Card storage box with magnetic positioning, mechanical guidance and centering mechanism.

TR202612467U5Pending Publication Date: 2026-09-21DENİZLİ PAMUKKALE ORTAOKUL GÖLEMEZLİ +6
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Patent Information

Application Number
TR202612467U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-07-24
Publication Date
2026-09-21
Estimated Expiration
2036-07-24

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Abstract

The invention relates to a card storage box used for storing business cards, identity cards, bank cards, driver's licenses, access cards, and similar cards. The card storage box consists of a lower body and a lid that opens and closes in relation to this body, incorporating a magnetic positioning system, a mechanical guiding mechanism, and a mechanical centering mechanism that ensures precise guidance of the lid as it approaches the closed position. The magnetic positioning system contributes to the controlled approach of the lid to the lower body, while the mechanical guiding mechanism directs the direction of the lid's movement, and the mechanical centering mechanism reduces lateral, longitudinal, and angular misalignment before reaching the closed position, ensuring the lid aligns correctly with the lower body.The invention also includes centering and limiting elements that support the closing movement, shock-absorbing structures, a carrying compartment and card support elements that ensure secure card storage, and access and gripping structures that provide ease of use. Thus, reliable alignment of the card storage box with each use is ensured, mechanical wear is reduced, user experience is improved, and cards are stored securely.
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Description

