Management System According to ISO/IEC 17025: Method Validation

Author:

Guirette-Barbosa Omar-Alejandro12ORCID,Durán-Muñoz Héctor-Antonio3ORCID,Cruz-Domínguez Oscar1ORCID,Carrera-Escobedo José-Luis12,Celaya-Padilla José-María2ORCID,Castañeda-Burciaga Selene12ORCID

Affiliation:

1. Department of Industrial Engineering, Universidad Politécnica de Zacatecas, Plan de Pardillo Sn, Parque Industrial, Fresnillo 99059, Zacatecas, Mexico

2. Postgraduate Department, Universidad Autónoma de Fresnillo, Carretera Federal Panamericana, Lindavista, Ejidal 4, Fresnillo 99039, Zacatecas, Mexico

3. Department of Electrical Engineering, Universidad Autónoma de Zacatecas, Alameda García Cadena 414, Zacatecas 98000, Zacatecas, Mexico

Abstract

The current study presents a non-random, quantitative experimental investigation detailing the steps required to accredit a non-regulated test method (referred to as its own) under the ISO/IEC 17025:2017 standard and the criteria set by the Mexican Accreditation Entity (EMA). The focus is on the methodology employed to validate the test method, particularly emphasizing the precision of the measurement system, along with the total variation in and tolerance of its components. For the measurement analysis, repeatability and reproducibility (r&R) studies were conducted using a variance analysis method variant (ANOVA). This variant is highlighted for its ability to estimate deviations more accurately. Furthermore, the chosen model incorporates random effect measurements for all factors or components of system variation (operators, parts, interaction, and instrument). This approach demonstrates the reliability, accuracy, and precision of the proposed measurement system within the test method, leading to its subsequent accreditation under ISO/IEC 17025:2017 as a conformity assessment body.

Publisher

MDPI AG

Reference14 articles.

1. (2017). Requirements (Standard No. ISO/IEC 17025:2017).

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3. Sepulveda, S.A. (2015). Adherence Test of Anchor Bars Made of Reinforced Fiberglass, University of Chile.

4. La adherencia en el concreto reforzado: Breve revisión histórica de la investigación del fenómeno;Investig. Cienc.,2013

5. Trishch, R., Maletska, O., Hrinchenko, H., Artiukh, S., Burdeina, V., and Antonenko, N. (2019). Development and Validation of Measurement Techniques According to ISO/IEC 17025:2017, University of Birmingham.

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