This inventor holds 1 USPTO granted patent. Top assignee: Other. Active years: 1984.
Company Filing History:
Years Active: 1984
Title: The Innovative Mind of Patrick Heron
Introduction
Patrick Heron is an accomplished inventor based in Hillsdale, NJ (US). He has made significant contributions to the field of cable encapsulation technology. His innovative approach has led to the development of a unique method that enhances the durability and protection of cable strands.
Latest Patents
Patrick Heron holds a patent for the "Wedge encapsulation method." This method involves encapsulating a cable strand formed of a plurality of bundled steel wires. The process begins by forcing apart the wires of the strand with wooden wedges. After creating a gap, the resulting space is filled solid with red lead paste. Once the paste is applied, the wedges are removed, allowing the paste to coat and fill all voids between the strand wires. This operation is repeated at various circumferential positions on the strand. Subsequently, the wedges can be driven in at adjacent positions along the strand. The portion of the strand where the red lead paste has been applied is then coated with the same paste. Finally, the cable is paint encapsulated using a bath of red lead paint. This method is particularly effective in protecting the crotch of a suspension bridge main cable strand near the strand shoe.
Career Highlights
Throughout his career, Patrick has demonstrated a commitment to innovation and excellence. His work has not only advanced the field of cable encapsulation but has also contributed to the safety and longevity of critical infrastructure.
Collaborations
Patrick has collaborated with notable colleagues, including Timothy Hartnett and Adam Carl Wright. Their combined expertise has fostered an environment of creativity and innovation.
Conclusion
Patrick Heron's contributions to the field of cable encapsulation through his patented method exemplify his innovative spirit. His work continues to impact the industry positively, ensuring the safety and durability of essential structures.