A method for rectifying deviation of a sensory implant based on elastic deformation recognition

By adjusting the position of the sensor in the heated non-combustible cigarette using an elastic deformation recognition method, the problems of cumbersome sensor installation and uneven heating are solved, thus improving the smoking experience.

CN118561104BActive Publication Date: 2025-11-04HUBEI CHINA TOBACCO INDUSTRY CO LTD
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Patent Information

Application Number
CN202411004944.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-11-04
Estimated Expiration
2044-07-25

AI Technical Summary

Technical Problem

In existing heated tobacco products, when the sensor is embedded in the smoke-generating section, there are problems with installation difficulties and uneven heating, which affect the smoking experience.

Method used

A sensor implantation correction method based on elastic deformation recognition is adopted. The position of the sensor during the winding process is adjusted by the sensor and controller to ensure that the sensor is accurately implanted in the middle of the smoke-generating section and achieve uniform heating.

Benefits of technology

It achieves precise positioning and uniform heating of the sensor, enhancing the suction experience.

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    Figure CN118561104B_ABST
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Abstract

The application provides a feeler implantation deviation correction method based on elastic deformation recognition, and relates to the technical field of heat-not-burn cigarettes, and comprises the following steps: S1: equipment starting; S2: judging whether normal feeding is performed, if yes, executing step S3: during the winding of the smoking section, the inductor acquires the extension amount of each elastic extension head; S4: judging whether the variance of the extension amount of each extension head is greater than a predetermined threshold, if yes, executing S5; otherwise, normally slitting; S5: acquiring the direction in which the elastic extension head with the minimum extension amount points to the elastic extension head with the maximum extension amount, and recording the direction as the adjustment direction; S6: the controller drives the telescopic air cylinder to adjust in the adjustment direction, and returning to S3. Through the method of elastic deformation recognition, the elastic deformation of the winding position of the feeler implantation is sensed, and the feeler feeding guide position is adjusted, so that the feeler is effectively adjusted to the middle of the heat-not-burn cigarette, the heating is uniform during the cigarette smoking, and the smoking experience is better.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of heat-not-burn cigarettes, in particular, the present application relates to a receptor implantation deviation correction method based on elastic deformation identification. BACKGROUND

[0002] Heat-not-burn cigarettes are a special tobacco product being developed in recent years, which is heated by electric heating or other heating methods to release flavor components and other substances in tobacco products. Since tobacco products do not participate in combustion, a large number of harmful components generated by 900℃ high-temperature cracking are avoided. Consumers can obtain satisfaction while reducing harm to the body and reducing environmental smoke pollution.

[0003] The current heat-not-burn cigarettes are usually used with a matching heatable smoking set. When smoking, the cigarette is inserted into the smoking set, the heating needle of the smoking set is inserted into the cigarette, and the heat generated by the heating needle heats the cigarette to release flavor substances. However, due to the insertion angle, depth and fit of the heating needle, the problem of uneven heating of the cigarette is very prominent, and good heating and smoking effect cannot be obtained.

[0004] The existing uniform heating optimization is based on the insertion of the heating needle. For example, Chinese invention patent CN109832662A discloses a heat-not-burn cigarette, which includes a mouthpiece section for a user to smoke and a smoke generating section connected with the mouthpiece section for generating smoke. The smoke generating section includes a cylinder body wound by cigarette paper, and the smoke generating section further includes a tobacco sheet and a heat-conducting sheet arranged in the cylinder body. When smoking the heat-not-burn cigarette, the smoke generating section enters the smoking set matched with the heat-not-burn cigarette. Since the heat-conducting sheet is arranged in the smoke generating section, the heat generated by the smoking set can be quickly transmitted to each part of the smoke generating section, thereby ensuring the uniform heating of the smoke generating section and improving the user's smoking experience.

[0005] However, the needle-inserted heat-not-burn cigarette is still very inconvenient. In comparison, the magnetic body (receptor) inside the cigarette is provided to apply a magnetic field from the outside to heat, a magnetic field is applied to the cigarette by supplying power to the wire provided in the aerosol generating device, thereby generating an aerosol. The said receptor is built-in the cigarette, and the form is various, the smoking set does not need to use the needle, the service life is long, the receptor is pre-embedded in the smoke generating section, which can not only realize rapid heating, but also the smoke generating section will not be damaged during smoking, and the cigarette can be smoked multiple times.

