MAGNETICALLY ASSISTED DOUBLE SAFETY LID LOCKING. GLASSES CASE WITH FUNCTION
Patent Information
- Application Number
- TR202613383U
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-08-07
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2036-08-07
Smart Images

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Abstract
Description
1 TARIFF MAGNETICALLY ASSISTED DOUBLE SAFETY LID LOCKING. GLASSES CASE WITH FUNCTION Technological Field: The invention relates to the technical field of personal accessories and portable protective equipment. and specifically for the safe transport and storage of eyeglasses. the closure mechanisms used in eyeglass cases increase the safety of the cover It relates to, more specifically, magnetic holding elements and mechanical safety. Based on the principle of the locking elements working together, the lid part unintentionally... Double safety lid locking prevents accidental opening and provides controlled opening and closing. 10 It relates to an eyeglass case with a specific mechanism. The invention is suitable for carrying in bags, backpacks, suitcases, vehicle storage compartments and similar containers. Due to possible impacts, vibrations, compressions and external forces, the eyeglass case cover Magnetic retention system developed to prevent spontaneous opening. a locking system in which a mechanical safety interlocking mechanism works together 15 This includes the safe storage of eyeglasses. providing, increasing reliability of use and magnetic and mechanical safety elements. It is integrated into the field of portable protective eyewear case technologies. State of the Art: Eyeglass cases protect eyeglasses from impact, scratches, deformation, and environmental effects. These are portable protective devices widely used for preservation purposes. Magnetic closure for the cases to keep the cover in the closed position. systems, mechanical snap mechanisms, friction-based interlocking connections, zippers Structures and similar closure solutions are used. In eyeglass cases that use only magnetic closure elements, carrying capacity 25 due to external effects such as impact, vibration, compression that may occur during The magnetic holding force may be insufficient in some cases, and the lid may unintentionally slip. It can be opened. This can cause the glasses to come out of the case, get scratched, or break. or it may come into contact with other items being transported, causing them damage. With mechanical snap, latch, or interlocking closure systems, the lid is more secure. 30 Although it can be held in this way, it requires relatively high force when opening and closing. It may be necessary to implement this, mechanical parts can wear out over time and use Comfort may be reduced. Also, in these systems, parts may come loose when the lid is closed. 2 Correct alignment must be manually provided by the user. It can remain. Zippers or similar fully mechanical closure solutions provide a secure closure. While providing this, it reduces the ease of one-handed operation and the opening and closing time. This prolongs the process and can negatively affect practicality in terms of daily use. 5 In addition, current solutions include magnetic closure systems and mechanical safety interlocks. their mechanisms work together in a complementary way, both fast closing and sufficient space for an integrated structure that provides high lid security. This is not provided. Therefore, existing systems offer ease of use and secure shutdown. It may be insufficient to meet the need simultaneously. 10 Therefore, the advantage of fast and easy use provided by magnetic closure systems while protecting, the lid's security is enhanced by a mechanical safety locking mechanism. additional features that prevent unintentional opening and provide automatic alignment during closing. energy-free, compact, long-lasting, low-cost, and user-friendly. A new eyeglass case closing mechanism is needed to improve comfort. 15 The purpose of the invention: The purpose of the invention is to improve the cap closure systems used in eyeglass cases. its reliability is enhanced by the fact that the lid is protected from external effects such as impact, vibration, and compression. Mechanical safety system with magnetic retention system that prevents unintentional opening. A double-safety cover locking system ensures the locking mechanism works together. 20 The goal is to improve the system. One purpose of the invention is to ensure that when the lid is closed, it holds together thanks to magnetic elements. Automatic alignment of fuselage sections, followed by mechanical safety locking. the mechanism engages automatically and locks the lid securely. The goal is to create a shutdown system that provides this. 25 Furthermore, the invention aims to allow the lid to be opened via a release button when the owner wishes to open it. by enabling the controlled release of the mechanical safety interlocking mechanism, It prevents unintentional opening while allowing the user to open it quickly, easily, and ergonomically. The aim is to enable the closing process to be carried out. In addition, the purpose of the invention is to provide additional electrical energy, an electronic control system or 30 Completely mechanical and magnetic, without the need for complex transmission mechanisms. Compact, long-lasting, providing high lid security through the combined operation of its components. The goal is to develop a durable, easy-to-manufacture, and low-cost lid locking system. 3 Another purpose is to provide rigid or semi-rigid eyeglass cases of varying sizes and structures. applicable, can be produced using different manufacturing methods, to existing eyeglass case structures. Easily integrated, increasing reliability of use and ensuring the safety of the glasses. It offers a lid locking mechanism that helps to keep it securely stored. Figure Description 5 Figure 1: The subject of the invention is a magnetically assisted double safety cap locking mechanism. This is the general perspective view of the eyeglass case when it is closed. Figure 2: The subject of the invention is a magnetically assisted double safety lid locking mechanism. magnetic retention system located on the cover and frame sections of the eyeglass case with exploded 10 components forming the mechanical safety interlocking mechanism It is a perspective view. Figure 3: The subject of the invention is a magnetically assisted double safety lid locking mechanism. The eyeglass case has a magnetic holding system and a mechanical safety lock in the closed position. This is a cross-sectional view showing the mechanism working together and in its locking position. References: 15 1. Main body of the eyeglass case 2. Case base section 3. Case cover section 4. Lid hinge 5. Hinge shaft 20 6. Inner support body of the lid 7. Fuselage carrier mount 8. Magnetic holding element 9. Magnetic counterweight 10. Mechanical safety locking housing 25 11. Locking hook 12. Locking strike plate 13. Locking latch 14. Latch carrier pin 15. Latch return spring 30 16. Release button 17. Button carrier bed 18. Button return spring 4 19. Locking transfer lever 20. Transmission joint pin 21. Locking guide channel 22. Locking guide tab 23. Locking stop support 5 24. Magnetic alignment