This inventor holds 9 USPTO granted patents and 1 published patent application. Top assignees: University of Florida Research Foundation Inc., Other. Active years: 1991-2001.
Location History:
- Mertztown, PA (US) (1998)
- Gainesville, FL (US) (1991 - 2001)
Company Filing History:

Years Active: 1991-2001
Title: Innovations of Michael D Sacks
Introduction
Michael D Sacks is a prominent inventor based in Gainesville, FL, known for his significant contributions to the field of materials science. He holds a total of 9 patents, showcasing his innovative approach to developing advanced materials, particularly in the area of silicon carbide fibers.
Latest Patents
Among his latest patents, Sacks has developed a process for forming a uniform boron nitride coating on boron-doped, refractory carbide bodies. This process is particularly effective for sintered, boron-doped, silicon carbide fibers, which are exposed to a nitrogen-containing atmosphere at high temperatures. The resulting coated fibers exhibit no loss in strength properties and demonstrate improved creep resistance. Another notable patent involves the creation of high-strength, creep-resistant silicon carbide fibers that do not require a boron nitride coating. These fibers are produced by exposing them to a nitrogen atmosphere and a carbon monoxide-containing atmosphere at elevated temperatures, resulting in fibers with exceptional tensile strengths and creep resistance.
Career Highlights
Sacks has had a distinguished career, working with the University of Florida Research Foundation, Incorporated, among other institutions. His work has significantly advanced the understanding and application of silicon carbide fibers in various industries.
Collaborations
Throughout his career, Sacks has collaborated with notable colleagues, including William Toreki and Christopher D Batich, contributing to the advancement of materials science.
Conclusion
Michael D Sacks continues to be a leading figure in the field of materials innovation, with his patents reflecting a commitment to enhancing the performance of silicon carbide fibers. His work not only advances technology but also paves the way for future innovations in materials science.