Company Filing History:
Years Active: 2022-2023
Title: The Innovative Journey of Chris Watts in Patent Development
Introduction
Chris Watts, an accomplished inventor based in Victoria, Texas, has made significant contributions to the field of adhesive technologies through his innovative patents. With a total of two patents to his name, Watts has demonstrated a strong commitment to advancing the materials used in tape and label applications.
Latest Patents
Chris Watts' latest patents focus on a novel clear film designed for use in adhesive tape and label applications. This multilayer film features a core layer accompanied by skin layers on either side. The core is crafted from a polypropylene mini-random homopolymer, which incorporates up to 2 wt % ethylene components and includes an acid neutralizer in concentrations reaching up to 5000 ppm of calcium. The skin layers, composed predominantly of the same polypropylene mini-random homopolymer and acid neutralizer, also contain an anti-block agent. This agent adds to the film's effectiveness and is comprised of at least 95 wt % homopolymer of polypropylene mixed with 1 to 5 wt % silica particles, sized between 1 to 3 micrometers.
Career Highlights
Throughout his career, Chris Watts has worked with reputable companies in the industry, including Inteplast Group Corporation. His experience in these organizations has allowed him to develop and hone his skills further, contributing to the creation of innovative adhesive solutions.
Collaborations
Chris has collaborated with notable colleagues like Jame Wong and Jenchyou Hwang. These partnerships have likely enriched his innovative processes, allowing for the sharing of ideas and expertise that drive successful patent development.
Conclusion
In summary, Chris Watts stands out as an influential inventor whose contributions to adhesive technologies are noteworthy. With his innovative patents and collaborative spirit, he continues to pave the way for advancements in the field, enhancing the performance and functionality of adhesive products significantly.