Smart Glasses Position Adjusting End Piece for Head Shape Adaptation
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Solution Overview
Problem
Existing smart glasses are not adaptable to different head sizes and shapes, limiting their comfort and usability for various users due to their fixed design.
Innovation Solution
The integration of position adjusting end pieces with controllable bending sections and hinges allows for adjustable tilt and opening angles, enabling the smart glasses to fit more closely to the user's head and accommodate different sizes, improving comfort and applicability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If smart glasses are assembled as a fixed one-piece structure, then manufacturing is simplified, but adaptability to different head sizes and shapes deteriorates
Solution Approach 1:
The smart glasses are divided into multiple separable components: a wearing body, position adjusting end pieces, and hinges. This segmentation allows each component to be independently manufactured and assembled, maintaining manufacturing simplicity while enabling adaptability through adjustable connections between segments.
Solution Approach 2:
The position adjusting end pieces incorporate rotatable joints that allow dynamic adjustment of the glasses' shape and fit. The hinges enable the temples to rotate relative to the wearing body, allowing users to adapt the glasses to different head sizes and shapes while maintaining a relatively simple overall structure.
2Stability of the object's composition
If the front frame design is fixed, then structural stability is improved, but ability to meet diverse wearing needs deteriorates
Solution Approach 1:
The position adjusting end pieces include rotatable joints that allow the front frame to dynamically adjust its position and angle. This enables the frame to adapt to different wearing needs while maintaining structural stability through controlled rotational movement around fixed axes.
Solution Approach 2:
The adjustable end pieces allow changes in geometric parameters such as the angle of the front frame and the position of the temples. By enabling parameter adjustments within certain ranges, the design maintains structural stability while adapting to diverse wearing requirements.
3Strength
If smart glasses cannot be disassembled, then structural integrity is maintained, but adjustability for different users deteriorates
Solution Approach 1:
The smart glasses are designed with separable components connected by joints and connection structures. This segmentation allows the glasses to be disassembled and reassembled in different configurations, providing adjustability for different users while maintaining structural integrity through proper connection design.
Solution Approach 2:
The hinges and connection structures enable dynamic adjustment and reconfiguration of the glasses. Users can disassemble and reassemble the components to adapt the fit for different head sizes and shapes, while the connection structures ensure structural integrity is maintained during both adjusted and fixed states.
Data Source
AI summary
Smart glasses and position adjusting end piece thereof are provided. The smart glasses include: a wearing body provided with a connecting wire, wherein two ends of the connecting wire extend out of two sides of the wearing body respectively; position adjusting end pieces installed on the two sides of the wearing body, which can be rotated around a first direction relative to the wearing body within a first angle range and maintained at any position within the first angle range, and further can be rotated around a second direction relative to the wearing body within a second angle range and maintained at any position within the second angle range; and hinges installed on an end of the position adjusting end pieces away from the wearing body and are electrically connected to the connecting wire. The smart glasses can fine-tune the shape and adjust the size of the whole smart glasses.


