TWO-STATION VERIFICATION, CASSETTE MEMORY AND RESULT-LOCKED THERMAL SURFACE COMPARISON APPARATUS.

TR202613008U5Pending Publication Date: 2026-09-21SAMSUN İLKADIM İLKOKUL KIŞLA-YAŞARDOĞU +12
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Patent Information

Application Number
TR202613008U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-08-01
Publication Date
2026-09-21
Estimated Expiration
2036-08-01
Patent Text Reader

Abstract

This invention relates to an apparatus for comparing the thermal responses of different surface samples at two separate irradiation positions. The apparatus comprises a first and second irradiation station, a 180-degree rotating cassette carrier, first and second surface cassettes, an irradiation panel, a common irradiation curtain, a mechanical timing device, and a common result lock. Each surface cassette has a first memory input and first memory slider operating at the first irradiation station, and a second memory input and second memory slider operating at the second irradiation station. The attainment of the verified position of the two memory sliders triggers the completion projection on the cassette. The rotating cassette carrier allows the surface cassettes to be exchanged between the first and second irradiation stations. The common irradiation curtain closes the irradiation paths during the movement of the cassette carrier.The mechanical timing mechanism activates the station verification elements after the completion of the irradiation period. The common result lock prevents the result cover, which conceals the temperature gauges, from being opened before both surface cassettes have completed the process at both irradiation stations.
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Description