surface 25. Shock absorbing buffer 26. Indoor glasses storage cradle 27. Protective inner coating 28. Locking mounting bracket 10 29. Locking link pin 30. Spring carrier housing 31. Lid stop support 32. Locking cam surface 33. Locking trigger protrusion 15 34. Outer protective casing 35. Locking steering ramp 36. Release push surface Description of the Invention: The invention relates to the use of a 20-inch eyeglass case cover during the transport and storage of eyeglasses. Developed to prevent unintentional opening, it uses magnetic holding force and mechanical properties. The pair ensures that the locking forces are used together in a complementary manner. The invention relates to a safety eyeglass case. Within the scope of the invention, the cover is magnetic when closed. The elements ensure the lid and base section are aligned with each other and connect to each other. The mechanical safety locking mechanism allows it to approach, while the physical 25 of the lid... by locking it in place, it provides a second safety mechanism independent of the magnetic holding force. It constitutes. According to the operating principle of the invention, the magnetic holding system ensures the first safety of the closing movement. by forming the casing cover section (3) towards the casing base section (2) It guides and contributes to the alignment of interlocking components. 30 The mechanical safety locking system activates when the lid reaches the required closing position. By automatically engaging, the locking hook (11) is placed into the locking counterpart slot (12) It ensures a mechanical connection. Opening the lid only requires a release. the controlled movement of the button (16) and the mechanical link in question This is done after the solution is found. The subject of the invention is an eyeglass case, the structural integrity of the case, and the other components a glasses case main body (1) on or in which it is positioned It includes the main body of the glasses case (1), the base section of the case where the glasses are placed 5 (2) and the case cover which can be opened and closed. It includes section (3). Case base section (2) and case cover section (3), glasses to withstand external impacts, pressure, friction, scratches, compression and similar effects They can be formulated with sufficient or semi-stiffness to provide protection. The case cover section (3) is attached to the main body of the eyeglass case (1) via the cover hinge (4) 10 It is connected in a movable manner. The cover hinge (4) is attached to the cover section (3) of the case. to be opened around a rotation axis determined according to the base section (2) and This allows it to close. The lid hinge (4) or hinge connection The hinge shaft (5), located in the region, holds the hinge components together. and ensures that the cover movement is carried out on a stable axis. 15 The hinge shaft (5) absorbs the mechanical loads generated during the opening and closing movements of the lid. It is constructed to be able to carry. The lid hinge (4), the main eyeglass case It can be formed as an integrated part with the body (1) or as a separate component. It can be produced and attached to the case base section (2) and the case cover section (3). On the inside of the case cover section (3), the magnetic and mechanical 20 located on the cover The inner carrier body (6) of the cover, which carries the locking components, is located inside the cover. The carrier body (6) is formed in accordance with the internal geometry of the cover section and the locking elements on the cover may shift position during operation, It prevents it from bending or becoming misaligned. The inner carrier body of the cover (6), the case It can be produced integrated with the cover section (3) or as a separate part. 25 It can be pinned to the section. The inner carrier body of the cover (6), the magnetic retaining element (8), the locking counter socket (12), the locking hook (11) or other locking hook which is intended to be located on the cover side It can enable the transportation of its components to designated locations. The carrier body, during the closing movement, transfers the forces generated to the sheath cover section (3) 30 distribution and positional stability of the interlocking components relative to each other It contributes to its preservation. 6 In the base section of the case (2), the mechanical safety locking system is located on the body side. There is a housing carrier slot (7) that allows the placement of its components. carrier housing (7) will protect the locking components from external influences and the mechanism on the front edge of the sheath base section (2) in such a way as to maintain the working direction, 5 on the side edge or in a suitable area where the lid and base meet can be created. The housing carrier housing (7) has an indentation, channel, or enclosure on the casing base section (2). The cavity or component can be created in the form of a carrier structure. This cavity, the mechanical safety locking housing (10) is firmly attached to the main housing (1) of the casing 10 It enables it to function. The invention involves quickly and easily guiding the lid to the closed position. At least one magnetic holding element (8) is used for this purpose. Magnetic holding element (8), in the case cover section (3), in the inner carrier body of the cover (6), in the case base section (2) or in an area close to the mechanical locking mechanism 15 It can be positioned. Magnetic holding element (8), permanent magnet, a group of magnets working in conjunction with a magnetizable component or sufficient magnetic in the form of a suitable magnetic structure capable of generating an attractive force can be created. Opposite the magnetic holding element (8) is the magnetic counter element (9). 20 The magnetic counter element (9) is opposite to the magnetic holding element (8). When positioned and moving in the direction of lid closing, magnetic attraction occurs. It enables the formation of a magnetic counter element (9), a ferromagnetic plate, metal counterpart, with a second magnet or magnetic holding element It can be made from a suitable material that can interact with it. 25 Magnetic retaining element (8) and magnetic counter element (9) when the lid is fully closed They are sized in such a way that they will start attracting each other before reaching their location, and It is positioned so that the user does not have to press the lid down completely. The cover is directed towards the base of the case (2) by magnetic attraction. Magnetic attraction ensures the lid and base sections are correctly positioned relative to each other. 30 assists in activating the mechanical locking system due to misalignment. This reduces the likelihood of them being unable to enter. 