MULTI-POINT CONTROLLED LOAD TRANSFER PROFILE WITH DOCUMENT INTEGRITY VERIFICATION AND SECURE CLOSING SYSTEM.

TR202615264A2Pending Publication Date: 2026-09-21SAMSUN TEKKEKÖY İLKOKUL AŞAĞIÇİNİK SELMA ÜMİT SARITAŞLI +8
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Patent Information

Application Number
TR202615264
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2026-09-07
Publication Date
2026-09-21
Patent Text Reader

Abstract

This invention relates to a document security system that verifies the integrity of a group of documents removed from a security container for use, using a multi-point controlled load transfer profile. The system comprises a document placement bed, a first support force sensing element, a second support force sensing element, a third support force sensing element, a first displacement probe, a second displacement probe, a third displacement probe, a fourth displacement probe, a probe drive mechanism, a control unit, a profile generation unit, a profile memory, a profile comparison unit, a sliding barrier tongue, and a final closing mechanism. Each of the four displacement probes contacts a separate upper measuring zone of the group of documents and is moved to measuring positions of 0.20 mm, 0.40 mm, and 0.60 mm from the initial contact position. The three support force sensing elements produce a separate force value at each measuring position.The initial load transfer profile is formed by thirty-six force components obtained from four displacement probes, three measurement positions, and three support force sensing elements. When the document set is returned to its safety container after use, a return load transfer profile is created using the same probe sequence and measurement positions. The thirty-six force components in the return load transfer profile are compared with the force components in the initial load transfer profile that have the same sequence numbers. When all force components are within the limits stored in the profile memory, the sliding barrier tongue is withdrawn from the movement line of the final closing bolt. If one of the force components is outside its limit, the sliding barrier tongue remains in the movement line of the final closing bolt.
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Description

