Anti-Rotation Assembly Structure for Stable Object Locking
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Solution Overview
Problem
Existing methods for combining objects often result in unstable and loose connections due to structural design limitations, particularly with buckles, which fail to provide a firm and secure attachment.
Innovation Solution
An assembling method for an anti-rotation structure that includes an anti-rotation portion, a material entering portion, and a pressure applying portion, where external pressure is applied to ensure the object's material enters and is secured within the structure, with a prevention portion to prevent material overflow and a connecting portion for additional stability, such as threaded or fastening mechanisms.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If buckles are used to combine objects, then the combining process is simple, but the connection becomes unstable and loose
Solution Approach 1:
The anti-rotation structure is divided into multiple functional portions: a material entering portion for receiving object material, a prevention portion for preventing material escape, and an anti-rotation portion for preventing rotational movement. This segmentation allows each portion to perform its specific function effectively, achieving both ease of combination and connection stability.
Solution Approach 2:
The anti-rotation structure is disposed within the object, with the material entering portion receiving material from the object and the prevention portion containing the material within the structure. This nested arrangement ensures the structure is firmly combined with the object while maintaining stability.
2Ease of operation
If material is allowed to flow freely into the structure, then the combining process is simple, but material may overflow or extrude causing instability
Solution Approach 1:
The prevention portion is specifically designed with different properties than other portions of the anti-rotation structure. This prevention portion is configured to prevent material from flowing out, protruding, or extruding, while allowing material to enter through the material entering portion. This local differentiation ensures proper material containment without restricting the overall combining process.
3Reliability
If the anti-rotation structure is added to prevent rotation, then connection stability is improved, but the structural complexity increases
Solution Approach 1:
The anti-rotation structure is designed to perform multiple functions simultaneously: it combines objects together, prevents rotational movement, and contains material within its structure. By integrating these functions into a single structure, the patent avoids the need for separate components for each function, thereby reducing overall structural complexity while maintaining anti-rotation capability.
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 method achieves a stable and secure combination of the anti-rotation structure with the object, preventing material leakage and ensuring effective anti-rotation, thereby enhancing the structural integrity and stability of the connection.
Implementation Method 1
the pressure is applied to the pressure applying portion, so that the pressure applying portion is deformed to be limited or engaged at the object
Data Source
AI summary
An assembling method of an anti-rotation structure is introduced, the anti-rotation structure includes at least one anti-rotation portion, a material entering portion and a pressure applying portion, pressure is applied to the pressure applying portion by an external force, so that material of an object enters or flows into the material entering portion, and the anti-rotation portion is used to anti-rotate with the object. Accordingly, the anti-rotation structure and the required object can achieve the effect of a stable combination.


