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Modern Means of Ensuring Safety During the Upward Movement of the Elevator Car and When it Stops in the Floor Area

https://doi.org/10.21122/2227-1031-2023-22-6-460-469

Abstract

Elevators are potentially dangerous objects and, despite the fairly high safety of modern elevators, which is regulated by industrial safety rules, State Standards and manufacturer’s instructions, the requirements for elevators are constantly becoming more stringent. According to clause 5.6.1.1 (b) and clause 5.6.6 of GOST [All-Union State Standard] 33984.1–2016, it is required to prevent overspeeding when moving the cabin in both directions (up and down). To meet this requirement, elevators can be equipped with two single-acting speed limiters, one of which activates single-acting safety devices located on the car, and the second on the elevator counterweight. However, this solution leads to duplication of the safety system (in addition to two speed limiters and safety catches, two tensioners, two speed limiter ropes and a double number of limit switches are additionally required). This can only be justified in cases where there are used premises under the pit of the elevator shaft, for example an underground parking lot. This paper discusses elevator safety devices that meet the new requirements of modern domestic and foreign standards (EN 81–20:2014): double-acting safety devices and speed limiters, a system for preventing unintentional movement of the car (counterweight). Catchers and a speed limiter are interconnected devices that prevent the cabin (counterweight) from falling in the event of a break or when the supporting ropes are weakened, and also stop the cabin (counterweight) if the speed is unacceptable. However, as practice has shown, cases of uncontrolled upward movements of the elevator and while the elevator is parked with open doors are possible. This leads to accidents and injuries to passengers. The proposed designs of the limiter and catcher allow this to be avoided. Recommendations are proposed for modernizing old elevators, and, as a result, increasing their level of safety.

About the Authors

A. V. Kutsepolenko
Mogilevliftmash OJSC
Belarus

Address for correspondence:
Kutsepolenko Alexander V. –
OJSC “Mogilevliftmash”,
42, Mira Ave.,
212798, Mogilev, Republic of Belarus.
Тел.: +375 22 263-35-08
bn_ntc@liftmach.by



A. I. Antonevich
Belarusian National Technical University
Belarus

Minsk



D. V. Nepsha
Mogilevliftmash OJSC
Belarus

Mogilev



References

1. State Standard 27.310-95. Reliability in technology. Analysis of failure modes, consequences and criticality. Basic provisions. Minsk, Gosstandart Publ., 1995. 13 (in Russian).

2. State Standard ISO 14798 – 2017. Elevators, escalators and passenger conveyors. Risk assessment and mitigation methodology. Minsk, Gosstandart Publ., 2017. 32 (in Russian).

3. Komoza V. F., Dobrinovich O. A., Pavlov S. V., Gusev D. N. (2019) Speed limiting device. Patent no. EA 033019 (B1). Available at: https://ru.espacenet.com/publicationDetails/biblio?FT=D&date=20190830&DB=EPODOC&locale=ru_RU&CC=EA&NR=033019B1&KC=B1&ND=6 (accessed 25 April 2023).

4. Pavlov S. V., Balabanov I. N., Nepsha D. V., Starovoytov A. S. (2021) Double-acting safety catcher activation mechanism. Patent no. EA 202000184 (A1) (in Russian).

5. Nepsha D. V., Klochkov V. N., Sobolev M. V. (2021) Parameters of contact-force interaction between elements of the progressive safety gear during an emergency braking stop. Vestnik Belorussko-Rossiyskogo Universiteta [Bulletin of Belarusian-Russian University], (4), 45–55 (in Russian). https://doi.org/10.53078/20778481_2021_4_45

6. Speed limiter OSM-305: Operation Manual 1020БК.17.00.000 RE. Available at: https://liftmach.by/upload/iblock/1020БК.17.00.000%20РЭ.pdf (accessed 24 April 2023) (in Russian).

7. Arkhangelsky G. G., Volkov D. P., Gorbunov E. A., Ionov A. A., Tkachenko V. Ya., Chutchikov P. I. (2010) Elevators. Moscow, Publishinh House of Association of Building Universities. 576 (in Russian).

8. Gervall. JSC “Gervall-Rus”. Catalog. Available at: https://gervall.ru/upload/files/ogran_skorosti/UCM.pdf (accessed 06 April 2023).

9. Speed limiters. Gervall. Available at: https://gervall.ru/upload/files/ogran_skorosti/%D0%9E%D0%B3%D1%80%D0%B0%D0%BD%D0%B8%D1%87%D0%B8%D1%82%D0%B5%D0%BB%D0%B8%20%D1%81%D0%BA%D0%BE%D1%80%D0%BE%D1%81%D1%82%D0%B8.pdf (accessed 06 April 2023) (in Russian).

10. Dynatech. Overspeed governor. Vega: INSTRUCTIONS: VEGA Cod: DYN 35.1.15. Publ. date 14.12.2022 Available at: https://www.dynatech-elevation.com/documentos/articulos/Reducido%20VEGA-ING.pdf (accessed 07 April 2023).

