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Constellium is seeking an Internship in R&D to explore quench sensitivity in aluminium alloys at the C-TEC Lab in Grenoble (Voreppe). You will contribute to deriving time-temperature-property curves and study the influence of deformation during cooling on alloy performance relevant to transport applications.
The role includes literature review, alloy testing (2xxx/6xxx/7xxx), hardness and conductivity measurements, data compilation, and the development of QFA with collaboration on Calphad models
Modelling and Optimizing Quench Sensitivity in Aluminium Alloys
Constellium is a world leader in the development and manufacture of high value-added aluminum products and solutions for a wide range of markets and applications, focusing in particular on aerospace, automotive and packaging. Constellium also has nearly 12,000 employees worldwide.We are committed to minimizing the environmental impact of our operations and improving the life cycle footprint of aluminum throughout the value chain.
In our company, safety is essential, it is one of our core values without compromise. Our Research and Technology Center, C-TEC Constellium Technology Center, based in Grenoble (Voreppe – 38) employs about 240 people.
By joining our company, you will discover a multicultural company (over 20 nationalities) which is committed to diversity and the well-being of its employees.
Your mission : Understanding the effects of deformation on the quench sensitivity and precipitation kinetics in aluminium alloys
Based within the metallurgy team and working for the Transportation, Industry & Defense (TID) market at C-TEC, the mission of this internship is to contribute to the fundamental metallurgical understanding required to develop the next generation of aluminium alloys for transport applications. Quench sensitivity is a phenomenon in age-hardenable aluminium alloys whereby a loss in strength is observed if cooling after solutionizing occurs too slowly (due to the quench media used; water vs air, or due to the plate thickness). Extensive work exists in this domain for many alloys whereby Time-Temperature-Property (TTP) curves are created to evaluate the critical quench rates of alloys as to limit property loss. However, there is a lack of data and understanding available on the effect of deformation during cooling, like that observed during hot rolling processes on the quench sensitivity. This internship strives to remove that knowledge gap by testing different aluminium alloys (2xxx, 6xxx, 7xxx) and evaluating the difference in the quench sensitivity with and without the presence of deformation at elevated temperatures.
The project has several components
The role of the intern will consist, after a first phase of training in our trades and tools to first work with the lab technicians to perform the various thermal and mechanical tests required to generate a section of the TTP curves in a selection of different Constellium alloys. The next steps will be to measure the hardness and conductivity of the different alloys and conditions and to compile the generated data in an organized manner. Next, the generation of the TTP curves with and without deformation will be performed along with the extraction of the parameters to perform QFA. With the help of the engineers, simulations of the complex thermal treatments of the plant will be applied to the evaluated alloys to estimate the potential performance if they were to be made at the industrial scale. If possible, working with the core competency team at CTEC, refining and adapting the existing metallurgical models will be done. Based on the results and predictions, lab-scale trials will be performed where close control over the thermal cycles can be made validate the models. Based on the models, simulations will be made to decide if industrial trials are warranted and/or if modifications to the alloy and/or processing route would lead to improved properties. Weekly and monthly meetings can be expected to take place within a larger team (program manager, business unit, plants, etc) to share results and give updates on the overall progress of the internship.
Education level : Bac +5
Engineering school and/or degree / option required Materials and metallurgical engineering
Competencies & technical & soft skills requirement :