TWO-STATION VERIFICATION, CASSETTE MEMORY, AND THE RESULT. LOCKABLE THERMAL SURFACE COMPARISON APPARATUS 1. TECHNICAL FIELD The invention relates to the thermal responses of different surface samples under controlled irradiation. It relates to experimental and educational apparatus for comparison purposes. The invention specifically involves placing two surface cassettes opposite each other between two separate radiation stations. The rotating conveyor that changes the cassette ensures that each surface cassette is processed at two stations. mechanical state memory that records on it, mechanical timing that fixes the radiation duration the mechanism, a common screen that cuts off radiation during carrier movement and two surface cassettes prevents access to temperature readings before completing the process cycle at the station. This relates to a thermosurface comparison apparatus that includes a result lock. 2. STATE OF KNOWLEDGE OF THE ART In comparing the thermal behavior of different surfaces, samples are placed under a radiation source. Experimental setups are used that hold the material in fixed positions underneath. In these setups, asphalt, Surface samples of concrete, soil, vegetation, stone, ceramics, and similar materials are exposed to a light or heat source. They are exposed to different temperatures, and the temperatures of the samples are compared. The intensity of radiation generated across the surface of the radiation source is not uniform. The radiation source... Different radiation values ​​are observed in the center and at the edges of the samples. their distance from the source, horizontal position, and level of exposure to ambient airflow It alters the measurement result. Measurements taken in setups where two different surface samples are held side-by-side and in fixed positions. The temperature difference is not solely due to the surface material. The location of the sample... The radiation intensity of the station and environmental conditions also affect the measurement results. There are radiation test devices that move samples on a rotating conveyor. The shields that block the radiation path during sample exchange and the specific sample carrier Mechanical locks are also used to secure the device in place. In these setups, which irradiation stations the removable sample cassette is processed at? The 35 tapes are not mechanically recorded. The sample is processed twice at the same station. physically complete the experiment without being held or transferred to the second station It is not blocked. 1 5 In known setups, the process cycle is usually indicated by a counter or control panel on the apparatus body. It is monitored through the unit. When the sample cassette is removed from the apparatus, the cassette's The physical recording of the completed station cycle does not remain on the cassette tape. In known setups, the temperature indicator shows the temperature of the sample at two different radiation stations. It can be read before the timed process is completed. This situation indicates an incomplete cycle result. This leads to it being considered as a valid comparison result. Because; • each surface cassette is processed in the first and second irradiation stations. recording separately on it, • not considering the reuse of the same station as a second station operation, • Does not advance the cassette memory before the radiation time is complete, • physically interrupts radiation during carrier movement, • Result before both surface cassettes complete two station cycles keeping the indicators off A thermosurface comparison apparatus is needed. 3. THE PURPOSE OF THE INVENTION The main purpose of the invention is to expose different surface samples to two different irradiation conditions for the same duration. a thermal surface comparison apparatus that mechanically necessitates processing to create. Another objective of the invention is to show that each surface cassette is processed at the first radiation station. The first method is recording using a cassette memory element. Another objective of the invention is to show that each surface cassette is processed in the second radiation station. The second method is recording using a cassette memory element. Another objective of the invention is to bring the first and second cassette memory elements to their completed state. The goal is to prevent the cassette completion element from coming out before it reaches its destination. Another objective of the invention is to activate the completion elements of two surface cassettes simultaneously. The goal is to prevent the lid from being opened unless it is in the correct position. Another aim of the invention is to mechanically adjust the duration that the surface cassettes are exposed to radiation. It is fixed using a timing mechanism. 35 Another objective of the invention is to ensure the station operates after the mechanical timing period is completed. The goal is to move the validation elements. Another objective of the invention is to control the movement of the rotating carrier when the radiation curtain is in the open position. To prevent. 2 5 Another purpose of the invention is to enable the rotating carriage to be in the first or second indexing position. The goal is to prevent the radiation curtain from opening without locking it. Another objective of the invention is to protect surface cassettes from radiation exposure during station changes. The goal is to prevent it from staying. Another aim of the invention is to reduce the spatial temperature caused by radiation stations. by applying the differences to both surface cassettes, surface comparison can be performed. The goal is to increase its repeatability. 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 list of reference markings is not provided. DETAILED DESCRIPTION OF THE 6TH INVENTION 6.1. General structure The subject of the invention is a thermosurface comparison apparatus; • base support body, • first radiation station, • second radiation station, • rotary cassette carrier, • first surface cassette, • second surface cassette, • radiation panel, • common radiation shield, • mechanical timing mechanism, • first station verification element, • second station verification element, • In-cassette mechanical status memories, • cassette completion elements, • common result lock, 35 • result cover, • temperature indicators, • carrier-curtain interlocking mechanism and • reset mechanism It contains 3 5. The first and second radiation stations are located side-by-side on the base support structure. The rotary cassette conveyor rotates the first and second surface cassettes one hundred and eighty degrees relative to each other. It carries with an angular gap. The rotary cassette conveyor faces between the first and second indexing positions. It rotates eighty degrees. At the first indexing position, the first surface cassette is at the first radiation station, the second surface The cassette is located at the second radiation station. At the second indexing position, the first surface cassette is at the second radiation station, the second surface The cassette is located at the first radiation station. 