1 TARIFF 5 MAGNETIC POSITIONING, MECHANICAL GUIDING AND CARD STORAGE BOX WITH CENTRALIZED ARRANGEMENT Technological Field: The invention relates to thin sheet forms such as business cards, identity cards, bank cards, access cards, and similar items. Portable card storage boxes for storing cards, technical area 10 It is related to. More specifically, the invention creates a magnetic field between the lid and the body. positioning elements, mechanical guidance structures and centering arrangement Thanks to their collaborative operation, the lid is closed accurately and in a controlled manner with each closing process. It relates to the card storage box that enables the card to be routed to its location. The invention; a magnetic positioning system created between the lid and body components. 15 with mechanical guiding and centering elements complementing each other by enabling them to work together, allowing for controlled and precise direction of the lid movement, The lid and body must meet and close in the same position even after repeated use. It is part of a mechanical device designed to maintain its accuracy. The invention also includes; guide surfaces created on the body and cover, centering 20 elements, magnetic positioning mechanism, hinge structure, lid movement limiting and stopping elements, impact-absorbing structures, and cards inside the box. the supporting elements working together that ensure its safe storage Improves mechanical stability and lid alignment accuracy during long-term use. Mechanical systems for portable card storage boxes that protect cards are included in the technical field 25. It is receiving. The invention can also be designed to be adapted to different card sizes. It can be produced using plastic, metal, composite, wood or similar materials, with additional Completely mechanical and magnetic elements combined without requiring an energy source. Structural arrangements for card storage boxes based on the principle of operation are also 30 It includes. State of the Art: Today, business cards, ID cards, bank cards, access cards and similar thin sheet metal documents are used. transportation, protection and orderly storage of cards in this form For this purpose, various card storage boxes made from different structures and materials 35 These card storage boxes are generally made of plastic, metal, or wood. 2 or manufactured from composite materials, and the cover structures are hinged or sliding. 5 or they can be designed in a detachable form. In current card storage cases, the positional relationship between the lid and the body is mostly hinge connections, friction surfaces, or simple magnetic holding elements This is provided through. However, in these structures, during the closing movement of the lid... Cover 10 with mechanical guidance systems that allow for controlled guidance. and centering structures that ensure the body meets in the same position with every use. They are not often used together. Therefore, production tolerances are important for long-term use. wear and tear resulting from use or positional deviations caused by the user Due to this, alignment differences may occur between the lid and the body; the lid may not be fully... It may not fit properly and unwanted gaps may occur at the connection surfaces. 15 It is possible to come. In card storage boxes that use only magnetic retaining elements, magnets are used. It helps keep the lid in the closed position, but the closing motion of the lid... controlled guidance and mechanical centering throughout. It cannot provide this on its own. Similarly, only mechanical guidance elements 20 In structures where it is used, the increase in friction forces and production tolerances the occurrence of inconsistencies and centering issues during prolonged use Problems such as a decrease in accuracy may arise. In addition, most current solutions include magnetic positioning systems. mechanical guidance structures, centering elements, 25 that limit cover movement stoppers, shock-absorbing elements, and the card's stability within the box. a single integrated mechanical system of load-bearing structures that ensures their preservation It does not contain a compact structure that works together. This situation prevents the lid from closing. reduced sensitivity, decreased mechanical stability and during use This can lead to a failure to maintain positional accuracy. 30 In addition, existing card storage boxes have a repeatable pattern between the lid and the body. mechanical centering devices and magnetic systems that ensure positional accuracy. systems where positioning elements work together in a complementary way Because it is not at a sufficient level, the lid closing movement is not the same with each use. This cannot be ensured with accuracy. This situation affects both the reliability of use and 35 both reduces and reduces the functional performance of the box as a result of long-term use. It can have a negative impact. 3 For these reasons, a magnetic positioning system between the lid and the body, mechanical 5 the guiding structures and centering arrangement working together, the closing of the lid directing its movement in a controlled manner, ensuring the lid and body are in the same position with each closing operation. enabling them to meet at the location, allowing the cards to be stored securely. a new card that provides and maintains its mechanical stability during long-term use A storage box is needed. 10 The purpose of the invention: The purpose of the invention is to prevent damage that can occur between the lid and the body of card storage boxes. Mechanical guidance with a magnetic positioning system that reduces positional deviations. And thanks to the centering mechanism working together, the lid closes with every operation. A card storage box that allows controlled orientation to the correct position. 15 It is about developing. Another purpose of the invention is mechanical guidance using magnetic positioning elements. by enabling the structures to work together in a complementary way, the cover to direct its movement, ensuring the lid and body meet in the same position each time it is used. to ensure and maintain closing accuracy even during prolonged use. 20 Another purpose of the invention is the centering arrangement created between the lid and the body. thanks to production tolerances, mechanical wear or user-induced positional issues by reducing alignment errors that may arise from differences in the box's mechanics The aim is to increase its stability and reliability in use. Another purpose of the invention is to keep the cards safe, organized and stable inside the box. 25 support structures that ensure its protection, and supports that facilitate card access. elements and structures that limit unwanted movements of the card and its use. The goal is to create a compact card storage box that enhances convenience. Another purpose of the invention is to create stopping elements that limit lid movement, preventing impact damage. damping structures, centering elements, magnetic positioning system and 30 Thanks to the coordinated operation of the mechanical guidance system, the cover and the body increasing repeatable positional accuracy and for long-term use The goal is to provide a mechanical system that maintains its structural integrity. Another aim of the invention is to create a fully mechanical system without requiring an additional energy source. Based on the principle of magnetic elements working together, easy to manufacture, practical to assemble, 35 can be adapted to different card sizes, produced using different materials, and in different ways. The goal is to develop a card storage box that can be applied to various applications. 4 Another objective of the invention is mechanical guidance with a magnetic positioning system and 5 By enabling the centering system to function within a single integrated structure, both both the sensitivity of the cover closing and the secure storage of the cards. The goal is to create a compact, durable, and long-lasting card storage box that enhances performance. Explanation of the Figures Figure 1: Magnetic positioning, mechanical guidance and centering of the invention 10 perspective view of the card storage box with its arrangement in the closed position It shows. Figure 2: Perspective view of the card storage box in the open position, which is the subject of the invention. card holder, body magnetic positioning magnet, cover magnetic positioning magnet, mechanical guidance elements, centering arrangement and 15 It shows the internal structure where the card is inserted. Figure 3: The structure created between the lid and the body of the card storage box, which is the subject of the invention. magnetic positioning system, mechanical guidance structures, centering arrangement, A cross-sectional view showing the working relationship between these elements and the lid closing mechanism. It shows its appearance. 