Ann Arbor, MI, United States of America

Audrey Sedal


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2022

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1 patent (USPTO):Explore Patents

Title: **Audrey Sedal: Innovator in Fluidic Actuation Systems**

Introduction

Audrey Sedal, an inventor based in Ann Arbor, MI, has made a remarkable contribution to the field of fluidic actuation with her innovative patent. She is currently affiliated with the University of Michigan, where her work focuses on creating advanced systems that utilize fluid dynamics.

Latest Patents

Audrey holds a patent for a "Fluidic actuator system using auxetic beam reinforcements." This unique actuator system features a fluidic body member with a deformable surface that responds to pressure differentials. It incorporates a network of auxetic elements characterized by a negative Poisson's ratio. This design leads to specific kinematics, allowing the fluidic body member's surface to enable both planar and 3D motions when internal fluid pressure is applied. The collaboration of non-auxetic and auxetic elements within the system adds to its versatility and effectiveness.

Career Highlights

Throughout her career, Audrey Sedal has demonstrated a commitment to advancing the science of fluid dynamics and actuation technologies. Her innovative approach not only exemplifies her technical expertise but also positions her as a key contributor to her field at the University of Michigan.

Collaborations

Audrey actively collaborates with fellow researchers, including Joshua Bishop-Moser and Sridhar Kota. Their collective efforts have enriched the research environment, fostering innovation and breakthrough advancements in fluidic technologies.

Conclusion

In summary, Audrey Sedal is a pioneering inventor whose work in fluidic actuator systems showcases her ingenuity and dedication. With her patent, she has taken significant strides toward enhancing the capabilities of fluid dynamics in practical applications. Her collaborations and ongoing research at the University of Michigan continue to inspire new innovations in the field.

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