6.2. Base support body The base support housing is the main component that carries all the mechanical and electrical components of the apparatus. It is the trunk. Base support body; • bottom support plate, • rotary carrier center bearing, • first station residential area, • second station residential area, • Radiation panel support feet, • curtain movement channel, • mechanical timing mechanism housing, • exit cap movement channel, • Result lock slot, • reset lever channel and • Non-slip bottom surface elements It includes. The lower support plate supports the apparatus in the horizontal operating plane. The rotary carrier center bearing guides the center shaft of the rotary cassette carrier along the vertical axis. It holds. 35. The residential areas of the first and second stations have the same dimensions. The centers of the first and second stations are aligned with the central axis of the rotating carrier. It is at a distance. 4 5 6.3. First and second radiation stations The first and second radiation stations provide controlled irradiation of surface cassettes. These are two separate processing locations to which it is exposed. Each radiation station; • cassette seating surface, • cassette alignment tabs, • Cassette vertical movement limiters, • station verification element transition opening, • Temperature gauge alignment opening and • radiation center alignment region It includes. The cassette seating surfaces are the same height. Cassette alignment protrusions position the surface cassettes in the same position relative to the station center. It holds. Cassette vertical movement limiters control the distances of surface samples from the radiation panel. It keeps them equal. The verification element at the first radiation station is connected to the first memory entry on the surface cassette. They are aligned. The verification element at the second radiation station is connected to the second memory input on the surface cassette. They are aligned. The first verification element and the second verification element are in different horizontal positions. It is located. The first validation element does not make contact with the second memory input. The second validation element does not make contact with the first memory input. 6.4. Rotary cassette carrier Rotary cassette carrier; • center shaft, • carrier plate, • first cassette slot, 35 • second cassette slot, • first indexing indentation, • second indexing indentation, • carrier lock pin counterpart, 5 • carrier movement arm and • rotation limiting element It includes. The first and second cassette slots are positioned one hundred and eighty degrees relative to each other on the carrier plate. It is located. The central shaft rotates the carrier plate so that it rotates against the base carrier body. It connects. The first indexing recess determines the initial operating position of the rotary carriage. The second indexing recess determines the second operating position of the rotary carriage. The carrier locking pin secures the carrier table when it enters the first or second indexing recess. It holds. The rotation limiting element controls the movement of the carrier plate from one working position to another. It prevents it from rotating more than 180 degrees. The carrier arm allows the user to move the carrier table to the first and second indexing positions. It enables movement between them. 6.5. Surface Cassettes The first and second surface cassettes have the same mechanical structure. Each surface cassette; • cassette body, • removable surface sample plate, • Sample seating bed, • temperature sensing element, • temperature display module, • first station memory input, • second station memory input, • first memory slider, • second memory slider, • first locking latch, • second locking latch, 35 • completion slider, • completion protrusion and • Cassette reset element It includes. 6 5 The cassette body holds the surface sample plate in a fixed position at the irradiation station. The sample seat bearing is positioned so that the upper surface of the surface sample plate is aligned with the cassette body. It holds at a specified height. The sample seating beds in the first and second surface cassettes have the same dimensions. Temperature sensing elements contact the lower surface centers of the surface sample plates. is doing. Contact areas and contact locations of temperature sensing elements with surface samples. They are the same. The temperature display module is located on the front of the cassette housing. 6.6. In-cassette mechanical status memory The mechanical status memory in each surface cassette is connected to the first memory slider and the second memory. It consists of a sliding mechanism. The first memory slider is only the first verification element in the first radiation station. It is moved by. The second memory slider is only the second verification element in the second radiation station. It is moved by. The first memory slider moves linearly between its starting position and the verified position. is doing. The second memory slider moves linearly between its starting position and the verified position. is doing. When the first validation element pushes the first memory slider to the validated position, the first The locking latch fits into the locking position on the first memory slider. The first locking latch returns the first memory slider to its automatic initial position. It prevents it from turning. When the second validation element pushes the second memory slider to the validated position, the second The locking latch fits into the locking position on the second memory slider. The second locking latch returns the second memory slider to its initial position. It prevents it from turning. The repeated operation at the first station only makes contact with the first memory slider. 