Adaptation of the risk assessment method for the operation of collecting cutting tools, taking into account the detection of opportunities
https://doi.org/10.31660/2782-232X-2023-2-88-96
Abstract
A variety of risks arises during the operation of a collecting cutting tool, which can lead to a decrease in its output. To increase the serviceability of the tool in the process of cutting it is necessary to identify, evaluate and, if possible, to minimize the negative impact of the consequences of one risks or another. For this purpose, an analysis of risk assessment methods in the context of industrial enterprises was conducted. As a result the most effective and popular in various industries solutions were identified. During consideration of one of such methods – failure mode and effects analysis (FMEA) – an overview of its current changes is presented. In addition, the author proposes her own method based on the FMEA method for risk assessment during the operation of collecting cutting tool, which includes, among other things, the detection of opportunities and their numerical interpretation.
About the Author
N. A. VasilegaRussian Federation
Natalia A. Vasilega, Postgraduate, Assistant at the Department of Machines and Tools
References
1. Artamonov, E. V., & Vasilega, N. A. (2021). Methodology for assessing risks and opportunities in the operation of prefabricated cutting tools. Innovatsii v mashinostroenii (InMash - 2021): Sbornik trudov XII Mezhdunarodnoy nauchno-prakticheskoy konferentsii, posvyashchennoy pamyati doktora tekhnicheskikh nauk, professora Rakhimyanova Kharisa Magsumanovicha, October, 07-09. Novosibirsk, Novosibirsk State Technical University Publ., pp. 137-142. (In Russian).
2. Vasilega, D. S., Ostapenko, M. S., Vasilega, N. A., & Ershov, V. V. (2017). Opredelenie temperatury maksimal'noy rabotosposobnosti instrumental'nykh tverdykh splavov v ramkakh metodiki otsenivaniya kachestva primeneniya sbornykh metallorezhushchikh instrumentov. Neft' i gaz Zapadnoy Sibiri: materialy Mezhdunarodnoy nauchno-tekhnicheskoy konferentsii, November, 02-03. Tyumen, Industrial University of Tyumen Publ., 2, pp. 25-27. (In Russian).
3. Klochkov, Y., Its, A., & Vasilieva, I. (2016). Development of FMEA method with the purpose of quality assessment of can stock production. Key Engineering Materials, (684), pp. 473-476. (In English). DOI 10.4028/www.scientific.net/KEM.684.473.
4. Vasilega, D. S., Ostapenko, M. S., & Vasilega, N. A. (2019). Development of methods for assessing risks and opportunities in accordance with the requirements of ISO 9001:2015. Natural and technical sciences, (5(131)), pp. 183-188. (In Russian).
5. Ostapenko, M. S., & Vasilega, D. S. (2013). Method of evaluation of quality of metal-cutting tool. Applied Mechanics and Materials, (379), pp. 49-55. (In English). DOI 10.4028/www.scientific.net/AMM.379.49.
6. Klochkov, Yu. S. (2010). Model' sovremennoy protsedury FMEA. Kazan science, (10), pp. 42-45. (In Russian).
7. Panyukov, D. I., & Kozlovskiy, V. N. (2016). Effektivnoe primenenie metoda analiza vidov, posledstviy i prichin potentsial'nykh defektov (FMEA) v avtomobilestroenii. Samara, Izdatel'stvo Samarskogo nauchnogo tsentra, 202 p. (In Russian).
8. Kastorskaya, L. V., Tsvirkunov, D. I., & Shashkov, V. V. (2019). New FMEA handbook: changes to the approach for risk analysis of design and process. Methods of Quality Management, (10), pp. 24–29. (In Russian).
9. Petrovskiy, E. A., & Gagina, M. V. (2015). Primenenie metoda FMEA (failure mode and effect analysis) dlya obespecheniya nadezhnosti i rabotosposobnosti oborudovaniya neftegazovogo kompleksa. Avtomatizatsiya i energosberezhenie mashinostroitel'nogo i metallurgicheskogo proizvodstv, tekhnologiya i nadezhnost' mashin, priborov i oborudovaniya: X Mezhdunarodnaya nauchnotekhnicheskaya konferentsiya, March, 24-25. Vologda, Vologda State University Publ., pp. 149-154. (In Russian).
10. Mukha, A. A. (2012). Upravlenie protsessom razrabotki slozhnykh tekhnicheskikh sistem i protsessov. Osobennosti primeneniya FMEA-analiza. Matematichni mashini i sistemi, (2), pp. 168-176. (In Russian).
Review
For citations:
Vasilega N.A. Adaptation of the risk assessment method for the operation of collecting cutting tools, taking into account the detection of opportunities. Architecture, Construction, Transport. 2023;(2):88-96. (In Russ.) https://doi.org/10.31660/2782-232X-2023-2-88-96