WITH MULTI-POINT CONTROLLED LOAD TRANSFER PROFILE DOCUMENT INTEGRITY VERIFICATION AND SECURE CLOSURE SYSTEM 1. TECHNICAL FIELD This invention addresses document security, verification of physical document integrity, and temporary use. The return inspection of the group of documents removed from the security container for this purpose is a multi-point mechanical process. measurement systems, force sensing devices, and mechanical shutdown based on verification results. It is related to systems. The invention specifically includes the cup body, document holder, and primary support force sensing mechanism. element, second support force sensing element, third support force sensing element, first departure probe, second departure probe, third departure probe, fourth displacement probe, probe drive mechanism, control unit, profile generation unit, profile memory, Document containing profile comparison unit, blocking element and final closing mechanism. It relates to the integrity verification system. The system records the number of sheets in the document group, the nominal sheet thickness, and the total weight in a single file. It does not use it as a security reference at the beginning. It is divided into four separate regions of the document group. Controlled vertical displacement is applied sequentially. During each displacement application... The forces transferred by the document group to three separate support areas are measured. The forces form the initial load transfer profile. When the document group is placed back into the security container after use, the same four probes are present. The same position, displacement levels, and measurement sequence are used. The resulting return... The load transfer profile is being compared with the initial load transfer profile. Successful verification. In this case, the locking element is pulled away from the movement line of the final closing slide. In case of failed validation, the blocking element moves the last closing slide. It remains on the line. 2. STATE OF KNOWLEDGE OF THE ART In the current state of the art, the mechanical properties of paper materials are strength and There are 35 systems for determining deformation through measurements. Patent number US4866984A describes the elastic modulus of a single sheet of paper in motion. The determination of mechanical properties related to bending stiffness is explained. (Paper sheet) 1. It is deflected off-center on a 5-section support structure, and in the support sections Forces are measured using force transducers. In the structure in question, a specific document... controlled displacement applied sequentially to different upper regions of the group, three support zones Storing the force transfer matrix between them as a reference before use and using it Subsequently, there is no verification of the integrity of the return of the same document group. The bending stiffness and shear of a single sheet of paper are studied in patent number AU2015202905B2. Force and displacement measurements for determining the modulus are described in the paper. The leaf is held on supports, mechanical force is applied, and the resulting Deformation is being measured. In the structure in question, the document group undergoes multi-point load transfer. Profile must be saved before use and security verification must be done after use. There is no re-measurement for this purpose. Patent number US9004847B2 describes lifting and rotating two corners of a stack of paper. The separation of paper sheets from each other is explained by this method. The structure in question... Its purpose is to aerate the stack of paper. Mechanical movement is applied to the corner areas. Measuring the forces generated in different support zones during the process, and the forces in question... Creating a document integrity profile and submitting the profile result to a secure closing mechanism. There is no transfer option. Patent number US7162932B2 describes the controlled mechanical loading of stacked papers. The measurement of deformation is explained. The measurement is performed as a result of compressing the paper group. It is based on the force and deformation characteristics that occur in the system in question. The total compressed height of the document group is not measured. The document group rests on three separate supports. It is carried on a point and the vertical displacement applied to four separate upper regions is supported by three supports. The distribution of force transferred to the region is measured. Physical property granted for use in patent application number US20190035239A1 recording the weight of the material before use and reweighing it after return. This is explained. In the structure in question, the physical material undergoes multi-point mechanical load transfer. The characteristic is not being used. When systems in the known state of the art are evaluated together, the bending of a single sheet of paper... stiffness measurement, compression characteristics of the paper stack, mechanical properties of the paper stack bending and return of the physical material's pre-use reference value after use. The 35 comparisons are found in separate technical structures. The invention in question involves a set of documents that are statically based on three force sensing elements. It is being moved. Four displacement probe documents are being sent to four separate upper regions. They are positioned. Each displacement probe makes contact with the document group in turn, and the contact... From position 2 to 5, vertical displacement positions of 0.20 mm, 0.40 mm and 0.60 mm. is being brought. At each displacement position, the first support force sensing element, the second support force sensing element and third support force sensing element separate force values It produces four probes, three displacement levels, and three support force sensing elements. As a result, thirty-six force components are generated. These thirty-six force components are used as the initial load transfer profile prior to operation. The profile is saved to the memory. The document group is returned to rough shape after use. When installed, the same four probes are operated in the same sequence and at the same three displacement levels. It is applied. Thirty-six force components obtained from rotational measurement are used for rotational load transfer. It creates a profile. All thirty-six force components in the return load transfer profile are initial load transfer components. within the lower and upper limit values ​​of components with the same sequence number in the profile When present, the profile comparison unit generates a successful verification signal. Force when one of its components is below its lower limit or above its upper limit When this occurs, the profile comparison unit generates a failed verification signal. A successful confirmation signal activates the electromechanical release element and the slider. The obstacle pulls the tongue out of the path of the final closing slider. Failed verification. In the signal, the sliding barrier tongue remains in the path of movement of the final closing slide. 