35. Repeating the operation at the first station does not move the second memory slider. The repeated operation at the second station only makes contact with the second memory slider. The repeated operation at the second station does not move the first memory slider. 7 5 6.7. Cassette completion mechanism. The completion slide is pushed outwards by spring force within the cassette body. First memory slider, first blocking shoulder and first free passage recess It is located. The second memory slider has a second blocking shoulder and a second free-pass recess. It is located. With the first memory slider in its starting position, the first blocking shoulder is complete. It prevents the slider from moving. With the second memory slider in its initial position, the second blocking shoulder is complete. It prevents the slider from moving. The first free-pass indentation when the first memory slider reaches the verified position. It is aligned with the completion slider. Second free-pass recess when the second memory slider reaches the verified position. It is aligned with the completion slider. The completion slide only applies to the first and second free passage recesses simultaneously. It moves when aligned. When the completion slider moves, the completion protrusion is located at the bottom of the cassette body. It is protruding from the surface. The protrusion of the completion projection, the first and second radiation of the relevant surface cassette. It mechanically demonstrates that it has completed its processing cycles at its stations. 6.8. Radiation panel Radiation panel; • panel housing, • first radiation element, • second radiation element, • first radiation scattering surface, • second radiation scattering surface, • protective transparent cover, • low voltage power input and 35 • power cut-off switch It includes. The first radiation element is aligned with the center of the first radiation station. The second radiation element is aligned with the center of the second radiation station. 8 5 The first and second radiation elements have the same electrical power rating, the same radiation surface and It has the same operating voltage. The first and second radiation elements are located at the same vertical distance from the surface cassettes. Radiation scattering surfaces are located between the radiation elements and the surface samples. The protective transparent cover prevents the user from coming into contact with the emitting elements. 6.9. Common radiation screen Common radiation screen; • curtain carrier body, • first radiation cover plate, • second radiation cover plate, • Curtain movement slider, • open position locking surface, • closed position locking surface and • Curtain closed position verification tab It includes. The first radiation cover plate is located between the first radiation element and the first radiation station. It blocks the radiation path. The second radiation cover plate is located between the second radiation element and the second radiation station. It blocks the radiation path. When the shutter is open, the first and second radiation shielding plates are outside the radiation paths. It is located. With the shutter in the closed position, the first and second radiation shielding plates block the two radiation paths simultaneously. It shuts down immediately. The curtain closed position verification tab only appears when the curtain reaches the fully closed position. It releases the carrier locking mechanism. 6.10. Mechanical timing mechanism Mechanical timing mechanism; • winding handle, 35 • setting spring, • gear transmission group, • speed limiting escapement, • timing cam, 9 5 • curtain opening projection, • curtain closing projection, • first verification impeder and • second confirmation pusher It includes. The cocking spring moves the cocking handle from its starting position to its operating position. It is stretching. Releasing the winding crown activates the timing mechanism. The timing cam opens the common radiation curtain at the start of the cycle. The escapement keeps the timing cam's rotational speed constant. The timing cam closes the common radiation curtain at the end of the predetermined radiation duration. It brings. The first and second verification thrusters will only be activated after the common radiation curtain has reached the closed position. then it moves. The first verification thruster is the first station verification element of the surface cassette's first memory. It is moving towards the entrance. The second verification thruster, the second station verification element, and the second memory of the surface cassette. It is moving towards the entrance. The verification elements do not contact the cassette memory sliders before the radiation time is complete. It does not. 6.11. Carrier-curtain mutual locking mechanism Carrier-curtain mutual locking mechanism; • carrier locking pin, • curtain lock bolt, • Curtain closed position verification tab, • first indexing sensing surface, • second indexing detection surface and • mutually blocking arm It includes. 35 Indexing the curtain locking slide carrier locking pin when the common radiation curtain is in the open position. It holds it within its recess. The rotary cassette carrier moves as long as the carrier locking pin is located within the indexing recess. It does not. 5. Common radiation curtain closed position verification tab when the curtain is in the fully closed position. It moves the curtain lock bolt. The movement of the curtain lock bolt allows the carrier lock pin to exit from its indexing recess. It provides. As long as the rotary cassette conveyor is located between the first and second indexing positions The reciprocal blocking arm prevents the common radiation curtain from moving to the open position. The carrier locking pin engages when the rotary cassette carrier reaches the first or second indexing position. It enters the relevant indexing indentation. The insertion of the carrier locking pin into the indexing recess allows the common radiation curtain to open. It provides. 6.12. Temperature indicators Each surface cassette contains a temperature sensing element that measures the temperature of the surface sample, and It includes a temperature display module that shows the temperature value. The temperature sensing elements in the first and second surface cassettes have the same technical specifications. has. Temperature sensing elements are placed directly on the lower surface centers of the surface sample plates. It is in contact. Temperature display modules show the digital temperature value. A common output cover is located in front of the temperature display modules. Temperature readings cannot be read externally when the common result cover is closed. 