20 References: 1. Card storage box 2. Lower body 3. Cover 4. Hinge connection 25 5. Hinge shaft 6. Body magnetic positioning magnet 7. Cover magnetic positioning magnet 8. Magnet holder 9. First guide surface 30 10. Second guide surface 11. Conical centering projection 12. Centering slot 13. Side guide vane 14. Side guide channel 35 15. Lid stopper surface 16. Opening limiter 17. Closed position support 5 18. Card holder 19. Card support base 20. Side card support surface 21. Card fixing tab 22. Finger access groove 10 23. Anterior mouth opening 24. Inner protective surface 25. Card printing surface 26. Elastic printing element 27. Magnet carrier block 15 28. Cover frame 29. Body frame 30. Corner centering chamfer 31. Elastomer shock absorber 32. Magnetic positioning contact plate 20 33. Transport grip recess 34. Bottom non-slip backing surface. 35. Centering ramp 36. Guide inlet port 37. Centering support 25 38. Last position limiter Description of the Invention: The invention relates to thin sheet forms such as business cards, identity cards, bank cards, access cards, and similar items. Magnetic positioning cards used for carrying and storing cards A 30-inch system where the elements work together with the mechanical guiding and centering elements. It is a card storage box (1). A card storage box (1) is basically where cards are placed. a lower body (2) and covering the upper part of the lower body (2) in an openable and closable manner It consists of a lid (3). The part of the box where the hinge connection (4) is located is the back. section, the section opposite this, front section, the long sides of the cards The direction along the longitudinal line is the longitudinal direction, the direction along the shorter sides is the lateral direction, and the lower 35 The direction extending from the body (2) to the lid (3) is considered as the vertical direction. The subject matter includes defining aspects and explaining the structural and functional relationships of the invention. 6 It is used to facilitate and the invention has a specific use aspect 5 It does not impose any restrictions. The closing process in the card storage box (1) consists of three main stages following one another. It is carried out. In the first stage, the guide entry point (36), corner centering chamfer (30), centering ramp (35), first guide surface (9) and second guide surface (10) It ensures the rough orientation of the cover. In the second stage, the side guide vane (13), 10 side guide channel (14), conical centering projection (11) and centering slot (12) It performs precise centering of the lid. In the final stage, the body is magnetic. positioning magnet (6) and cover magnetic positioning magnet (7), cover pull to the determined closed position; lid stopper surface (15), closed position The support (17), centering support (37) and end position limiter (38) are the 15 of the cover. It determines its final position mechanically. The basic structure of the invention consists of a lower body (2), cover (3), and magnetic positioning elements. And these are accompanied by a mechanical guidance and centering system. Other features mentioned in the statement include support, restraint, shock absorption, card retention, and User access elements, used individually or in combination, in different applications of the invention. 20 It can be used in different combinations. Lower body (2), card storage the carrier main part of the box (1) and the inner volume in which the cards are placed It surrounds it. The lid (3) is arranged so that it can move relative to the lower body (2). and in the closed position, it covers the upper opening of the lower body (2) and the cards come out of the box. It prevents it from coming out and coming into direct contact with the external environment. Lower body (2) and cover 25 (3), preferably via a hinge connection (4) located at the rear of the box They are connected to each other. The hinge connection (4) extends along the axis of rotation. The hinge shaft (5) controls the opening and closing movement of the cover (3) relative to the lower body (2). It enables it to be realized. The hinge connection (4) will prevent the lid (3) from separating completely from the lower body (2) 30 It can be designed in this way, or it can be made into a demountable structure when necessary. It can be formed. The hinge spindle (5) creates a stable connection between the cover (3) and the lower body (2). It forms the axis of rotation and the overall movement of the lid at the beginning of the closing movement. It determines the direction. However, in the invention, the lid positioning is only hinge connection (4) is not left to hinge tolerances, wear or 35 positional deviations that may result from the user applying lateral force to the lid, This is achieved through magnetic and mechanical positioning elements. Hinge 7 The connection (4) only allows the opening and closing movement of the lid (3) with a rotating 5 It forms the axis, and the precise position of the lid in the closed position is the hinge. The geometric accuracy of the connection is not dependent on the final alignment and centering, mechanical guidance and centering with magnetic positioning system This is achieved as a result of the system working together. At least one body magnetic positioning magnet (6) on the lower body (2), cover (3) 10 on it, at least the body magnetic positioning magnet (6) will work in opposition to the magnetic positioning magnet. There is a magnetic positioning magnet (7) on the cover. The magnets are on the cover (3) When approaching the closed position, it will create a mutual attraction in the polar orientation and They are placed in corresponding positions. The resulting magnetic field... The pulling force supports the approach of the lid to the lower body (2) and closing 15 In the final part of its movement, it ensures that the lid is pulled to the designated closed position. Magnetic positioning system, preferably using two opposing magnets. is being created. In an alternative application, one of the magnets is opposite the other. a contact element exhibiting ferromagnetic properties or magnetic positioning contact plate (32) can be found. In this application, the mutual attraction force is 20 with a magnet. This occurs between the ferromagnetic elements in question. Within the scope of the invention, the magnetic positioning system is used when the lid (3) is in the closed position. the direction formed by the mechanical centering device during approach It creates a supporting, auxiliary pulling force. In contrast, the lid... final geometric alignment and positional accuracy, first guide surface (9), second 25 guide surface (10), conical centering projection (11), centering slot (12), side guide vane (13), side guide channel (14), centering ramp (35), centering The mechanical structure formed by the support (37) and the final position limiter (38) This is achieved through a centering mechanism. Thus, the magnetic force is converted into mechanical centering. a positioning force that complements, rather than replaces, the existing order 30 It constitutes. Body magnetic positioning magnet (6) and cover magnetic positioning magnet (7), inside at least one magnet holder (8) created for them It is positioned. The magnet holder (8) is where the magnets are positioned during operation. 35 It is formed. The magnet housing (8) is integrated with the lower body (2) or the lid (3). It can be manufactured as is, or it can be produced as a separate part and fixed to the relevant component. 8 More stable transport of magnets and maintaining the magnetic force at the desired position 5 At least one magnet carrier block (27) is used for its implementation. Magnet carrier block (27), housing magnetic positioning magnet (6), cover magnetic It supports the positioning magnet (7) or its corresponding magnet housing (8). The carrier block (27) in question ensures the position of the relevant magnet during production and assembly. It facilitates adjustment and reduces mechanical loads that may occur during use. This reduces direct transmission to the magnet and protects the magnets from shocks. It contributes. The body magnetic positioning magnet (6) and the lid magnetic Positioning magnet (7) should fit tightly into the magnet housing (8), closure plate, mechanical clasp, screw connection, overlay or molding It can be fixed using at least one of the methods. 