absorbing screw locking device according to claim 1, characterized in that: A side mounting plate (21) is arranged on the bottom side of the main mounting assembly (1), and a displacement sensor (22) is arranged on the side mounting plate (21).