7 In the area where the magnetic elements are located, the opposite side between the cover and the base. Magnetic alignment surface (24) is included to support positioning. alignment surface (24), magnetic retaining element (8) magnetic when the cover is closed a complementary element that enables it to approach in the correct direction according to the corresponding element (9) It forms a geometric structure. Magnetic alignment surface (24), flat, inclined, curved, 5 It can have an indented or protruding contact geometry. Magnetic alignment surface (24) is a magnetic attraction force that generates magnetic attraction. Rather than the element itself, the lid and base are drawn together under the influence of magnetic attraction. a geometric shape that enables the mechanical orientation of its parts to the correct position It is a guiding structure. This surface consists of complementary surfaces, inclined edges, 10 They can be designed with seating protrusions or suitable recesses. Thanks to the orientation provided by the magnetic alignment surface (24), the cover section (3), Even if the case base section (2) is shifted sideways or deviated at an angle, it will not close. It can be brought to the correct position in the final part of its movement. This feature is mechanical. It improves the positional alignment between the components of the safety interlocking mechanism and 15 It contributes to the mechanism locking in a regular manner. The mechanical safety interlocking system, which constitutes the second level of safety of the invention, The mechanical safety locking housing (10) is carried on it. Preferred In practice, the mechanical safety locking housing (10) is located in the base section of the case (2) It is placed in the body carrier housing (7). In alternative applications, the mechanical 20 The safety locking housing (10) can be positioned in the case cover section (3) and The corresponding locking components can be arranged in the case base section (2). Mechanical safety locking housing (10), parts that make up the locking action. holding these parts in specified positions, limiting their working directions. and protects the mechanism components from external influences. 25 Mechanical safety locking housing (10) for tight fit into the housing carrier housing (7), bonding, screwing, riveting, welding, ultrasonic joining or similar It can be attached using a fastening method. Alternatively, a mechanical safety lock is available. The body (10) can be produced as a single piece with the main body (1) of the eyeglass case. In the mechanical safety locking system, the physical release of the lid from the closed position is required. There is a locking hook (11) that prevents it from locking. The locking hook (11) prevents the lid from locking. When closing, it enters the locking strike plate (12) on the opposite side and is locked. in this position, a mechanical connection with a retaining edge or support area of the socket 8 This creates a magnetic holding force. Thus, if the magnetic holding force weakens or the lid is opened in the direction of opening... Even if an external force is applied, the locking hook (11) prevents the lid from opening. The locking strike plate (12) is inserted into the locking hook (11) when the lid is closed. an opening, channel, recess or hook into which it can enter and be kept locked It is formed in the form of a region. The locking strike plate (12) is 5 of the locking hook. (11) will mechanically restrict its exit in the reverse direction while allowing its free entry. It has a gripping geometry. The locking hook (11) is connected to the locking strike plate (12) of the locking latch (13) This can be achieved at the end section where a mechanical connection is formed, or a locking mechanism. It can be arranged as a separate hook component fixed to the latch (13). 10 The locking latch (13) moves between the locking position and the release position. by making the locking hook (11) enter the locking strike plate (12) or by saying The subject is to enable it to detach from the housing. The movement of the locking latch (13) rotates, This can be achieved through sliding, oscillation, or a combination of these movements. Locking latch (13), mechanical safety locking via latch carrier pin (14) 15 It is attached to the body (10) in a movable manner. The latch carrier pin (14) locks. the latch (13) rotates or oscillates around a defined axis This allows the latch carrier pin (14) to be dislodged under mechanical loads. locking body that will not come out and will maintain the direction of movement of the latch It is located on a bed. 20 A return force is applied to the locking latch (13) in the direction of the locking position. There is a latch return spring (15). The latch return spring (15) locks the locking mechanism. after releasing the latch (13) it returns to its starting position. rotates and is ready to automatically lock when the lid is next closed. It makes it possible for him to come. 25 Latch return spring (15), torsion spring, compression spring, tension spring, leaf spring or It can be formed in the form of an elastic return element. The latch return spring... (15) spring force, locking latch (13) securely in the locking position will allow it to be held, but release will be performed by the user. It is determined in a way that will not unnecessarily complicate the process. 30 The latch return spring (15) is located inside the spring carrier housing (30). The spring carrier housing (30) prevents the spring from sliding or twisting sideways during operation. dislodgement or unwanted contact with other mechanical components 9 It prevents. Spring carrier housing (30), mechanical safety locking housing (10), It can be formed on the locking latch (13) or the inner carrier body (6) of the lid. When closing the lid, the locking hook (11) must be properly seated in the locking counter slot (12). Locking guide channel (21) and locking guide for the purpose of guiding in this way The protrusion (22) is used. Locking guide protrusion (22), locking guide channel 5 (21) by moving inside the locking latch (13) or locking hook (11) It restricts its movement to a predetermined direction. Locking guide channel (21), mechanical safety locking housing (10), locking link It can be made on the bracket (28) or locking latch (13). Locking The guide projection (22) moves 10 times with respect to the part where the guide channel is located. locking latch (13), locking hook (11) or mechanical safety locking housing (10) can be positioned on it. Thus, it is complementary between the canal and the protrusion. A mentoring relationship is established. The locking guide channel (21) creates a linear, curved or stepped path. It can bring. The locking guide projection (22) follows the geometry of the channel in question. 