This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: Tnemec Company Inc.. Active years: 2013.
Company Filing History:
Years Active: 2013
Title: Erin McKenzie: Innovator in Polymer Network Composition
Introduction
Erin McKenzie is a notable inventor based in Shawnee, Kansas. She has made significant contributions to the field of polymer chemistry, particularly with her innovative work on interpenetrating polymer networks. Her expertise and creativity have led to the development of a unique composition that has various applications in coatings and adhesives.
Latest Patents
Erin holds a patent for a "Geopolymer and epoxy simultaneous interpenetrating polymer network composition, and methods for the same." This invention features a simultaneous interpenetrating polymer network that includes a first component made up of a waterborne epoxy curing agent, an aluminosilicate source, and an amorphous silica. The second component consists of an epoxy resin and an alkaline silicate solution. When mixed, these components produce a SIN-GE composition that cures at ambient temperatures. This composition can be low-viscosity and sprayable or higher-viscosity, making it versatile for various applications such as coatings, adhesives, mortars, and casting materials. Erin has 1 patent to her name.
Career Highlights
Erin McKenzie is currently employed at Tnemec Company Inc., where she continues to innovate and develop new materials. Her work has been instrumental in advancing the capabilities of polymer compositions, making her a valuable asset to her company and the industry.
Collaborations
Erin collaborates with talented individuals such as Remi Briand and Peter A Smith. These partnerships enhance her research and development efforts, allowing for a more comprehensive approach to innovation in polymer chemistry.
Conclusion
Erin McKenzie is a pioneering inventor whose work in polymer network compositions has the potential to impact various industries. Her dedication to innovation and collaboration continues to drive advancements in material science.