Project Description

Job Description

Our client is amongst the world leaders in developing and manufacturing components/equipment designed to sustain heavy duty and high temperature industrial environment.

He is looking for an experienced Research Engineer specialized in thermomechanical / thermodynamics FEA modelling and material shape/topology optimization, to join his global R&D Center of Excellence in Belgium.

The purpose of the job will be to develop simulation (wear, aging, failure… mechanisms), modelling and optimization programs (including user friendly HMI) that will help the design engineers in their choice of materials, and in their design of shapes and topologies of flow control devices and tools exposed to extreme temperatures and aggressive environment (molten steel).

He/she will be in charge of planning, leading and carrying out experimental programs that will enable a better understanding of components/materials behavior under extreme thermomechanical conditions. This understanding will be instrumental in developing new testing protocols and in improving the resistance to failure and extending industrial applications of existing and new Flow Control products.

An open-ended (ODC/CDI) employment contract is proposed together with an attractive compensation package (including company car) and exciting career perspectives.

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    Main Activities

    • Design and lead experiments to develop fundamental understanding of thermomechanical behavior of products
    • Improve numerical methodology and constitutive equations to represent thermomechanical behavior
    • Design, develop and validate new test methods; formalize test methods and analysis standards.
    • Design and develop/procure new testing-modelling-optimization tools/computing systems .
    • Participate in R&D consortiums and stimulate internal R&D ideas sharing

    Required Profile

    • Master degree in Engineering, with a focus on mechanical, thermodynamics and material sciences
    • Hands on experience in material behavioral law/equations analysis, thermomechanical modelling, and simulation tools development
    • Advanced knowledge of shape & topology optimization techniques and software (e.g. Altair HyperStudy, Dassault Isight)
    • Ability to develop simulation tools based on FEA and programming / scripting skills (e.g. C, C++, Python, Matlab)
    • Significant knowledge of Finite Elements methods and FEA modelling (proficient in Abaqus)
    • Autonomy, sense of initiative, researcher mindset, flexible (10-15% travel)
    • Fluent English

    Associé en charge

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