Morristown, TN, United States of America

Arvind Karandikar

USPTO Granted Patents = 3 

Average Co-Inventor Count = 3.3

ph-index = 2

Forward Citations = 53(Granted Patents)


Company Filing History:


Years Active: 2008-2016

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3 patents (USPTO):Explore Patents

Title: Arvind Karandikar: Innovator in Concrete Technology

Introduction

Arvind Karandikar, based in Morristown, TN, is a notable inventor with a focus on advancements in concrete technology. With three patented innovations to his name, Karandikar has made significant contributions to materials science, particularly through his work with polyoxymethylene fibers.

Latest Patents

Karandikar's latest patent revolves around enhancing concrete's performance with polyoxymethylene (POM) fibers. These polymeric additives are formed from POM copolymers, which can be tailored to produce microfibers and macrofibers. Notably, the POM copolymers contain chemical groups that enhance their polarity and hydrophilicity, improving their integration into wet concrete. This innovation promises better miscibility and bonding capabilities within the concrete binder, as the fibers can form both covalent and noncovalent bonds with concrete's components.

Career Highlights

Arvind Karandikar has built a diverse career, including a tenure at Ticona GmbH, where he honed his expertise in polymer science and concrete technology. His work at this esteemed company has been instrumental in his developments of innovative solutions in the construction materials sector.

Collaborations

Throughout his career, Karandikar has collaborated with distinguished colleagues, including Steven Bassetti and Robert M. Gronner. These partnerships have facilitated the exchange of ideas and knowledge, further enriching his contributions to the field.

Conclusion

Arvind Karandikar stands out as an inventive force within the concrete industry. His advancements, particularly regarding polyoxymethylene fibers, showcase his commitment to innovation and improvement in material performance. As he continues to explore new possibilities, his work is poised to influence the future of concrete technology significantly.

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