MECHANICAL MATCHING TRAINING MATERIAL LOAN-RETURN CONTROL STATION
Patent Information
- Application Number
- TR202614247U
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-08-21
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2036-08-21
Abstract
Description
LOAN / RETURN OF MECHANICAL MATCHING TRAINING MATERIAL. CONTROL STATION 1. TECHNICAL FIELD This invention relates to educational technologies and the physical storage of classroom teaching materials. controlled borrowing of educational materials used by students and teachers and their return, physical education materials placed back into their correct slots, and with training stations for the mechanical demonstration of material usage scenarios It is related. The invention specifically includes the main station body, material housing, material carrier element, and material ID code, slot ID code, loan status mechanism, return acceptance channel, return code Matching mechanism, full fit verification element, return lock tongue, mechanical case Mechanical matching training material including indicator and teacher reset mechanism It relates to the loan-return control station. The key feature of the invention is that when educational material is taken from the material holder, the same material remains. the slot mechanically switches to the loan position, return acceptance in the loan position The activation of its geometry is via the material identification code on the returned material. Mechanical matching of the slot ID code in the material slot ensures the correct material is present. The return lock tongue should not be released before reaching the seated position and the correct material should be used. Once it reaches the seating position, the nest status indicator switches back to the new position. It means being ready for loan restructuring. The invention concerns the verification of material identity at the station using electronic RFID, cameras, using image processing, wireless communication or artificial intelligence processor This is not being done. The verification between material ID and slot ID is not being done directly. It is achieved through physical-mechanical coupling. 2. STATE OF KNOWLEDGE OF THE ART In the known state of the art, it allows training materials to be stored at a station. There are physical training stations. Instruction is described in patent number US6129366A. A mobile teaching station carrying 35 teaching materials is described. The station provides teaching materials. There are storage areas for storing tools and a teaching surface. Teaching materials are returned to storage areas after use and the station Security panels on 1.5 meters provide storage for materials. This structure is for training. It is known that the material and the storage station are used together. This shows that, however, in the structure in question, the material slot is borrowed when the material is taken. The transition to that position, during return, only when a specific material is in its exact fitting position. mechanical acceptance geometry that allows access and, as a result of correct return, the housing condition Mechanical modification is not explained. Physical access for locked material distribution and material return under the known state of the art. There are also compartments. Patent number US7835819B2 describes lockable compartments. a distribution cabinet, distribution compartments, and also where returned items are placed A secure return compartment is described. Items left in the return compartment are handled by authorized users. The compartment is kept closed until accessed. This structure ensures secure material delivery. and indicates that the secure return compartment is known. However, certain material is present here. The mechanical code does not match the corresponding mechanical code in the return slot; this is incorrect. physically preventing the material from reaching its full fitting position and correct It is not explained why the same slot will return to a new loan cycle once the material is fully fitted. In the current state of the art, materials used for educational purposes can be borrowed digitally. There are also systems in place to facilitate the issuance of returns and to track the return process. Document number CN115797116A details the training equipment and training programs. the association, receiving and returning of equipment by the user, and the management of the equipment. The monitoring of usage status through the system is explained. This technical structure... This creates a close technical situation in terms of electronic equipment management and return tracking. The invention in question is based on a database, RFID reader, or other system for loan and return transactions. not through an electronic tracking system, but through mechanical position changes of the material container and It is determined through a physical code match between the material and the socket. In the current state of the art, a physical object is stored according to a coded structure. It is also known to be directed to that location. These types of mechanical code verification structures, For example, patent number US4010868A describes the corresponding storage of coded keys. It is described as physically guiding and holding the tracks. Therefore The mechanical code on the material itself stands as a novel element. It is not being pursued. The technical difference in the invention in question is that code verification alone... It's not about making it 35. The technical difference is that when the material is received, the material slot is in the loan position. passing through, activating a different return acceptance geometry at this location, only correct The material must be able to pass through this geometry and reach a full fitting position, and the full fit The result is that the same socket mechanically returns to its original position. 