A new eyeglasses temple
By combining the central axis with the rotating component, the problem of the traditional eyeglass temple structure being too simple and complicated to assemble is solved, achieving effortless rotation and diverse viewing options, while reducing manufacturing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LINHAI WEISHI GLASSES CO LTD
- Filing Date
- 2025-12-12
- Publication Date
- 2026-07-24
AI Technical Summary
Traditional eyeglass temples have a simple structure, are cumbersome to assemble, inconvenient to use, and have a high cost.
It adopts a combination structure of central shaft and rotating parts, and realizes the effortless rotation of rotating parts through the rotation limit structure, and realizes the detachable and replaceable temples of the glasses through the plug-in design of the central shaft.
It achieves a simple structure, convenient use, and low cost for the temples of glasses, and provides a variety of aesthetic options.
Smart Images

Figure CN224553607U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of eyeglasses technology and relates to a novel eyeglass temple. Background Technology
[0002] Traditional eyeglass temples are generally a one-piece structure, including the temple body. The front end of the temple body is connected to the frame via a hinge. The temple and the frame are relatively fixed and have a limited range of styles.
[0003] In response to the above situation, a variety of eyeglass temples with diverse aesthetic appeal have emerged on the market, such as the eyeglass temple assembly described in Chinese Patent No. 201220418843.X, which is easy to disassemble and replace. Its specific structure includes a connector connected to the frame, an eyeglass temple body, and a hinge mechanism. It includes a pivot fixedly mounted on one end of the connector, a pivot seat fixedly mounted on the connecting end of the eyeglass temple body, and an elastic element. The pivot seat has an opening for insertion of the connector end and the pivot, and a pair of sidewalls for positioning the pivot. Each of the opposite surfaces of the sidewalls has a pivot positioning recess and a pivot guide groove formed by a groove. One end of the pivot guide groove connects to the positioning recess, and the other end extends to the opening of the pivot seat. The pivot guide groove is non-linear. The elastic element is located in the pivot seat and elastically abuts against the connector, giving the pivot a force that allows it to slide towards the positioning recess.
[0004] The structure described above mainly consists of a pivot, a pivot seat, and an elastic element. The pivot seat has an opening for inserting the end of the connector and the pivot, and a pair of sidewalls for positioning the pivot. Each of the opposite surfaces of the sidewalls has a pivot positioning recess and a pivot guide groove formed by a groove. The elastic element is located in the pivot seat. Assembling the elastic element is relatively troublesome and costly. Furthermore, the elastic elements are symmetrical and opposite to each other. When the pivot rotates on the pivot seat, the elastic elements deform relative to each other simultaneously, which requires a strong external force and is inconvenient to use. Summary of the Invention
[0005] The purpose of this invention is to address the aforementioned problems in the existing technology by providing a new type of eyeglass temple with a simple structure, effortless rotation of the rotating component, and convenient use.
[0006] The objective of this utility model can be achieved through the following technical solution: a novel eyeglass temple, comprising an eyeglass temple body and a connector for connecting an eyeglass frame, wherein a hinge seat is provided at the front end of the eyeglass temple body and the eyeglass temple body is hinged to the connector via the hinge seat, characterized in that a rotating member is provided between the eyeglass temple body and the hinge seat, and a rotation limiting structure is provided between the rotating member and the eyeglass temple body, wherein the rotating member is limited to rotate within the eyeglass temple body by the provided rotation limiting structure.
[0007] In the aforementioned novel eyeglass temple, a central shaft is provided between the temple body and the hinge seat. The rotating component has a hollow structure, and the central shaft passes through the rotating component and is movably engaged with it. The front end of the central shaft is fixed to the hinge seat located at the front end of the temple body, and the rear end of the central shaft is detachably connected to the temple body.
[0008] In the aforementioned novel temple design for eyeglasses, the rotation limiting structure includes a central axis that is bent and arched at its midpoint to form a support portion. When the rotating component rotates circumferentially around the central axis, this support portion abuts against the inner wall of the rotating component to limit its rotation. The outer wall of the support portion and the rotating component also make elastic contact.
