RECYCLING CATEGORY CODED MECHANICAL WASTE CLASSIFICATION TRAINING APPARATUS
Patent Information
- Application Number
- TR202614243U
- 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
RECYCLING CATEGORY CODED MECHANICAL WASTE CLASSIFICATION TRAINING APPARATUS 1. TECHNICAL FIELD This invention is relevant to educational technologies, environmental education, recycling education, and waste classification. education, classroom physical education apparatus, mechanical educational toys, and the student's physical It relates to training setups that provide mechanical feedback on selection errors. The invention specifically relates to: the main apparatus body, the waste representation part, the category coding element, and the category. selection slot, mechanical category code channel, manual selection slider, correct selection transition channel, incorrect selection return channel, return tracking element, starting position lock, correct category lock, selection result indicator, and teacher category setting mechanism. including a recycling cycle category coded mechanical waste classification training apparatus It is related. The invention consists of a device comprising a camera, image processing unit, image recognition processor, and wireless technology. communication unit, artificial intelligence processor, electromagnet and electronic classification A representation of physical waste placed manually by the student, without the use of a processor. according to the match between the part's mechanical category code and the category selection channel He is working. When the correct category match is achieved in the invention, the transition path to the category bin is mechanical. It opens as such, and when an incorrect category match occurs, the waste representation part is incorrectly selected. It is not stored in the reservoir and is returned to the student's starting point via the physical return channel. It is being returned to its original position. As a result of the wrong selection, a new waste representation piece is created before the recycling cycle is completed. The item is mechanically prevented from being placed in the slot. 2. STATE OF KNOWLEDGE OF THE ART According to the shape or physical position of physical parts in the known state of the art There are educational toys classified under patent number US5139453A. The blocks in the shapes can only be passed through the corresponding shaped transition openings. 35 educational toys are described. The structures consist of parts with different configurations, and these parts... A physical match is established between the corresponding openings. Therefore, physical The geometric matching between the part and the physical channel is a new technical feature in itself. 1 is not 5. The difference in the invention subject to the application is the incorrect selection of the category-coded waste representation part. As a result, it is not left in a collection hopper, but sent to the return channel and back. Completion of the rotation cycle is a mechanical prerequisite for subsequent student selection. It is the creation of. In the known state of the art, physical games and educational tools are also used for recycling education. It is located under patent number US5366227A, titled "Recycling game," and focuses on the environment and... This demonstrates the known state of physical play techniques with a recycling theme. the document is a recycling game that is cited in existing patent families This is confirmed. However, in the invention that is the subject of the application, it is not the recycling theme itself, but Mechanical verification of the student's physical category selection and its errors. The mechanical process of returning the part to its starting position during selection initiates a new selection cycle. Its re-establishment as such is protected. In the current state of the art, industrial physical part classification systems also exist. It is included in patent number EP0148908B1 for the detection and classification of parts. sensors, feeding mechanism, analysis structure and classification mechanisms for It is used. The document classifies physical parts and according to specific characteristics. It explains the separation. In the invention that is the subject of the application, sensor-based sensing and Industrial analysis is not used; category selection is done manually by the student. direct physical matching between the waste representation part and the mechanical category code channel. It is carried out through this channel. In the current state of the art, waste sorting educational toys for children are also available. It is located in the utility model numbered CN222056346U, concerning waste management for children. Sorting toy; identification holes, image recognizer, electromagnets, sliding iron. The components include springs, winding channels, and true / false indicators. The document... The student places a waste card into a category slot, and image recognition identifies the card. The evaluation and movement of electromagnets relative to the card are explained. The invention in question involves image recognition, electromagnetism, and electronic sensing. It is not available. Correct or incorrect selection, physical category code versus mechanical category code. It is created through the direct matching of the channel. Incorrect selection results in waste representation. The part is being directed to the return channel and a new selection is made before the return is complete. The initiation of cycle 35 is mechanically prevented. In the known state of the art, environmentally themed games and games for recycling education. It also has mechanisms. For example, US20150133222A1 is an environmentally themed game, waste management. It is based on collection and environmental behavior