15 by causing the locking element to deflected sideways or out of the locking strike plate. (12) prevents it from moving away. This guidance ensures that the lid is closed at different speeds. Even in this state, it contributes to the stable operation of the mechanical system. To prevent the locking hook (11) from advancing more than specified in the locking position. For this purpose, there is a locking stop support (23). Locking stop 20 the support (23), locking latch (13) or locking hook (11) locking mechanical safety interlocking of moving parts determines the limit of movement in that direction. hitting the body (10) uncontrollably and the operation of the latch return spring (15) It prevents strain outside of its range. During the closing movement of the lid, the locking hook (11) must be placed in the locking counter slot 25 (12) There is a locking guidance ramp (35) that facilitates the passage. Locking guide ramp (35), locking hook (11) or locking latch (13) the controlled withdrawal of the part when it comes into contact with the opposing part or It is designed as an inclined surface that allows it to rotate. Locking guide ramp (35), locking hook (11), locking strike plate 30 (12) can be created in the case cover section (3) or case base section (2). Preference In the application performed, the ramp in question has the closing movement of the locking hook (11). during which it contacts and the hook is temporarily against the force of the return spring (15) of the latch. It creates an entry surface that moves in the direction of release. When the lid continues to close, the locking hook (11) locking guide moving on the ramp (35) and against the force of the latch return spring (15) It is moving towards temporary release. The locking hook (11), 5 When the latch return spring (15) aligns with the locking strike plate (12), to move the locking latch (13) to the relocking direction and lock It ensures that the hook (11) fits into the locking counterpart slot (12). This mode of operation allows the user to manually activate the mechanical locking system as well. You can lock the lid by simply closing it without having to remove anything. 10 It can perform. Magnetic holding element (8) and magnetic counter element (9), locking guide ramp while supporting the final part of the lid closing movement. (35) ensures that the mechanical locking takes place automatically. Locking cam surface (32), release button (16), locking transfer lever (19), Controlled movement and force between the locking latch (13) or locking hook (11) 15 It is arranged to bring about the transfer. The locking cam surface (32) is free the linear pressing action applied to the release button (16) locking latch (13) It can support conversion to rotation or retraction movement. Cam the slope, length and contact geometry of the surface; the button's pressing distance, locking mechanism. The distance of the hook (11) from the locking counter slot (12) and the user 20 taking into account the release force required to be applied It is determined. In the mechanical safety locking system, the lid and base sections are locked in a defined manner. when it reaches the appropriate distance, it initiates the locking action or releases the locking latch (13) There is a locking trigger protrusion (33) that directs it to the working position. Locking 25 trigger protrusion (33), locking guide ramp on the opposite side when the lid is closed (35) or interacts with a complementary contact surface. As a result of this interaction... locking latch (13), locking hook (11) or locking transfer lever (19) temporary is moved and the locking hook (11) into the locking counterpart slot (12) A suitable location is being created for passage. 30 The position of the locking trigger tab (33) indicates that mechanical locking is only possible with the cover and base. when the sections are sufficiently close together and the interlocking components are aligned It is determined in such a way as to ensure that it happens. Thus, the lid is partially closed. 11 In this case, mechanical half-locking or locking of the locking hook (11) It is prevented from being jammed by resting against the outer edge of the counter socket (12). When the lid is in the locked position, the mechanical safety locking linkage is activated by the user. A release button (16) for controlled release The release button (16) is located 5 outside the main body of the glasses case (1). It is located in an accessible area and when pressed by the user By transmitting movement to the locking lever (19), the locking latch (13) is released. This movement causes it to move in that direction. As a result of this movement, the locking hook (11), The locking strike plate (12) is detached from its housing and the case cover section (3) can be opened. is being brought. 10 The release button (16) is movable within the button carrier housing (17). It is mounted on the button carrier bearing (17), only the release button (16) It ensures that the button moves in the specified direction of pressure and sideways. It prevents it from bending, getting stuck, or coming loose. Button carrier bearing (17), mechanical safety locking housing (10), case base section 15 (2) or can be created on the case cover section (3). Release The outer surface of the button (16) is a size and angle that the user can comfortably press with his finger. and can have various surface geometries. Release button (16) with direct pressure from surrounding objects during transport To reduce involuntary movement of the main body of the eyeglass case (1) the outer 20 It will be positioned recessed relative to its surface, surrounded by a protective elevation. in a way that is accessible only from a specific printing direction It can be modified. This structure prevents the mechanical lock from being unlocked against the user's will. It reduces the probability. To return the release button (16) to its unpressed starting position, press 25 The button return spring (18) is used. The button return spring (18) is used by the user When you remove the force on the button, release the button (16) outwards. It moves the button so that it is ready for the next power-on operation. It is coming. The button return spring (18) is pressed involuntarily when the release button (16) is pressed 30 to prevent it from remaining in that position and to ensure the normal operation of the mechanical locking system. It helps to return to its position. Button return spring (18), push spring, 12 in the form of a leaf spring, elastic sleeve or similar return element can be created. The release button (16) is pressed by the user or within the mechanism. The force transmitting part has a release push surface (36). Release Push surface (36), the force applied to the button to the locking transfer lever (19), locking 5 It transmits the signal to the latch (13) or the relevant moving part in a controlled manner. Release push surface (36) has a flat, curved or inclined contact geometry. It is possible. Release push surface (36), with direct locking transfer lever. (19) can make contact as well as indirect movement through the locking cam surface (32) It can also facilitate transfer. The geometry of the surface in question allows for release 10 the distance of pressing the button (16) and the locking hook (11) locking counter a suitable transfer between the necessary distance of movement for it to leave its nest (12) It is determined in a way that will create a relationship. The pressing action applied to the release button (16) locks the latch (13) There is a locking transfer lever (19) for the purpose of transmission. Locking transfer 15 The lever (19) can be released directly from the push surface (36) or from the locking cam surface. (32) transmits the movement it receives to the locking latch (13) and the linear movement of the button It converts the pressing motion into a rotating, sliding, or oscillating motion of the latch. The locking transfer lever (19) provides mechanical safety via the transfer joint pin (20). to the locking body (10), locking connection bracket (28) or the relevant support structure 20 It is connected in a movable manner. The transfer joint pin (20) is