This inventor holds 1 USPTO granted patent. Top assignee: Erie E Magnetics. Active years: 2001.
Company Filing History:
Years Active: 2001
Title: Richard Scott Darling: Innovator in Magnetic Roll Separator Technology
Introduction
Richard Scott Darling is an accomplished inventor based in Erie, PA (US). He has made significant contributions to the field of magnetic roll separators, particularly with his innovative tracking system for conveyor belts. His work has implications for various industries that utilize magnetic separation technology.
Latest Patents
Richard Scott Darling holds a patent for a system titled "Belt tracking for magnetic roll separator." This invention employs a strip of readily magnetizable material adhered to at least one edge of a conveyor belt used with a magnetic roll separator. The magnetic field produced by the head roller of the conveyor belt generates a continuous centering force that acts on the easily magnetized material, ensuring proper tracking for the conveyor belt. The readily magnetizable material can be attached directly to either surface of the belt, wrapped around an edge portion of the belt, or integrated into a woven wire mesh by vulcanization. The strip of material may be continuous or intermittent, showcasing the versatility of his invention.
Career Highlights
Richard Scott Darling is associated with Erie E Magnetics, where he applies his expertise in magnetic technologies. His innovative approach has led to advancements in the efficiency and effectiveness of magnetic roll separators. His patent reflects his commitment to improving industrial processes through inventive solutions.
Collaborations
Richard has worked alongside talented individuals such as David Scott Bard and Timothy Guy Shuttleworth. Their collaborative efforts contribute to the innovative environment at Erie E Magnetics.
Conclusion
Richard Scott Darling's contributions to magnetic roll separator technology exemplify the spirit of innovation. His patent for belt tracking systems demonstrates his ability to solve complex problems in industrial applications. His work continues to influence the field and inspire future advancements.