15 Magnetic positioning contact plate (32), housing magnetic positioning opposite the magnet (6) or the cover magnetic positioning magnet (7) or These can be positioned in the contact area. The magnetic field in question... Positioning contact plate (32) is made of a material exhibiting ferromagnetic properties. by creating and directing the magnetic flux, the attractive force in a specific region is 20 concentration and direct exposure of magnet surfaces to impact or abrasion It helps to reduce the duration of stay. Magnetic positioning contact plate (32) also works with the magnetic field. by stabilizing the axis, the magnets are positioned in a repeatable manner relative to each other. can contribute to the study 25 In the invention, the magnetic force is applied when the lid (3) is held in the closed position and in the closing direction. While contributing to its removal, the precise positioning of the lid is essentially This is achieved through a mechanical guidance and centering system. For this purpose, the first guide surface (9) works oppositely on the lower body (2) and the cover (3) and There is a second guide surface (10). The first guide surface (9) has a closing movement of 30 during which the cover (3) comes into contact with the second guide surface (10) lateral or longitudinal It reduces the positional deviation in that direction. With the first guide surface (9) and the second guide surface (10), the cover (3) is in the correct position. when found, they can move over each other with low friction, the lid is faulty When approached from that direction, the lid should be angled to guide it to the correct direction, 35 They can have curved, straight, or a combination of both geometries. Guide surfaces (9, 10) are located directly on the lower body (2) and cover (3). 9 It can be assembled as is, or in the form of separate, wear-resistant parts. 5 It can be arranged. The first guide surface (9) and the second guide surface (10) are opposite each other. Linear, inclined, curved, conical, radius-shaped, and multiple shapes that will provide sliding contact. It can be made of surfaces or various combinations thereof. Guide the angles of inclination, lengths, and contact areas of the surfaces, the closing of the lid It can be differentiated according to its characteristics. 10 The cover (3) must be aligned with the lower body (2) in at least one direction, preferably laterally and longitudinally. at least one conical centering projection to ensure centering in the directions At least one centering slot (12) is used to accommodate this protrusion (11). Conical centering protrusion (11), centering slot during the closing movement of the lid (12) contacts the entrance area and thanks to the inclined structure of the surfaces, the lid is correctly 15 It directs to the center position. The conical centering projection (11) centering As it moves into its socket (12), the lateral and longitudinal ... The gaps are reduced in a controlled manner. Conical centering projection (11), Lateral, longitudinal and angular positional errors as they progress towards the centering slot (12) gradual reduction, the centering movement is continuous rather than sudden 20 It makes it happen. The conical centering projection (11) and the centering slot (12) of the cover (3) in such a way as to correct the deviation in direction within the same closing movement. These elements are arranged as follows. These elements can be located at a single point, or on the cover (3) and more than one 25 in the opposite corner or edge regions of the lower body (2). It can be used. The use of multiple centering elements allows the lid to rotate. It also helps to reduce angular deviations around its axis. At least one side guide vane to limit the lateral movement of the cover (3). There is at least one side guide channel (14) that accepts this wing (13). Side The guide vane (13) enters the side guide channel (14) during the closing movement and 30 It prevents the cover from sliding to the right or left. The entrance of the side guide channel (14) part of the side guide vane (13) can be placed inside the canal even with small positional deviations. It can be made widened or sloped in a way that will allow entry. The side guide vane (13) and the side guide channel (14) during the closing of the cover They are gradually interlocking. In the first stage, the side guide vane (13), side guide 35 reaching the wide entrance section of the channel (14); continuing the closing movement, the channel Its geometry narrows, making the lid's position more precise. Thus, the mechanical The guidance process is controlled and gradual, rather than a sudden impact. 5 is carried out. The side guide vane (13) is placed until the centering operation is completed. by limiting the rotation, wobble or lateral deviation of the cover contributes to other centering elements remaining in the correct working geometry. It provides. At the beginning of the guiding system there must be at least one guide entry port (36) 10 The guide inlet opening (36) is located when the cover (3) is closed. the elements easily fit into the corresponding guide surface or channel It provides. The guide port (36) is widened, beveled, rounded or funnel-shaped. It can have a shaped geometry and the lid can have small angular or lateral deviations. Even if it is switched off, it is possible for the mechanical guidance system to engage. 15 The guide entry port (36), the side guide channel (14), and the centering slot make it possible. (12), the first guide surface (9), the second guide surface (10) or one of them The excess can be created in the inlet section. Thus, the guide inlet port (36) is separate. It can be a standalone unit or integrated with the relevant guiding or centering element. It can also be created as follows. 20 To ensure the lid moves progressively towards the correct position, at least one A centering ramp (35) is used. The centering ramp (35) is placed on the cover (3) It creates an inclined surface relative to the closing direction, and the lid is in the wrong position. Upon contact, it slides the lid to the correct position. Centering ramp (35), first guide surface (9), second guide surface (10), conical 25 centering projection (11), centering slot (12), side guide vane (13) or side It can work together with the guide channel (14). At least one corner centering chamfer (30) in the corner areas of the lower body (2) and the cover (3) It is created. The corner centering bevel (30) connects the corner section of the cover to the lower body. It prevents the lid from slamming shut and aligns the lid 30 degrees with the joint line. It directs. Corner centering chamfer (30), especially the cover (3) is laterally shifted. or when it has shown angular deviation due to the gap in the hinge connection (4) It helps to direct the lid onto the lower body. At least one centering that determines that the cover (3) has reached the correct center position. There is a support (37). Centering support (37), mechanical guidance and 35 at the end of the centering movement, the cap may move further laterally or longitudinally. It limits the lid (3), body magnetic positioning magnet (6) 11 with the cover magnetic positioning magnet (7) to be in the correct position 5 It is being held in a position it arrived in. At least one end position to determine the final point of the lid's closing movement. The end position limiter (38) is used. The end position limiter (38) is located at the bottom of the cover. getting too close to the body (2), guiding and centering elements excessive force should not be applied or the magnets should not be placed directly and forcefully against each other. 10 It prevents collision. The final position limiter (38), cover (3) and lower body (2) It determines the anticipated closed position distance between them. On the lower body (2) or on the lid (3), in the direction of the lid movement closing. There is at least one lid stopper surface (15) that enables its limitation. The stopping surface (15) on the opposite component when the cover reaches the closed position. contact with the surface and the closing force to the hinge connection (4), centering It prevents excessive transfer to the elements or magnets. At least one closure support is required to ensure the closure position is maintained stably. (17) is located. The closed position support (17) is located at the bottom when the lid (3) is fully closed. It forms mechanical support between the body (2) and the cover and the cover from the outside 20 It reduces its inward flexing under applied pressure. Closed position support. (17), lid stopper surface (15), centering support (37) and final position Working together with the limiter (38), the loads in the closed position can be moved to different points. It ensures its distribution. Within the scope of the invention, the lid stopper surface (15), centering support (37), closed 25 The position support (17) and the final position limiter (38) perform different functions. The lid stopper surface (15) counteracts the force resulting from the closing action. contact surface; centering support (37), lateral and longitudinal centering of the cover the position where its movement ends; closed position support (17), closed position external the mechanical support area carrying the loads; the final position limiter (38) is the cover with 30 It refers to the limiting element that determines the final approach distance between the lower and lower fuselages. These elements can be formed as separate parts, or in