Slope nail placing mechanism

The automated design of the inclined screw-placement mechanism solves the problems of high labor intensity and low efficiency in manual screw placement, and realizes automated installation and efficient production of screws.

CN223686029UActive Publication Date: 2025-12-19CHONGQING YUHAI PRECISION MFG CO LTD
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Patent Information

Application Number
CN202520106049.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-12-19
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Manually screwing in beveled screws is labor-intensive and inefficient, making it difficult to meet the demands of high-efficiency production.

Method used

The inclined screw-setting mechanism includes a work frame, a linear module, an electrically controlled rotary table, and a pushing mechanism. The housing is installed and limited by guide and limit posts. The position and angle of the screw are adjusted by the linear module and the electrically controlled rotary table. Combined with the pushing mechanism, the screw is installed automatically. The dual-station design improves efficiency.

Benefits of technology

It enables automated screw installation, reduces manual labor intensity, improves production efficiency, has strong applicability, and features a simple and practical structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of inclined plane screw placement, and discloses an inclined plane screw placement mechanism which comprises a working frame, a working station, a linear module, a mounting bracket, an electric control rotating seat, a connecting bracket, a first pushing mechanism, a screw placement seat, a screw placement hole, a second pushing mechanism, a push rod and a guide limiting column. According to the shell nailing device, the two working stations are arranged, when shell nailing work is conducted on one working station, shell feeding and discharging on the other working station can be achieved, screws are added on the screw containing base again, the production efficiency is improved, and the labor intensity of manual nailing is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a bevel nail placing technical field, concretely is a bevel nail placing mechanism. BACKGROUND

[0002] The shell of the notebook computer is usually plastic material, and multiple shells are installed or pre-buried by screws in the corresponding positions during installation and connection. In some special structures of the notebook shell, an inclined nail-embedding structure is adopted, thereby increasing the contact area of the long screw and the shell, ensuring the stability of the overall structure, and reducing the required height for screw installation.

[0003] Due to the difficulty of bevel nail placing, the screw is usually manually placed into the corresponding nail groove of the shell, and then pressed and fixed to prevent the screw from falling off. However, the manual nail placing method has high labor intensity and low efficiency. UTILITY MODEL CONTENTS

[0004] The utility model mainly provides a bevel nail placing mechanism, which solves the problem of high labor intensity and low efficiency of the manual nail placing method.

[0005] To solve the above technical problems, the utility model adopts the following technical solutions:

[0006] The application discloses a slope screw placing mechanism, which comprises a working frame, two working stations are symmetrically arranged on the working frame, a linear module is arranged on the working frame corresponding to each working station, an installation support is arranged on the linear module, the installation support is linearly displaced by the linear module, an electric control rotating seat is arranged on the installation support, a connecting support is arranged on the electric control rotating seat, the connecting support is rotated by the electric control rotating seat, a first pushing mechanism is arranged on the connecting support, a screw placing seat is arranged at the output end of the first pushing mechanism, a screw placing hole is formed in the screw placing seat, a second pushing mechanism is arranged on the screw placing seat corresponding to the position below the screw placing hole, a push rod for pushing the screw in the screw placing hole is arranged at the output end of the second pushing mechanism, and a plurality of guide limiting columns are arranged on the working frame. The electric control rotating seat can adopt any one of prior art technologies as long as the technical principle can be realized. The application has the advantages that the installation and limiting of the shell can be realized through the guide limiting columns, the linear displacement of the installation support and other components can be realized through the linear module, the screw placing position can be adjusted, the rotation of the connecting support and other components can be realized through the electric control rotating seat, the screw placing position can be adjusted, the displacement of the screw placing seat and other components can be realized through the first pushing mechanism, the screw on the screw placing seat can be moved into the screw groove of the shell, then the screw on the screw placing seat is pushed out by the push rod and is pressed on the shell through the second pushing mechanism, the screw is better placed in the shell, the overall screw placing structure is simple and practical, the production efficiency is improved, and the labor intensity of manual screw placing is reduced.

[0007] Further, the first pushing mechanism and the second pushing mechanism both adopt a pushing cylinder. The cylinder has the advantages of simple structure, low cost, easy installation and maintenance, etc.

[0008] Further, the screw placing seat comprises a fixed table, a replacement table is detachably connected to the fixed table, the screw placing hole is formed in the replacement table, a matching hole is formed in the fixed table, the diameter of the matching hole is smaller than that of the screw placing hole, and the push rod is located in the matching hole.

[0009] Further, a plug-in protection cylinder is arranged on the replacement table corresponding to the screw placing hole.

[0010] Further, the working frame is provided with a connecting hole for inserting the guide limiting column. With the structure, the guide limiting column can be disassembled and replaced, so that the shell can be used in cooperation with different shells.

