Eyeglasses for quickly attaching or detaching an accessory device
Patent Information
- Application Number
- TW114115341
- Authority / Receiving Office
- TW · TW
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2025-02-21
- Filing Date
- 2025-04-23
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2045-04-22
AI Technical Summary
Conventional magnetic components on eyeglasses are aesthetically conspicuous, prone to detachment, and compromise the appearance and functionality due to their exposed placement on the frame surfaces, making quick setup or disassembly of expansion devices challenging.
A magnetic attachment system is integrated into the eyeglass frames with concealed magnetic components, utilizing recesses and hinges to secure expansion devices magnetically while maintaining a sleek appearance, featuring a locking mechanism that ensures reliable attachment and easy installation/removal.
The solution provides a quick and reliable method for attaching and detaching expansion devices like secondary frames or microelectronic components, enhancing the aesthetic appeal and functionality by hiding the magnetic components, thus improving the overall user experience.
Smart Images

Figure TWG2TA001074171_001 
Figure TWG2TA001074171_002 
Figure TWG2TA001074171_003
Abstract
Description
Glasses for quick setup or disassembly of the extension device This work is about a type of eyeglasses, specifically an eyeglasses that can be magnetically attached and disassembled for quick installation or removal of expansion devices. The common way to wear glasses is to place the front frame, that is, the bridge connecting the two lens rings, on the bridge of the wearer's nose, and then place the temples, which extend from the left and right ends, on the left and right ears, so that the bridge of the nose and the left and right ears form a stable three-point positioning. In particular, the end pieces on both sides have sufficient load-bearing strength and placement space, making them very suitable for setting third-party devices, such as secondary frames or expansion devices such as microelectronic devices. However, in order to generate sufficient magnetic force for each magnetic component, current magnetic devices place the magnetic components in holes on the front, top, and bottom surfaces of the end piece on the outside of the frame and embed the magnetic components therein. The magnetic surface of the magnetic component makes direct contact with the corresponding magnetic position of the secondary frame to generate sufficient attraction to cope with the same level of vibration kinetic energy. In addition, the area of the magnetic component needs to have a certain size and cannot be too small. Therefore, the exposed magnetic surface of the magnetic component needs to occupy a conspicuous proportion in the frame, so that after the secondary frame is removed, the position of the magnetic component is very conspicuous and abrupt, which greatly affects the aesthetics. Furthermore, the conventional magnetic components on the surface of the eyepieces are mostly glued on, and the exposed magnetic components are mostly open structures. After a period of use, the magnetic components are very easy to detach and fall off, causing the eyeglasses to lose their magnetic function. In view of this, the existing technology is currently unable to meet the above requirements and there is a real need for improvement. The purpose of this invention is to provide glasses that allow for quick setup or disassembly of the extension device, thereby overcoming the shortcomings of previous technologies. Another objective of this invention is to provide eyeglasses that allow for quick setup or disassembly of the expansion device, while providing magnetic attachment to the eyeglass frame while maintaining the perfect appearance of the eyeglasses. Another objective of this invention is to provide glasses that allow for quick setup or disassembly of the expansion device, using a material structure as a locking mechanism in the magnetic attraction direction of its magnetic field lines, which can improve the reliability of the magnetic connection. Another objective of this invention is to provide eyeglasses with a quick-installation or removal of an expansion device. The mounting structure on the eyeglasses can be equipped with a hidden magnetic attraction device at the end of the lens. A magnet or metal is provided at the position of the expansion device corresponding to the magnetic attraction device, which can be attracted by the magnetic attraction device, thus forming a quick-installation / removal function. To achieve the above and other objectives, this invention provides a pair of eyeglasses for quick setup or disassembly of an expansion device, comprising: a pair of end pieces disposed on the two outer sides of a front frame, each end piece having a recess on a first surface facing one of the wearers, and the recess not penetrating a second surface of the end piece opposite the first surface, the first surface and the second surface being connected by an end face, the recess extending to the end face and forming an end face opening, the recess having a plate, the plate having a mounting base and a through hole; a pair of magnetic elements, each embedded in the mounting base; and a pair of hinges, each having a head end and a tail end, the head end having a cover plate, the tail end having a hinge portion pivotally connected to a temple; wherein the cover plate of each hinge corresponds to and fits into the recess, concealing the magnetic element, and is fixed to the through hole of the plate by a screw. In one embodiment, the head end of the hinge is provided with a cover plate and a sealing plate. When the screw is screwed into the through hole of the layer plate, the sealing plate seals the end face opening. There is a gap between the bottom surface