[0006] Subsequently, the heat-not-burn cigarette with the susceptor arranged has the following shortcomings: the susceptor needs to be pre-embedded in the smoking segment, and at present, there is no good method to complete the preparation of the cigarette while adding the susceptor to the smoking segment, so that the cigarette wrapping and the susceptor installation of the heat-not-burn cigarette need to be divided into two steps, which is troublesome, and if the susceptor is not installed in the middle of the smoking segment, the problem of uneven heating of the cigarette still exists, and the smoking experience is poor.

[0007] Therefore, in order to solve the above problems, it is necessary for us to design a reasonable susceptor implantation correction method based on elastic deformation recognition. SUMMARY

[0008] The purpose of the present application is to provide a susceptor implantation correction method based on elastic deformation recognition, which can effectively adjust the susceptor to the middle of the heat-not-burn cigarette by using the method of elastic deformation recognition to sense the elastic deformation of the position of the susceptor implantation winding and adjust the susceptor supply guide position, so that the heating of the cigarette is uniform during smoking, and the smoking experience is better.

[0009] In order to achieve the above purpose, the technical scheme is as follows:

[0010] A susceptor implantation correction method based on elastic deformation recognition is suitable for a susceptor implantation wrapping machine equipment; the equipment includes a susceptor supply part, a tobacco supply part, a wrapping paper supply part, a winding part and a cutting part; the winding part includes a winding channel and an elastic extension head arranged on the inner side wall of the winding channel, the elastic extension head is connected with a sensor, a susceptor limiting plate is arranged between the susceptor supply part and the winding part, a guide hole for facilitating the passage of the susceptor is arranged on the susceptor limiting plate, the susceptor limiting plate is connected with a telescopic air cylinder, and the telescopic air cylinder is electrically connected with a controller.

[0011] The method includes the following steps:

[0012] S1: when the wrapping machine equipment is started, the sensor and the controller are started;

[0013] S2: it is judged whether the susceptor supply part, the tobacco supply part and the wrapping paper supply part are normally supplied, if yes, step S3 is executed; otherwise, no operation is performed;

[0014] S3: when the smoking segment of the winding passes through the winding channel, the sensor obtains the extension amount of each elastic extension head;

[0015] S4: it is judged whether the variance of the extension amount of each elastic extension head is greater than a predetermined threshold, if yes, step S5 is executed; otherwise, the cutting part normally cuts;

[0016] S5: the direction in which the elastic extension head with the minimum extension points to the elastic extension head with the maximum extension is recorded as the adjustment direction;

[0017] S6: the controller drives the telescopic cylinder to adjust in the adjustment direction, and returns to step S3.

[0018] As one of the preferences of the present application, when step S1 is performed, after the controller is started, the controller determines whether the electrical connection with the sensor is normal, and if so, step S2 is performed; otherwise, an alarm is issued.

[0019] As one of the preferences of the present application, when step S2 is performed, it is determined in turn whether the receiving body supply part, the tobacco supply part, and the wrapping paper supply part are all normally supplied, and if so, step S3 is performed; otherwise, the abnormal supply part is prompted.

[0020] As one of the preferences of the present application, the number of elastic extension heads is at least three, and the plurality of elastic extension heads are uniformly arranged on the inner side wall of the winding channel.

[0021] When step S3 is performed, when the smoking segment being wound passes through the winding channel, the sensor obtains the extension of all the elastic extension heads and sends it to the controller.

[0022] As one of the preferences of the present application, the slitting part includes two cutters, and the two cutters are symmetrically arranged.

[0023] When step S4 is performed, the slitting part normally performs slitting, and the two cutters perform slitting from both sides of the smoking segment to the middle.

[0024] As one of the preferences of the present application, before step S4 is performed, a predetermined threshold is generated according to the material of the receiving body and the type of tobacco.

[0025] As one of the preferences of the present application, when step S5 is performed, the end of the elastic extension head with the minimum extension is taken as the origin, and the end of the elastic extension head with the maximum extension is taken as the terminal, and the direction in which the line segment points is recorded as the adjustment direction.

[0026] As one of the preferences of the present application, the number of the first telescopic cylinders is at least one, and the plurality of first telescopic cylinders are uniformly arranged around the receiving body limiting plate.

[0027] When step S6 is performed, the controller drives the plurality of telescopic cylinders to run simultaneously, adjusts the receiving body limiting plate to displace a unit distance in the adjustment direction, and performs step S3.

[0028] As one of the preferences of the present application, a receiving body unwinding disc is arranged on the receiving body supply part, and a wrapping paper unwinding disc is arranged on the wrapping paper supply part.

[0029] As a preferred embodiment of the present invention, the guide hole is an M-shaped hole.