training and is mentioned in the patent document. Among the 2 5 recycling games, US5366227A is also mentioned. These structures... It demonstrates the theme of education and recycling gamification; however, the subject of the application The invention does not describe the mechanical fault recovery cycle. Therefore, under the known state of the art; • matching the physical part with the physical opening, • Recycling educational games, • physical part classification systems, • Waste sorting toys for children, • correct / incorrect feedback They are known as separate technical structures. In the case of the invention that is the subject of the application for protection, the issue is not the individual presence of these features. In the invention: • Category-coded waste representation part → mechanical category selection channel → correct Unlocking the category hopper lock during matching And • In case of a mismatch → incorrect selection return channel → return tracker → Return to starting position → Unlock new selection entry lock There is a mechanical cycle that is interconnected in this way. 2.1 Technical difference according to the claim-chart result. In the comparison, US5139453A showed the physical shape match; US5366227A showed the reverse. Transformation training game; EP0148908B1 sensor-based physical part classification; CN222056346U is an electronic image recognition and electromagnetically controlled child waste disposal system. It reveals the classification toy. However, these documents that were examined show that: Incorrect manual category selection results in the physical return channel of the waste representation piece. acquisition, verification of the return movement by the tracking element, return start mechanically blocking the entry of the new waste representation piece before it reaches its location and mechanical release of the new election cycle upon completion of the return 35 are not explained together. This technical relationship ensures that the student's incorrect choice is not merely a visual or electronic error. It's not about showing the problem, but about turning the wrong choice into a physical cycle of regression. 3 5 3. PURPOSE OF THE INVENTION The aim of this invention is to enable students to make waste classification decisions through physical-mechanical selection. The goal is to create an educational tool that can achieve this. Another purpose of the invention is to classify waste representation parts using mechanical category codes. The goal is to ensure a direct physical match between the channels. Another purpose of the invention is to mechanically store the relevant category in the correct category match. The goal is to enable it to open. Another purpose of the invention is to miscategorize the waste representation piece in the wrong category in case of incorrect category matching. Instead of retaining it in the reservoir, it directs it to the return channel. Another purpose of the invention is to eliminate waste that does not complete the recycling cycle due to incorrect selection. Before the original representation piece reaches its starting position, a new waste representation piece is introduced into the system. to mechanically block its entry. Another purpose of the invention is to connect the recycling tracking element with the waste representation component at the beginning. The goal is to confirm that it has returned to its original position. Another purpose of the invention is to initiate a new selection cycle once the feedback validation is complete. The goal is to release the entry mechanism. Another purpose of the invention is to indicate correct and incorrect selection statuses via a mechanical display. It is to show. Another purpose of the invention is to enable the teacher to mechanically categorize items via the category code plate. The goal is to enable the changing of the matching pattern. Another aim of the invention is to integrate electronic sensing, image processing, and artificial intelligence into the system. It means operating without using anything. 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 6.1 General structure 35 6.1.1 Invention, training on category-coded mechanical waste classification with recycling cycle It relates to the apparatus. 6.1.2 Apparatus; main apparatus body, waste representation part, category coding element, category selection slot, mechanical category code channel, manual selection slider, correct 4 5 election transition channel, wrong election return channel, return tracking element, start position lock, correct category bin lock, selection result indicator, back It includes a return spring and a teacher category setting mechanism. 6.1.3 Main apparatus body, mechanical classification and return mechanisms It is the main body that carries the load. 6.1.4 Waste representation piece, physical education where the student attempts to determine the category. It is a part of it. 6.1.5 Category coding element, specific physical on the waste representation piece It is the mechanical code protrusion or code gap corresponding to the category. 6.1.6 The category selection slot is the physical location where the student places the waste representation piece. It is the input slot. 6.1.7 Mechanical category code channel, physical channel that accommodates the category coding element. It is a canal structure. 6.1.8 Manual selection slider: The student inserts the waste representation piece into the selection slot. It is a movable slide that allows it to move forward. 6.1.9 Correct selection transition channel, waste when category coding matches the selection channel. It is the channel through which the representation piece moves into the category bin. 6.1.10 Incorrect selection return channel, category coding with selection channel If they don't match, the waste representation piece is redirected to its starting position. It is a channel. 