attached to the locking transfer lever. (19) allows it to move around the defined axis. When the user presses the release button (16), the release push surface (36), It moves the locking transfer lever (19). The locking transfer lever (19), The locking latch (13) rotates around the transfer joint pin (20) and the latch returns 25 It moves against the force of the spring (15). As a result of this movement, it locks. The hook (11) separates from the locking strike plate (12) and the lid can be opened. It is coming. Locking as long as the pressing force applied to the release button (16) continues The hook (11) is released from the locking strike plate (12) in the 30 position. It is held. During this time, the user moves to open the case cover section (3). by preventing the mechanical locking linkage from being re-established, and then the attractive force between the magnetic holding element (8) and the magnetic counter element (9) 13 It exceeds the opening distance. When the lid reaches the sufficient opening distance, it is locked with the locking hook (11). The locking strike plate (12) is located away from each other's working area. When the user removes the pressure on the release button (16) the button The return spring (18) returns the knob to its starting position. At the same time the latch The return spring (15) moves the locking latch (13) to the ready position to relock it. This means the mechanism does not require separate setup by the user. It is ready for the next shutdown without any delay. The mechanical safety locking system must be attached to the main body of the eyeglass case (1) and Locking mechanism to ensure stable transport of mechanism parts. There is a locking bracket (28). Locking bracket (28), mechanical safety 10 locking body (10), locking transfer lever (19), locking latch (13) or other It provides a support structure for moving parts. Locking connection bracket (28), case base section (2), case cover section (3), cover It can be fixed to the inner carrier body (6) or the body carrier housing (7). Locking The connecting bracket (28) prevents the locking mechanism from deforming during operation. or strong enough to prevent its position from being disrupted relative to the cover and base sections is being created. The connection between the locking linkage bracket (28) and other mechanical components is locked. The locking is provided via the connecting pin (29). The locking connecting pin (29) is the mechanism. It can hold its components together in a fixed or movable manner. In movable linkage, 20 The locking link pin (29) allows the relevant part to rotate or oscillate. It prevents the part from separating from the supporting structure during delivery. The transfer joint pin (20) is mainly used to rotate the locking transfer lever (19) or Locking linkage pin (29), locking linkage bracket (28) when forming the oscillation axis with mechanical safety locking housing (10), locking latch (13) or other connection 25 It provides a supporting or connecting link between the parts. These two pins are the same. in the mechanism, on different axes and in different connecting roles It is available for use. When closing the cover, the cover section (3) must be firmly attached to the base section of the cover (2). There is an impact damping buffer (25) to prevent impact. Impact 30 damping buffer (25), elastomer, rubber, silicone, foam, flexible polymer or impact It can be made from another material that can absorb its energy. 14 The shock absorbing buffer (25) absorbs the contact force between the cover and the base. It reduces noise during closing, and uses magnetic elements and mechanical locking. It prevents parts from being subjected to sudden impact loads. In addition, the buffer By creating controlled compression between the lid and the base, it prevents looseness in the closed position. and can reduce the occurrence of vibration. 5 The shock absorber buffer (25) is partially compressed elastically in the closed position. a controlled preload between the locking hook (11) and the locking counter socket (12) This preload can create gaps resulting from manufacturing tolerances. to reduce, prevent lid from wobbling and to ensure mechanical locking connection. It contributes to quiet operation. 10 The opening or closing movement of the case cover section (3) goes beyond the specified limits A lid stopper (31) is used to prevent the lid from coming out. stopper (31), case base of case cover section (3) when cover is closed It determines the final seating position according to section (2). Alternatively or additionally The lid stopper support (31) is determined in the cover section (3) when the lid is opened. It can be adjusted to prevent it from exceeding its maximum opening angle. Lid stop support (31), lid hinge (4), case base section (2), case cover This section (3) or cover inner carrier body (6) can be formed on it. The support reduces the excessive load on the hinge shaft (5) and extends the life of the cover. It is increasing. 20 Inner eyeglass carrier for keeping the glasses stable and secure inside the case. There is a bed (26). The inner glasses carrying bed (26) holds the glasses frame, temples or an internal geometry that restricts the movement of the lenses within the casing It is manufactured in a way that the shape of the support bed is suitable for different types of glasses. It can be changed. 25 The inner eyeglasses carrying bed (26) can be constructed directly in the case base section (2) as well as It can be placed inside the case as a separate inner part. The carrying case holds the glasses' mechanical parts. will prevent contact with the locking mechanism and the glasses when the cover is closed It is positioned in a way that prevents excessive pressure from building up on it. Inner glasses carrying case (26), mechanical safety locking housing with glasses (10), locking 30 latch (13), locking transfer lever (19) and other movable mechanism components This creates a protective volume separating the temples of the glasses. or the frame sections getting caught between the movable locking parts and the mechanism This prevents it from interfering with his work. The inside of the case protects the eyeglasses from scratches and direct contact with the hard frame. It includes a protective inner coating (27). The protective inner coating (27) is the fabric, felt, microfiber, suede-like material, foam, elastomer or other soft-surfaced material 5 It can be made from a protective material. Protective inner lining (27), inner eyeglasses carrying holder (26), inner base section of the case (2) partially or completely the surface and the inner surface of the case cover section (3) It can cover scratches on the lenses and frame of the eyeglasses. while preventing its formation, it also absorbs small vibrations that occur during transport. It is able to dampen the flame. Outer protective case covering (34) on the outer surface of the main body (1) of the eyeglass case It is located. The outer protective casing (34) is the part of the casing that comes into contact with the external environment. It protects surfaces from wear, scratches, dirt, and moisture. This coating is suitable for leather, synthetic materials. 