pairs or more. also in the form of integrated surfaces that perform the same function on the same structure It can be adjusted. During the closing movement, the centering support (37) This ensures the lid reaches the correct geometric position. Subsequently, the lid 35 stopping surface (15) withstands the closing force, end position limiter (38) 12 determining the final approach distance and the closed position support (17) is closed 5 It carries the usage loads that occur in this situation. Between the mutually working guiding and centering elements, the closing movement... will allow but will limit the formation of unwanted gaps in the closed position. A working tolerance is allowed. This tolerance is determined by the manufacturing process of the material used. method, thermal expansion behavior, surface roughness and 10 that occur during use This is determined taking into account potential wear and tear. Guidance and centering. The parts of the surfaces exposed to wear, low friction or wear-resistant They can be made from durable materials or with replaceable spacers. It can be supported. To reduce the impact and vibrations that may occur during closing, the bottom 15 body (2), cover (3), cover stopper surface (15), closed position support (17) or end At least one elastomer shock absorber (31) on the position limiter (38) It is located. The elastomer shock absorber (31) is located at the end of the closing movement. By compressing, it dissipates some of the kinetic energy, reduces the closing noise, and Guidance, centering and magnetic positioning elements subjected to impact 20 It limits the amount of compression of the elastomer shock absorber (31). will not change the closed position of the cover and the mechanical centering elements It is limited in such a way as not to disrupt its mutual position. Elastomer impact The elastic deformation of the damper (31) is only for the damping of the impact energy. 25 It is kept within the boundaries. At least one opening limiter (16) to control the amount of opening of the lid (3) There is an opening limiter (16) that prevents the lid from opening beyond the specified opening angle. by preventing the hinge link (4) and the hinge shaft (5) from being overstressed It restricts. The opening limiter (16) is a flexible 30 that extends between the body and the lid. a connection, a mechanical stop, a projection-channel relationship, or a hinge structure It can be configured as an integrated constraint element. A body frame (29) around the upper circumference of the lower body (2), and around the lid (3) There is a cover frame (28) that works in opposition to the body frame (29). Cover frame (28) and body frame (29) are opposite each other when the box is closed 35 aligned and a protective outer border around the card carrying compartment (18) The frames (28, 29) form the regular joint line between the cover and the body. 13 This ensures that the loads acting on the box from the outside are distributed over a wider area. 5 It contributes to its spread. The cover frame (28) and the body frame (29) can partially fit into each other. It can have a geometry that allows for overlapping or mutual contact. This The structure prevents dust and similar foreign substances from the external environment from directly entering the box. This makes it difficult to enter and reduces the lateral movement of the lid when it is in the closed position. 10 First guide surface (9), second guide surface (10), centering ramp (35) and corner centering bevel (30), cover frame (28) or body frame (29) on It can be formed. The cover frame (28) and the body frame (29) interlock with each other. The sections provide additional circumferential guidance as the lid approaches the closed position. the lid rotates in the horizontal plane and moves laterally 15 It can limit. A card carrying compartment (18) in which the cards are placed inside the lower body (2) It has a card holder (18) for a single card or multiple cards stacked on top of each other. It is designed with internal dimensions that can accommodate multiple cards. The length and width of the compartment... and its depth can be adjusted according to the card dimensions intended to be stored. 20 A card support base (19) that holds the cards in the lower section of the card carrying compartment (18) It is located. The card support base (19) holds the cards in an uncontrolled manner with the base of the lower body (2). It prevents contact in this way and keeps the cards at the specified height. Card The support base (19) can be flat, stepped, slightly inclined or make it easier to take the cards. It can have a geometry. 25 At least one side card support surface (20) on the side sections of the card carrying compartment (18) It is located. The side card support surface (20) allows cards to be placed to the right or left inside the box. restricting movement and the edges of the cards pressing against the rigid parts of the lower body It prevents collision. The side card support surface (20) accepts different card widths. In order to achieve this, they can be created in fixed, flexible, or adjustable forms. 30 Cards may come out of the card holder (18) unintentionally or freely inside the box There is at least one card fixing protrusion (21) to reduce its movement. Card securing tab (21), holding the edge or corner of the card partially while carrying the card It is located inside the compartment. The card fixing protrusion (21) prevents damage to the card. It can be formed in a rounded or flexible structure that will not give way. 35 Do not scratch, wear or direct hardness of the card surfaces with the lower body (2) In order to reduce contact, the card carrying compartment (18) has at least one inner protective surface (24) 14 It has an inner protective surface (24), a soft textured coating, an elastomer layer, 5 textile surface, low-friction polymer or similar protective material It can be created. Inner protective surface (24), card support base (19), side card support The card support base can be located on the surface (20) or on the inside of the cover facing the card. (19), side card support surface (20), inner protective surface (24), card printing surface (25) and The elastic pressure element (26) works together to protect the cards from vibration, impact and transport. preventing them from bumping into each other, scratching their surfaces, and moving freely inside the box. It limits its ability to do so. When the cover (3) is in the closed position, the cards move upwards. (25) It is located. Card printing surface (25), 15 on the top surface of the cards when the box is closed. will apply indirect force through the elastic pressure element (26) that will make direct contact or a working space so small that it restricts the free movement of the cards It can be arranged in such a way as to leave the card printing surface (25) in the box. This reduces the shaking and collisions between the items inside. To securely hold cards of varying numbers or thicknesses, 20 between the card printing surface (25) and the cover (3) or the card printing surface It contains at least one elastic pressure element (26). The elastic pressure element (26), When the cover (3) is closed, the card printing surface (25) is moved towards the cards in a controlled manner. It guides and flexes according to the thickness of the cards, applying the appropriate pressure force. It consists of: Elastic pressure element (26), spring, elastomer part, flexible arm, foam 25 It can be made from a layered or similar deformable structure. When inserting and removing cards from the card carrying compartment (18) At least one finger on the lower body (2) to facilitate user access Finger access groove (22) is available. Finger access groove (22) allows the user to access the edge of the cards. or allows him to reach the bottom section with his finger and the cards come out of the box 30 It facilitates removal by lifting. The elastic pressure element (26) The force will hold the cards firmly in the card carrying compartment (18), however bending of the cards, scratching of their surfaces or permanent deformation It is selected within a range that will not cause it to occur. Cards in contact with other cards. printing surface (25) preferably a rounded, low friction or protective surface 35 It can have this structure. The front section of the card carrying compartment (18) has at least one front opening (23). 5 The front mouth opening (23) allows access to the front edge of the cards and especially If the cards are tightly packed, they can be pushed or lifted. This makes removal easier. The finger access groove (22) and the front mouth opening (23) are the same. in an integrated manner within the region or complementing each other in different regions can be created. 