3. THE PURPOSE OF THE INVENTION The purpose of this invention is to enable the return of a set of documents removed from a security container for use. The goal is to physically verify its integrity without using information about the number of leaves. Another objective of the invention is to apply controlled micro- to four separate upper regions of the document group. The forces transferred by the displacements to the three support zones are shown as the initial load transfer profile. It is to record. Another purpose of the invention is to create a multi-layered document group that is not dependent on a single total thickness value. The goal is to determine the point-based mechanical characteristics. Another purpose of the invention is to create a document group that is not dependent on a single total weight value. The goal is to determine the force transmission distribution. 35 Another objective of the invention is to determine the probe sequence and displacement used prior to use. The goal is to repeat the levels in the same way after use. Another objective of the invention is to differentiate between the initial load transfer profile and the return load transfer profile. The goal is to compare thirty-six force components using separate lower and upper limit values. 3 5 Another purpose of the invention is to ensure that the final closing slider is closed when profile validation fails. to stop its movement with a physical restraining element. Another purpose of the invention is to end the sliding barrier tongue when profile verification is successful. to pull the closing slide out of its movement line. 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 6.1.1 The invention relates to document integrity verification with a multi-point controlled load transfer profile. and relates to the secure shutdown system. 6.1.2 System; cover body, lid, document holder, primary support force sensing element, second support force sensing element, third support force sensing element, first displacement probe, second displacement probe, third displacement probe, fourth displacement probe, probe drive configuration, probe position sensing unit, control unit, profiling unit, profile memory, profile It includes a comparison unit, an interceptor, and a final closing mechanism. 6.1.3 The document holder and the mechanical and electronic components of the system. It is the main structure that carries the load. 6.1.4 Movable closure that closes the document entry opening of the cover body. It is a component. 6.1.5 Document placement bed: Initial measurement of the document group and return It is the carrier section that is held in the same horizontal position during measurement. 6.1.6 Three support force sensing element document groups from three separate support zones It carries. 6.1.7 Four displacement probe document groups against four separate upper measurement regions 35 locations have been established. 6.1.8 Control unit probe drive mechanism, force measurement, profiling It manages the unit, the profile comparison unit, and the blocking element. 4 5 6.2 Container body 6.2.1 Container body; base section, first side wall, second side wall, front wall, rear wall, lid seating surface, measuring compartment, control compartment and final closing area It includes. 6.2.2 Measurement compartment document holder and displacement probes It carries. 6.2.3 Control compartment includes the control unit, the profiling unit, the profile memory, and It contains the profile comparison unit. 6.2.4 Final closing zone blocking element and final closing mechanism It carries. 6.3 Document placement tray 6.3.1 Document placement bed; base support frame, first side positioning surface, second side positioning surface, front positioning surface, rear positioning surface, first support opening, second support opening and third It includes support clearance. 6.3.2 First side positioning surface, first side edge of the document group It determines its location. 6.3.3 Second side positioning surface positioning of the second side edge of the document group It determines. 6.3.4 Front positioning surface front edge position of the document group It determines. 6.3.5 Rear positioning surface positioning of the rear edge of the document group It determines. 6.3.6 First support opening, upper support of the first support force sensing element It connects its surface to the bottom surface of the document group. 6.3.7 Second support opening, upper support of the second support force sensing element It connects its surface to the bottom surface of the document group. 6.3.8 Third support opening, upper support of the third support force sensing element It connects its surface to the bottom surface of the document group. 35 6.3.9 The three support surfaces form the horizontal measurement plane of the document group. 6.4 Support force sensing system 5 6.4.1 First support force sensing element, second support force sensing element And the third support force sensing element is in the form of a load cell. 6.4.2 First support force sensing element, first sub-support of the document group It measures the vertical force in the region. 6.4.3 Second support force sensing element, second sub-support of the document group It measures the vertical force in the region. 6.4.4 Third support force sensing element, third sub-support of the document group It measures the vertical force in the region. 6.4.5 Three force sensing elements simultaneously detect three different force values. It produces. 6.4.6 Triangular geometry in the base area of ​​three support zone document groups It constitutes. 6.5 Displacement probes 6.5.1 First displacement probe against the first upper corner region of the document group. It is located. 6.5.2 Second displacement probe against the second upper corner region of the document group. It is located. 6.5.3 Against the third upper corner region of the third displacement probe document group It is located. 6.5.4 The fourth displacement probe is positioned against the fourth upper corner region of the document group. It is located. 6.5.5 Each displacement probe has a probe body with a 10 mm diameter flat contact surface, linear. guide rail, ball screw, electric motor, displacement sensing element, and contact force. It includes a sensing element. 6.5.6 The linear guide restricts the vertical movement of the probe body. 6.5.7 The electric motor drives the probe body towards the document holder via the screw shaft. It moves. 6.5.8 Contact force sensing element contact surface to the upper surface of the document group It determines the initial position of the point of contact. 35 6.5.9 Displacement sensing element probe from contact initial position It measures the amount of vertical movement of the body. 6.6 Probe drive system 6 5 6.6.1 Probe drive arrangement first probe driver, second probe driver, third probe It includes the driver and the fourth probe driver. 6.6.2 The control unit operates the four probe drivers individually. 6.6.3 While one probe is in the measurement motion, the remaining three probes are in their starting position. is being held. 6.6.4 Active displacement probe first 0.20 mm from the initial contact position. It is brought to the measurement position. 6.6.5 Active displacement probe 0.40 mm from first measurement position to second measurement. It is brought to that position. 6.6.6 Active displacement probe 0.60 mm from second measurement position to third measurement. It is brought to that position. 6.6.7 Active after force measurement at the third measurement location is completed. The displacement probe is returned to its starting position. 