Company Filing History:
Years Active: 2022-2025
Title: Innovations in 3D Printing: The Contributions of Philip J. Scott
Introduction
Philip J. Scott is an accomplished inventor based in Blacksburg, VA (US). He has made significant contributions to the field of additive manufacturing, particularly in the synthesis and 3D printing of photocurable colloids. With a total of 2 patents to his name, Scott's work addresses critical challenges in the 3D printing of high molecular weight polymers.
Latest Patents
Scott's latest patents focus on the development of photocurable colloid binders that enhance the 3D printing process. These binders are designed to overcome deficiencies associated with VAT photopolymerization of high molecular weight polymers. His innovative methods effectively decouple the viscosity-molecular weight relationship by synthesizing and processing photo-reactive aqueous colloids. These colloids are sequestered within a photocrosslinkable scaffold, which prevents inter-particle entanglement of polymer chains, ensuring low viscosity. The result is a solid green body embedded with high molecular weight polymer particles. A post-processing heated drying step allows the polymers to coalesce and further entangle, forming a semi-interpenetrating network that enhances mechanical performance. Additionally, the resins can incorporate inorganic particles, yielding unique hybrid materials with tunable properties.
Career Highlights
Philip J. Scott is affiliated with Virginia Tech Intellectual Properties, Inc., where he continues to push the boundaries of polymer colloid research. His work has garnered attention for its potential applications in various industries, including manufacturing and materials science.
Collaborations
Scott collaborates with notable colleagues such as Timothy Edward Long and Viswanath Meenakshisundaram, contributing to a dynamic research environment that fosters innovation.
Conclusion
Philip J. Scott's contributions to the field of 3D printing and polymer science are noteworthy. His innovative approaches to photocurable colloids are paving the way for advancements in additive manufacturing.
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