2 5 Therefore, in the known state of the art; • educational material storage, • material distribution, • material return, • lockable material compartments, • Secure return compartments, • electronic material tracking systems, • mechanically coded physical objects They are known as separate technical structures. The protection sought in the invention in question does not lie in the individual presence of these features. In this invention, the material housing functions as a mechanical status carrier. The material housing When received via this channel, the home switches to loan mode, and in loan mode, it becomes a return acceptance channel. It is being activated because the material identification code of the returned material does not match the slot identification code. The material is not reaching the full seating plane; the correct material must reach the full seating position. Upon arrival, the return lock tongue is released and the same slot is ready for a new loan cycle. It is turning. 2.1. Explanation of the technical difference In the comparative study conducted, educational material storage stations and locked distribution systems were examined. And return systems and mechanical coding systems are known as separate technical fields. In contrast, the documents examined revealed a structure in which the following technical relationship exists together: Not detected: Material retrieval → mechanical transfer of material slot to borrow position → Enabling the return / acceptance geometry in loan mode → with material ID mechanical matching of socket identity → incorrect material not fitting physically preventing it from reaching its position → the correct material not fitting properly Reaching its current location → release of the return lock → new slot of the same material becoming ready for loan restructuring. 35 Thanks to this technical relationship, not only is the material stored or locked away, The physical condition between receiving and returning the material is the same material container. It is mechanically controlled within. 3 5 3. PURPOSE OF THE INVENTION The purpose of this invention is to enable educational materials to be controlled by students and teachers. ensuring that the material is borrowed in the correct manner and returned to the correct home. The goal is to create a mechanical training station. Another purpose of the invention is to mechanically relocate the material holder to the lending position when material is retrieved. The goal is to ensure it passes. Another objective of the invention is the return / receipt geometry of the material slot in the loan position. The goal is to enable its activation. Another purpose of the invention is to identify the material using a material identification code on the material and in the material holder. The goal is to ensure a mechanical match between the socket identification code. Another purpose of the invention is to ensure that the incorrect material reaches the correct seating position in the return slot. It is to block it mechanically. Another purpose of the invention is to ensure the return lock is activated when the correct material reaches the correct fitting position. The goal is to allow the tongue to be free. Another purpose of the invention is to ensure the mechanical condition of the material housing after correct return. The goal is to return the indicator to the return position. Another purpose of the invention is to transfer the material from the return location to the new borrowed location upon completion of the return process. The goal is to ensure it returns to a state ready for the cycle. Another purpose of the invention is to enable material authentication via electronic communication or It is performed without electronic sensing. Another purpose of the invention is to enable the teacher to decode the mechanical systems of the material compartments. The goal is to enable them to change it. 4. EXPLANATION OF THE FIGURES No form is included in the application. 5. EXPLANATION OF REFERENCES IN THE FIGURES Since no figures are included in the application, a reference list is not provided. DETAILED DESCRIPTION OF THE 6TH INVENTION 35 6.1. General structure 6.1.1. The invention relates to a mechanical matching educational material loan-return control station. 6.1.2. Station; main station body, material bay, material carrier element, material ID code, slot ID code, loan status mechanism, return acceptance channel, return code 4 / 5 matching mechanism, full fit verification element, return lock tongue, mechanical case It includes an indicator and a teacher reset mechanism. 6.1.3. Main station body, material holders and associated mechanical control It is the body that carries the components. 6.1.4. Material storage area: A designated area where educational materials are stored and returned. It is a physical home. 6.1.5. Material carrier element, movable part that carries the material within the material housing. It is a carrier. 6.1.6. The material identification code physically identifies that the material belongs to a specific material slot. It is a mechanical coding element that defines itself. 6.1.7. The slot identification code is the physical material code that the material slot will accept. It is the defining mechanical coding element. 