Laboratory for analysis and expertise

SEM training: identifying defects, corrosion and nanoparticles

Training your teams in SEM material analysis

Rapid identification of a surface defect, corroded area or small particles is crucial for directing an investigation, securing production and ensuring product reliability. The SEM training enables your teams to understand the principles of scanning electron microscopy and methodically use the observations. Trainees learn how to prepare samples, select consistent observation conditions and interpret images of surfaces, fractures, deposits and particles.

Detecting and characterizing surface defects

The SEM makes it possible to examine the morphology of localized areas and compare a compliant area with an altered one. The training covers, in particular, the observation of cracks, porosity, scratches, inclusions, particles, delamination, fractures, and coating irregularities. Participants learn how to define relevant areas and document observations in a usable format.

Observing morphologies associated with corrosion

Corrosion may appear as deposits, pits, corrosion products, cracking or localized surface modifications. The training teaches participants how to locate these areas, compare surface conditions and select observations useful for failure analysis. It does not replace a comprehensive assessment of corrosion mechanisms.

Preparing for nanoparticle observation

Observing nanoparticles requires rigorous preparation to limit contamination, artefacts and agglomeration phenomena. The training presents the precautions to consider when depositing, locating and observing fine particles, taking into account the nature of the substrate and the sample’s sensitivity to the electron beam.

SEM training tailored to your industrial challenges

Built around your materials, components or inspection challenges, the training combines theoretical instruction with hands-on practice. The content may cover topographic observation, locating areas of interest, morphology analysis and developing an approach to identify defects, corrosion and nanoparticles. To complement the surface analysis approach, the Filab laboratory also offers AFM training.

Understanding the limitations of SEM image interpretation

An SEM image primarily describes the contrast and relief observed under the selected analysis conditions. It must be interpreted in light of the sample’s context, preparation method and investigation objective. When elemental composition is required, an appropriate complementary analysis can be considered at the Filab laboratory.

Structuring a corrosion investigation

Teams are guided in connecting observations with the available information: material, coating, service environment, defect location and manufacturing history. If an in-depth investigation is required, learn how to identify intergranular corrosion in the laboratory.

Interpreting particle size and agglomeration

Participants learn to distinguish an isolated particle, an agglomerate, and a surface structure, as well as to define measurement criteria consistent with the set objective. SEM provides localized morphological information; the representativeness of the results depends on the sampling plan and the number of observations performed.

Develop a program focused on your samples and objectives

Filab laboratory adapts the training level, practical case studies, and learning objectives to your business. Sharing your needs, specifying the materials involved, and defining the target skills makes it possible to build a relevant training program.

Frequently asked questions

How can I train my teams to use SEM to identify defects, corrosion and nanoparticles?

The training provides the essential foundations for preparing a sample, performing SEM observations, recognizing morphological anomalies and organizing the interpretation of results. The program is defined according to the materials, the defects being investigated and the participants’ level of expertise.

What defects can be observed during scanning electron microscopy training?

Observable defects may include cracks, porosity, scratches, particles, inclusions, coating defects, fracture areas or surface heterogeneities. Their identification depends on the nature of the sample, its preparation and the observation protocol.

Can SEM training be used to study corrosion phenomena?

Yes. The training enables participants to observe and describe surface alterations compatible with a corrosion phenomenon, such as pitting, deposits or corrosion products. However, identifying the mechanism requires an investigation approach suited to the material and exposure conditions.

Can SEM be used to observe nanoparticles?

Yes. SEM can be used to visualize the morphology and dispersion of nanoparticles, provided that suitable sample preparation and controlled observation conditions are used. The results must be interpreted in relation to the substrate, any potential agglomeration, and the sampling strategy.

How can I organize SEM training for my company?

To organize training, define the participants' profiles, the materials or products concerned, the defects to be studied, and the expected skills. Filab laboratory then develops a program combining essential concepts, demonstrations, and exercises tailored to your industrial challenges.
The filab advantages
A highly qualified team
A highly qualified team
Responsiveness in responding to and processing requests
Responsiveness in responding to and processing requests
A COFRAC ISO 17025 accredited laboratory
A COFRAC ISO 17025 accredited laboratory
(Staves available on www.cofrac.com - Accreditation number: 1-1793)
A complete analytical facility of 5,200m²
A complete analytical facility of 5,200m²
Tailor-made support
Tailor-made support
Video debriefing available with the expert
Video debriefing available with the expert
Thomas ROUSSEAU Scientific and Technical Director
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