Company Filing History:
Years Active: 1996
Title: Min Kang - Innovator in Protective Coatings
Introduction
Min Kang is a notable inventor based in Sandersville, Georgia, recognized for his contributions to the field of materials science. He has developed innovative protective coatings that enhance the durability and performance of various substrates. His work is particularly significant in the realm of thin film coatings.
Latest Patents
Min Kang holds a patent for a magnesium doped β-aluminum titanate thin film coating, specifically Mg.sub.x Al.sub.2-2x Ti.sub.1+x O.sub.5 (x ≤ 0.2). This invention focuses on protective coatings suitable for both dense and porous substrates, such as SiC and Si.sub.3 N.sub.4. The coatings are created using a chemical solution processing method that involves the hydrolysis and condensation of magnesium, aluminum, and titanium precursors. The optimal conditions for achieving crack-free coatings include solution viscosities ranging from 1.0 to 6.2 cP, pH values between 1 and 4.5, molar ratios of 1.5 to 10, and withdrawal rates of 2.2 to 8.0 cm/min. The conversion of the amorphous coating to crystalline form is accomplished through a series of calcination processes below 450°C, followed by a final heat treatment above 1000°C for ten hours.
Career Highlights
Min Kang is associated with Virginia Tech Intellectual Properties, Inc., where he continues to advance his research and development efforts. His work has significantly impacted the field of protective coatings, making him a valuable asset to his organization and the broader scientific community.
Collaborations
Min has collaborated with esteemed colleagues, including Tawei Sun and Nancy R. Brown, to further enhance the research and application of his innovative coatings.
Conclusion
Min Kang's contributions to the development of magnesium doped β-aluminum titanate thin film coatings exemplify his commitment to innovation in materials science. His work not only advances the field but also provides practical solutions for enhancing substrate durability.