6.1.8. The loan mechanism occurs when material is taken from the material slot. It is a mechanical device that brings the material slot to the borrowed position. 6.1.9. The return acceptance channel resends the material to the lending location. It is the physical channel that allows it to be taken in. 6.1.10. Return code matching mechanism, the material identification code and the slot identification code. It is a mechanical device that enables mutual physical matching. 6.1.11. The full fit verification element ensures the material fits perfectly within the specified material slot. It is a mechanical element that confirms that the seat has been reached. 6.1.12. The return lock tongue does not release until the material reaches its full fitting position. It is a mechanical locking element. 6.1.13. Mechanical status indicator shows the ready, loan, and return status of the material slot. It is an indicator that shows a change in physical location. 6.1.14. The teacher reset mechanism prepares the material slot for the new loan cycle. It is a mechanical control element that returns to its starting position. 6.2. Main station body 6.2.1. Main station body; material storage area, status indicator area, instructor It includes an access zone, a return mechanism zone, and a reset zone. 35 6.2.2. Material housing area, where material housings are arranged on the main body. It is a region. 6.2.3. Status indicator area, mechanical status indicator of the material housing It is the region where it is seen. 5 6.2.4. The teacher access area is where the mechanical code components of the material hub are configured. It is a region. 6.2.5. Return mechanism area, return acceptance channel and return code matching mechanism. It is the region where it is located. 6.2.6. The reset zone is the area where the teacher reset mechanism is located. 6.3. Material slot 6.3.1. Material housing; housing body, material inlet opening, material conveyor channel, housing identification code, loan location language, return acceptance channel, full seating surface, and return lock counterpart. It includes. 6.3.2. The housing body is the main load-bearing part of the material housing. 6.3.3. The material inlet is the opening through which the material enters the material holder. 6.3.4. The material conveyor channel determines the movement path of the material conveyor element. 6.3.5. The slot identification code is the mechanical code of the material that the material slot will accept. It defines it. 6.3.6. The borrowing position language describes the mechanical condition of the material slot when material is borrowed. It is the element that changes things. 6.3.7. The return acceptance channel allows the material to be reinserted into its material slot while in loan mode. It is the channel that provides it. 6.3.8. Full seating surface, the final mechanical position of the material in the return process. It constitutes. 6.3.9. Return lock counterpart, with return lock tongue when the material is in the correct full fitting position. It forms a mechanical match. 6.4. Material carrier element 6.4.1. Material carrier element; carrier body, material seating surface, removal holder The surface includes the return push surface and the positioning mechanism contact tongue. 6.4.2. The carrier body is the main carrier part that moves within the material housing. 6.4.3. Material seating surface, the physical position of the training material on the carrier. It constitutes. 35 6.4.4. The retrieval holding surface allows the student or teacher to retrieve the material from the carrier. It provides. 6.4.5. Return push surface, allowing the material to be repositioned onto the carrier during return. It provides. 6 5 6.4.6. The state mechanism contact language, the borrowing state mechanism when material is received. It transmits motion. 6.5. Material identification code 6.5.1. Material identification code; code protrusion, code spacing, alignment shoulder and return. It is a mechanical code structure that includes a guiding surface. 6.5.2. The code protrusion enters the corresponding code channel in the material slot. 6.5.3. The code gap allows the return lock tongue to move to the specified position. 6.5.4. The alignment shoulder determines the orientation of the material in the return acceptance channel. 6.5.5. The return guidance surface ensures the material fits perfectly onto the correct code match surface. It provides guidance. 6.6. Loan mechanism 6.6.1. Loan mechanism; status slider, loan position tooth, ready position tongue, return. It includes an acceptance contact surface and a return spring. 6.6.2. The status slider moves between the ready and borrowed positions of the material slot. is doing. 6.6.3. The borrowed position female, when material is received, the position slider is in the borrowed position. It holds. 6.6.4. The ready position language changes to the ready position of the status slider when the return is complete. It makes it rotate. 6.6.5. Return acceptance contact surface, mechanical movement from the return movement of the correct material. It meets the needs. 6.6.6. The return spring returns the status slider to its initial position, suitable for the new loan cycle. It rotates. 6.7. Return acceptance channel 6.7.1. Return acceptance channel; channel body, inlet guiding surface, code passing channel, incorrect The code includes barrier language, full-fit transition channel, and channel return language. 6.7.2. The canal body is the main physical component that forms the return path for the material. 