Experimental Interpretation of the Provisions of EN 13796-3 for Fatigue Testing of Cableway Gondolas

Author:

Bednarz Arkadiusz1ORCID,Bieniek Krzysztof2,Kołodziejczyk Radosław1ORCID,Szczerba Zygmunt1ORCID,Krauz Piotr1,Lubas Monika1ORCID,Szczerba Kamil1ORCID

Affiliation:

1. Faculty of Mechanical Engineering and Aeronautics, Rzeszow University of Technology, 35-959 Rzeszow, Poland

2. TRANSSYSTEM S.A., Wola Dalsza, 37-100 Łańcut, Poland

Abstract

This article presents an experimental approach to fatigue testing of cableway gondolas, carried out in accordance with the EN 13796-3 standard. Due to the limitations of the aforementioned regulations and the lack of clarity in their content, when designing and conducting fatigue tests of gondolas, there is a need to find solutions that meet the normative requirements, while ensuring the cost-effectiveness of the tests. The work presents the method of loading, receiving the degrees of freedom, the methodology of gondola strength verification and additional suggestions allowing for the satisfactory preparation of a plan of fatigue tests and their implementation. The paper shows problems and ways to solve it, what may occur during cableway gondolas fatigue test design. In addition, the work contains an extensive description and methodology for conducting research verifying the elastic and permanent deformation of the structure, using digital image correlation (DIC). The results obtained by using this method make it possible to unambiguously determine the degree of structure deformation while maintaining high accuracy and repeatability of measurements at many points of the structure. Following the presented tests, it was possible to correctly carry out fatigue tests of the nacelle in a satisfactory time (about 8 weeks), perform 5 million load cycles and verify the integrity of the structure. The presented results show the effectiveness of the adopted design assumptions and indicate the process that guarantees the correctness of the conducted fatigue tests. The prepared study may be the basis for further full-scale fatigue tests. The research object is a 6-seater gondola designed by TRANSSYSTEM S.A.

Funder

Priority Axis I Competitive and Innovative Economy of the Regional Operational Program of the Podkarpackie Voivodeship

Publisher

MDPI AG

Subject

Artificial Intelligence,Applied Mathematics,Industrial and Manufacturing Engineering,Human-Computer Interaction,Information Systems,Control and Systems Engineering

Reference31 articles.

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3. (2017). Safety Requirements for Cableway Installations Designed to Carry Persons. Carriers. Part 3: Fatigue Tests (Standard No. 13796-3:2007).

4. (2017). Safety Requirements for Cableway Installations Designed to Carry Persons—Carriers—Part 1: Grips, Carrier Trucks, on-Board Brakes, Cabins, Chairs, Carriages, Maintenance Carriers, Tow-Hangers (Standard No. International Organization for Standardization 13796-1:2007).

5. (2017). General Requirements for the Competence of Testing and Calibration Laboratories (Standard No. International Organization for Standardization 17025).

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