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Are you looking for an expert in non-destructive material characterization?

Any industrial business can benefit from non-destructive material characterization. How exactly? With only a small object, it is possible to learn more about the overall quality of a product. By tapping, the created vibrations are recorded with a professional microphone or vibrometer. During this non-destructive technique, the chosen sample of the material is not sensitive to factors like radiation, high or low temperatures, aging or fatigue. Would you like to cooperate with a professional in non-destructive material characterization? Get in touch with the team of IMCE, based in Belgium and learn more about the quality of your ceramics, cast iron or steel products and refractory materials.

How to learn more about the quality of your product

By using non-destructive material characterization, it is possible to have an overview of the mechanical and thermological applications of a chosen material. Do you want to integrate the Young’s modules, shear modulus, Poisson’s ratio into your working method? These are just a few examples of the possibilities of this specific technique. With the impulse excitation method of IMCE, they guarantee a cost-and material-efficient method for measuring the characteristics of a material. Don’t hesitate to ask for more information about non-destructive material characterization, these industrial professionals are happy to help every client in need of an efficient measuring method.

Ask for more details about their approach

In short, using non-destructive material characterization has a wide variety of benefits for you and your business. Would you like to explore the possibilities? Get in touch with the professionals of the company. They will tell you everything you need to know about non-destructive material characterization. Simply phone them when you have the chance, send them an e-mail or leave your details via the online contact form on the website of the company. They have the perfect solution to measure materials.