35 6.7.3. The inlet guiding surface directs the returned material to the canal entrance. 6.7.4. Code transfer channel, the correct material identification code matches the slot identification code with the physical It ensures the match. 7 5 6.7.5. Incorrect code blocking language when the material ID code and the slot ID code do not match. It prevents the material from progressing fully into the implantation canal. 6.7.6. The full-fit transition channel ensures the material fits perfectly to the correct code match. It enables progress. 6.7.7. Channel return language, removal of incorrect material from the return acceptance channel. It provides. 6.8. Return code matching mechanism 6.8.1. Return code matching mechanism; slot code carrier, code counterpart pin, code It includes a steering channel, a mating slider, and a mating return spring. 6.8.2. The slot code carrier physically carries the slot identification code. 6.8.3. Code correspondence pin, mechanical with corresponding code space in the material identification code. is making contact. 6.8.4. Code routing channel, the specified path of movement of the code correspondence pin. It constitutes. 6.8.5. The matching slider is activated when the material ID code matches the slot ID code. The full fit leaves the passageway free. 6.8.6. The matching return spring releases the matching slider after the return cycle is complete. It returns to the starting position. 6.9. Full fit verification element 6.9.1. Full seat verification element; verification pin, verification contact surface, full The seating channel includes a return lock contact tongue and a verification return spring. 6.9.2. The verification pin mechanically confirms that it has reached the exact seating surface of the material. It perceives. 6.9.3. The verification contact surface receives motion from the material carrier element. 6.9.4. The full seat channel allows the verification pin to advance only in the full seat position. It provides. 6.9.5. The return lock tongue transmits the movement of the verification pin to the return lock tongue. 35 6.10. Return lock tongue 6.10.1. Return lock tongue; lock body, lock tongue, verification contact surface, lock guide channel and The lock includes a return spring. 8 5 6.10.2. The lock tongue must be returned to the lock counterpart before the material reaches the correct, fully seated position. It does not pass. 6.10.3. The verification contact surface receives its motion from the full-fit verification element. 6.10.4. The locking guide channel determines the movement path of the lock tongue. 6.10.5. The lock return spring returns the lock tongue to its initial position when a new loan cycle begins. It returns it to its original position. 6.11. Mechanical status indicator 6.11.1. Mechanical status indicator; indicator housing, readiness indicator, loan indicator, return indicator. The indicator includes the indicator slider and the indicator return spring. 6.11.2. The ready indicator shows the new material acceptance position of the material slot. 6.11.3. The loan indicator becomes visible when material is removed from the material slot. It is passing. 6.11.4. The return indicator becomes visible when the correct material reaches the correct fit position. It is moving to that position. 6.11.5. Indicator slider, borrow status mechanism and full fit verification. It carries the movements coming from its element. 6.12. Teacher reset mechanism 6.12.1. Teacher reset mechanism; reset body, teacher holding tip, borrow tip status return surface, return match return surface, lock surface and indicator It includes a return surface. 6.12.2. The reset body is the main mechanical part that transmits the reset motion of the instructor. 6.12.3. The borrowed state return surface returns the state slider to its ready position. 6.12.4. Return match return surface, return match slider to its starting position. It rotates. 6.12.5. The return surface of the lock returns the return lock tongue to its initial position. 6.12.6. The indicator return surface moves the mechanical status indicator to the ready position. It rotates. 35 6.13. Modular material slots 6.13.1. The main station body has multiple material slots. 6.13.2. Each material slot is assigned its own slot identification code. 6.13.3. Each material slot has a separate loan status mechanism. 9 5 6.13.4. Each material slot has a separate return code matching mechanism. 6.13.5. Material holders are attached to the main station body in a removable manner. 6.13.6. Removable material slot structure, different slots for different groups of educational materials. It enables the use of these codes. 6.14. Employment relationship 6.14.1. The educational material is ready on the material carrier element of the material holder. It is kept in its current position. 6.14.2. Status mechanism when the material carrier element is pulled out of the material holder. Contact language transmits movement to the borrowing mechanism. 6.14.3. The loan status mechanism moves the status slider to the loan position and returns it. It activates the acceptance channel. 6.14.4. The loan indicator becomes visible. 6.14.5. When the material is returned, the material identification code is entered into the code transfer system in the return acceptance channel. It enters the channel. 6.14.6. The match slider moves when the material ID code and the slot ID code match. It allows for and fully frees the transition channel for seating. 