15 made of leather, textile, polymer film, elastomer, composite or decorative surface material It can be produced. The outer protective casing (34), the mechanical safety locking housing (10) and free so as not to obstruct the operation of the release button (16) It is being shaped. Release on the outer protective sheath covering (34) an opening that provides controlled access to the button (16), protecting the area around the button 20 a limited access zone or a flexible mechanism that can transmit button movement to the device A pressure zone can be created. During the closure process of the invention, the user closes the case cover section (3), case base It moves towards section (2). When the cover reaches a certain proximity The attractive force between the magnetic holding element (8) and the magnetic counter element (9) is 25 This occurs. This pulling force moves the lid in the direction of closing. and ensure the lid and base are in the correct position with the help of the magnetic alignment surface (24). It provides. While the lid continues to close, the locking trigger tab (33) is located on the opposite side. locking guide ramp (35) or to guide the closing movement 30 It comes into contact with a complementary contact surface. As a result of this contact... locking latch (13), around the latch carrier pin (14) latch return spring (15) It moves in the direction of temporarily releasing against the force. Locking 16 The locking hook (11) attached to the latch (13) or formed on the latch, word The subject movement may pass the entry edge of the locking counter slot (12) is being brought. When the locking hook (11) passes the entry of the locking strike plate (12), the latch returns. The force generated by the return spring (15) pushes the locking latch (13) back in the locking direction. It rotates. Thus, the locking hook (11) is inserted into the locking counterpart slot (12) it passes through and the lid locks mechanically. When the locking hook (11) passes into the locking counterpart (12), the latch returns a perceptible or audible lockup feedback due to the effect of the return spring (15) This can occur. The feedback in question indicates that the user only needs 10 of the cover's features. that it is not magnetically held, and also that there is no mechanical safety interlocking system. It reports that it has been activated. When the lid reaches the fully closed position, the magnetic retaining element (8) and the magnetic counter element (9) continues to pull the cover towards each other. At the same time locking Mechanical retaining link between hook (11) and locking counterpart (12) 15 It is located. Thus, the cover consists of two separate parts with different operating principles. It is kept closed due to a safety effect. The primary function of the magnetic holding system is to facilitate easy closing of the lid, with opposite lids and... ensuring the base sections approach the correct position and preventing problems that may occur in the closed position. The aim is to reduce looseness and vibration. Mechanical safety interlocking system 20 Its primary function is to remain stable even when an external force exceeding the magnetic holding force occurs. The goal is to physically prevent the lid from opening. When a glasses case gets stuck inside a bag or suitcase, a force is applied to open the lid. It can be applied. In this case, the magnetic holding element (8) and the magnetic counterweight. The attractive force between element (9) provides the initial holding effect, locking hook (11) 25 This prevents the lid from separating by resting on the locking counter-slot (12). Thus This provides a higher level of security compared to cases that only use magnetic closure. is being done. To open the lid, the user presses the release button (16). The release push surface (36) transmits the user force to the locking transfer lever (19). 30 The locking transfer lever (19) moves around the transfer joint pin (20) The locking latch (13) moves against the force of the latch return spring (15). It causes it to happen. 17 The locking hook is released by moving the locking latch (13) in the release direction. (11) is separated from the locking strike plate (12). After the locking link is released Then the user moves the lid to open it. The lid opens magnetically. The attractive force between the holding element (8) and the magnetic counter element (9) is used by the user It is overcome by the opening force applied by 5. The release button (16) can release the mechanical locking linkage. in a determined direction of movement and locking hook (11) locking counter to be moved a sufficient distance to separate it from its nest (12) It is required. The button carrier bearing (17) is lateral to the release button (16). restricting its movement; the secure placement of the button and the button return spring 10 (18) reduces the likelihood of light or accidental contacts unlocking the mechanical lock. When the user releases the release button (16) after the cover is opened, the button returns The return spring (18) returns the knob to its starting position. Latch return spring (15) returns the locking latch (13) to the locking position. Thus The mechanism, in terms of basic locking and return functions, is electrical, electronic or 15 Automatically to the starting position without the use of an external drive system. It is coming. Within the scope of the invention, the magnetic counterpart of the cover section of the magnetic holding element (8) It is possible for element (9) to be located in the base section, and this placement can also be reversed. It can be arranged. In addition, multiple magnetic holding elements (8) and multiple 20 Magnetic counter element (9) can be used. The number of magnetic elements, position and pulling force depending on the size of the case and the desired closing force It can be determined. Similarly, the mechanical safety locking housing (10) is located in the case base section (2) and The locking strike plate (12) can be positioned in the case cover section (3) or 25 mechanical safety locking housing (10), case cover section (3) and locking counterpart The housing (12) can also be positioned in the case base section (2). This alternative In the settlements, the locking hook (11) is opposite to the locking counterpart slot (12). They are being arranged to work in a way that will allow magnetic retention. These alternative locations are designed to work with magnetic retention. The system and the mechanical safety interlocking system complement each other in 30 This does not change the fundamental principle of its operation. The geometry of the locking hook (11) and the locking strike plate (12) in the locked position It is designed to prevent the lid from moving in the direction of opening. Locking 18 The hook can be single-pronged, double-pronged, curved, angled, or stepped in structure. It can be created. The locking strike plate is also designed to match the geometry of the hook. It can have a complementary structure. Locking latch (13), locking transfer lever (19) and release button (16), They can be produced as separate parts, or two or more parts can be combined to reduce the number of parts. They can also be produced in the form of integrated structures that perform multiple functions. Part Even if the number