Fea Engineer
Brno, Czech Republic
Structural and vibrational validation of new turbochargers and components like rotor assemblies, arm and valve mechanisms, bolted joints, etc. with using numerical simulations. One way FSI analyses of housings, CFD validations of housings’ channels and their improvement, assessment of cooling efficiency of water cores and jackets, heat-soak back analyses. Fully responsible for LCF evaluation of housings, vibrational assessment of turbochargers, development new methodologies for rotor (shaft)… Show more Structural and vibrational validation of new turbochargers and components like rotor assemblies, arm and valve mechanisms, bolted joints, etc. with using numerical simulations. One way FSI analyses of housings, CFD validations of housings’ channels and their improvement, assessment of cooling efficiency of water cores and jackets, heat-soak back analyses. Fully responsible for LCF evaluation of housings, vibrational assessment of turbochargers, development new methodologies for rotor (shaft) performance stress/strain and fatigue evaluation, increasing efficiency of solving TMF analyses (faster and more accurate solution approach), development of the new methodology for evaluation shaker/engine tests and matching them with FEA.Writting and helping with implementation of new APDL (ansys parametric design language) macros.Communication on daily basis with US/EU customers about projects, highlights and lowlights, results and suggested improvements.Responsible for FEA vs. TEST comparison and developing more effective methodology how to evaluate results. Cooperating with product managers, application and product engineers to meet schedule for turbochargers testing, provide technical assessment of test/simulation data to evaluate durability/reliability risk. Cross-functional team communication (Application teams, Product line, Wheel and Aero, Test laboratories) Show less