6.13. Common result lock Common result lock; • first completion detection pin, • second completion detection pin, • first lock plate, • second lock plate, • common release bolt, • result cover lock tab and 35 • Result cover movement lever It includes. The first completion detection pin is aligned with the completion projection of the first surface cassette. They are aligned. 11 5 Second completion sensing pin with completion projection of the second surface cassette They are aligned. When the completion protrusion of the first surface cassette does not protrude outwards, the first lock plate is common. It prevents the release bolt from moving. When the completion protrusion of the second surface cassette does not protrude outwards, the second locking plate is common. It prevents the release bolt from moving. The completion protrusion of the first surface cassette moves the first completion sensing pin. When this is done, the first locking plate moves to the free passage position. The completion protrusion of the second surface cassette moves the second completion sensing pin. When this is done, the second locking plate moves to the free passage position. The common release bolt allows only the first and second lock plates to pass freely at the same time. It moves when it is in that position. The movement of the common release bolt releases the resulting cover locking tab. It leaves. Releasing the locking tab of the result cover allows the result cover to move to the open position. It provides. 6.14. Reset mechanism Reset mechanism; • reset lever, • first cassette reset pusher, • second cassette reset pusher, • result cap closing connection and • common lock return spring It includes. The reset lever can only be reset after the result cover has been moved from the open position back to the closed position. then it moves. The first cassette reset pusher locks the first and second locks on the first surface cassette. They release the latches simultaneously. The second cassette reset pusher engages the first and second locking latches on the second surface cassette. 35 are being released simultaneously. Releasing the locking latches activates the first and second memory sliders. It returns it to its original position. 12 5 The memory sliders return to their starting position, the completion sliders return to the cassette. They draw it into their bodies. Retracting the completion tabs disengages the common result lock. 6.15. Employment relationship The first surface sample plate is placed in the first surface cassette. The second surface sample plate is placed in the second surface tray. The first and second surface cassettes are secured to the cassette slots of the rotary cassette carrier. The rotary cassette carrier is brought to the first indexing position. At the first indexing position, the first surface cassette is at the first radiation station, the second surface The cassette is located at the second radiation station. The carrier locking pin fits into the first indexing recess. The mechanical timing mechanism is wound using a setting lever. The common radiation curtain opens when the timing cycle begins. The first and second surface cassettes receive radiation from their respective radiation elements for the same duration. It is receiving. At the end of the timing period, the common radiation curtain closes. After the curtain closes, the first station verification element is the first surface cassette of the first It sets the memory slider to the verified position. Simultaneously, the second station verification element activates the second memory slider of the second surface cassette. It brings it to a verified state. The curtain reaching the closed position releases the carrier lock. The rotary cassette carrier is rotated one hundred and eighty degrees to the second indexing position. is being brought. At the second indexing position, the first surface cassette is at the second radiation station, the second surface The cassette is located at the first radiation station. The carrier locking pin fits into the second indexing recess. The second timing cycle is being initiated. The common radiation curtain is opening. The first and second surface cassettes receive radiation during the second radiation cycle. 35 At the end of the second timing period, the common radiation curtain closes. The second station verification element is the second memory slider of the first surface cassette. It brings it to a verified state. 13 5 First station verification element second surface cassette first memory slider It brings it to a verified state. The first and second memory sliders on the first surface cassette are in the verified position. Its presence reveals the first protruding element of completion. The first and second memory sliders on the second surface cassette are in the verified position. Its presence reveals the second protruding element of completion. Two completion tabs release the common result lock. The final cover is opening. The temperature gauges of the first and second surface cassettes are on the same observation plane. It is being read. 7. INDUSTRIAL APPLICABILITY The invention concerns a two-station verified, cassette memory and result-locked thermosurface comparison. The apparatus is used in plastic injection molding, metal sheet forming, profile production, precision spring production, and gear manufacturing. manufacturing, cam manufacturing, electronic temperature sensor assembly and low-voltage radiation element. It is produced in series using assembly techniques. Base carrier housing, rotary cassette carrier, surface cassettes, radiation screen, and end cap. It is manufactured from durable polymer or metal materials. Memory sliders, locking latches, completion sliders, verification elements, and Result lock components are manufactured from low-friction polymer or metal materials. The radiation panel operates with a low-voltage electrical supply. The apparatus is suitable for primary schools, middle schools, high schools, science centers, climate education workshops, and building materials training. It is used in environmental education and urban surface temperature comparison applications. 14