[0009] In the aforementioned novel temple of eyeglasses, the abutment portion of the central axis is flat and elastic. When the abutment portion is used to limit the rotation of a rotating component, it makes elastic surface-to-surface contact with the inner wall of the rotating component. Under the action of external force, the rotating component rotates on the central axis. When the abutment portion and the inner wall of the rotating component make elastic contact, the position is limited. Further external force needs to be applied to make the rotating component rotate on the central axis. During the rotation, the abutment portion elastically deforms.
[0010] In the aforementioned novel temple design, the edges of the abutment portion are rounded. This design facilitates rotation of the rotating component when it contacts the abutment portion on the central axis, making it easier to use.
[0011] In the aforementioned novel eyeglass temple, the rotating component is a polygonal tubular profile. Alternatively, a square tubular profile can be used. The square outer wall of the rotating component can be made of different colors or engraved with different patterns.
[0012] In the aforementioned novel temple design for eyeglasses, connecting plates are provided at both ends of the rotating component. The connecting plates have shaft holes. The front end of the central shaft passes through the shaft hole in the connecting plate at the front end of the rotating component and connects to a hinge seat. The rear end of the central shaft passes through the shaft hole in the connecting plate at the rear end of the rotating component and extends outwards from the rotating component. The connecting plates and the rotating component are fixed by welding. The shaft holes are adapted to the central shaft. This design effectively prevents axial movement of the central shaft and the rotating component.
[0013] In the aforementioned novel type of eyeglass temple, a blind hole is provided on the temple body, and the rear end of the central shaft extends out of the rotating component, with the extended end inserting into the blind hole of the temple body and forming a plug-in fit. This design facilitates the replacement of the temple body by plugging it into the rear end of the central shaft, allowing for different temple bodies to provide different aesthetic appeal, and making replacement and maintenance convenient.
[0014] Compared with existing technologies, the design structure of this new type of eyeglass temple is relatively simple. The rotation of the rotating part is limited by the elastic contact between the central shaft and the inner wall of the rotating part through the bending and arching of the central shaft. Different replacements of the rotating part can be used to give the eyeglass temple a variety of aesthetic purposes. The assembly of the rotating part and the central shaft is relatively simple and the manufacturing cost is low, making it worthy of promotion. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the temple of this new type of eyeglasses.
[0016] Figure 2 This is a three-dimensional structural diagram of the explosion of the temple of this new type of eyeglasses.
[0017] Figure 3 This is a three-dimensional structural diagram of the exploded rotating component and central shaft in the temple of this novel eyeglasses.
[0018] In the figure, 1 is the temple body; 2 is the connector; 3 is the hinge seat; 4 is the rotating part; 5 is the central shaft; 6 is the abutment part; 7 is the connecting plate; and 8 is the shaft hole. Detailed Implementation
[0019] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.
[0020] like Figure 1 , Figure 2 and Figure 3 As shown, the temple of this novel eyeglasses mainly consists of a temple body 1 and a connector 2 for connecting the eyeglass frame; the front end of the temple body 1 is provided with a hinge seat 3 and the temple body 1 is hinged to the connector 2 through the hinge seat 3; a rotating part 4 is provided between the temple body 1 and the hinge seat 3. The rotating part 4 is a hollow structure, and the rotating part 4 is generally made of a polygonal tubular profile, with a quadrilateral tubular profile structure being the best; different colors or different patterns can be provided on the outer wall of the rotating part 4.
[0021] In actual manufacturing, a central shaft 5 is provided between the temple body 1 and the hinge seat 3. The central shaft 5 passes through the rotating part 4 and is movably engaged with the rotating part 4. The rotating part 4 rotates on the central shaft 5. The outer wall of the rotating part 4 is displayed on different sides of the temple, which increases the variety and aesthetic appeal of the temple.