[0030] The beneficial effects of the sensor implantation correction method based on elastic deformation recognition of the present invention are as follows: by using the elastic deformation recognition method, the position of the sensor implantation during winding is elastically deformed and the feeding guide position of the sensor is adjusted, thereby effectively adjusting the sensor to the middle of the heated non-combustible cigarette, so that the cigarette is heated evenly and the smoking experience is better. Attached Figure Description

[0031] Figure 1 This is a schematic flowchart of a receptor implantation correction method based on elastic deformation recognition according to the present invention. Detailed Implementation

[0032] The following are specific embodiments of the present invention, which further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.

[0033] Various exemplary embodiments of the present invention will now be described in detail with reference to the accompanying drawings. It should be noted that, unless otherwise specifically stated, the relative arrangement of modules and structures set forth in these embodiments does not limit the scope of the invention.

[0034] The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit the invention or its application or use.

[0035] Techniques, methods, and systems known to a person skilled in the art may not be discussed in detail, but where appropriate, they should be considered part of the license specification.

[0036] Example 1: As Figure 1 The illustration shown is merely one embodiment of the present invention. A method for correcting implantation of a receptor based on elastic deformation recognition is applicable to a receptor implantation rolling machine. The machine includes a receptor feeding section, a tobacco feeding section, a paper feeding section, a winding section, and a slitting section. The winding section includes a winding channel and an elastic protrusion disposed on the inner wall of the winding channel. The elastic protrusion is connected to a sensor. A receptor limiting plate is disposed between the receptor feeding section and the winding section. The receptor limiting plate has a guide hole for facilitating the passage of the receptor. The receptor limiting plate is connected to a telescopic cylinder, which is electrically connected to a controller.

[0037] The receptor is a strip structure, which should be called a receptor strip. The material is a metal material such as a steel strip, an aluminum strip, and an alloy strip. Generally, a steel strip structure is adopted (low cost, easy to prepare, high strength, good magnetic heating effect, and other metal strips can be updated and replaced as the technology develops). After the metal material receptor strip is implanted into the smoking segment, the receptor strip can be heated in the electromagnetic environment of the cigarette lighter, so as to ignite the tobacco in the smoking segment to generate smoke.

[0038] The method comprises the following steps:

[0039] S1: when the rolling machine device is started, the inductor and the controller are started;

[0040] When step S1 is performed, after the controller is started, the controller determines whether the electrical connection with the inductor is normal. If yes, step S2 is performed; otherwise, an alarm is issued.

[0041] S2: it is determined whether the receptor supply part, the tobacco supply part, and the rolling paper supply part are normally supplied. If yes, step S3 is performed; otherwise, no operation is performed.

[0042] When step S2 is performed, it is determined in sequence whether the receptor supply part, the tobacco supply part, and the rolling paper supply part are normally supplied. If all of them are normally supplied, step S3 is performed; otherwise, the abnormal supply part is prompted.

[0043] S3: when the rolled smoking segment passes through the rolling channel, the inductor obtains the extension amount of each elastic extension head;

[0044] The number of elastic extension heads is at least three, and the plurality of elastic extension heads are uniformly arranged on the inner side wall of the rolling channel.

[0045] When step S3 is performed, when the rolled smoking segment passes through the rolling channel, the inductor obtains the extension amount of all the elastic extension heads and sends the extension amount to the controller.

[0046] S4: it is determined whether the variance of the extension amount of each elastic extension head is greater than a predetermined threshold. If yes, step S5 is performed; otherwise, the cutting part normally cuts.

[0047] S5: the elastic extension head with the minimum extension amount points to the direction of the elastic extension head with the maximum extension amount, which is recorded as the adjustment direction.

[0048] S6: the controller drives the telescopic cylinder to adjust in the adjustment direction, and returns to step S3.

[0049] Embodiment two: still as Figure 1 shown, only one embodiment of the present application, on the basis of embodiment one, in the receptor implantation correction method based on elastic deformation identification, the cutting part comprises two cutters, and the two cutters are symmetrically arranged.

[0050] So that when performing step S4, the slitting part normally carries out slitting, and the two cutters respectively slit from both sides of the smoking segment to the middle.

[0051] Also, before performing step S4, a predetermined threshold is generated according to the receptor material and the type of tobacco.

[0052] It should be noted that when performing step S5, the end of the elastic extension head with the minimum extension amount is taken as the origin, and the end of the elastic extension head with the maximum extension amount is taken as the terminal, and the direction pointed by the line segment is recorded as the adjustment direction.