of the layer plate and the recess. The sealing plate of the hinge also has an insert. After the screw passes through the cover plate and the through hole of the layer plate, the cover plate is screwed into the insert to fix the hinge to the layer plate. At the same time, the sealing plate seals the end face opening and the insert is inserted into the end face opening. In one embodiment, the magnetic element has a top surface and a bottom surface. When the magnetic element is embedded in the recess, the bottom surface abuts against the bottom surface of the recess. The magnetic lines of force of the magnetic element are perpendicular to the top surface and the bottom surface, and the top surface and the bottom surface are parallel to the first surface and the second surface, respectively. In one embodiment, the magnetic element has a magnetic attraction surface and a side surface that is perpendicular to and connected to the magnetic attraction surface. When the magnetic element is inserted into the recess, the side surface abuts against the bottom surface of the recess. The magnetic lines of force of the magnetic element are perpendicular to the magnetic attraction surface, and the magnetic attraction surface is parallel to an upper surface connecting the first and second surfaces of the end piece. In one embodiment, an expansion device is further included, which has a functional part and a connecting part. The connecting part is made of a magnetic material or a material that can be adsorbed onto a magnetic substance. The connecting part is magnetically attracted to the area with magnetic lines of force corresponding to the magnetic element on the top surface and / or the bottom surface, forming a magnetic fixation. In one embodiment, the functional part of the expansion device includes an eyeglass sub-frame structure. In one embodiment, the functional part of the expansion device includes a miniature camera lens or a miniature projector. 10: Front frame 20: End piece 21: First Page 211: Recessed seat 212: Sheet 213,213': Mounting bracket 214: Through hole 22: Second page 23: End face 231: End face opening 24: Upper surface 30,30': Magnetic component 31: Top surface 32: Bottom 33: Magnetic surface 34: Side view 40: Hinges 41: Head end 411: Cover plate 412: Sealing plate 413: Insert 42: Tail end 50: Screws 60: Temples D: Expansion Device D1: Functional Department D2: Connecting part S: Interval Figure 1 is a three-dimensional exploded view of one embodiment of this invention. Figure 2 is a perspective view of the assembled embodiment of Figure 1. Figure 3 is a perspective view of the front side of the eyeglasses frame in the embodiment of Figure 2. Figure 4 is a rear view of the front frame and magnetic components after assembly in the embodiment of Figure 1. Figure 5 is a sectional view of the AA section line in Figure 4 after the transition. Figure 6 is a sectional view of the BB section line in Figure 4 after the transition. Figure 7 is a schematic diagram of the secondary frame expansion device of an embodiment of the glasses of this invention, showing the front and rear views before and after installation. Figure 8 is a rear view schematic diagram of an embodiment of the glasses of this invention after the secondary frame expansion device is installed; Figure 9 is a schematic diagram of the microelectronic device expansion device of an embodiment of the glasses of this invention, viewed before and after the installation of the expansion device. Figure 10 is a rear-view schematic diagram of an embodiment of the glasses of this invention after the expansion device of the microelectronic device is installed; Figure 11 is an exploded perspective view of the glasses with magnetic components mounted vertically and the expansion device for the microelectronic device in this invention. Figure 12 is a three-dimensional exploded view of another embodiment of this invention. Figure 13 is a perspective view of the assembled embodiment of Figure 12. Figure 14 is a rear view of the front frame and magnetic components after assembly in the embodiment of Figure 12. Figure 15 is a sectional view of the CC section line in Figure 14 after the transition. Figure 16 is a transitional sectional view of the DD section line in Figure 14. Figure 17 is an exploded perspective view of the magnetic glasses mounted horizontally and the expansion device of the microelectronic device in this invention. The following examples illustrate possible implementations of this invention, but are not intended to limit the scope of protection sought by this invention. To make the objectives, features, and advantages of this invention readily apparent, preferred embodiments will be described in detail below with accompanying drawings. Figure 1 is an exploded perspective view of an embodiment of the present invention; Figure 2 is a perspective view of the assembled embodiment of Figure 1; Figure 3 is a perspective view of the front side of the front frame of the glasses in the embodiment of Figure 2; Figure 4 is a rear view of the front frame and magnetic components in the embodiment of Figure 1 after assembly; Figure 5 is a sectional view of section line AA in Figure 4; and Figure 6 is a sectional view of section line BB in Figure 4. Please refer to Figures 1-6. The embodiments of the glasses with quick-set or disassembled expansion devices shown in Figures 1-6 include: a pair of end pieces 20, a pair of magnetic components 30, and a pair of hinges 40. The pair of end pieces 20 are disposed on the two outer sides of a front frame 10. Each end piece 20 has a first surface 21 facing the wearer and a second surface 22 facing away from the first surface 21. The first surface 21 is provided with a recess 211, and the recess 211 does not penetrate the second surface 22. The first surface 21 and the second surface 22 are connected by an end face 23. The