Hinge system for eyeglasses
A hinge system for eyeglasses, including: a first hinge element, including a first end and a second end, where the first end includes a retention element; and the second end includes a first hole that extends between two opposite faces of the first hinge element; a second hinge element, including an aperture for receiving the first hinge element; and a second hole that extends from a face of the second hinge element to the aperture, where the first and second hinge elements form a hollow cavity; a pin at least partially engaged in the hollow cavity; and a lamellar element, including an aperture, where at least a part of the lamellar element is between the retention element and the second hinge element.
1 . A hinge system for eyeglasses, comprising:
a first hinge element, comprising a first end and a second end, wherein:
the first end comprises retention means for retaining the first hinge element; and
the second end comprises a first hole that extends between two opposite faces of the first hinge element;
a second hinge element, comprising:
an aperture for receiving the first hinge element; and
a second hole that extends from a face of the second hinge element to the aperture,
wherein the first and second hinge elements are configured such that, when the second end of the first hinge element is arranged extending through the aperture of the second hinge element, the first hole and the second hole are axially aligned with respect to each other, thereby forming a hollow cavity extending through the aligned holes;
the hinge system further comprising:
a pin configured to be at least partially engaged in the hollow cavity; and
a lamellar element, comprising an aperture configured for insertion of the second end of the hinge element, wherein when at least a part of the lamellar element is between the retention means and the second hinge element, a surface of the lamellar element is configured to make sliding contact with a periphery of the second hinge element, wherein said surface comprises a surface depression defined in said surface and configured to receive a portion of the periphery of the second hinge element therein;
wherein the periphery of the second hinge element comprises a curved surface extending between two respective end portions and being configured to make sliding contact with the surface of the lamellar element, the periphery of the second hinge element further comprising two lateral sections, wherein the curved surface is arranged between the two lateral sections along the periphery of the second hinge element, and wherein the curved surface is configured such that at least the two end portions of the curved surface protrude from said lateral sections radially with respect to a central axis of the second hole; and
wherein the end portions of the curved surface are configured to form-fit together with the surface depression, such that, when the second hinge element is rotated around the pin and reaches an extended position, one of the end portions is received within the surface depression, and, such that, when the second hinge element is rotated around the pin and reaches a folded position, the other end portion is received within the surface depression.
2 . The hinge system according to claim 1 , wherein the pin is made of a polyamide.
3 . The hinge system according to claim 1 , wherein the lamellar element is an elastic lamellar element made of a polyamide.
4 . The hinge system according to claim 1 , wherein the second hinge element comprises an additional hole for receiving at least partially the pin, wherein the additional hole is configured such that, when the second end of the first hinge element is arranged extending through the aperture of the second hinge element, the first hole, the second hole and the additional hole are axially aligned.
5 . The hinge system according to claim 1 , wherein opposite faces of the first hinge element are substantially parallel to each other, and wherein the retention means are configured as a base comprising at least a part being perpendicular to the opposite faces of the first hinge element.
6 . The hinge system according to claim 1 , wherein the first hinge element further comprises additional retention means configured as one or more protrusions at least partially distributed on a periphery of the first hinge element, wherein said protrusions are configured to point towards the retention means.
7 . The hinge system according to claim 1 , wherein the surface depression is configured as a curved surface having a radius of curvature being smaller than a radius of curvature of a portion of the curved surface being arranged between the two respective end portions of the curved surface.
8 . The hinge system according to claim 7 , wherein the radius of curvature of the curved surface of the surface depression is configured to engage with the end portions of the curved surface.
9 . The hinge system according to claim 1 , wherein the curved surface extends around a central axis of the second hole covering an angle in the range 70 to 110 degrees, or wherein the two lateral sections are at least partially perpendicular to each other.
10 . The hinge system according to claim 1 , wherein the pin comprises a first part and a second part, wherein the first part has a cross-section which is larger than a cross-section of the second part.
11 . The hinge system according to claim 10 , wherein the second hinge element comprises an indentation configured for lodging the first part of the pin.
12 . An eyeglass frame comprising one or two hinge systems according to claim 1 , wherein, for each hinge system, the eyeglass frame comprises:
an aperture configured as a through-hole extending from a front part of the frame to a rear part of the frame, and further configured for inserting the first end and the second end of the respective first hinge element up to the retention means; and
a temple configured to be attached to or be an integral part of the respective second hinge element.
13 . The eyeglass frame according to claim 12 , wherein each aperture further comprises a rear recess arranged in the rear part of the frame and configured to insert at least partially the respective lamellar element, such that the lamellar element is prevented from passing through the respective aperture towards the frontal part of the frame.
14 . The eyeglass frame according to claim 13 , wherein each rear recess and each lamellar element are configured such that, when a lamellar element in received the respective rear recess, said lamellar element is prevented from rotating within said rear recess.
15 . The eyeglass frame according to claim 12 , wherein each aperture further comprises a frontal recess arranged in the frontal part of the frame and configured to insert and contact with the retention means, such that the retention means are prevented from passing through the respective aperture towards the rear part of the frame when the respective first hinge element is inserted through the respective aperture.
16 . A method of assembly of a hinge system according to claim 1 , in an eyeglass frame that comprises:
an aperture configured as a through-hole extending from a front part of the frame to a rear part of the frame, and further configured for inserting the first end and the second end of the respective first hinge element up to the retention means; and
a temple configured to be attached to or be an integral part of the respective second hinge element;
the method comprising the steps of:
inserting the second end of the first hinge element through the aperture of the eyeglass frame;
inserting the second end of the first hinge element through the aperture of the lamellar element;
axially aligning the first and the second hole with respect to each other; and
inserting the pin through the hollow cavity formed by the first hinge element and the second hinge element, in such a way that the pin remains engaged at least partially in the hollow cavity.
17 . The method of assembly according to claim 16 , wherein the aperture of the eyeglass frame comprises a rear recess configured to receive at least partially the lamellar element, the method further comprising fitting the lamellar element in the rear recess, after inserting the second end of the first hinge element through the aperture of the frame.
18 . The method of assembly according to claim 16 , wherein axially aligning the first and the second hole with respect to each other comprises providing a compression force against the surface of the lamellar element.