or the way the parts are integrated is changed, the mechanical system; User action applied to the release button (16) is direct or locking. via the transfer lever (19) to the locking latch (13) and the locking hook (11) transmission, separation of the locking hook (11) from the locking counterpart slot (12) and 10 the latch return spring (15) brings the mechanism back to the locking position It operates on the principle of [principle / principle]. The body and mechanism components used in the invention are made of metal, thermoplastic, and thermoset. Eyeglass cases can be made from elastomers, composites, or combinations thereof. body (1), injection molding, pressing, thermoforming, casting, machining, layered 15 It can be produced by manufacturing or another suitable production method. Movable High wear-resistant materials in the locking parts, magnetic holding element (8) and around the magnetic counter element (9) the magnetic interaction is negative Materials that do not affect the system can be used. Mechanical safety locking housing (10) and the related locking components can be manufactured as separate parts and assembled as such, or 20 It can also be created in the form of a modular group of mechanisms. If a modular structure is used, the mechanical safety locking body (10), locking latch (13), latch return spring (15), release button (16), button return The return spring (18), the locking transfer lever (19) and the associated connecting parts are pre-assembled. It can be brought in. The prepared module is then placed in the body carrier housing (7) 25 By inserting it, the eyeglass case can be fixed to the main body (1). Mechanical safety The locking system is created as a modular group during production. the mechanism is mounted independently of the main body of the eyeglass case (1) and It allows for the performance of functional control. Furthermore, the mechanism... If wear or damage occurs to its components, the locking module, glasses 30 can be renewed without completely replacing the main body (1) of the case or It is possible to make changes. 19 This modular approach ensures the same basic locking mechanism across eyeglass cases of different sizes and shapes. It allows the use of the mechanism. Only the body carrier housing. (7), by changing the dimensions of the inner carrier body (6) or connection areas of the cover The mechanism can be adapted to different casing structures. The invention can be applied to hard-shell spectacle cases as well as semi-rigid-frame spectacles. It can also be used in cases. The shape of the main body of the case can be rectangular, oval, or curved. The case can be prismatic or in another form adapted to the geometry of the eyeglasses. Changes in design, the combined operation of magnetic and mechanical safety elements It does not change the principle. The basic closing and locking functions of the invention are based on mechanical and magnetic principles. 10 because it is implemented, the battery, electrical connection, electronic control circuit, sensor or It can operate without using a motor. This design allows the system to operate without consuming energy. its operation, reduced maintenance requirements, and ease of use in different environments. It contributes to its adaptation. Magnetic holding force, spring forces, cam geometries, guiding structures and 15 The attachment geometry of the locking hook; the size of the sheath, the weight of the cover, the user taking into account the opening force required to be applied and the targeted safety level These technical specifications can be modified. Changes made to these technical specifications will affect the invention. The magnetically assisted double safety cover locking principle is not eliminated. In conclusion, the invention consists of a magnetic holding element (8) and a magnetic counter element (9) 20 the pre-holding effect provided by the magnetic alignment surface (24) its function and the mechanical function provided by the locking hook (11) and the locking counter socket (12) It brings together the safety link. Locking trigger protrusion during closing. (33) and the locking guide ramp (35), the locking latch (13) in a controlled manner 25 It supports the passage as follows. During opening, release the button (16) The applied force is applied to the release push surface (36), the locking cam surface (32) and The mechanical transmission is transmitted to the locking latch (13) via the locking transfer lever (19). It ensures that the connection is released in a controlled manner. Latch return spring (15) with the button return spring (18), the mechanism is ready for the next closing operation start 30 It returns the glasses to their original position. This ensures the safety of the glasses during transport and storage. It is easy to use, compact, low-cost and basic, and contributes to its preservation in this way. Get a double-safety eyeglass case that doesn't require additional energy for its locking functions. is being done.
Claims
21 REQUESTS 1. Eyeglass case with magnetically assisted double safety flap locking mechanism. its feature is a case base section (2) in which the glasses are placed and the said a case cover that covers the base section (2) of the case in an openable and closable manner a main body of a glasses case (1) containing section (3) of the case cover section (3) 5 a cover that allows the glasses case to be attached movably to the main body (1) hinge (4) and hinge shaft (5), cover during cover closing movement At least one magnetic retaining section (3) that directs the case base section (2) toward the case base section. element (8) and at least one corresponding magnetic counter element (9), cover mechanical locking upon closing and mechanical safety locking 10 formed with the body (10), locking hook (11), locking counter socket (12) and with a mechanical safety interlocking system including a locking latch (13), the subject is a mechanical safety interlocking system controlled by the user a release button (16) that allows it to be released and a locking transfer lever (19) includes a magnetic holding system during lid closing movement. the redirection of section (3) to the sheath base section (2) and mechanical safety Locking via the locking system, release button (16) By applying user force, the mechanical safety interlocking system is released. It is characterized by enabling the case cover section (3) to be opened. is being done. 20 2. Equipped with a magnetically assisted double safety lid locking mechanism according to Claim 1. It is a glasses case, its feature is; the case cover section (3) inner carrier body (6) carrying on it and the inner carrier body of the cover in question (6), magnetic retention element (8) and components of the mechanical safety interlocking system have been identified. It is characterized by its support in various locations. 25 3. Magnetically assisted double safety cover locking mechanism according to claim 1 or 2. It has a glasses case, the feature of which is; mechanical safety locking body (10), case inside the body carrier housing (7) created in the base section (2) positioning and operation of the mechanical safety interlocking system 30 by protecting the alignment of the body carrier housing (7) It is characterized by...