6.14.7. Incorrect code blocking language when material ID code and socket ID code do not match. It remains in the closed position, preventing the material from reaching the full seating surface. 6.14.8. The verification pin did not fit properly because the wrong material did not reach the correct seating surface. The channel is unable to proceed to the verification stage. 6.14.9. The verification pin moves when the correct material reaches the full seating surface. and transmits movement from the return lock tongue to the return lock tongue via the return lock tongue. 6.14.10. The return lock tongue matches the return lock counterpart in the material slot. 6.14.11. The return indicator becomes visible. 6.14.12. After a correct return, the ready position language status slider returns to the ready position. It makes it rotate. 6.14.13. The status indicator shows the ready position. 6.14.14. The same material slot is becoming ready for reloan cycle. 6.14.15. When the teacher reset mechanism is activated, the status slider, matching slider, The 35 return lock tongue and mechanical status indicator return to their initial positions. 6.15. Alternative mechanical structure 5 6.15.1. Material identification code, located on a protrusion, gap, channel, pin or shoulder on the body. It is formed from its structure. 6.15.2. Slot identification code, corresponding channel, pin, protrusion, gap located in the material slot. or is formed from the shoulder structure. 6.15.3. The material carrier element is arranged in a linearly moving sliding structure. 6.15.4. The material-carrying element is arranged within a load-bearing structure that undergoes rotational movement. 6.15.5. The return acceptance channel is arranged in a linear or inclined channel structure. 6.15.6. Mechanical status indicator: Colored indicator plate, slider, rotating disc or window. It is formed from its structure. 6.15.7. In all mechanical systems, the correct material must be in the correct position for the return lock tongue. It creates the necessary mechanical condition for it to move to the free position. 7. INDUSTRIAL APPLICABILITY The invention concerns a mechanical matching educational material loan-return control station; made of plastic. injection molding, wood frame production, composite frame production, mechanical bolt production, pin and spring assembly, physical code element production, mechanical status indicator production, and training. The device can be manufactured on an industrial scale using assembly techniques. Main station body, material hoppers, material conveyor elements, return acceptance channels, Mechanical code elements, status indicators and locking mechanisms made of plastic, composite, or wood. It can be manufactured using basic board and durable training equipment materials. Material identification codes and socket identification codes for plastic, metal, wood, and composite. It can be created with various materials. Mechanical loan status mechanism, return code matching mechanism, perfect fit. Verification element and return lock tongue; bolt, pin, spring, guide channel and mechanical linkage. It can be produced using these elements. Modular material slots are designed for storing and returning different educational materials. They can be manufactured in physical dimensions and fitted to the same main station body. The station that will be the subject of the meeting is; primary schools, secondary schools, special education institutions, science centers, laboratory classrooms, training workshops, teacher-controlled material use areas, and It is used in classroom environments where students share learning materials. 35 11
Claims
1. It is a mechanically coupled training material loan-return control station; its main feature is: station body, material slot located on the main station body, material material carrier element carried in its housing, material carrier element or material The material identification code located on the body, and the slot identification code located in the material slot, The material changes from ready to loan state when it is retrieved from the material slot. Loan status mechanism, loan acceptance channel activated in loan status, material identity. Return code matching that provides a physical match between the code and the slot identification code. The mechanism allows the material to reach its full fitting position without a correct code match being established. The mechanical barrier tongue, which prevents the material from reaching its full seating position, ensures complete accuracy. The seating verification element is released when the correct material reaches the full seating position. The remaining return lock tongue and material slot are physically ready, loan and return statuses. It includes a mechanical status indicator.
2. According to Claim 1, the mechanically matched training material loan-return control station Features; material housing, housing body, material inlet opening, material conveyor channel, housing identification code, loan location language, return acceptance channel, full seating surface, and return lock counterpart. It includes.
3. According to Claim 1, the mechanically matched training material loan-return control station Features; material carrying element, carrier body, material seating surface, removal grip Its surface includes a return push surface and a contact tongue for the status mechanism.
4. According to Claim 1, the mechanically matched training material loan-return control station Features include: material identification code, code protrusion, code spacing, alignment shoulder, and return. It includes an orientation surface.
