Saint Paul, MN, United States of America

Theresa Sherar


Average Co-Inventor Count = 2.9

ph-index = 1

Forward Citations = 2(Granted Patents)


Location History:

  • Prior Lake, MN (US) (2020)
  • Saint Paul, MN (US) (2021)

Company Filing History:


Years Active: 2020-2021

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2 patents (USPTO):Explore Patents

Title: Innovations by Theresa Sherar in Additive Manufacturing

Introduction

Theresa Sherar is a prominent inventor based in Saint Paul, MN (US), known for her contributions to the field of additive manufacturing. With a total of 2 patents to her name, she has made significant advancements in support materials used in high-temperature applications.

Latest Patents

Theresa's latest patents include "Water soluble support materials for high temperature additive manufacturing applications." This invention features a support material that consists of a copolymer of vinyl pyrrolidone (VP) monomers and elastomeric monomers. The unique aspect of this support material is its thermal stability at temperatures exceeding 80°C, along with its ability to disintegrate in aqueous solutions such as tap water. Another notable patent is "High-temperature soluble support material for additive manufacturing." This invention involves a thermoplastic copolymer that is polymerized from acid-functional monomers and non-acid-functional monomers. The copolymer is designed to be thermally stable at its melt processing temperature and is soluble in alkaline aqueous solutions.

Career Highlights

Theresa Sherar is currently employed at Stratasys, Inc., a leading company in the additive manufacturing industry. Her work focuses on developing innovative materials that enhance the capabilities of 3D printing technologies.

Collaborations

Some of her notable coworkers include Adam R Pawloski and Jiayi Zhu, who contribute to the collaborative environment at Stratasys, Inc.

Conclusion

Theresa Sherar's innovative work in the field of additive manufacturing has led to the development of advanced support materials that improve the efficiency and effectiveness of 3D printing processes. Her contributions continue to shape the future of manufacturing technologies.

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