Painted Post, NY, United States of America

Rebecca Vernon Higginbottom

USPTO Granted Patents = 1 


 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Rebecca Vernon Higginbottom

Introduction

Rebecca Vernon Higginbottom is a notable inventor based in Painted Post, NY (US). She has made significant contributions to the field of materials science, particularly in the development of strengthened glass articles. Her innovative methods have the potential to enhance the durability and safety of glass products.

Latest Patents

Rebecca holds a patent for "Strengthened glass articles with reduced delayed breakage and methods of making the same." This patent describes a method of strengthening glass articles by introducing potassium ions to the surface region of the glass through an initial ion-exchange process. The process involves thermally treating the glass to diffuse the potassium ions further into the material, creating a compressive stress of greater than 400 MPa at the surface. The final ion-exchange process is conducted at a temperature of no more than 450° C. This innovative method results in a glass article with a compressive stress of at least 400 MPa at the surface, a depth of compression of at least 30 μm, and a central tension that minimizes the risk of spontaneous self-propagation of flaws.

Career Highlights

Rebecca is currently employed at Corning Incorporated, a leading company in glass and ceramics technology. Her work at Corning has allowed her to apply her expertise in materials science to develop advanced glass products that meet the demands of various industries.

Collaborations

Rebecca has collaborated with talented colleagues such as Weirong Jiang and Sean Thomas Miller. These collaborations have fostered an environment of innovation and creativity, leading to advancements in glass technology.

Conclusion

Rebecca Vernon Higginbottom's contributions to the field of strengthened glass articles demonstrate her commitment to innovation and excellence. Her patented methods not only enhance the performance of glass products but also pave the way for future advancements in materials science.

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