[0011] Benefits: With the structure of the application, the installation and limiting of the shell can be realized through the guide limiting column, the linear displacement of the installation bracket and other components can be driven by the linear module, so that the screw insertion position can be adjusted, the connection bracket and other components can be driven to rotate by the electric control rotating seat, so that the screw insertion inclination angle can be adjusted, the screw placement seat and other components can be displaced by the first pushing mechanism, so that the screw on the screw placement seat is moved into the screw groove of the shell, and then the screw on the screw placement seat is pushed out by the second pushing mechanism and realized on the shell, so that the screw is better placed in the shell. The overall screw insertion structure is simple and practical. At the same time, the application is provided with two working stations, so that when the shell insertion work is carried out in one working station, the shell feeding and discharging can be realized in the other working station, and the screw can be added on the screw placement seat, so that the production efficiency is improved and the labor intensity of manual screw insertion is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a schematic view of the working frame of the embodiment;

[0013] Figure 2 It is a schematic view of the electric control rotating seat of the embodiment;

[0014] Figure 3 It is a schematic view of the electric control rotating seat of the embodiment.

[0015] Reference signs: working frame 1, linear module 2, installation bracket 3, electric control rotating seat 4, connection bracket 5, first pushing mechanism 6, second pushing mechanism 7, push rod 8, guide limiting column 9, fixed table 10, replacement table 11, insertion protection cylinder 12. DETAILED DESCRIPTION

[0016] The inclined surface screw insertion mechanism technical scheme of the utility model will be further described in detail below.

[0017] In the description of the utility model, it should be pointed out that, unless otherwise explicitly specified and limited, the terms "installation", "connection" and "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium; it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0018] For example, Figure 1、 Figure 2 、 Figure 3 As shown in the figure, the inclined surface nail placing mechanism of the embodiment comprises a work frame 1, two work stations are symmetrically arranged on the work frame 1, and a linear module 2 is arranged on the work frame 1 corresponding to each work station; an installation support 3 is arranged on the linear module 2, the installation support 3 is linearly displaced by the linear module 2; an electric control rotating seat 4 is arranged on the installation support 3, a connecting support 5 is arranged on the electric control rotating seat, the connecting support 5 rotates by the electric control rotating seat 4; a first pushing mechanism 6 is arranged on the connecting support 5, a screw placing seat is arranged at the output end of the first pushing mechanism 6, a screw placing hole is formed in the screw placing seat, a second pushing mechanism 7 is arranged on the screw placing seat corresponding to the position below the screw placing hole, and a push rod 8 for pushing the screw in the screw placing hole is arranged at the output end of the second pushing mechanism 7; a plurality of guide limiting columns 9 are arranged on the work frame 1. The first pushing mechanism 6 and the second pushing mechanism 7 both adopt a pushing cylinder. The screw placing seat comprises a fixed table 10, a replacement table 11 is detachably connected to the fixed table 10, the screw placing hole is formed in the replacement table 11, a matching hole is formed in the fixed table 10, the diameter of the matching hole is smaller than the diameter of the screw placing hole, and the push rod 8 is located in the matching hole. A plug-in protection cylinder 12 is arranged on the replacement table 11 corresponding to the screw placing hole. A connecting hole for plug-in of the guide limiting column 9 is arranged on the work frame 1. By adopting the structure of the application, the installation and limiting of the shell can be realized by the guide limiting column 9, the linear displacement of the installation support 3 and other components can be realized by the linear module 2, so as to adjust the screw placing position, the rotation of the connecting support 5 and other components can be realized by the electric control rotating seat 4, so as to adjust the screw placing inclination angle, the displacement of the screw placing seat and other components can be realized by the first pushing mechanism 6, so as to move the screw on the screw placing seat into the shell groove, and then the screw on the screw placing seat is pushed out by the push rod 8 and realized in the shell by the second pushing mechanism 7, so as to better place the screw in the shell. The overall nail placing structure is simple and practical. Meanwhile, two work stations are arranged in the application, when the shell screwing work is carried out in one work station, the shell feeding and discharging in the other work station can be realized, and the screw is added on the screw placing seat again, so as to improve the production efficiency and reduce the labor intensity of manual screwing.

[0019] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A bevel nailing mechanism characterized by: The utility model provides a work frame, the work frame is provided with two work stations symmetrically, and the work frame is provided with a linear module corresponding to each work station, the linear module is provided with a mounting bracket, the mounting bracket is driven by the linear module and linearly displaces, the mounting bracket is provided with an electric control rotating seat, the electric control rotating seat is provided with a connecting bracket, the connecting bracket is driven by the electric control rotating seat and rotates, the connecting bracket is provided with a first push mechanism, the output end of first push mechanism is provided with a screw placing seat, the screw placing seat is provided with a screw placing hole, the second push mechanism is arranged on the screw placing seat corresponding to the position below the screw placing hole, the output end of second push mechanism is provided with a push rod for pushing the screw in the screw placing hole, and the work frame is provided with a plurality of guide limiting columns.

2. The bevel pin setting mechanism of claim 1, wherein: The first push mechanism and the second push mechanism are both push cylinders.

3. The bevel pin setting mechanism of claim 1, wherein: The screw placing seat comprises a fixed table, the fixed table is detachably connected with a replacement table, the screw placing hole is arranged on the replacement table, a matching hole is arranged on the fixed table, the diameter of the matching hole is smaller than the diameter of the screw placing hole, and the push rod is located in the matching hole.

4. The bevel pin setting mechanism of claim 3, wherein: The replacement table is provided with a plug-in protection cylinder corresponding to the screw placing hole.

5. The bevel pin placement mechanism of claim 1, wherein: The work frame is provided with a connecting hole for plug-in of the guide limiting column.