Claims

1. Comparison of the thermal responses of different surface samples at two different irradiation locations. It is a thermosurface comparison apparatus with a base carrier body; the first and second radiation stations located there, the first and second radiation stations carrying the first surface cassette and the second surface cassette that are exchanged between stations the rotary cassette carrier, the first station memory input located on each surface cassette, the second station memory input, first memory slider, second memory slider, first and second memory completion slider whose movement is prevented until the sliders reach the verified position and the completion protrusion that extends outside the cassette body with the movement of the completion slider, first radiation station, first station aligned with first station memory input the verification element, aligned with the second station memory input at the second radiation station second station verification element and the first surface cassette and the second surface cassette Unless the completion protrusions are simultaneously located outside the cassette bodies, the temperature common result lock that prevents the result cover in front of the indicators from being opened It includes.

2. Thermosurface comparison apparatus according to claim 1, its characteristic is; the center of the rotating cassette carrier. spindle, carrier plate, with angled sections of one hundred and eighty degrees relative to each other on the carrier plate the first and second cassette slots located there, the first indexing recess, the second indexing recess and securing the carrier plate by entering one of the indexing recesses. It includes a carrier locking pin.

3. According to claim 2, it is a thermosurface comparison apparatus whose characteristic is; a rotating cassette carrier. The first surface cassette at the first indexing position, the first radiation station and the second The surface cassette is at the second radiation station, and the first surface is at the second indexing position. one cassette at the second radiation station and the second surface cassette at the first radiation station It is holding on.

4. Thermosurface comparison apparatus according to claim 1, its characteristic is; first station verification. The element's surface cassette has the first station memory input in the same horizontal position as the second The station verification element is horizontally aligned with the second station memory input on the surface cassette. its location and the first and second station memory inputs being horizontally different from each other It is the arrangement of locations.

5. According to claim 1, it is a thermosurface comparison apparatus and its characteristic is; the first one in each surface cassette. the memory slider moves between its starting position and the verified position and When it reaches the verified position, the first locking latch activates the second memory. the slider moves between its starting position and the verified position, and It is secured by the second locking latch when it reaches the verified position.

6. It is a thermosurface comparison apparatus according to claim 5, and its characteristic is; the first memory slider. first blocking shoulder and first free passage recess, second memory slider's second The inclusion of a blocking shoulder and a second free passage recess, the first of the completion slide or when aligned with the second blocking shoulder, it is kept within the cassette body and the first and The second free passage recesses are aligned simultaneously with the completion slide when the spring is released. It is the movement caused by force.

7. It is a thermosurface comparison apparatus according to claim 6, and its characteristic is that it is connected to a completion slide. The completion tab's first and second memory sliders are in the verified position. It is the process of the cassette tape coming out from the bottom surface of the body upon reaching it.

8. Thermosurface comparison apparatus according to claim 1, its characteristic is; the first of the common result locks. The first completion detection pin is aligned with the completion projection of the surface cassette. The second completion detection pin is aligned with the completion projection of the second surface cassette. first locking plate, second locking plate, common release slide and final cover The closing mechanism of the cap includes a locking tab that holds it in the closed position.

9. Thermosurface comparison apparatus according to claim 8, its characteristic is; first completion detection. the first locking plate of the pin and the second locking plate of the second completion detection pin bringing it to the free passage position, the common release bolt only first and The movement occurs when the second locking plates are simultaneously in the free passage position and The movement of the common release bolt locks the end cap of the end cap. It is to release.

10. Thermal surface comparison apparatus according to claim 1, its characteristic is; with the first radiation station. the first radiation element aligned with the second radiation station, the second radiation element aligned with the second radiation station, Radiation diffuser located between the first and second radiation elements and the surface cassettes including a protective transparent cover that prevents external contact between surfaces and radiation elements. It has a radiation panel. 16 5 11. Thermal surface comparison apparatus according to claim 10, its characteristic is; first and second radiation. the elements must have the same electrical power rating and the same radiation surface, and the surface The cassettes must be positioned at the same vertical distance from the sample seating surfaces.

12. It is a thermal surface comparison apparatus according to Claim 1, and its characteristic is; the first radiation station. The first radiation blocking plate, which blocks the radiation path, is the radiation of the second radiation station. the second radiation shielding plate that blocks the path, the first and second radiation shielding plates a curtain movement slider that moves the curtain between open and closed positions, and the curtain itself. Curtain closed position verification tab that mechanically indicates that it has reached the closed position. It has a common radiation shield that includes.

13. Thermal surface comparison apparatus according to claim 12, characterized by its open common radiation curtain. the curtain lock bolt that holds the carrier lock pin within the indexing recess when in position, and The rotary cassette carrier is located between the first and second indexing positions while sharing a common position. including a counter-locking arm that prevents the radiation curtain from moving to the open position. The carrier-curtain has a mutual locking mechanism.

