Tushar Doshi
Senior Simulation & Means Engineer @Safran
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WORK HISTORY
Senior Simulation & Means Engineer @Safran
England, GB
Lead linear, bilinear, and nonlinear finite element analyses of high-speed electrical generators to optimise structural integrity and weight while meeting certification requirements.• Conduct first-principles hand calculations (stress, fatigue, dynamics, stability) to validate simulation results and guide early-phase design decisions.• Perform advanced rotordynamic and high-stress assessments of high-speed rotors, eliminating critical speed risks and mitigating burst failure modes.• Develop and validate carbon composite parts containment strategies for high-RPM applications, ensuring safe operation under extreme centrifugal loads.• Execute parametric and geometric optimisation studies using OptiSLang, reducing design iteration time and accelerating convergence to optimal solutions.• Perform high-cycle fatigue (HCF) life assessments and durability evaluations to prevent mechanical failure in service.• Define stress strategies and structural substantiation approaches for high-value aerospace programmes.• Establish and standardise FEA best-practice methodologies across the team, improving model robustness, correlation accuracy, and analysis efficiency.• Mentor and technically guide junior engineers, supporting capability development and improving analytical quality standards across projects.
EDUCATION
University of the West of England
Master of Science - MS, Mechanical Engineering
University of Mumbai
Bachelor of Engineering , Mechanical Engineering
ABOUT TUSHAR DOSHI
An experienced Stress Engineer with over 8+ years in design and simulation, delivering innovative solutions in electric motor, automotive interiors, and structural systems. My experience spans over automotive, home appliance and aerospace sectors. With a strong foundation in simulation-driven design, I bridge the gap between concept development, finite element analysis (FEA), and real-world validation. My approach emphasizes performance optimization and durability assessment in high-stress environments, ensuring designs meet rigorous industry standards. Collaboration is at the heart of my work — I thrive in multidisciplinary teams, integrating mechanical design with advanced simulations to enhance product reliability and efficiency. My Master’s degree in mechanical engineering gives me a strong technical foundation, further strengthened by experience in industrial leading tools such as ANSYS, ABAQUS, ANSA, HyperMesh, SOLIDWORKS (CSWP), NX, and Teamcenter. Passionate about engineering innovation, I am always seeking opportunities to leverage my analytical skills and technical knowledge to drive cutting-edge solutions from concept to realization
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