Flexible hinge structure of mirror temples

TWM686532UActive Publication Date: 2026-08-11HWA MEEI OPTICAL CO LTD
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Patent Information

Application Number
TW115205117
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-06-04
Publication Date
2026-08-11
Estimated Expiration
2036-06-03

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    Figure TWG2TB001906459_003
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Abstract

This invention provides a flexible hinge structure for the temples of eyeglasses, mainly comprising a temple body, a pivot seat, and a cantilever. The pivot seat is pivotally connected to the eyeglass frame, and the cantilever is connected between the temple body and the pivot seat. A dynamic compensation space is provided between the cantilever and the side wall of the temple body, allowing the temple body to expand outwards again along the dynamic compensation space with the cantilever as a fulcrum after it is unfolded, making it suitable for different head sizes and improving wearing comfort.
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Claims

1. A flexible hinge structure for the temple of a mirror, mainly comprising: A single-shot script body, with a limiting surface set at its front; The device includes a cantilever with its fixed end connected to the base of the eyeglasses and its free end having a pivot seat for pivotal connection to the eyeglass frame. The cantilever is separated from the side wall of the base of the eyeglasses by a dynamic compensation space, allowing the base of the eyeglasses to expand outwards a second time along the dynamic compensation space with the cantilever as a fulcrum after it is unfolded. When the secondary expansion reaches a preset safety value, the limiting surface generates structural interference to limit the excessive deformation of the cantilever.

2. The temple elastic hinge structure as described in claim 1, wherein the structure interferes with the limiting surface contacting the eyeglass frame.

3. The temple elastic hinge structure as described in claim 1, wherein the pivot seat is provided with a groove for a pivot portion of the eyeglass frame to be pivotally engaged.

4. The resilient hinge structure of the temple as described in claim 1, wherein the cantilever extends integrally from the inside of the temple body.

5. The temple elastic hinge structure as described in claim 1, wherein a contact surface is formed on one side of the pivot seat, and the contact surface abuts against the eyeglass frame body after the temple body is unfolded.

6. The resilient hinge structure of the mirror temple as described in claim 1, wherein the thickness of the cantilever is less than the thickness of the mirror temple body.

7. The elastic hinge structure of the temple as described in claim 1, wherein one end of the cantilever is provided with a base with a cross-sectional area larger than that of the cantilever, and the base is connected to the temple body.