Understanding the composition of a polymer material
A plastic part, pellet, film, coating or recycled product may contain a polymer matrix, mineral fillers, pigments, stabilizers, plasticizers, flame retardants or other formulation components. The lack of reliable information about this composition can complicate failure investigations, competitor comparisons, supplier qualification, incoming material inspection or a substitution project.
Identifying the polymer matrix
Matrix identification consists of determining the polymer family or families present in the sample, such as polyolefins, polyamides, polyesters, styrenic polymers, PVC, elastomers or blends. This first step is essential for directing subsequent analysis, comparing materials and assessing whether a material is suitable for its intended use.
Combining analytical methods
Polymer characterization does not rely on a single method. The Filab laboratory can combine spectroscopic, thermal, chromatographic, microscopic and elemental approaches to obtain complementary information about the matrix, organic fractions and mineral residues. TGA polymer analysis can in particular help assess mass losses and the residual fraction of a material.
Investigating a non-conformity or failure
Formulation analysis is relevant when a material shows a change in appearance, embrittlement, a color variation, an unusual odor, a processing defect or a difference in performance. It helps compare a compliant area with an altered area, a disputed batch with a reference batch, or two parts supplied by different suppliers.
Polymer formulation analysis: an appropriate analytical strategy
At the Filab laboratory, polymer formulation analysis aims to characterize the constituents of a material and establish a consistent interpretation of its formulation. The analytical approach is defined according to the nature and condition of the sample, the information available and the industrial objective: identifying a matrix, detecting additives, comparing two references or investigating a non-conformity. You can also discover our plastics and polymer analysis services.
Characterizing additives, fillers and pigments
Additive identification may involve plasticizers, antioxidants, stabilizers, UV agents, lubricants, flame retardants, processing aids or other organic constituents. Fillers and pigments can also be characterized, particularly by studying their elemental composition and morphology. To observe local heterogeneities, the Filab laboratory can use SEM polymer analysis.
Adapting tests to your specific issue
The analysis plan is developed based on your needs: the nature and quantity of sample available, comparison with a reference, the defect observed, a regulatory requirement or the need to identify a targeted compound. This graduated approach makes it possible to select relevant tests without presuming the material’s initial composition.
Comparing, qualifying and securing your materials
The approach can also support material selection, supplier qualification, inspection of a received formulation, analysis of a recycled material or verification of elements required for a regulatory process. For substances covered by European regulations, consult our REACH support for polymers.
Define an analysis plan with the Filab laboratory
To prepare the study, send the Filab laboratory representative samples, ideally accompanied by a comparison reference when available. Specify the material’s form, its application, the defect or question to be investigated, the conditions of use, and any known information about its origin. The Filab laboratory will then define an analytical strategy and the quantities required.