Hybrid Stress Engineer: Fatigue & Integrity

Hybrid Stress Engineer: Fatigue & Integrity

Full-Time 45000 - 60000 Β£ / year (est.) No working from home possible
Rolls-royce

At a Glance

  • Tasks: Predict mechanical behaviour and assess failure mechanisms for defence programmes.
  • Company: Join Rolls-Royce, a leader in aerospace engineering with a focus on innovation.
  • Benefits: Hybrid work model, competitive salary, and opportunities for professional growth.
  • Other info: Work in a dynamic environment with excellent career advancement opportunities.
  • Why this job: Make a real impact on engine integrity while collaborating with diverse teams.
  • Qualifications: Experience in stress analysis and a passion for engineering.

The predicted salary is between 45000 - 60000 Β£ per year.

Rolls-Royce in Bristol (Filton) invites applications for a Stress Engineer to safeguard engine integrity across defence programmes.

You will predict mechanical behaviour, support design, and assess failure mechanisms while collaborating with multiple stakeholders throughout the product life cycle.

The role emphasizes interdisciplinary analysis, experiments, and robust design under hybrid work with on-site collaboration about three days per week, and eligibility for SC clearance is advantageous.

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Hybrid Stress Engineer: Fatigue & Integrity employer: Rolls-royce

At Rolls-Royce, we pride ourselves on being an exceptional employer, offering a dynamic work culture that fosters innovation and collaboration in our Bristol/Hybrid location. Our commitment to employee growth is evident through tailored development programmes and opportunities to engage in meaningful projects that shape the future of technology. With a focus on diversity and inclusion, we ensure that every team member feels valued and empowered to contribute to our collective success.

Rolls-royce

Contact Details:

Rolls-royce Recruitment Team

We think you need these skills to ace Hybrid Stress Engineer: Fatigue & Integrity

Mechanical Behaviour Prediction
Failure Mechanism Assessment
Interdisciplinary Analysis
Robust Design
Collaboration Skills
Stakeholder Engagement
Product Life Cycle Understanding