This inventor holds 1 USPTO granted patent. Top assignee: Neptco, Inc.. Active years: 2005.
Company Filing History:
Years Active: 2005
Title: Leslie Harrell Wells: Innovator in Cable Technology
Introduction
Leslie Harrell Wells is a notable inventor based in Hudson, NC (US). She has made significant contributions to the field of cable technology, particularly with her innovative approach to strength members in cables. Her work emphasizes the importance of using nonmetallic and nonconductive materials to enhance cable performance.
Latest Patents
Wells holds a patent for a cable strength member, which is a nonmetallic, nonconductive strength member designed for use in cables or as part of a strength reinforcement system. This strength member is constructed from low-cost materials and incorporates multiple glass fibers coated with a specialized coating composition. The design provides flexibility and high tensile strength while exhibiting low smoke generation and low flammability properties. The coating composition includes a lubricant that ensures a smooth surface and a low coefficient of friction, facilitating the processing of the strength member during cabling and stranding procedures. Additionally, it contains an adhesive component that helps to bond the glass fibers together, forming a cohesive strength member that can be configured as a yarn or strand for incorporation within cables.
Career Highlights
Leslie Harrell Wells is associated with Neptco, Inc., where she applies her expertise in developing innovative cable solutions. Her work at Neptco has allowed her to contribute to advancements in cable technology, focusing on enhancing the performance and safety of cable systems.
Collaborations
Due to space constraints, the collaborations section will be omitted.
Conclusion
Leslie Harrell Wells is a pioneering inventor whose work in cable technology has led to significant advancements in the industry. Her innovative patent for a cable strength member showcases her commitment to improving cable performance through the use of advanced materials and design techniques.
