Display Quick-Release Buckle Structure With Magnetic Positioning
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Solution Overview
Problem
Existing quick-release structures for displays require numerous components, leading to high production costs and are prone to errors in positioning, causing instability and potential damage or injury, with conventional buckles arranged on the circumferential side being abrupt and inconvenient.
Innovation Solution
A quick-release structure featuring a stand with a top base and support frame, incorporating a first and second buckle ring system with magnetic attraction for stable positioning, and a linkage member for rotational control, reducing component count and enhancing safety by arranging buckles on the side for easier assembly and disassembly.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Strength
If conventional locking structures are used to connect display and stand, then connection strength is improved, but assembly and disassembly time increases significantly
Solution Approach 1:
The patent employs a dynamic locking mechanism where the locking component can transition between locked and unlocked states through rotational movement. The locking component includes a locking end that engages with the positioning groove, and when rotated, it releases the display from the stand. This dynamic design allows quick assembly and disassembly while maintaining strong connection during use.
Solution Approach 2:
The patent replaces complex multi-component locking mechanisms with a simplified rotational locking system. Instead of using multiple pins, springs, and buckles as seen in prior art, this invention uses a single locking component that rotates to engage or disengage from a positioning groove, significantly reducing assembly complexity and time.
2Productivity
If multiple small components are used in quick-release structures, then assembly speed is improved, but production cost increases and device complexity increases
Solution Approach 1:
The patent merges multiple functional components into a single integrated locking component. This component combines the functions of locking, positioning, and releasing into one element that rotates to perform all these functions. The locking component includes a locking end, a rotating body, and engagement features, all integrated into a single piece rather than requiring separate pins, springs, and buckles.
Solution Approach 2:
The locking component serves multiple functions simultaneously: it provides mechanical locking through engagement with the positioning groove, enables quick release through rotational movement, and maintains structural integrity during both locked and unlocked states. This multi-functional design reduces the total number of components needed in the quick-release mechanism.
3Ease of operation
If pin or steel ball plus spring positioning structure is used, then rotational positioning is achieved, but manufacturing precision requirements increase and positioning accuracy decreases
Solution Approach 1:
The patent incorporates a pre-formed positioning groove in the stand structure that guides the locking component into the correct rotational position. The groove is designed with specific geometry that automatically positions the locking component accurately during assembly, eliminating the need for high-precision manufacturing of multiple positioning elements and reducing assembly complexity.
4Ease of operation
If buckle is arranged on circumferential side for quick assembly, then assembly convenience is improved, but safety decreases and damage risk increases
Solution Approach 1:
Instead of placing the locking mechanism on the circumferential edge where it would be exposed and vulnerable, the patent positions the locking component internally within the stand structure. The locking end engages with a positioning groove that is recessed into the stand, protecting the locking mechanism from external damage while maintaining quick assembly capability through rotational operation.
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 solution reduces production costs, enhances stability and safety by using magnetic attraction for precise positioning, and facilitates easy assembly and disassembly while preventing damage and injury, with the buckle arrangement on the side improving usability.
Implementation Method 1
incorporating a first and second buckle ring system with magnetic attraction for stable positioning
Data Source
AI summary
The present invention provides a quick-release structure for a display, comprising a stand, a first buckle ring and a second buckle ring. The stand includes a top base, and the top base is connected with a side of a top end of a support frame, where the top base has a front cover and a rear cover that cover oppositely each other. A clamping space is provided between the front cover and the rear cover, and the front cover has an outer periphery having a plurality of notches. The first buckle ring, accommodated and limited in the clamping space in a manner that the first buckle ring can be restored after being rotated, where the first buckle ring is provided with a pushing portion passed through the first limiting hole to push the first buckle ring to be rotated.