[0053] That is, the outer surface of the cigarette smoking segment is still taken as the starting point and the ending point, and the adjustment direction is limited.

[0054] In addition, the number of the first telescopic cylinders is at least one, and the plurality of first telescopic cylinders are uniformly arranged around the receptor limiting plate.

[0055] So that when performing step S6, the controller drives the plurality of telescopic cylinders to operate simultaneously, adjusts the receptor limiting plate to displace a unit distance in the adjustment direction, and performs step S3.

[0056] Finally, the receptor feeding part is provided with a receptor unwinding disc, the roll paper feeding part is provided with a roll paper unwinding disc, and the guide hole is an M-shaped hole.

[0057] The receptor implantation deviation correction method based on elastic deformation recognition can effectively adjust the receptor to the middle of the heat-not-burn cigarette through the method of elastic deformation recognition, elastic deformation sensing of the position of the receptor implantation winding, and adjustment of the receptor feeding guide position, so that the heating is uniform during cigarette smoking, and the smoking experience is better.

[0058] The present application is not limited to the above specific embodiments, and various modifications and changes can be made to the present application. Any modification, equivalent replacement, improvement, etc. made to the above embodiments according to the technical essence of the present application shall be included in the protection scope of the present application.

Claims

1. A method for correcting the implantation of a receptor based on elastic deformation recognition, applicable to a receptor implantation rolling machine; the machine includes a receptor feeding section, a tobacco feeding section, a paper feeding section, a winding section, and a slitting section; the winding section includes a winding channel and an elastic protrusion head disposed on the inner side wall of the winding channel, the elastic protrusion head being connected to a sensor, a receptor limiting plate being disposed between the receptor feeding section and the winding section, the receptor limiting plate being provided with a guide hole for facilitating the passage of the receptor, the receptor limiting plate being connected to a telescopic cylinder, and the telescopic cylinder being electrically connected to a controller; Its features are: The method includes the following steps: S1: When the wrapping machine starts, the sensors and controller are activated; S2: Determine whether the sensor feeding section, tobacco feeding section, and paper feeding section are feeding normally. If yes, proceed to step S3; otherwise, do not perform the operation. S3: When the smoke-generating section of the winding passes through the winding channel, the sensor obtains the extension amount of each elastic protruding head; S4: Determine whether the variance of the extension amount of each elastic protrusion is greater than a predetermined threshold. If so, proceed to step S5; otherwise, the slitting section will proceed with normal slitting. S5: The direction from which the elastic protrusion head with the minimum extension amount points to the elastic protrusion head with the maximum extension amount is recorded as the adjustment direction; S6: The controller drives the telescopic cylinder to adjust in the adjustment direction and returns to step S3.

2. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: When executing step S1, after the controller starts, it determines whether the electrical connection with the sensor is normal. If so, it executes step S2; otherwise, it issues an alarm.

3. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: When performing step S2, it is determined in sequence whether the sensor feeding section, tobacco feeding section and paper feeding section are all feeding normally. If they are all feeding normally, step S3 is executed; otherwise, an abnormal feeding section is indicated.

4. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: The number of elastic protrusions is at least three, and the multiple elastic protrusions are evenly arranged on the inner sidewall of the winding channel; When performing step S3, as the smoke-generating section passes through the winding channel, the sensor acquires the extension amount of all elastic protrusions and sends it to the controller.

5. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: The slitting section includes two cutting blades, which are arranged symmetrically to each other; When performing step S4, the slitting section performs slitting normally, with the two cutters slitting from both sides of the smoke-generating section toward the middle.

6. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: Before performing step S4, a predetermined threshold is generated based on the material of the receptor and the type of tobacco.

7. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: When performing step S5, the end of the elastic extension head with the minimum extension is taken as the origin, and the end of the elastic extension head with the maximum extension is taken as the endpoint. The direction in which this line segment points is recorded as the adjustment direction.

8. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: The number of telescopic cylinders is at least one, and multiple telescopic cylinders are evenly arranged around the sensor limiting plate; When performing step S6, the controller drives multiple telescopic cylinders to operate simultaneously, adjusting the sensor limit plate to move a unit distance in the adjustment direction, and then performs step S3.

9. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: The sensor feeding section is equipped with a sensor unwinding reel, and the paper feeding section is equipped with a paper unwinding reel.

10. The receptor implantation correction method based on elastic deformation recognition according to claim 1, characterized in that: The guide hole is an M-shaped hole.

Citation Information

Patent Citations

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    CN109832662A

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    CN113331467A

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