14. It is a thermal surface comparison apparatus according to claim 13, and its characteristic is; with the shutter closed position. When the common radiation curtain of the verification projection reaches the closed position, the curtain lock slider by moving it, allowing the carrier lock pin to detach from the indexing recess, and the carrier lock pin enters either the first or second indexing recess, mutually The blocking arm releases the common radiation curtain.

15. Thermosurface comparison apparatus according to Claim 1, its features include; cocking handle, cocking spring, gear transmission assembly, speed limiter escapement, timing cam, common radiation curtain movement First and second station verification with curtain opening and curtain closing projections. It has a mechanical timing mechanism that includes verification tappets that move its elements. It is the fact that.

16. Thermosurface comparison apparatus according to claim 15, its characteristic is; timing cam. at the start of the cycle, open the common radiation curtain, for the specified radiation duration. finally turning it off and the common radiation of the first and second verification thrusters After the curtain reaches the closed position, the relevant station verifies the surface elements. It is about moving it towards the cassettes. 17 5 17. It is a thermosurface comparison apparatus according to claim 1, and its characteristic is that each surface cassette is a cassette. body, surface sample plate that can be attached to and removed from the cassette body, surface sample The sample seating bed, which holds the surface sample plate at a specified height, temperature sensing element in contact with the center of the lower surface and the temperature sensing element It includes a connected temperature display module.

18. It is a thermosurface comparison apparatus according to claim 17, and its characteristic is; first and second surface. The sample seating beds in the cassettes have the same dimensions, temperature sensing elements. according to the same technical specifications and surface sample plates of temperature sensing elements It means they have the same contact position.

19. It is a thermosurface comparison apparatus according to claim 1, and its characteristic is that the result cover is closed. While in this position, the temperature display modules on the first and second surface cassettes are externally visible. to prevent reading and the result cover when the common result lock is in the released position This is the movement of the temperature display modules to the open position, making them visible.

20. Thermosurface comparison apparatus according to claim 1, its features include; zeroing lever, first surface First cassette reset: releasing the first and second locking latches on the cassette. its pusher, the second one that releases the first and second locking latches on the second surface cassette. the cassette reset pusher and the return sliders that rotate inside the cassette bodies It has a reset mechanism that includes return elements.

21. A thermosurface comparison apparatus according to claim 20, its characteristic feature is; the result of the zeroing lever. The movement of the lid after it is closed causes the reset pushers to lock. By releasing the latches, the first and second memory sliders return to their initial position. completion of the projections by rotating and returning the memory sliders to their starting position. It is the process of drawing the tape inside the cassette body.

22. Mechanically recording the operations taking place at two different processing stations on the cassette. It is a surface cassette that records data; its feature is the first verification at the first processing station. The first station memory input aligned with the element, the second in the second processing station aligned with the verification element and located differently from the first station memory input. The second station memory input, located there, receives the motion transferred from the first station memory input. the first memory slider moves from the starting position to the verified position, the second station The movement transferred from the memory input moves from the starting position to the verified position. 18 5 second memory slider, first or second memory slider in its starting position the completion slider and the first and second memory whose movement is blocked when found The cassette is complete with the slider when the sliders are in the verified position. It includes a completion projection that extends beyond the body.

23. Surface cassette according to claim 22, its characteristic is; the first memory slider is verified. the first locking latch and the second memory slider are held in the verified position. It includes a second locking latch that holds it in place.

24. According to claim 22, it is a surface cassette and its characteristic is; the first one located in the first memory slider. the first free passage recess with the blocking shoulder, the second located in the memory slider the second free passage recess with the blocking shoulder and the completion slider cassette It contains a return spring that pushes the body outwards.

25. Surface cassette according to claim 24, its characteristic is; the first and second completion slide. first or second blockage if not aligned simultaneously with free passage recesses held within the cassette body by the shoulder and with first and second free passage recesses When aligned simultaneously, the tape's protruding section is completed by the force of the return spring. It is the act of carrying it outside the body. 19