recess 211 extends to the end face 23 and forms an end face opening 231. In other words, the recess 211 is slotted to the end face 23. The recess 211 is provided with a plate 212, and the plate 212 is provided with a mounting base 213 and a through hole 214. Each of the magnetic components 30 is embedded in the mounting base 213; Each of the hinges 40 has a head end 41 and a tail end 42. The head end 41 is provided with a cover plate 411, and the tail end 42 has a hinge portion that can be pivotally connected to a temple 60. After the temple 60 is pivotally connected, the temple 60 can swing its end around the hinge portion. According to the above structure, the cover plate 411 of each hinge 40 corresponds to and fits into the recess 211 (preferably, the outer contour of the cover plate 411 is exactly consistent with the recess 211), and shields the magnetic element 30, and is fixed to the through hole 214 of the layer plate 212 with a screw 50. Preferably, in the above embodiment, there is a gap S between the bottom surface of each layer plate 212 and each recess 211. In another embodiment, the head end (41) may be provided with a sealing plate (412) in addition to the cover plate (411). When the screw (50) is screwed and fixed in the through hole (214) of the layer plate (212), the sealing plate (412) can seal the end face opening (231). The sealing plate 412 of each hinge 40 also has an insert 413 (as shown by the imaginary line in Figure 1). After the screw 50 passes through the cover plate 411 and the through hole 214 of the layer plate 212, the cover plate 411 is screwed onto the insert 413 to clamp and screw the hinge 40 to the layer plate 212. At the same time, the sealing plate 412 seals the end face opening 231 and the insert 413 is inserted into the end face opening 231 and embedded in the gap S. Preferably, the magnetic element 30 has a top surface 31 and a bottom surface 32. When the magnetic element 30 is inserted into the recess 211, the bottom surface 32 abuts against the bottom surface of the recess 211. The magnetic lines of force of the magnetic element 30 are perpendicular to the top surface 31 and the bottom surface 32, and the top surface 31 and the bottom surface 32 are parallel to the first surface 21 and the second surface 22, respectively, as shown in FIG5. Figure 12 is an exploded perspective view of another embodiment of the present invention; Figure 13 is a perspective view of the assembled embodiment of Figure 12; Figure 14 is a rear view of the front frame and magnetic components of the embodiment of Figure 12 after assembly; Figure 15 is a sectional view of the CC section line of Figure 14 after transfer; and Figure 16 is a sectional view of the DD section line of Figure 14 after transfer. Please refer to Figures 12-16. In this embodiment, the magnetic component 30' is horizontally mounted, and its magnetic attraction surface is on the upper surface 24 of the end piece 20 of the front frame 10. This is different from the magnetic attraction surface of the vertically mounted magnetic component 30 in the previous embodiment, which has a first surface 21 and a second surface 22. The magnetic component 30' has a magnetic attraction surface 33 and a side surface 34 that is perpendicular to and connected to the magnetic attraction surface 33. When the magnetic component 30' is inserted into the recess 211, the side surface 34 abuts against the bottom surface of the recess 211. The magnetic lines of force of the magnetic component 30' are perpendicular to the magnetic attraction surface 33, and the magnetic attraction surface 33 is parallel to the upper surface 24 connecting the first surface 21 and the second surface 22 of the end piece 20. It is worth mentioning that this invention may further include an expansion device D, which has a functional part D1 and a connecting part D2. The connecting part D2 is made of a magnetic material or a material that can be attracted to a magnetic substance. The connecting part D2 is magnetically attracted to the area with magnetic lines of force corresponding to the magnetic element (30) on the first surface 21 and / or the second surface 22, forming a magnetic fixation on the front and / or back of the end piece 20. In another embodiment, the connecting portion D2 is magnetically attracted to the region with magnetic lines of force on the upper surface 24 corresponding to the magnetic element 30', forming a magnetic fixation on the upper surface of the end piece 20. Figure 11 is an exploded perspective view of the vertically mounted magnetic glasses and the expansion device for a microelectronic device of this invention, and Figure 17 is an exploded perspective view of the horizontally mounted magnetic glasses and the expansion device for a microelectronic device of this invention. Referring to Figures 11 and 17, preferably, the functional part D1 of the expansion device D includes a glasses sub-frame structure, a miniature camera lens structure, and a miniature projector structure, but is not limited to those mentioned above. Any electronic device with various functions developed in the future, as long as it is equipped with the connecting part D2 structure, can be quickly mounted or detached from the glasses of this invention. In summary, this invention utilizes a magnetic support and positioning structure formed by three stable points on the bridge of the nose and the left and right ears (i.e., on the end pieces) to allow for quick installation or removal of magnetically attached expansion devices. The magnetic components are completely concealed after assembly, leaving no trace of their assembly on the end piece surface, thus enhancing the overall aesthetics and sophistication of the glasses. The above embodiments are merely for illustrating the technical ideas and features of this invention. Their purpose is to enable those skilled in this art to understand the content of this invention and implement it accordingly. They should not be used to limit the patent scope of this invention. All equivalent changes or modifications made in accordance with the spirit of this invention and the contents of the specification should be covered within the patent scope of this invention. 10: Front frame 20: End piece 21: First Page 211: Recessed seat 212: Sheet 213: Mounting bracket 214: Through hole 22: Second page 23: End face 231: End face opening 30: Magnetic components 31: Top surface 32: Bottom 40: Hinges 41: Head end 411: Cover plate 412: Sealing plate 413: Insert 42: Tail end 50: Screws 60: Temples S: Interval