6.7 Initial measurement 6.7.1 Initial measurement of the document group from the container body for use purposes. This is done before the extraction. 6.7.2 The document group is placed in the document storage tray. 6.7.3 The first displacement probe is brought into contact with the document group. 6.7.4 Three support forces at the 0.20 mm measurement position of the first displacement probe The value is being recorded. 6.7.5 Three support forces at the 0.40 mm measurement position of the first displacement probe. The value is being recorded. 6.7.6 Three support forces at the 0.60 mm measurement position of the first displacement probe The value is being recorded. 6.7.7 The first displacement probe is returned to its starting position. 6.7.8 The second displacement probe is brought to the same three measurement positions sequentially, and Nine support force values ​​are recorded. 6.7.9 The third displacement probe is brought to the same three measurement positions sequentially, and Nine support force values ​​are recorded. 35 6.7.10 The fourth displacement probe is brought to the same three measurement positions sequentially. And nine support force values ​​are recorded. 6.7.11 A total of thirty-six support force values ​​were obtained from four displacement probes. is being done. 7 5 6.8 Initial load transfer profile 6.8.1 The profiling unit measures thirty-six support force values ​​in the following order: It numbers them. 6.8.2 The nine force values ​​of the first displacement probe form the first profile group. It constitutes. 6.8.3 The nine force values ​​of the second displacement probe form the second profile group. It constitutes. 6.8.4 The nine force values ​​of the third displacement probe form the third profile group. It constitutes. 6.8.5 The nine force values ​​of the fourth displacement probe form the fourth profile group. It constitutes. 6.8.6 Four profile groups constitute the initial load transfer profile. 6.8.7 Profile memory with lower and upper limit values ​​for each of the thirty-six force components. It stores the limit value. 6.8.8 Initial load transfer profile document group page count information It is created without being used. 6.8.9 Initial load transfer profile without using nominal leaf thickness information is being created. 6.8.10 The total weight of the document group is the sole determinant of the initial load transfer profile. It is not used as a value. 6.9 Rotation measurement 6.9.1 Return the document group to the document placement tray after use. is being placed. 6.9.2 The first displacement probe is placed at the same three displacement positions as in the initial measurement. They are brought in one by one. 6.9.3 The second displacement probe is placed at the same three displacement positions as the initial measurement. They are brought in one by one. 6.9.4 The third displacement probe is placed at the same three displacement positions as the initial measurement. They are brought in one by one. 35 6.9.5 Fourth displacement probe to three displacement positions in the initial measurement. They are brought in the same order. 6.9.6 Three support force sensing elements detect separate forces at each displacement position. It generates value. 8 5 6.9.7 Profile formation unit thirty-six rotational force values ​​rotational load transfer It creates a profile. 6.10 Profile Comparison Unit 6.10.1 Profile comparison unit thirty-six forces in the return load transfer profile thirty-six components with the same serial number as the initial load transfer profile It matches the force component. 6.10.2 Each rotation force component has its own lower and upper limit values ​​in the profile memory. It is compared with the limit value. 6.10.3 All thirty-six rotational force components have their own lower and upper limits. When the value is between [the specified range], the profile comparison unit successfully sends a verification signal. It produces. 6.10.4 One of the rotational force components is below its lower limit value. When this occurs, the profile comparison unit generates a failed verification signal. 6.10.5 One of the rotational force components exceeds its upper limit value. When this occurs, the profile comparison unit generates a failed verification signal. 6.11 System control 6.11.1 The control unit detects three support forces before the initial measurement. It records the idle bed values ​​of the element. 6.11.2 Three support force sensing elements before control unit rotation measurement It is re-measuring the vacancy rates of the beds. 6.11.3 One of the pre-turn empty bed values ​​is stored in the profile memory of the system. Successful verification signal when found outside the control limit. It is not being created. 6.11.4 The control unit determines the starting position of each displacement probe during displacement. It is verified via the sensing element. 6.11.5 Successful verification signal when probe starting position is not verified. It is not being created. 35 6.12 Blocking element 6.12.1 Locking element; locking body, sliding locking tongue, linear guide, It includes an electromechanical release element and a return spring. 9 5 6.12.2 Movement of the last closing slider before slider blocking language verification It is located on the line. 6.12.3 Electromechanical release element upon failure of verification signal. It remains in a power-deprived state. 6.12.4 The return spring holds the locking housing in the locking position. 6.12.5 Electromechanical release element upon successful verification signal. It moves the blocking body to the free position. 6.12.6 In the free position, the sliding barrier tongue is located in the path of movement of the final closing slide. It is being filmed. 6.13 Final closing mechanism 6.13.1 Final closing mechanism; final closing slide, slide guide channel, It includes a closing mechanism, closing handle, and safety latch. 6.13.2 Closing lever: Closes the final closing slide along the slide guide channel. It moves in the right direction. 6.13.3 Final closing slide closing when the slide barrier is in the path of movement. It is not receiving a response. 6.13.4 The final closing slide closes when the slide barrier is pulled from the movement line. It is reaching its equivalent. 6.13.5 When the final closing slide reaches its closing counterpart, the safety latch is released. It holds the closing slide in its final closing position. 6.13.6 Safety latch released without authorized activation key being engaged It does not switch to that position. 7. HOW THE INVENTION IS APPLIED TO INDUSTRY The system described in the invention is suitable for use in archives, official document storage units, and under internal control within institutions. in document circulation, temporary use of contract files and physical documents This is implemented in security units where the integrity is verified during the return process. Container body, document holder, displacement probes, force sensing elements, probe. drive system, control unit, profile memory, blocking element and final closing The 35 mechanism is produced using mass production techniques. Creation of the system's initial load transfer profile, for use with the document group. removal from cover body, insertion of document group back into cover body, return loading The process involves creating 5 transfer profiles, comparing two profiles, and determining the outcome of the verification. It operates with a final shutdown check. 11

