Student for thesis Characterisation of Battery Anodes for P2D Models

Student for thesis Characterisation of Battery Anodes for P2D Models

Mercedes-Benz AG

Inżynieria
Nauki przyrodnicze
Elektrochemia
Inżynieria elektryczna
Doświadczenie laboratoryjne
Programowanie
MATLAB

Zusammenfassung

Poszukiwanie studenta do pracy na temat charakteryzacji anod akumulatorów w modelach P2D. Wymagana wiedza z zakresu inżynierii oraz podstaw elektrochemii. Możliwość elastycznego czasu pracy oraz pracy hybrydowej.

Schlüsselwörter

InżynieriaNauki przyrodniczeElektrochemiaInżynieria elektrycznaDoświadczenie laboratoryjneProgramowanieMATLAB

Vorteile

  • Zniżki na posiłki
  • Możliwość telefonu komórkowego dla pracowników
  • Zniżki dla pracowników
  • Możliwy roczny udział w zyskach
  • Wydarzenia dla pracowników
  • Coaching
  • Możliwość elastycznego czasu pracy
  • Możliwość pracy hybrydowej
  • Korzyści zdrowotne
  • Emerytura firmowa
  • Oferty mobilności
  • Parking
  • Canteen, Café
  • Bezbarierowe miejsce pracy
  • Lekarz w zakładzie
  • Dobre połączenia komunikacyjne

Stellenbeschreibung

Life is always about becoming… Becoming means going on a journey to be the best version of our future selves. While we discover new things, we will face challenges, master them and grow beyond our individual limits.

Apply for a job at Mercedes-Benz and find your individual role and workspace to unleash your talents to the fullest. Empowered by visionary colleagues who share the same pioneering spirit. Joining us means becoming part of a global team that aims to build the most desirable cars in the world. Together for excellence.

Job-ID: MER0003XLT

Tasks

P2D models are ideal for predictions of electrochemical behaviours of cells for electric vehicle application since they strike the right balance between complexity and predictive power. Solid-state diffusion is a process within the electrode that critically influences the rate capabilities during charging and discharging. In P2D models, this process is not fully understood especially in anodes such as graphite. Currently existing methods of modelling and characterisation, generally implemented in cathodes, does not fully work on graphite due to additional effects such as occurrence of phase transitions which necessitates alternative methodologies. The cell modelling lab focuses on the development of such methodologies. The focus of the work is to characterize solid-state diffusion through experiments and implement it in a P2D model.

Contents of the Master’s Thesis

  • Building graphite half cells (EL cells) of different electrode variations such as very thin electrodes, thickness variations and particle size variations
  • Perform C-Rate tests at different temperatures
  • Obtaining diffusion coefficients through fitting
  • Use the obtained results to capture the behaviours of all electrode variations

The final topic determination takes place in consultation with the university, you and us.

The activity can begin from April 2026.

Qualifications

  • Study: Engineering/Natural Sciences or anything comparable
  • Basics of electrochemistry or electrical engineering
  • Laboratory experience
  • Interest to work on cell assembly and testing in the laboratory
  • Basic levels of programming and basic familiarity with MATLAB

Additional Information:

We look forward to receiving your online application, including a resume, cover letter, certificates, current certificate of enrollment stating your semester, and proof of the standard period of study. Please remember to mark your documents as "relevant for this application" in the online form and observe the maximum file size of 5 MB.

You can find further information on the hiring criteria here.

Severely disabled applicants and applicants with equivalent status are welcome! The representative for severely disabled employees ([email protected]) will gladly support you in the application process.

HR Services will be happy to help you with any questions you may have about the application process. You can reach us by email at [email protected] or by phone at 0711/17-99000 (Mon-Fri 10am-12pm & 1pm-3pm).

Benefits

  • Meal-Discounts
  • Mobile Phone for Employees Possible
  • Discounts for Employees Possible
  • Annual Profit Share Possible
  • Events for Employees
  • Coaching
  • Flextime Possible
  • Hybrid Work Possible
  • Health Benefits
  • Company Retirement
  • Mobility Offers
  • Parking
  • Canteen, Café
  • Barrier-Free Workplace
  • Inhouse Doctor
  • Good Public Transport

Contact

Martin Wöhr
Email: [email protected]

Group Research & MBC Development, Nabern
Neue Str. 95
73230 Kirchheim unter Teck

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Aufrufe: 2
Veröffentlichtvor 9 Tagen
Läuft abin 21 Tagen
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