Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A critical analysis of the AIAG-VDA FMEA; does the newly released AIAG-VDA method offer improvements over the former AIAG method?

View through CrossRef
After several years of collaboration, The Automotive Industry Action Group (AIAG) and The German Association of the Automotive Industry (VDA) completed a harmonized version of their respective FMEA methods. Previous to the joint initiative, each organization had their own Failure Modes and Effects Analysis (FMEA) recommended methods & guidelines. The differing methods posed confusion among those automotive suppliers that supplied both markets. As a result, the AIAG & VDA FMEA 1st edition Handbook (2019) was created to mitigate the confusion, improve the overall FMEA development process, and to improve efficiency developing accurate, robust and effective FMEA's. The AIAG-VDA 1st edition (2019) may or may not have improved the method or offered efficiency gains to the FMEA development process. Early critique of the new method offered by Harpster (2018) stated "If the AIAG-VDA DFMEA methodology (which uses structure, function, and failure analyses to determine critical DFMEA content) is implemented, it will result in an automotive DFMEA process that is both considerably less effective and much more inefficient than the current methodology described in the AIAG 4th Edition FMEA manual". This result of this research is a critical, holistic review of the recently published (June 2019) AIAGVDA FMEA Handbook along with summarized advantages and disadvantages associated with the new automotive FMEA development process. While the new FMEA AIAG-VDA process offers several advantages, and results in a more robust FMEA, the increased complexity, need for dedicated software, and the learning curve associated with the new process may represent a significant barrier to improving the FMEA development process in the automotive community.
Title: A critical analysis of the AIAG-VDA FMEA; does the newly released AIAG-VDA method offer improvements over the former AIAG method?
Description:
After several years of collaboration, The Automotive Industry Action Group (AIAG) and The German Association of the Automotive Industry (VDA) completed a harmonized version of their respective FMEA methods.
Previous to the joint initiative, each organization had their own Failure Modes and Effects Analysis (FMEA) recommended methods & guidelines.
The differing methods posed confusion among those automotive suppliers that supplied both markets.
As a result, the AIAG & VDA FMEA 1st edition Handbook (2019) was created to mitigate the confusion, improve the overall FMEA development process, and to improve efficiency developing accurate, robust and effective FMEA's.
The AIAG-VDA 1st edition (2019) may or may not have improved the method or offered efficiency gains to the FMEA development process.
Early critique of the new method offered by Harpster (2018) stated "If the AIAG-VDA DFMEA methodology (which uses structure, function, and failure analyses to determine critical DFMEA content) is implemented, it will result in an automotive DFMEA process that is both considerably less effective and much more inefficient than the current methodology described in the AIAG 4th Edition FMEA manual".
This result of this research is a critical, holistic review of the recently published (June 2019) AIAGVDA FMEA Handbook along with summarized advantages and disadvantages associated with the new automotive FMEA development process.
While the new FMEA AIAG-VDA process offers several advantages, and results in a more robust FMEA, the increased complexity, need for dedicated software, and the learning curve associated with the new process may represent a significant barrier to improving the FMEA development process in the automotive community.

Related Results

Upgrade of DP Failure Mode Effects Analysis
Upgrade of DP Failure Mode Effects Analysis
Abstract Failure Mode Effects Analysis (FMEA) is the primary tool for Dynamic Positioning (DP) system reliability assessment and is required by the Classification...
Enhanced methods for genetic assays in Drosophila cells
Enhanced methods for genetic assays in Drosophila cells
ABSTRACT Genetic assays are an invaluable tool for both fundamental biological research and translational applications. Variable Dose Analysis (V...
Housing Improvements for Health and Associated Socio‐Economic Outcomes: A Systematic Review
Housing Improvements for Health and Associated Socio‐Economic Outcomes: A Systematic Review
Poor housing is associated with poor health. This suggests that improving housing conditions might lead to improved health for residents. This review searched widely for studies fr...
PENGUJIAN SUHU LEMARI ES DENGAN METODE TERINTEGRASI FUZZYFAILURE MODE AND EFFECT ANALYSIS (FUZZY-FMEA)
PENGUJIAN SUHU LEMARI ES DENGAN METODE TERINTEGRASI FUZZYFAILURE MODE AND EFFECT ANALYSIS (FUZZY-FMEA)
Failure Mode and Effect Analysis (FMEA) banyak diimplementasikan untuk analisis risiko baik di bidang manufaktur maupun jasa. Permasalahan yang sering timbul pada implementasi FMEA...
Mid-Life Refurbishment Maintenance Strategy to Sustain Performance and Reliability of Train System
Mid-Life Refurbishment Maintenance Strategy to Sustain Performance and Reliability of Train System
Mid-Life Refurbishment (MLR) is a process conducted in many industries to improve or extend the life span of assets such as machines, infrastructures and systems. The objective of ...
Quality Control Analysis of Tofu Products at Sari Murni Factory Using SQC and FMEA Methods
Quality Control Analysis of Tofu Products at Sari Murni Factory Using SQC and FMEA Methods
This study analyzes quality control for tofu products at SM Sari Murni Tofu Factory using Statistical Quality Control (SQC) and Failure Mode and Effect Analysis (FMEA) methods. The...
A revised FMEA application to the quality control management
A revised FMEA application to the quality control management
Purpose – The purpose of this paper is to propose a cost-effective, time-saving and easy-to-use failure modes and effects analysis (FMEA) system applied on the qual...
A Hibamód- és Hatáselemzés alkalmazása napjaink autóiparában
A Hibamód- és Hatáselemzés alkalmazása napjaink autóiparában
Failure Mode and Effect Analyis (FMEA) is a widely known quality management method in automotive industry (and industry as well). Its utilization is a requirement according to ISO/...

Back to Top