Measuring apparatus and measuring method for multi-segment rod-like articles of tobacco industry
20170238598 · 2017-08-24
Inventors
Cpc classification
A24C5/3412
HUMAN NECESSITIES
International classification
A24C5/34
HUMAN NECESSITIES
Abstract
The object of the application is a measuring method for geometrical parameters of a tobacco industry's multi-segment rod-like article (1, 1′, 1″), by means of a beam of electromagnetic radiation (6A) directed at the article (1, 1′, 1″), characterised in that by means of a radiation receiving device (7) a radiation (7A) emitted by the tobacco industry's multi-segment article (1, 1′, 1″) under the influence of excitation induced by the radiation (6A) directed at the tobacco industry's multi-segment article (1, 1′, 1″) is received, and a signal (32) corresponding to the received radiation (7 A) is generated. Furthermore, in the radiation receiving device (7) or using processing means (33) in the control system (30) of such device the signal (32) corresponding to the radiation (7A) received by the radiation receiving device (7) is processed and on the basis thereof an image (P, P′, P″) corresponding to the view of the multi-segment article (1, 1′, 1″) is created. Then, with the use of the processing means (33), based on the difference in intensity of the radiation (7A) emitted by the tobacco industry's multi-segment article (1, 1′, 1″) visible in the created image (P, P′, P″), the geometrical parameters of the article (1, 1′, 1″) are determined. Furthermore, with the use of the processing means (33), based on the position of geometric elements of the article (1, 1′, 1″) in the image (P, P′, P″), the geometrical parameters of the multi-segment article (1, 1′, 1″) are measured.
Claims
1. A measuring method for geometrical parameters of a tobacco industry's multi-segment rod-like article (1, 1′, 1″) by means of a beam of electromagnetic radiation (6A) directed at the article (1,1′,1″), characterised in that radiation (7A) emitted by the tobacco industry's multi-segment article (1, 1′, 1″) under the influence of excitation induced by the radiation (6A) directed at the tobacco industry's multi-segment article (1, 1′, 1″) is received by means of radiation receiving device (7), and a signal (32) corresponding to the received radiation (7A) is generated, in the radiation receiving device (7) or by means of the processing means (33) in the control system (30) of such device the signal (32) corresponding to the radiation (7A) received by the radiation receiving device (7) is processed and on the basis thereof an image (P, P′, P″) corresponding to the view of the multisegment article (1, 1′, 1″) is created, by means of the processing means (33) the geometric elements of the article (1, 1′, 1″) are determined on the basis of the difference in intensity of the radiation (7A) emitted by the tobacco industry's multi-segment article (1, 1′, 1″) being visible in the created image (P, P′, P″), after which by means of the processing means (33) the geometrical parameters of the multisegment article (1, 1′, 1″) are measured on the basis of the position of geometric elements of the article (1, 1′, 1″) in the image (P, P′, P″).
2. A method as in claim 1 characterised in that by means of the processing means (33) the length and/or the diameter of the segment (1A, 1 B, 1 B′, 1C′, 1C, 1D, 1F, 1T) and/or the multi-segment article (1, 1′, 1″) is/are measured on the basis of the position of geometric elements of the article (1, 1′, 1″) in the image (P, P′, P″),.
3. A method as in claim 1 characterised in that the electromagnetic radiation (6A) directed at the surface of the article (1, 1′, 1″) is a radiation in the wavelength range between 100 nm and 1500 nm.
4. A method as in claim 1 characterised in that the electromagnetic radiation (6A) directed at the surface of the article (1, 1′, 1″) is a radiation in the wavelength range between 300 and 400 nm.
5. A method as in claim 1 characterised in that the electromagnetic radiation (6A) directed at the surface of the article (1, 1′, 1″) is a radiation in the wavelength range between 630 and 650 nm.
6. A method as in claim 1 characterised in that the electromagnetic radiation (7A) is received in the wavelength between 100 nm and 1500 nm.
7. A method as in claim 1 characterised in that before the reception the radiation (7 A) emitted by the multi-segment article (1, 1′, 1″) is filtered by means of a filter transmitting a radiation band of the width corresponding to the band of the waves of electromagnetic radiation (7A) emitted by the multi-segment article (1, 1′, 1″).
8. A method as in claim 6 characterised in that the electromagnetic radiation (7A) in the wavelength between 440 nm and 450 nm is received.
9. A method as in claim 6 characterised in that the electromagnetic radiation (7A) in the wavelength between 680 nm and 690 nm is received.
10. A method as in claim 6 characterised in that the electromagnetic radiation (7A) in the wavelength between 730 nm and 740 nm is received.
11. A method as in claim 6 characterised in that the electromagnetic radiation (7A) in the wavelength between 720 nm and 1500 nm is received.
12. A method as in claim 1 characterised in that the tobacco industry's multi-segment article (1, 1′, 1″) comprises a segment (1C′) containing a bead (9), and the geometrical parameter measured is the position of the bead.
13. A method as in claim 1 characterised in that the created image (P, P′, P″) is a digital image, and the processing means (33) are means using a microprocessor and a digital image processing.
Description
[0020] The object of the invention has been shown in embodiments in a drawing in which:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028] The tobacco industry's multi-segment rod-like articles are usually conveyed crosswise to their axes, less frequently along their axes, whereas the article's quality check may take place in both cases. The articles may be conveyed crosswise to their axes on drum conveyors as well as on linear conveyors, such as belt or chain conveyors.
[0029] Both the radiation source 6 and the radiation receiving device 7 are connected with the control system 30 controlling their operation by sending and receiving signals 31 and 32, respectively.
[0030]
[0031] The radiation 6A may be in the wavelength range between 100 nm and 1500 nm. In case of segments containing tobacco or processed tobacco it is advantageous to use the radiation with the wavelength range between 300 and 400 nm. It is also advantageous to use the radiation with the wavelength range between 630 nm and 650 nm. The emitted radiation 7A may be in the wavelength range between 100 nm and 1500 nm. The radiation 7A may consist of both the radiation emitted by the segments 1A, 1B, 10, 1D under the influence of the radiation 6A and of the radiation being the reflected radiation 6A. To avoid the interferences to the measurement, a filter with a pass band width corresponding to the band of electromagnetic radiation emitted by the article 1 may be used. Preferably, the radiation is received in the wavelength range between 440 nm and 450 nm, between 680 nm and 690 nm, between 730 nm and 740 nm and between 720 nm and 1500 nm.
[0032]
[0033]
[0034] It is also possible to use the description of the measuring method to measure geometrical parameters of the wrapping material, for example the length of the paper wrapper of the filter or tobacco portion of the article may be measured.