6.1.11 Return tracking element, starting point of the returned waste representation piece. It is a mechanical element that confirms that it has reached its position. 6.1.12 Initial position lock, new selection before return cycle is complete. It is a mechanical locking mechanism that keeps the entrance closed. 6.1.13 Correct category bin lock, when correct category matching is complete It is a mechanical locking mechanism that opens the entrance to the category compartment. 6.1.14 The election result indicator mechanically determines whether the election result is correct or incorrect. It is an indicator that shows. 6.1.15 Teacher category setting mechanism, physical category code channels It is an adjustment mechanism that changes its position. 35 6.2 Main apparatus body 6.2.1 Main apparatus body; selection zone, category channel zone, correct selection chamber zone, wrong choice return zone, return follow-up zone, indicator zone and includes a teacher settings area. 5 6.2.2 The electoral district is the area where the student places the waste representation piece. 6.2.3 The category channel area is the area where mechanical category code channels are located. 6.2.4 Correct selection of the container area, correct category matching of the waste representation piece. It is the region it is progressing through. 6.2.5 Incorrect selection return zone, return of waste representation piece in case of incorrect match. It is the region he returned to. 6.2.6 The return tracking zone is the area in which the return tracking element moves. 6.2.7 The indicator area is where the indicators for correct and incorrect selections are visible. It is a region. 6.2.8 Teacher adjustment area, category code plates in an accessible location It is the region where he was held. 6.3 Waste representation part 6.3.1 Waste representation part; part body, category coding element, orientation surface, part pushing surface, return contact surface and part holding surface It includes. 6.3.2 The body of the piece is the main body of the physical training piece. 6.3.3 Category coding element, mechanical code belonging to a specific category. It constitutes. 6.3.4 Guiding surface, movement in the correct selection transition channel. It directs. 6.3.5 The part pushing surface transmits the movement of the manual selection slider to the part body. It transmits. 6.3.6 Return contact surface, incorrect selection return channel return It is in contact with the mechanism. 6.4 Category coding element 6.4.1 Category coding elements; code overhang, code spacing, code shoulder, and alignment It is a physical mechanical code structure that includes the surface. 6.4.2 Code overhang, to the transition gap located in the corresponding category channel. It is entering. 6.4.3 Code gap allows the channel lock tongue to move to the specified position. It gives 35. 6.4.4 Code shoulder, contact with return routing language when the wrong channel is selected. is doing. 6 5 6.4.5 Alignment surface, correct placement of waste representation piece in the correct category channel. It ensures progress in that direction. 6.5 Category selection slot 6.5.1 Category selection slot; inlet opening, selection guides, category channel inlets, The selection slider includes a contact surface, an entry locking tongue, and a part return exit. 6.5.2 The input port is the opening through which the student inserts the waste representation piece into the system. 6.5.3 Selection guidelines ensure the waste representation piece progresses in the specified direction. It provides. 6.5.4 Category channel entries, waste representation part category code channels It enables access. 6.5.5 The input lock tongue must be inserted before the recycling cycle is complete, into the new waste representation piece. It prevents entry. 6.5.6 Part return output, incorrect selection represents waste from the return channel. It ensures that the part reaches its starting point. 6.6 Mechanical category code channel 6.6.1 Mechanical category code channel; channel body, code passage opening, code lock tongue, channel guiding surface, correct transition projection and incorrect selection of the redirection tongue It includes. 6.6.2 Code transition gap, allowing the correct category coding element to enter the channel. It provides. 6.6.3 Code lock language, waste representation part when the correct category code is not found It prevents it from progressing to the category bin. 6.6.4 Channel routing surface, correctly matching the waste representation piece in the correct code match. It directs towards the election transition channel. 6.6.5 Correct transition ledge, correct category hopper when correct match is completed. It transmits movement to the lock. 6.6.6 Incorrect choice of fallback language, waste representation when no code match is found. The incorrect selection is directing the part to the return channel. 6.7 Manual selection slider 6.7.1 Manual selection slide; slide body, pupil holding surface, part ejector surface, 35 sliding guide channels, entry lock contact surface and return lock contact surface It includes. 6.7.2 The student grip surface enables the student to move the slider. 6.7.3 The part ejector surface transmits forward motion to the waste representation part. 7 5 6.7.4 Inlet lock contact surface, contact with the inlet lock tongue during the return cycle. is doing. 6.7.5 Return lock contact surface, return to the starting position of the return tracking element. It controls its arrival mechanically. 6.8 Correct selection transition channel and category repository 6.8.1 Correct selection of transition channel; transition body, guiding surface, category container The entry tongue includes a chamber lock strike plate and a transition return surface. 