[0022] In actual manufacturing, a rotation limiting structure is provided between the rotating component 4 and the temple body 1. The rotating component 4 is limited to rotate within the temple body 1 by the rotation limiting structure. The specific implementation of this rotation limiting structure is as follows: a bend and arch is formed at the center of the central shaft 5 to create abutment 6. When the rotating component 4 rotates circumferentially around the central shaft 5, the abutment 6 abuts against the inner wall of the rotating component 4 to limit its rotation. The abutment 6 of the central shaft 5 is flat and elastic. When the abutment 6 is used to limit the rotation of the rotating component 4, it makes elastic surface-to-surface contact with the inner wall of the rotating component 4. The edges of the abutment 6 are rounded.
[0023] In actual manufacturing, the two ends of the rotating part 4 are provided with connecting plates 7, and the connecting plates 7 are provided with shaft holes 8. The front end of the central shaft 5 passes through the shaft hole 8 of the connecting plate 7 at the front end of the rotating part 4 and is connected to the hinge seat 3. The rear end of the central shaft 5 passes through the shaft hole 8 of the connecting plate 7 at the rear end of the rotating part 4 and extends to the outside of the rotating part 4. The eyeglass temple body 1 is provided with a blind hole. The rear end of the central shaft 5 extends out of the rotating part 4, and the extended end is inserted into the blind hole of the eyeglass temple body 1 and forms a plug-in fit with the eyeglass temple body 1.
[0024] Although this document frequently uses terms such as temple body 1, connector 2, hinge seat 3, rotating part 4, central shaft 5, abutment 6, connecting plate 7, and shaft hole 8, the possibility of using other terms is not excluded. These terms are used merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.
[0025] Contents not described in detail herein are existing technologies known to those skilled in the art. The specific embodiments described herein are merely illustrative examples illustrating the spirit of this invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this invention or exceeding the scope defined by the appended claims.
Claims
1. A novel type of eyeglass temple, comprising an eyeglass temple body (1) and a connector (2) for connecting to an eyeglass frame, wherein the front end of the eyeglass temple body (1) is provided with a hinge seat (3) and the eyeglass temple body (1) is hinged via the hinge seat (3) and the connector (2), characterized in that, A rotating component (4) is provided between the temple body (1) and the hinge seat (3), and a rotation limiting structure is provided between the rotating component (4) and the temple body (1). The rotating component (4) is rotated and limited on the temple body (1) by the rotation limiting structure.
2. The novel temple of eyeglasses according to claim 1, characterized in that, A central shaft (5) is provided between the temple body (1) and the hinge seat (3). The rotating part (4) has a hollow structure. The central shaft (5) passes through the rotating part (4) and is in movable cooperation with the rotating part (4).
3. The novel temple of eyeglasses according to claim 2, characterized in that, The rotation limiting structure includes a bend and arch at the middle position of the central shaft (5) to form abutment (6). When the rotating part (4) rotates around the central shaft (5) in the circumferential direction, the abutment (6) abuts against the inner wall of the rotating part (4) to limit the rotation of the rotating part (4).
4. The novel temple of eyeglasses according to claim 3, characterized in that, The abutment part (6) of the central shaft (5) is flat and elastic. When the abutment part (6) is used to limit the rotation of the rotating part (4), the abutment part (6) and the inner wall of the rotating part (4) make elastic abutment contact with each other.
5. A novel eyeglass temple according to claim 4, characterized in that, The edges of the abutment part (6) are rounded.
6. A novel eyeglass temple according to claim 1, 2, 3, 4, or 5, characterized in that, The rotating component (4) is a polygonal tubular profile.
7. A novel eyeglass temple according to claim 6, characterized in that, The rotating component (4) is provided with connecting plates (7) at both ends. The connecting plates (7) are provided with shaft holes (8). The front end of the central shaft (5) passes through the shaft hole (8) of the connecting plate (7) at the front end of the rotating component (4) and is connected to the hinge seat (3). The rear end of the central shaft (5) passes through the shaft hole (8) of the connecting plate (7) at the rear end of the rotating component (4) and extends to the outside of the rotating component (4).
8. A novel eyeglass temple according to claim 6, characterized in that, The temple body (1) of the eyeglasses has a blind hole, and the rear end of the central shaft (5) extends out of the rotating part (4), and the extended end is inserted into the blind hole of the temple body (1) and forms a plug-in fit with the temple body (1).