Claims
1. A pair of glasses for quick setup or disassembly of an extension device, comprising: A pair of end pieces (20) are disposed on the two outer sides of a front frame (10). Each end piece (20) has a recess (211) on one of the first surfaces (21) facing the wearer. The recess (211) does not pass through the second surface (22) of each end piece (20) facing away from the first surface (21). The first surface (21) and the second surface (22) are connected by an end face (23). The recess (211) extends to the end face (23) and forms an end face opening (231). A plate (212) is disposed inside the recess (211). A mounting seat (213) and a through hole (214) are disposed on the plate (212). A pair of magnetic elements (30) are embedded in each of the mounting bases (213); and A pair of hinges (40) each have a head end (41) and a tail end (42), the head end (41) is provided with a cover plate (411), and the tail end (42) has a hinge portion that can pivotally connect to a temple (60). in, The cover plate (411) of each hinge (40) corresponds to and fits into the recess (211), shielding the magnetic element (30), and is screwed and fixed to the through hole (214) of the layer plate (212) with a screw (50). As described in claim 1, the glasses allow for quick setup or disassembly of the extension device, wherein... The head end (41) of the hinge (40) is provided with a cover plate (411) and a sealing plate (412). When the screw (50) is screwed and fixed in the through hole (214) of the layer plate (212), the sealing plate (412) seals the end face opening (231). There is a gap (S) between the bottom surface of each layer plate (212) and each recess (211), and the sealing plate (412) of each hinge (40) The cover plate (411) is screwed to the insert (413) after the screw (50) passes through the through hole (214) of the cover plate (411) and the layer plate (212), so as to fix the hinge (40) to the layer plate (212). At the same time, the sealing plate (412) seals the end face opening (231) and the insert (413) is inserted into the end face opening (231). Glasses for quick setup or disassembly of the extension device as described in claim 1 or 2, wherein... The magnetic element (30) has a top surface (31) and a bottom surface (32). When the magnetic element (30) is inserted into the recess (211), the bottom surface (32) abuts against the bottom surface of the recess (211). The magnetic lines of force of the magnetic element (30) are perpendicular to the top surface (31) and the bottom surface (32), and the top surface (31) and the bottom surface (32) are parallel to the first surface (21) and the second surface (22), respectively. Glasses for quick setup or disassembly of the extension device as described in claim 1 or 2, wherein... The magnetic component (30') has a magnetic attraction surface (33) and a side surface (34) that is perpendicular to and connected to the magnetic attraction surface (33). When the magnetic component (30') is inserted into the recess (211), the side surface (34) abuts against the bottom surface of the recess (211). The magnetic lines of force of the magnetic component (30') are perpendicular to the magnetic attraction surface (33), and the magnetic attraction surface (33) is parallel to an upper surface (24) connecting the first surface (21) and the second surface (22) of the end piece (20). The glasses for quick setup or disassembly of the expansion device as described in claim 3 further include an expansion device (D) having a functional part (D1) and a connecting part (D2). The connecting part (D2) is made of a magnetic material or a material that can be attracted to a magnetic substance. The connecting part (D2) is magnetically attracted to the area with magnetic lines of force corresponding to the magnetic element (30) on the first surface (21) and / or the second surface (22) to form a magnetic fixation. The glasses for quick setup or disassembly of the expansion device as described in claim 4 further include an expansion device (D) having a functional part (D1) and a connecting part (D2). The connecting part (D2) is made of a magnetic material or a material that can be attracted to a magnetic substance. The connecting part (D2) is magnetically attracted to the area with magnetic lines of force on the upper surface (24) corresponding to the magnetic element (30') to form a magnetic fixation. As described in claim 5, the glasses allow for quick setup or disassembly of the extension device, wherein... The functional part (D1) of the expansion device (D) includes a secondary eyeglass frame structure. As described in claim 6, the glasses allow for quick setup or disassembly of the extension device, wherein... The functional part (D1) of the expansion device (D) includes a secondary eyeglass frame structure. As described in claim 5, the glasses allow for quick setup or disassembly of the extension device, wherein... The functional part (D1) of the expansion device (D) includes a miniature camera or a miniature projector. As described in claim 6, the glasses allow for quick setup or disassembly of the extension device, wherein... The functional part (D1) of the expansion device (D) includes a miniature camera or a miniature projector.