6.8.2 Category reservoir input language is returned when the correct category code match is completed. It is being filmed. 6.8.3 The container lock strike plate mechanically matches the correct category container lock. 6.8.4 Transition return surface, transition via the movement of the teacher reset mechanism. It returns the element to its starting position. 6.9 Wrong choice return channel 6.9.1 Incorrect selection of return channel; return ramp, return routing tongue, return slide, return spring, starting position guidance surface and It includes a return tracking contact surface. 6.9.2 Return ramp, entry of waste representation part due to incorrect selection. It causes it to move backward towards that region. 6.9.3 Return routing language, waste resulting from incorrect category code matching. It directs the representation piece to the return ramp. 6.9.4 The return slide moves the waste representation piece back to its starting position. It transmits. 6.9.5 The return spring moves the return slide in its original direction. 6.9.6 Initial position orientation surface, waste representation piece category selection It directs it to its starting position in its slot. 6.9.7 The return tracking contact surface is in contact with the return tracking element. 6.10 Return tracking element 6.10.1 Return tracking element; tracking body, return contact tongue, start verification surface, lock release surface, follow guide channel and follow back Includes return spring. 35 6.10.2 Return contact language, incorrect choice, waste representation from the return channel It is in contact with the part. 6.10.3 Initial verification surface, starting position of the waste representation piece It confirms that it has arrived. 8 5 6.10.4 The lock release surface transmits movement to the entry lock tongue. 6.10.5 Follow guide channel, the path of movement of the return follow element. It determines. 6.10.6 The follow return spring adjusts the follow element to the starting position suitable for the new selection cycle. It returns it to its original position. 6.11 Initial position lock 6.11.1 Initial position lock; lock body, entry lock tongue, tracking contact surface, lock It includes a guide channel and a locking return spring. 6.11.2 Input lock tongue, return tracking element initial verification position It keeps the category selection slot's entrance closed before reaching it. 6.11.3 Tracking contact surface, lock release in return tracking element. It is in contact with the surface. 6.11.4 The lock return spring engages the input lock tongue at the start of a new selection cycle. It returns to the closed starting position. 6.12 Correct category bin lock 6.12.1 Correct category container lock; lock body, container lock tongue, correct transition contact It includes a surface, a reservoir opening slide, and a return spring. 6.12.2 Correct transition contact surface, correct transition in mechanical category code channel. It is in contact with the protrusion. 6.12.3 The container opening slider opens the category container when the correct code match is complete. It withdraws the input language. 6.13 Election result indicator 6.13.1 Election result indicator; indicator body, correct choice sign, incorrect choice sign. indicator, correct indicator slider, incorrect indicator slider and indicator return spring It includes. 6.13.2 The correct selection indicator appears when the correct category match is completed. It is moving to that position. 6.13.3 Incorrect selection mark, return result due to incorrect category match. It becomes visible when the mechanism is activated. 6.13.4 The correct and incorrect indicator sliders are connected by the same mechanical category selection movement. It operates with 35 derived movements. 6.14 Teacher category setting mechanism 9 5 6.14.1 Teacher category setting mechanism; setting body, category code plate, code plate holder, plate lock tongue, category channel selector slider, teacher's grip surface and It includes an adjustment return spring. 6.14.2 Category code plate, physical layout of category mechanical code channels. It determines. 6.14.3 Category channel selector slider, selects category code channels from specified categories. It aligns with the order. 6.14.4 The plate locking tongue keeps the category code plate in a fixed position during the training cycle. It holds. 6.14.5 Teacher's holding surface, category code plate by the teacher It enables the modification. 6.15 Working relationship 6.15.1 The teacher selects the category code plate via the category channel selector slider. It places them in an established classification order. 6.15.2 The waste representation piece is placed in the category selection slot. 6.15.3 When the manual selection slider is moved, the part ejector surface represents waste. It is advancing the piece towards the mechanical category code channel. 6.15.4 The category coding element in the waste representation piece is correctly matched with the category channel. When matched, the code enters the passthrough gap, the code lock language is retracted, and it is correct. The transition tab transmits movement to the correct category container lock. 6.15.5 Correct category container lock container opening slide category container entry tongue It is being withdrawn and the waste representation piece is being moved to the correct category bin. 6.15.6 The correct selection indicator becomes visible. 6.15.7 The category coding element in the waste representation piece is selected via the category channel. When it doesn't match, the code lock language remains in the off position and the wrong selection is returned. routing language waste representation piece incorrect selection return channel It directs. 6.15.8 The waste representation piece moves along the return ramp and returns It moves the slider. 