ANSYS Workbench (Mechanical, Icepak, Spaceclaim)
A skilled Thermal Simulation Engineer with over five years of experience in Finite Element Method (FEM), particularly in thermo-electro-structural coupling simulations. With a strong foundation in data processing and Python scripting, I bring extensive expertise in product development, including Design of Experiments (DoE) and simulation. Proficient in sophisticated model validations and test correlations that support product development.
Driving company forward in FEM simulation
Thermal management
Project conducting
Product Design
Cross-functional team collaboration
Programming
Multiphysical simulation to ensure sufficient electrical current to heat cathode tungsten thread to desired temperature, exploring temperature effect on dynamics properties fo the thread
Research project with Prusa Research, simulation of thermal induced deformation of printing pad, experimentaly validated, optimal time of print start suggested
Research project focused on developement of metal 3D printed turbine. Thermo-structural simulation of additive process, deformation, stress state after build and heat treatment process, Responsible for simulations thanks to which a turbine prototype could be additively manufactured.
Developement of an extension for acoustics post processing using C# and Python., Developement of ACT enabling evaluation of fatigue according to a customer specific criterion., Automation of routines in daily work of simulation engineers saving them higher tens percents of their time.
Creation of physical model of gear splash for simulation calibration. This included controlling a stepper motor using microcontroller., Developement of automatically controlled curtains using microcontroller. Design and 3D print of own designed parts.
ANSYS Workbench (Mechanical, Icepak, Spaceclaim)
COMSOL Multiphysics
SolidWorks
Python
MATLAB
GIT
Playing the Piano
Jazz Fusion
Microcontrollers