11. Gervall. Speed limiters ALJO 2129 ∅ 200 and ALJO 2130 ∅ 300 stopping and holding the cabin during descent and ascent: Operation Manual. Technical Description. Installation Instructions. VERSION 2014 DT-2129-2130-RU-00 RU. Available at: https://gervall.ru/upload/iblock/587/239lgn7hzcl1edfxot58gn3ig5ca0mru.pdf (accessed 27 March 2023) (in Russian).

12. Speed limiter: ThyssenKrupp Operation Manual. Available at: http://liftlift.ru/images/tovar/rukovodstvo_po_ekspluatacii_ogranichitelya_skorosti.pdf (accessed 23 May 2023) (in Russian).

13. Device against unintended car movement. 1020.77.00.000. EU – Type examination certificate – amendment 2 No. 3168/1/2019-3. Publ. date 16.12.2019. Available at: https://www.liftmach.by/upload/iblock/Amendment%202%203168-1-2019-3.pdf (accessed 11 May 2023).

14. Komoza V. F., Lobrinovich O. A., Pavlov S. V., Balabanov I. N. (2019) Device for pulley blocking. Patent no. EA 201700417 (A1). Available at: https://ru.espacenet.com/publicationDetails/biblio?FT=D&date=20190131&DB=&locale=ru_RU&CC=EA&NR=201700417A1&KC=A1&ND=4 ( accessed 11 April 2023).

15. Passenger elevator: Addendum to Manual for operation of FBIR 483310.001 DRE 12. Available at: https://www.liftmach.by/upload/iblock/%D0%A4%D0%91%D0%98%D0%A0.483310.001%20%D0%94%D0%A0%D0%AD%2012.pdf (accessed 11 April 2023) (in Russian).

16. About the causes of accidents and injuries: Letter No.00-07-06/21 dated 14.01.2019 to the Heads of territorial departments of Rostekhnadzor. – Available at: https://nkprom.ru/upload/prikazy/%D0%9F%D0%B8%D1%81%D1%8C%D0%BC%D0%BE%20%D0%90%D0%BD%D0%B0%D0%BB%D0%B8%D0%B7%20%D0%B0%D0%B2%D0%B0%D1%80%D0%B8%D0%B9%20%D0%BF%D0%BE%20%D0%9B%D0%98%D0%A4%D0%A2%D0%90%D0%9C.pdf (accessed 26 May 2023) (in Russian).

17. Analysis of the causes of accidents during the operation of elevators, lifting platforms for the disabled, passenger conveyors (moving walkways) and escalators, with the exception of esgalators in subways in 2021. Available at: http://szap.gosnadzor.ru/activity/control/analiz-prichin-avariynosti.php (accessed 26 May 2023) (in Russian).

18. Dondik S. A., Balabanov I. N., Kutsepolenko A. V., Komoza V. F. (2019) Lift. Patent no. EA 201800330 (A1). Available at: https://ru.espacenet.com/publicationDetails/biblio?FT=D&date=20191129&DB=&locale=ru_RU&CC=EA&NR=201800330A1&KC=A1&ND=4 (accessed 11 April 2023).

19. Kutsepolenko A. V., Podymako M. E., Knyazev K. N., Sinitsyn G. S., Dalimaev V. A. (2021) Development of a centrifugal double-sided elevator speed limiter and optimization of its output characteristics based on an analysis of the influence of friction forces in the mechanism links. Aktualnye Voprosy Mashinostroeniya [Current Issues in Mechanical Engineering], 10, 107–115 (in Russian).

20. Kutsepolenko A. V., Podymako M. E., Dondik S. A., Sinitsyn G. S., Knyazev K. N. (2022) Double-sided speed limiter. Useful model no. BY 12899 (in Russian).

21. Kutsepolenko A. V., Podymako M. E., Lustenkova E. S. (2023) Современные направления развития конструкций центробежных ограничителей скорости лифтов. Materialy, oborudovanie i resursosberegayushchie tekhnologii: Materialy Mezhdunarodnoi nauchno-tekhnicheskoi konferen-tsii, Mogilev, 20–21 aprelya 2023 goda [Materials, equipment and resource-saving technologies: Proceedings of International Scientific and Technical Conference, Mogilev, April 20–21, 2023]. Mogilev, Belarusian-Russian University, 86–87 (in Russian).


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For citations:


Kutsepolenko A.V., Antonevich A.I., Nepsha D.V. Modern Means of Ensuring Safety During the Upward Movement of the Elevator Car and When it Stops in the Floor Area. Science & Technique. 2023;22(6):460-469. (In Russ.) https://doi.org/10.21122/2227-1031-2023-22-6-460-469

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ISSN 2227-1031 (Print)
ISSN 2414-0392 (Online)