6.15.9 Movement of the return slider returns the waste representation piece to its starting position. It directs 35. 6.15.10 Return contact language when waste representation piece reaches starting position This brings the return tracking element back to its initial verification position. 5 6.15.11 The initial verification surface transmits movement to the input lock tongue and the input lock The language is shifting to a position that allows the new election cycle to begin. 6.15.12 Incorrect selection indicator is visible during the return cycle. It remains. 6.15.13 Return tracking element enters before reaching initial verification position. The locking tab does not open the category selection slot's inlet. 6.15.14 Teacher category setting mechanism new category code layout Category code channels, category code plate and category channel selector when brought in. It is mechanically realigned by the slider. 6.15.15 Correct selection indicator when the teacher reset mechanism is activated, incorrect selection indicator, manual selection slider, undo slider, undo tracker element, initial position lock, correct category bin lock and category channel selector The sliders return to their initial positions. 7. INDUSTRIAL APPLICABILITY The invention concerns a recycling-cycled category-coded mechanical waste classification training apparatus; plastic injection, wood or composite frame processing, mechanical slide manufacturing, pins and springs. assembly, production of embossed or coded training pieces, mechanical channel creation and training. The device can be manufactured on an industrial scale using assembly techniques. Main unit body, category selection slot, category compartments, incorrect selection return. The channel, the return tracking mechanism and the teacher category setting mechanism are made of plastic. using composite, wood-based panels and durable educational equipment materials It can be produced. Waste representation parts are plastic, wood, and carry different mechanical category coding elements. They can be produced using composite or elastomer materials. Mechanical category code channels, manual selection slider, return slider, return tracker. element, initial position lock and correct category container lock; bolt, pin, spring, guide The channel can be formed using a lock tongue and connecting elements. The device in question is suitable for primary schools, secondary schools, special education institutions, science centers, and environmental settings. education classes, recycling training workshops, and teacher-controlled physical education It is used in 35 events. 11
Claims
1. It is a recycling cycle category coded mechanical waste classification training apparatus. Features; main apparatus body, waste representation piece placed by the student, waste representation piece. The category coding element on it indicates the category in which the waste representation piece is placed. selection slot, mechanical category code channel that accommodates the category coding element, waste Manual selection slider that moves the representation piece along the category selection slot, The channel is opened as a result of the matching of the category coding element with the mechanical category code channel. the correct selection transition channel, the mechanical category coding channel of the category coding element Incorrect selection resulting from mismatch directs the waste representation piece back to its starting position. return channel, wrong selection return tracker moving in the return channel, new waste before the return tracking element reaches the initial verification location The initial position lock prevents the representation piece from entering the category selection slot, and The correct category hopper inlet, determined according to the mechanical category code channel, opens the correct one. The category includes a container lock.
2. Training on the classification of mechanical waste with category codes for recycling purposes, according to Claim 1. Its features include: the waste representation part's body, category coding element, guiding surface, workpiece pushing surface, return contact surface and workpiece holding surface It includes.
3. Training on category-coded mechanical waste classification with recycling cycle according to Claim 1. Its feature is that it is a device with a category coding element's code projection, code gap, code shoulder, and It includes an alignment surface.
4. Training on the classification of mechanical waste with category codes for recycling purposes, according to Claim 1. Its features include: category selection slot inlet, selection guides, and category channel. Its inputs include a selection slider contact surface, input locking tongue, and part return output.
5. Training on the classification of mechanical waste with category codes for recycling purposes, according to Claim 1. Its features include: mechanical category code channel body, code passage opening, code lock tongue, channel guiding surface, correct transition projection and incorrect selection redirection It includes language. 12 5 6. Training on category-coded mechanical waste classification with recycling cycle according to Request 5. Its feature is that it is a device that provides code switching corresponding to the category encoding element of the code lock language. without reaching clarity, the waste representation piece progresses to the correct selection transition channel It is an obstacle.
7. Training on category-coded mechanical waste classification with recycling cycle according to Claim 5. Its feature is that it is a device with the category encoding element of the incorrect selection feedback language. When no match is found between the mechanical category code channel, the waste representation piece is incorrect. The election is a redirection to the return channel.