10 Card carrying compartment (18), card support base (19), side card support surface (20), card fixing protrusion (21), card printing surface (25) and elastic printing element (26), different to accommodate cards of various lengths, widths, thicknesses, and quantities It can be dimensioned. Side card support surface (20) and card fixing protrusion (21) 15 in the form of fixed, flexible, movable or interchangeable spacers by creating and adapting the same card storage box to different card sizes. It can be provided. The lower body of the card storage box (1) is designed to be held and opened more comfortably. (2), at least one carrying grip on the outer surface of the lid (3) or both of them There is a carrying grip indentation (33). The carrying grip indentation (33) allows the user's fingers to reach 20 This ensures a more secure grip on the box surface, preventing the box from slipping out of your hand. It reduces the load and creates a gripping point when the lid is opened. When the card storage box (1) is left on a table, counter or similar surface At least one lower anti-slip support at the bottom of the lower body (2) to reduce slippage There is a surface (34). The bottom non-slip support surface (34) has high friction 25 It can be made from an elastomer, rubber, or similar material with a certain coefficient. It can also be produced integrated with the surface geometry of the lower body. non-slip backing surface (34), the areas of the box that are in direct contact with the surface It can also provide protection against wear and tear. When closing the card storage box (1), the user cover (3) is pressed against the lower body (2) 30 It moves correctly. In the first stage of the closing movement, the cover (3), hinge shaft (5) rotates around and the cover frame (28) approaches the body frame (29). At this stage, the guide entry point (36), the corner centering chamfer (30) and the centering ramp (35) begins to correct the overall position of the cover. Continuing the closing movement, the side guide vane (13) is placed into the side guide channel (14) 35 entering; the first guide surface (9) and the second guide surface (10) are in contact with each other. These contacts reduce the lateral movement of the lid and keep the lid in contact with the lower body. 16 It directs in the conical direction. At the same time, the conical centering projection (11), 5 progressing to the centering slot (12) and the fine positional between the cover and the lower body It eliminates deviations. When the cover (3) approaches the closed position, the body magnetic positioning magnet (6) The attractive force between the cover magnetic positioning magnet (7) is increasing. Magnetic attraction, with its orientation determined by mechanically guided elements, moves the cover for the last 10 minutes. It pulls the magnets towards the closed position. This prevents the magnets from uncontrollably pulling the lid open. This prevents the magnetic force from being pulled in a different direction; the magnetic force is mechanically determined. It is used as a force that complements the direction of motion. In the final stage of the closing movement, the lid (3) rests on the centering support (37), closed to the position support (17), to the cover stop surface (15) and to the final position limiter 15 (38) reaches. The elastomer shock absorber (31) compresses and releases the closing energy. It reduces and prevents hard contact between the lid and the lower body. Lid closed When it reaches the position, the card printing surface (25) and the elastic printing element (26) press the cards into place. It holds firmly on the support base (19) and side card support surfaces (20). When opening the card storage box (1), the user must pull the carrying grip from the recess 20 (33) or from a suitable gripping area created between the cover and the lower body By using force, it applies force to the lid (3) in the direction of opening. The applied force, body magnetic positioning magnet (6) and cover magnetic positioning When the attractive force between the magnet (7) is exceeded, the cover rotates around the hinge shaft (5) It opens. As the lid begins to open, the distance between the magnets increases and 25 The magnetic attraction force gradually decreases. Mechanical guidance and The centering elements can be separated from each other in the direction of the lid's opening and The lid is geometrically designed so as not to lock the opening movement. When it reaches the specified opening position, the opening limiter (16) is activated and It prevents the lid from opening further. Magnetic attraction 30 during the opening movement. The force gradually decreases as the distance between the magnets increases. The mechanical centering elements are separated from each other in a controlled manner, allowing the lid to... It allows it to open without creating additional friction or jamming. With the opening of the cover, the card printing surface (25) prints on the cards. disappears or decreases. The user, finger access groove (22) and front mouth 35 by accessing a portion of the cards through the opening (23) and removing the cards from the card carrying compartment (18) can be removed. When the cards are reinserted, the card fixing tab (21) is on the side. 17 Card support surface (20), card support base (19) and inner protective surface (24) ensure that the cards are correctly 5 It helps to settle into the location. Lower body (2), cover (3), cover frame (28), body frame (29), guide surfaces, centering elements and card carrying compartment (18); plastic injection, metal processing, sheet metal shaping, casting, pressing, additive manufacturing, woodworking or composite production They can be manufactured using these methods. These parts can be produced as a single piece in 10 steps. They can be assembled together, or produced separately and connected mechanically by gluing, welding, or interlocking. They can be assembled using tight-fitting or similar joining methods. The number, position, geometry, and magnetic force of the magnets used in the invention; depending on the box size, lid weight, materials used, and desired closure It can be changed according to the strength. In the preferred application, the body magnetic 15 positioning magnet (6) and cover magnetic positioning magnet (7) opposite each other It is used in the form of two magnets. An alternative application is also considered. One of the elements is a permanent magnet, and the other is a magnetic element exhibiting ferromagnetic properties. It can be formed in the form of a positioning contact plate (32). However The working relationship between the mechanical guiding and centering elements is preserved. 20 Conical centering projection (11), centering slot (12), side guide vane (13), side guide channel (14), centering ramp (35), guide inlet opening (36) and centering The number, size and placement of the support (37) according to the box geometry They can be changed. These elements are opposite each other on the cover (3) or lower body (2). They can also be created by changing their positions. For example, a conical centering projection 25 (11) the centering slot (12) may be located on the lower body, or on the cover. The conical centering projection is on the cover, and the centering slot is on the lower body. It can be positioned there. The working principle of the invention is; guide input at the beginning of the closing movement of the lid (3). mouth (36), corner centering chamfer (30), centering ramp (35), first guide surface 30 (9) and rough guidance through the second guide surface (10); the movement next to the side guide vane (13), side guide channel (14), conical centering projection (11) and precise centering via the centering slot (12); closed When approaching the position, the body magnetic positioning magnet (6) and the cover The final position is reached by the attractive force between the magnetic positioning magnet (7) 35 bringing and lid stopper surface (15), closed position support (17), centering to be held firmly on the support (37) and the final position limiter (38) 18 It is based on this principle. Thanks to this sequential operation, the cover can be precisely adjusted by the user in 5 steps. Even if it is moved out of alignment towards the closing position, it is guided to the correct position; The effect of hinge tolerances, manufacturing variations, and usage-related deviations. reduced; secure storage of cards and cover and lower body The aim is to ensure that the two sides converge in a repeatable position. As a result, in the invention; the hinge connection (4) only provides rotational movement, 10 Mechanical guidance elements enable rough and precise guidance of the cover. It achieves geometric accuracy in the closed position of the centering elements. The magnetic positioning system creates and positions the lid in the correct position. By pulling it in a controlled manner, it ensures that it is held firmly in the closed position. Thus, mechanical guidance, mechanical centering, and magnetic positioning 15 The system functions as a single integrated system where each part complements the other.

