Mobile Phone Clip Assembly With Elastic Positioning for Angle Adjustment
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Solution Overview
Problem
Existing mobile phone clips are cumbersome to assemble and disassemble, require bolt structures that limit angle adjustment, and lack flexibility in use.
Innovation Solution
An assembly structure for a mobile phone clip module utilizing a disc-slot installation method with elastic locating pieces and a magnetic attraction feature, allowing for easy assembly and disassembly, adjustable angles, and enhanced stability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If bolt structures are used to assemble the mobile phone clip, then the assembly is stable and secure, but the assembly and disassembly process becomes troublesome and time-consuming
Solution Approach 1:
The connection mechanism is segmented into a chuck with positioning holes and a corresponding positioning structure on the selfie stick. This segmentation allows for quick snap-fit assembly by aligning the chuck with the positioning holes, eliminating the need for complex bolt structures while maintaining stability through the distributed positioning points.
Solution Approach 2:
The connection mechanism incorporates a rotating component that allows the mobile phone clip to rotate relative to the selfie stick. This dynamic feature enables angle adjustment during operation, transforming a static bolted connection into a dynamic snap-fit system that provides both stability and flexibility.
2Reliability
If bolts are tightened to position the mobile phone clip, then the clip is securely fixed, but the angle of the mobile phone clip cannot be adjusted
Solution Approach 1:
A rotating mechanism is integrated into the connection structure, allowing the mobile phone clip to rotate around the selfie stick axis. The rotation is enabled through a rotating component with positioning features that maintain accuracy at different angles, providing both secure positioning and angle adjustability.
Solution Approach 2:
The positioning system uses multiple positioning holes arranged in different angular positions. By changing which positioning hole is engaged, the orientation parameter of the mobile phone clip is adjusted. This allows discrete angle changes while maintaining secure positioning at each angle.
3Ease of operation
If a simple snap-fit structure is used for assembly, then assembly is convenient and quick, but the assembly stability and reliability are reduced
Solution Approach 1:
The snap-fit structure is segmented into multiple independent positioning holes and corresponding positioning features on the chuck. This segmentation distributes the mechanical load across multiple contact points, enhancing overall stability while maintaining the simplicity and convenience of snap-fit assembly.
Solution Approach 2:
The connection mechanism combines different material properties - the chuck and positioning features use materials with appropriate friction characteristics to maintain secure connection, while incorporating elastic elements that provide both snap-fit convenience and connection reliability through controlled deformation and recovery.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The structure enables convenient assembly and disassembly, flexible angle adjustment, and high stability, with the option for magnetic attachment, enhancing user flexibility.
Implementation Method 1
The first locating piece is stressed by an elastic piece, so that the first locating piece can move elastically
Implementation Method 2
The second locating piece is stressed by an elastic piece, so that the second locating piece can move elastically
Implementation Method 3
The structure can cooperate with the magnetic attraction structure to realize magnetic attraction assembly
Data Source
Figure 1
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AI summary
The present invention provides an assembly structure for a mobile phone clip module. The assembly structure for a mobile phone clip module includes a mobile phone clip body. The back of the mobile phone clip body is provided with a chuck for assembly. The assembly structure for a mobile phone clip module also includes an assembly seat. An assembly cavity for the chuck to enter is formed in the assembly seat. The assembly cavity is internally provided with a first locating piece, and the first locating piece acts on an outer surface of the chuck and applies pressure. The first locating piece is stressed by an elastic piece, so that the first locating piece can move elastically. The assembly cavity is also internally provided with a second locating piece, and the second locating piece acts on the side of the chuck and applies pressure.