4. Magnetically assisted double safety cover locking according to any of claims 1-3. It is a glasses case with a magnetic retaining element (8) and its feature is; in the final part of the cover closing movement of the magnetic counter element (9) 22 by pulling each other the case cover section (3) to the case base section (2) It is characterized by its ability to provide guidance.
5. Magnetically assisted double safety cover locking according to any of claims 1-4. It is a glasses case with a magnetic retaining element (8). supporting the mutual positioning of the magnetic counter element (9) at least 5 it includes a magnetic alignment surface (24) and the said magnetic alignment mechanical safety locking of the surface (24) during lid closing movement It is characterized by facilitating the activation of the system at the correct position. is being done.
6. Magnetically assisted double safety cover locking according to any of claims 1-5 10 It is a glasses case with a mechanism; its feature is a mechanical safety locking system. the locking hook (11) into the locking counterpart slot (12) in a controlled manner a locking guide channel (21) that enables its orientation, in return for the working a locking guide bar (22), a locking that determines the limit of movement stop support (23), latch carrier pin (14), latch return spring (15) 15 and is characterized by containing the spring carrier housing (30).
7. Magnetically assisted double safety cover locking according to any of claims 1-6. It is a glasses case with a mechanism that allows the lid to close during the closing movement. the locking hook (11) into the locking counterpart slot (12) in a controlled manner 20 It is characterized by...
8. Equipped with a magnetically assisted double safety lid locking mechanism according to claim 7. It is a glasses case, its feature is; locking steering ramp (35), locking temporarily release its hook (11) against the force of the latch return spring (15). By moving it in the direction of release, it locks into the counter slot (12) with controlled 25 It is characterized by its ability to ensure proper placement.
9. Magnetically assisted double safety cover locking according to any of claims 1-8. It is a glasses case with a mechanical safety lock mechanism. in the system, the lid and the base section of the case (2) are in the determined closing position It includes a locking trigger protrusion (33) which initiates the locking action upon arrival. 30 and the locking guide ramp (35) of the said locking trigger protrusion (33) by interacting with it, it directs the locking latch (13) to the locking position. It is characterized by... 23 10. Magnetically assisted double safety cover locking according to any of claims 1-9. It is a glasses case with a mechanism; its feature is the release button (16), The button carrier bearing (17) is mounted in such a way that it moves linearly within the bearing. and the button is returned to its starting position via the return spring (18) It is characterized by 5.
11. Magnetically assisted double safety cover according to any of claims 1-10. It is a glasses case with a locking mechanism; its feature is the release button. (16), through the release push surface (36) and the locking cam surface (32) the transmission of movement to the locking transfer lever (19) and the locking of said movement by making the latch (13) move in the release direction 10 It is characterized by...
12. Magnetically assisted double safety cover according to any of claims 1-11. It is a glasses case with a locking mechanism; its feature is the locking lever. (19), mechanical safety locking housing (10) via transfer joint pin (20) 15 transmitting the movement it receives from the release button (16) to the locking latch (13) It is characterized by...
13. Magnetically assisted double safety cover according to any of claims 1-12. It is an eyeglass case with a locking mechanism; its feature is a mechanical safety lock. the locking linkage bracket (28) in the system, the locking transfer lever 20 (19) and arranged to carry mechanical safety interlocking components and The components in question are movable via the locking link pin (29) It is characterized by its connection.
14. Magnetically assisted double safety cover locking according to any of claims 1-13. It is a glasses case with a mechanism; its feature is that the case cover section (3) opens 25 its movement must be restricted by at least one lid stop support (31) and the word The subject is the lid stop support (31), which may come onto the lid hinge (4). It is characterized by its ability to reduce excessive mechanical loads.
15. Magnetically assisted double safety cover locking according to any of claims 1-14. It is a glasses case with a mechanism, its feature is; 30 located inside the base section (2) of the case. the area of the inner eyeglasses carrying bed (26), the protective inner that is in direct contact with the eyeglasses It is characterized by being coated with a coating (27).
16. Magnetically assisted double safety cover locking according to any of claims 1-15. It is a glasses case with a mechanism; its feature is that the case closes when the lid is pulled shut. 24 impact effects that may occur between the cover section (3) and the case base section (2) by including at least one shock absorbing buffer (25) in order to reduce it It is characterized by...
17. Magnetically assisted double safety cover according to any of claims 1-16. It is a glasses case with a locking mechanism; its feature is that the main body of the glasses case has 5 (1) an outer protective cover on its outer surface that provides protection against external influences It is characterized by having a coating (34).
18. Magnetically assisted double safety cover according to any of claims 1-17. It is a glasses case with a locking mechanism, its feature is; magnetic holding element (8), magnetic counter element (9), mechanical safety locking housing (10), locking 10 hook (11), locking strike plate (12), locking latch (13) and free The release button (16) is located on the case cover section (3) and the case base section (2). in different arrangement combinations that correspond to each other It is characterized by its ability to be positioned.
19. Magnetically assisted double safety cover according to any of claims 1-18 15 It is a glasses case with a locking mechanism; its feature is a magnetic holding system. mechanical safety locking system, together with the lid closing movement by working to align the cover section (3) with the case base section (2) and mechanically It is characterized by being designed in such a way as to allow it to be locked.
20. Magnetically assisted double safety cover according to any of claims 1-19. It is a glasses case with a locking mechanism; its feature is a magnetic holding system. mechanical safety interlocking system, any electrical energy, electronic Completely mechanical, without the use of a control unit or electric actuator. It is characterized by being designed to operate on the principle of magnetic interaction. is being done. 25