5. According to Claim 1, the mechanically matched training material loan-return control station Its feature is; the status slider of the borrowed status mechanism, borrowed position tooth, ready position tongue, It includes a return acceptance contact surface and a return spring.
6. According to claim 5, the mechanically matched training material loan-return control station Its feature is that the status slider is ready with the movement coming from the material carrier element. It is the transition from a borrowed position to a borrowed position. 12 5 7. According to Claim 1, the mechanically matched training material loan-return control station Features include: return acceptance channel body, inlet guiding surface, code passing channel, The incorrect code includes an obstacle language, a full-seat transition channel, and a channel return language.
8. According to Claim 7, the mechanically matched training material loan-return control station This feature is used when the incorrect code blocking language material ID code and socket ID code do not match. This prevents the material from fully progressing into the passageway.
9. According to Claim 1, the mechanically matched training material loan-return control station Feature; return code matching mechanism slot code carrier, code correspondence pin, code The system includes a steering channel, a mating slider, and a mating return spring.
10. According to Claim 9, the mechanically matched training material loan-return control station The feature is that the material ID code of the matching slider matches the slot ID code. The result is that it releases the passageway for full seating.
11. According to Claim 1, the mechanically matched training material loan-return control station Features; full fit verification element verification pin, verification contact surface, full The seating channel includes a return lock contact tongue and a verification return spring.
12. According to Claim 11, the mechanically matched training material loan-return control station Feature; return lock contact tongue when the verification pin reaches the material's full seating surface. It is the transfer of movement from the return lock tongue.
13. According to Claim 1, the mechanically matched training material loan-return control station Features include: return lock tongue, lock body, lock tongue, verification contact surface, lock guide channel. and it includes a locking return spring.
14. According to claim 13, the mechanically matched training material loan-return control station Its feature is that the lock tongue returns to the strike plate before the material reaches its full seating position. It is the failure to pass.
15. According to Claim 1, the mechanically matched training material loan-return control station Features include: mechanical status indicator, indicator housing, ready indicator, loan indicator. The return indicator includes an indicator slider and an indicator return spring. 13 5 16. According to claim 15, it is a mechanically matched training material loan-return control station. Its feature is that the loan indicator becomes visible when the material is removed from the material slot. The return indicator becomes visible when the correct material reaches the full seating position. It is the transition to that position. According to Claim 17, the mechanically matched training material loan-return control station The feature is that the material slot switches to loan mode when material is received, thus accepting returns. This means the channel becomes active.
18. According to Claim 17, the mechanically matched training material loan-return control station The feature is that the return acceptance channel only has a full seating transition channel in the loan position. It is about making it accessible. According to Claim 19, the mechanically matched training material loan-return control station The feature is that when the material ID code and the socket ID code do not match, the wrong code is blocked. physically preventing the material from reaching the full seating surface and the return of the material It is about causing it to exit the acceptance channel. According to Claim 1, the mechanically matched training material loan-return control station Its feature is that the return lock tongue returns to the return lock position once the correct material reaches the correct fitting position. mechanically matching with its counterpart and the mechanical status indicator returning to its position It is the passing of.
21. According to Claim 1, the mechanically matched training material loan-return control station Feature; teacher reset mechanism reset body, borrowed status return surface, return match return surface, lock return surface and indicator return surface It includes.
22. According to claim 21, the mechanically matched training material loan-return control station The feature is; the teacher reset mechanism's status slider is set to the ready position, matching. return the bolt to its starting position, return the lock tongue to its starting position, and the mechanical position. It is the process of returning the indicator to the ready position. According to Claim 23, 1, the mechanically matched training material loan-return control station Its feature is that the main station body has multiple material slots, and each 14 5 material slot's own slot ID code, loan status mechanism, return code It includes a matching mechanism and a mechanical status indicator.
24. According to claim 23, the mechanically matched training material loan-return control station Its feature is that the material slots are detachably attached to the main station body, and Each removable material slot carries a different slot identification code. According to Claim 25, the mechanically matched training material loan-return control station Its feature is electronic detection of material identity verification using RFID, cameras, and image processing. and the material identification code and the nest identification code without using an artificial intelligence processor. This is achieved through a physical-mechanical coupling.