Claims

1. Document integrity verification using a multi-point controlled load transfer profile. It is a document security system whose feature is that it keeps the group of documents in the same measurement position. The document placement bed is the first one that carries the group of documents from three separate sub-support zones. support force sensing element, second support force sensing element and third The support force sensing element corresponds to four separate upper measurement zones of the document group. first displacement probe, second displacement probe, third positioned the first and fourth away probes, each of the four away probes From the initial contact position, 0.20 mm to the first measurement position, 0.40 mm The probe is moved sequentially to the second measurement position and then to the third measurement position of 0.60 mm. The drive system has three support forces at three measurement positions of the four displacement probes. Thirty-six force components obtained from the sensing element are transferred as initial load. The profiling unit, which creates the profile, generates the initial load transfer profile. The profile memory that stores the documents returns them to the document slot after use. Using the same probe sequence and the same three measurement locations from the placed document group The control unit that generates the return load transfer profile, the return load transfer profile Profile comparison unit that compares the initial load transfer profile with the final shutdown profile. The final closing mechanism includes a slider and, in case of failed verification, the final shutdown occurs. remaining in the movement line of the closing slide, final in case of successful verification. The closing bolt contains a bolt blocking tab that is pulled out of the bolt's line of motion.

2. Document security system according to Claim 1, its feature is; the base of the document placement tray. carrier frame, first side positioning surface, second side positioning surface, front positioning surface, rear positioning surface, first support It includes a first support gap, a second support gap, and a third support gap.

3. According to Claim 2, the document security system has the following characteristic: the first support opening is the first the upper support surface of the support force sensing element, the second support opening the upper support surface of the second support force sensing element and the third support The document covers the upper support surface of the third support force sensing element of the 35 opening. It is the process of delivering it to the lower surface of the group. 12 5 4. Document security system according to Claim 1, its feature is; first support force detection. element, second support force sensing element and third support force The sensing element is in the form of a load cell.

5. Document security system according to Claim 4, its feature is; three support force detection. The element's document group has three separate supports that form a triangular geometry in the base area. It is located in the region.

6. Document security system according to Claim 1, its feature is; the first displacement probe. to the first upper corner region of the document group, to the second upper corner of the second displacement probe to the region, to the third upper corner region of the third displacement probe, and to the fourth The displacement probe is positioned against the fourth upper corner region.