Claims

19 REQUIREMENTS 5 1. A subbody (2), on which the cards are stored, is the subbody (2). a small card carrying compartment (18), a cover that can be opened and closed relative to the lower body (2) (3) and at least one that enables rotational movement between the cover (3) and the lower body (2). A card storage box (1) with hinge connection (4) and its feature is; lid (3) 10 as the cover approaches the closed position between the lower body (2) forming at least one body magnetic positioning magnet (6) and at least one cover a magnetic positioning containing magnetic positioning magnet (7) to the system, between the cover (3) and the lower body (2) as the cover approaches the closed position At least one primary guide that works in tandem with the cover to guide its orientation. surface (9), at least one second guide surface (10), at least one side guide vane 15 (13) and a mechanical system including at least one corresponding lateral guide channel (14). Approaching the guidance arrangement, closed position between cover (3) and lower body (2) by reducing the lateral, longitudinal and angular positional deviations of the lid during closing. at least one conical centering projection (11) that enables it to be directed to the position and a mechanical 20 which includes at least one corresponding centering slot (12) The magnetic positioning system in question has a centering arrangement. with mechanical guidance system and mechanical centering system cover (3) to work together in a complementary way between the lower body (2) It is characterized by being organized.

2. Card storage box (1) according to claim 1, its feature is; body magnetic 25 positioning magnet (6) and cover magnetic positioning magnet (7) will create mutual magnetic attraction when the lid (3) approaches the closed position. positioned in such a way that the magnets in question have at least one magnet housing (8) is characterized by being included within.

3. Card storage box (1) according to claim 2, its feature is; body magnetic 30 positioning magnet (6), cover magnetic positioning magnet (7) and / or magnet housing (8), by at least one magnet carrier block (27) It is characterized by its support.

4. Card storage box (1) according to claim 2 or 3, its feature is; magnetic In the positioning system, the body magnetic positioning magnet (6) and the cover 35 assists in the mutual positioning of the magnetic positioning magnet (7). having at least one magnetic positioning contact plate (32) and the magnetic field of the magnetic positioning contact plate (32) 5 Contributes to the orientation and / or support of the magnetic attraction effect It is characterized by being designed in a way that will provide this.

5. Card storage box (1) according to claim 1, its feature is; mechanical guidance the first guide surface (9) and the second guide surface (10) in the arrangement, As the lid (3) approaches the closed position, the lid comes into contact with the other side of the lid. and / or arranged to reduce positional deviations in the longitudinal direction 10 It is characterized by its being.

