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  • Residual stresses
    • Residual stresses
    • Residual stress measurement
    • Eddy current testing for residual stress measurements
    • Contour method for residual stress measurements
    • Incremental hole-drilling
    • Material analysis
    • Metrology and dimensional controls
    • Ring Core Method
    • X-ray diffraction (XRD)
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  • Residual stresses
    • Residual stress measurement
    • Eddy current testing for residual stress measurements
    • Contour method for residual stress measurements
    • Incremental hole-drilling
    • Material analysis
    • Metrology and dimensional controls
    • Ring Core Method
    • X-ray diffraction (XRD)
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FOLLOW-UP, ADVICE

The laboratory team is made up exclusively of engineers and doctor-engineers trained in the fields of physical measurements, material mechanics and metallurgy who will provide you follow-up and advice throughout the project :

Step 1

Guidance in the definition of the problem and the specifications.

Step 2

Description of the technical measurement program in detail.

Step 3

Performance of measurements according to the current standards in force.

Step 4

Interpretation of results referenced with databases and technical literature.

Step 5

Evaluation of results according to the industrial context.

Step 6

Definition of perspectives for improving product quality and process optimisation.

QUALITY, LABORATORY CERTIFICATION

SONATS is both ISO9001 and EN9100 certified. All analyses are performed according to the current standards in force and according to the recommendations of international standards:

– Residual stress measurements by X-ray diffraction:  NF EN 15 305

– Residual stress measurements by incremental hole drilling strain gauge method: ASTM E837

– Materials analysis: Standard according to methods

– Dimensional control: Standard according to methods

The laboratory is qualified by the SAFRAN aeronautical group to carry out residual stress measurements using X-ray diffraction. The measurement devices are checked before each series of measurements on qualified reference samples via inter-laboratory comparisons with other French and European laboratories. Control cards are used to validate the maintenance of the quality of the measurements for the various devices and by laboratory operators.

TIME AND COSTS

The structure of SONATS ensures a service with controlled costs and in the shortest times.

48-heures

Answer to initial contact in 48 hours.

72heures

The standard time for a punctual analysis of residual stresses.

24heures

The reduced period guaranteed for your regular inspections if a framework contract is established: 24 hours to provide you with the results.

PARTNERSHIP, TECHNICAL MONITORING, R&D

Our partner and manufacturer, StressTech, is an international expert in the field of material health analysis and stress measurement equipment.

The laboratory team maintains active technical and scientific monitoring to ensure the highest level of our services. The laboratory also participates in several R&D groups and programs dealing with residual stresses and mechanical surface treatment processes.

  • SWEDISH AND EUROPEAN INDEPENDENT ACADEMIC/INDUSTRIAL PROJECT INNODEFAB FOR LIGHTWEIGHT WELDED STRUCTURES

Measurements on peened welded structures of high strength advanced steels and duplex stainless steel before and after fatigue tests. More information.

  • STRESSES FRENCH ANALYSIS GROUP GFAC

Cross-measurement campaign, reference samples, regular exchanges, effect of preparation methods

  • XIII COMMISSIONS OF THE INTERNATIONAL INSTITUTE OF WELDING

2015 collaborative actions on the characterisation of stresses using XRD on weld beads.

  • R&D PROJECTS OF THE JULES VERNE INSTITUTE FOR TECHNOLOGICAL RESEARCH (IRT)
  • INTERNAL DEVELOPMENT OF NON-DESTRUCTIVE CONTROL METHOD FOR RESIDUAL CONSTRAINTS
  • VARIOUS UNIVERSITY AND INDUSTRIAL PARTNERSHIPS

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    • Residual stress measurement
    • Eddy current testing for residual stress measurements
    • Contour method for residual stress measurements
    • Incremental hole-drilling
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    • Ring Core Method
    • X-ray diffraction (XRD)
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