Published June 1983 | Version v1
Journal article

Stress description model by non destructive magnetic methods

Description

Since a few years, CETIM investigates analysis possibilities of materials, by developing a method founded on observation of ferromagnetic noise. By experiments, correlations have become obvious between state of the material and recorded signal. These correlations open to industrial applications to measure stresses and strains in elastic and plastic ranges. This article starts with a brief historical account and theoretical backgrounds of the method. The experimental frame of this research is described, and the main results are analyzed. Theoretically, a model was built up, and we present it. It seems in agreement with some experimental observations. The main results concerning stress application, thermal and surface treatments (decarbonizing) are presented

Abstract (French)

Depuis quelques annees, le CETIM etudie les possibilites d'analyse des materiaux par l'exploitation d'une methode fondee sur l'observation du bruit ferromagnetique. Sur le plan experimental, des correlations ont ete mises en evidence entre l'etat du materiau et le signal recueilli. Celles-ci sont susceptibles d'applications industrielles pour la mesure des contraintes et des deformations dans le domaine elastique et plastique. Cet article debute par un bref historique et les fondements theoriques de la methode. Le cadre experimental de l'etude est decrit, et les principaux resultats obtenus sont analyses. Sur le plan theorique, un modele a ete elabore. Il semble en accord avec un certain nombre d'observations experimentales les principaux resultats concernant l'application de contraintes, les traitements thermiques et superficiels (decarburation) sont presentes

Additional details

Additional titles

Original title (French)
Modele de description des contraintes par des methodes magnetiques non destructives

Publishing Information

Journal Title
Mec., Mater., Electr.
Journal Volume
65
Journal Issue
400
Series
Mec., Mater., Electr.
Journal Page Range
3-19
ISSN
0025-6439