6. Card storage box (1) according to claim 5, its feature is; first guide surface (9) The second guide surface (10) can be linear, inclined, curved, conical, radius transition or by being created using at least one of the multi-faceted geometries It is characterized by 15 7. Card storage box (1) according to claim 1, its feature is; mechanical centering the conical centering projection (11) located in the arrangement with the centering socket (12) It is designed to work together and the lid (3) is in the closed position It is designed to allow for centering movement as it approaches. It is characterized by... 20 8. Card storage box (1) according to claim 7, its feature is; conical centering the projection (11) and the centering slot (12), the cover (3) and the lower body (2) one or more in opposite corner and / or edge regions It is characterized by its ability to be created.

9. Card storage box (1) according to claim 1, its feature is; side guide flap (13), 25 Entering the side guide channel (14) gradually as the cover approaches the closed position with the cover (3) being designed to limit the lateral movement It is characterized by...

10. Card storage box (1) according to claim 9, its feature is; side guide channel (14) There must be at least one guide entrance port (36) in the entrance section and the aforementioned 30 guide inlet opening (36), side guide vane (13) side guide channel (14) It is characterized by being designed in a way that facilitates navigation. is being done.

11. Card storage box (1) according to claim 1, its features are; cover (3) and lower body (2) As the lid approaches the closed position, the lid (3) is in the correct position 35 with the presence of at least one centering ramp (35) which enables its orientation It is characterized by... 21 12. Card storage box (1) according to claim 11, its feature is; centering ramp (35), 5 first guide surface (9), second guide surface (10), conical centering projection (11), centering slot (12), side guide vane (13) and / or side guide channel It is characterized by being designed to work together with (14).

13. Card storage box (1) according to claim 1, its feature is; lower body (2) and / or lid (3) on which at least one 10 ensures that the lid (3) reaches the correct center position. centering support (37) determines the end point of the lid closing movement. at least one end position limiter (38), at least one that meets the closing force lid stopper surface (15) and at least forming mechanical support in the closed position It is characterized by having a closed position support (17).

14. Card storage box (1) according to claim 13, its feature is; centering support 15 (37), the lid stopper surface (15), the end position limiter (38) and closed position support (17), alignment of the cover (3) in the closed position, to ensure that it is supported and that the lockdown movement is limited It is characterized by being organized in a way that allows them to work together.

15. Card storage box (1) according to claim 13 or 14, its features; cover (3), lower body 20 (2), lid stopper surface (15), closed position support (17) and / or final position on the limiter (38) that occurs as the cover approaches the closed position At least one elastomer shock absorber (31) to reduce shocks and vibrations It is characterized by its presence.

16. Card storage box (1) according to claim 1, its feature is; the cover (3) to the lower body (2) 25 According to the hinge connection (4) which allows opening and closing movement, rotation the amount of opening of the lid (3) with at least one hinge shaft (5) extending along its axis there must be at least one opening limiter (16) limiting the opening in question. the limiter (16), hinge link (4) and hinge shaft (5) It is characterized by being designed in a way that prevents strain. 30 According to claim 17, the card storage box (1) has the following features: at least on the lower body (2) a body frame (29) and cover (3) on the body frame (29) There must be at least one cover frame (28) working in opposite directions and these frames must be closed aligned with each other in position, a protective cover around the card carrying compartment (18) It is characterized by its ability to form a combination. 35 18. Card storage box (1) according to claim 17, its feature is; cover frame (28) the body frame (29) partially interlocking or in contact with each other having a geometry and the first guide surface (9), the second guide surface 22 (10), corner centering chamfer (30) and / or centering ramp (35) in question 5 It is characterized by being able to be created on frameworks (28, 29).

19. Card storage box (1) according to claim 18, its features are; cover (3) and lower body (2) the mutually interacting guiding and centering elements, closing will allow movement and limit positional space in the closed position. 10 characterized by being designed to have tolerance values. is being done. According to claim 20. 1, the card storage box is (1) and its feature is; card carrying compartment (18) at least one card support base (19), at least one side card support surface (20), at least one card securing tab (21), at least one finger access groove (22), at least one front mouth opening (23), at least one inner protective surface (24), at least one card printing surface 15 (25), at least one elastic pressure element (26), at least one to facilitate the transport of the box a transport grip recess (33) and at least one on the surface of the box that contacts the ground It is characterized by having a non-slip bottom support surface (34).

21. Card storage box (1) according to any of claims 1 to 20, its feature is; body magnetic positioning magnet (6) and cover magnetic positioning 20 of magnets (7), circular, polygonal, ring, disk, prismatic or any of these created using at least one of the geometries consisting of combinations It is characterized by its being.

22. Card storage box (1) according to any of claims 1 to 21, its feature is; first guide surface (9), second guide surface (10), side guide vane (13), side guide 25 channel (14), conical centering projection (11) and centering slot (12), bottom most of the symmetrical or asymmetrical layouts on the body (2) and the lid (3) It is characterized by being positioned in relation to only a few people.

23. Card storage box (1) according to any of claims 1 to 22, its feature is; bottom body (2) and cover (3), polymer, metal, composite, fiber reinforced composite, 30 using at least one of the following: wood-based materials or a combination thereof It is characterized by the fact that it has been produced.

24. Card storage box (1) according to any of claims 1 to 23, its feature is; card the carrying case (18) will accommodate different card thicknesses and card numbers 35 It is characterized by...

25. Card storage box (1) according to any of claims 1 to 24, and its feature is; magnetic positioning system, mechanical guidance system and mechanical 23 The centering pattern can be repeated between the lid (3) and the lower body (2) 5 They are designed to work together in a way that will provide positioning. It is characterized by...