7. The document security system according to Claim 1 is characterized by having four displacement probes, each... One of them has a probe body, a 10 mm diameter flat contact surface, a linear guide, and a screw shaft. electric motor, displacement sensing element and contact force sensing element It includes.

8. Document security system according to claim 7; its feature is contact force detection. the position where the element's contact surface reaches the top surface of the document group It determines the starting position of the displacement measurement.

9. Document security system according to claim 7, its feature is; displacement detection element. Probe distances of 0.20 mm, 0.40 mm and 0.60 mm from the contact starting position. It defines their movements as separate measurement locations.

10. Document security system according to Claim 1, its feature is; the first of the probe drive mechanism. probe driver, second probe driver, third probe driver and fourth probe It includes the driver. 35 11. According to claim 10, it is a document security system and its feature is; the control unit is a probe while keeping the driver in the measurement motion, start the remaining three probe drivers. It is about keeping it in position. 13 5 12. Document security system according to Claim 1, its feature is; three of the first displacement probes. the first profile group of nine force components obtained at the measurement location, the second nine force components obtained at three measurement positions of the displacement probe the second profile group, obtained at three measurement positions of the third displacement probe the third profile group of nine force components and the fourth displacement probe the fourth profile group of nine force components obtained at three measurement locations It is the creation of.

13. According to Claim 12, it is a document security system with the following features: first profile group, second profile group, third profile group and fourth profile group thirty-six forces It creates an initial load transfer profile consisting of its components.

14. The document security system according to claim 13 is characterized by its profile memory capacity of thirty-six. It stores both a lower limit value and an upper limit value for each of the force components.

15. The document security system according to claim 14 is characterized by its profile comparison unit. All thirty-six force components in the return load transfer profile have their own lower limits. A successful confirmation signal is given when the value is between the upper limit value. It is the production.

16. According to Claim 14, it is a document security system and its feature is; profile comparison unit. one of the force components in the return load transfer profile exceeds its lower limit value When it falls below this level, it produces a failed verification signal.

17. According to Claim 14, it is a document security system and its feature is; profile comparison unit. one of the force components in the return load transfer profile exceeds its upper limit value It produces a failed verification signal when it is present on the device. According to Claim 18, it is a document security system, the characteristic of which is; the initial control unit. before measurement, the empty bed force values ​​of the three support force sensing elements It stores 35 profiles in memory as system control values.

19. The document security system according to claim 18 is characterized by its ability to obtain data before return measurement. One of the obtained empty bed force values ​​is stored in the profile memory of the system control. When located outside the 14 5 boundary, the movement of the final closing slide of the sliding barrier tongue It is about staying on track. According to Claim 20, it is a document security system with the feature of having a sliding barrier tab. blocking body, linear limiting the linear movement of the blocking body The guide is an electromechanical release mechanism that moves the blocking body to the free position. the release element and the return that moves the blocking body to the blocking position. It includes a bow.

21. Document security system according to claim 20; its feature is; upon successful verification signal. electromechanical release element releases the blocking housing to the free position. Its function is to move and pull the sliding barrier tongue out of the final closing bolt's movement line.

22. Document security system according to claim 20; its characteristic is: failed verification. in the signal return spring slide barrier tongue final closing slide movement It is about keeping it on track. According to Claim 23, 1, it is a document security system whose feature is; the final closing mechanism. final closing bolt, bolt guide channel, closing counterpart, closing lever and It includes a safety latch.

24. The document security system according to claim 23 is characterized by its final security latch. When the closing slider reaches its closing counterpart, the last closing slider is closed. It keeps it in the closed position.

25. Document security system according to claim 24, its feature is; security latch. The key is that the device will not move to the free position unless the authorized release switch is activated. According to Claim 26, 1, it is a document security system and its feature is; initial load transfer profile. This involves creating a document group without using the page count information. 35 According to Claim 1, it is a document security system and its feature is; initial load transfer profile. It is created without using nominal leaf thickness information. 5 28. According to Claim 1, it is a document security system and its feature is; the total of the document group its weight as the sole determining physical value of the initial load transfer profile It is not used. 16