Amir Keyhani, Ph.D.

Amir Keyhani, Ph.D.

Mechanical Engineer @ Exponent

About Amir Keyhani, Ph.D.

Amir Keyhani, Ph.D., is a mechanical engineer specializing in finite element analysis and Li-ion batteries. He has worked at Exponent since 2020 and has extensive experience in mechanical design and testing for consumer electronic products.

Work at Exponent

Amir Keyhani has been employed at Exponent as a Mechanical Engineer since 2020. His role involves applying his expertise in mechanical design and finite element analysis to various projects. Based in the San Francisco Bay Area, he contributes to the development and testing of consumer electronic products, leveraging his extensive background in engineering.

Education and Expertise

Amir Keyhani earned his Doctor of Philosophy (Ph.D.) in Mechanical Engineering from the Georgia Institute of Technology, completing his studies from 2015 to 2020. His academic focus includes finite element analysis (FEA) and Li-ion batteries. He also holds a Master of Science (MS) in Mechanical Engineering from the same institution, further solidifying his foundation in the field.

Background

Prior to his current position at Exponent, Amir Keyhani served as a Graduate Researcher at the Georgia Institute of Technology from 2015 to 2020. During this time, he engaged in research projects that included work on biomedical devices, enhancing his practical knowledge and skills in mechanical engineering.

Specialization in Finite Element Analysis

Amir Keyhani specializes in finite element analysis (FEA), a critical method used in engineering to predict how objects behave under various conditions. His expertise in this area is complemented by his knowledge of Li-ion batteries, making him well-suited for projects involving advanced consumer electronics and energy storage solutions.

Experience in Mechanical Design and Testing

With extensive experience in mechanical design and testing, Amir Keyhani has worked on various consumer electronic products. His background equips him with the skills necessary to address complex engineering challenges, ensuring that products meet both performance and safety standards.

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