Farmington, MI, United States of America

Margaret Kohler


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: The Innovative Mind of Margaret Kohler: Pioneering Fluidic Actuators

Introduction: Margaret Kohler, a distinguished inventor based in Farmington, Michigan, has made significant strides in the field of fluidic actuator technology. With her unique approach to design and engineering, she has been awarded a patent that showcases her innovative thinking.

Latest Patents: Kohler's most notable patent is for a "Fluidic actuator system using auxetic beam reinforcements." This invention involves a fluidic body member designed to deform in response to a pressure differential. The fluidic actuator features an intricate network of auxetic elements on its surface, which possess a negative Poisson's ratio. This results in specific kinematics that enable both planar and three-dimensional motions when internal fluid pressure is applied. In addition, the design incorporates non-auxetic elements that work in harmony with auxetic components, enhancing the actuator's functionality.

Career Highlights: Margaret Kohler's career is highlighted by her dedication to research and innovation within the field of mechanical engineering. Her work has not only contributed to advancements in actuator systems but has also set a benchmark for future research in fluidics and materials science. She is currently affiliated with the University of Michigan, where she continues to push the boundaries of engineering solutions.

Collaborations: Throughout her career, Kohler has collaborated with talented colleagues such as Audrey Sedal and Joshua Bishop-Moser. These collaborations have fostered a dynamic exchange of ideas and laid the groundwork for further innovations in their respective fields.

Conclusion: Margaret Kohler stands out as an inspiring inventor whose groundbreaking work in fluidic actuators demonstrates the power of creative engineering. Her patented technology not only advances the capabilities of actuator systems but also opens avenues for future innovations, establishing her as a significant figure in the world of inventions.

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