8. Training on the classification of mechanical waste with category codes for recycling purposes, according to Claim 1. Its features include: a manual selection slider body, a student holding surface, and a part. push surface, slide guide channel, inlet lock contact surface and return lock contact surface It includes.
9. Training on the classification of mechanical waste with category codes for recycling purposes, according to Claim 1. Its feature is that it is a device; incorrect selection of the return channel, return ramp, return steering tongue, return slider, return spring, starting position steering surface and includes a return tracking contact surface.
10. Training on category-coded mechanical waste classification with recycling cycle according to Claim 9. Its feature is that the waste representation part is removed as a result of incorrect selection of the return ramp. has a slanted surface that will guide you to the starting area in the category selection slot. It is the fact that.
11. Training on category-coded mechanical waste classification with recycling cycle according to Claim 1. Its features include: a tracking body for the return tracking element, and a return contact tongue. initial verification surface, lock release surface, follow guide channel and follow back It includes a return spring.
12. Training on category-coded mechanical waste classification with recycling cycle according to Claim 11. Its feature is that it is a device; the category selection of the waste representation piece of the initial verification surface. By reaching its starting position in its housing, it will transfer movement to the entry lock tongue. It is regulated. 13 5 13. Training on category-coded mechanical waste classification with recycling cycle according to Request 1. Its features include: initial position lock body, entry lock tongue, and tracking contact. Its surface includes a locking guide channel and a locking return spring.
14. Training on category-coded mechanical waste classification with recycling cycle according to claim 13. Its feature is that it is a device with; input lock tongue return tracking element initial verification. The goal is to keep the category selection slot's entrance closed until it reaches its designated position.
15. Training on category-coded mechanical waste classification with recycling cycle according to Claim 1. Its feature is that it is a device with the correct selection of the transition channel, transition body, and guiding surface. The category includes a reservoir entry tongue, a reservoir lock strike plate, and a return surface.
16. Training on category-coded mechanical waste classification with recycling cycle according to Claim 1. Its features include: the correct category container lock body, container lock tongue, and correct passage. It includes a contact surface, a reservoir opening slide, and a return spring.
17. Training on category-coded mechanical waste classification with recycling cycle according to Claim 16. Its feature is that the mechanism allows for the correct passage of the hopper opening slide through the mechanical category code channel. It is the act of pulling back the category container inlet tab by taking action from its protrusion.
18. Training on category-coded mechanical waste classification with recycling cycle according to Claim 1. Its feature is that it is a device with the following characteristics: the indicator body of the election result indicator, the correct selection symbol. wrong selection indicator, correct indicator slider, wrong indicator slider, and indicator return. It includes a bow.
19. Training on category-coded mechanical waste classification with recycling cycle according to Claim 18. Its feature is that it is a device that prevents the wrong indicator slider from being misselected from the misselection feedback language. The action it takes makes the incorrect choice signal visible.
20. Training on category-coded mechanical waste classification with recycling cycle according to Claim 18. Its feature is that it acts as a device that receives movement from the correct transition protrusion of the correct indicator slider. The correct choice is to make the indicator visible.
21. Training on category-coded mechanical waste classification with recycling cycle according to Claim 1. Its feature is that it is a device for adjusting the teacher category setting mechanism's adjustment body, category code. 14 5 plate, code plate slot, plate lock tongue, category channel selector slider, teacher holder It includes a surface and an adjustment return spring.
22. Training on category-coded mechanical waste classification with recycling cycle according to Claim 21. Its feature is that the category code plate is mechanical and the category code channels are physical. determining the placement and category channel selector slider category code channels It is the alignment to the established classification order.
23. Training on category-coded mechanical waste classification with recycling cycle according to Claim 1. Its feature is that it is a device with a category coding element for the physical waste representation piece and a mechanical one. When no match occurs between the category code channel, the incorrect selection return channel is indicated. It opens and keeps the initial position lock of the same movement chain in the closed position.
24. Training on category-coded mechanical waste classification with recycling cycle according to claim 23. Its feature is that the return tracking element is in the initial verification position. Upon arrival, the initial position lock is unlocked, the entry lock tongue is opened, and the new waste representation This involves placing the part into the category selection slot.
25. Training on category-coded mechanical waste classification with recycling cycle according to Claim 1. Its feature is electronic sensing, image processing, and artificial intelligence processing. physical connection between the category coding element and the mechanical category coding channel without being used It performs classification based on matching.