Grafton, VA, United States of America

Paul H Mirick


Average Co-Inventor Count = 8.0

ph-index = 2

Forward Citations = 84(Granted Patents)


Company Filing History:


Years Active: 2003-2007

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2 patents (USPTO):Explore Patents

Title: Paul H Mirick: Innovations in Piezoelectric Macro-Fiber Composite Actuators

Introduction:

Paul H Mirick, a highly skilled inventor, researcher, and team member, has made significant contributions in the field of piezoelectric macro-fiber composite actuators. With two patents to his name, Mirick has played a vital role in advancing this innovative technology. This article delves into Mirick's background, his notable patents, and his affiliation with a renowned organization, the National Aeronautics and Space Administration (NASA).

Paul H Mirick's Background:

Hailing from Grafton, Virginia, Paul H Mirick is recognized for his expertise in the field of piezoelectric macro-fiber composite actuators. Known for his meticulous attention to detail and creative problem-solving aptitude, Mirick has made substantial contributions to this niche area of research. His work primarily revolves around the fabrication methods and materials used in these types of actuators.

Mirick's Patents:

1. Method of fabricating a composite apparatus:

Mirick's first patent discloses a novel method for fabricating a piezoelectric macro-fiber composite actuator. This method involves creating a piezoelectric fiber sheet by bonding multiple wafers of piezoelectric material alternating with layers of adhesive material. The stack is then cut through, parallel to the thickness, resulting in a piezoelectric fiber sheet. This sheet is subsequently bonded with two electrically conductive films, one of which has conductive patterns that are electrically isolated and in contact with the piezoelectric fiber sheet.

2. Method of fabricating a piezoelectric composite apparatus:

Mirick's second patent presents an innovative method for fabricating a piezoelectric macro-fiber composite actuator. This technique involves attaching one side of a piezoelectric material onto an adhesive backing sheet. The material is then sliced to create multiple piezoelectric fibers in close proximity. A conductive film with interdigitated patterns is bonded to the other side of the piezoelectric material, after which the adhesive backing sheet is removed. Finally, a second film, potentially with a pair of similar conductive patterns, is bonded to the remaining side of the material.

Affiliation with the National Aeronautics and Space Administration (NASA):

Paul H Mirick has had the privilege to contribute his expertise to one of the most esteemed organizations in the world – the United States of America as represented by the Administrator of NASA. NASA plays a crucial role in the advancement of science and technology, and Mirick's association with this prestigious organization highlights the significance of his research.

Notable Coworkers:

Within the context of his research, Paul H Mirick has collaborated with W Keats Wilkie and Robert G Bryant. Their combined efforts exemplify the power of teamwork in achieving innovative breakthroughs in piezoelectric macro-fiber composite actuator technology.

Conclusion:

Paul H Mirick's contributions to the field of piezoelectric macro-fiber composite actuators, as evidenced by his patents and association with NASA, underscore the potential of these advancements in various domains. His research and accomplishments pave the way for further innovation in the realm of piezoelectric materials and their numerous applications.

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