This inventor holds 8 USPTO granted patents. Top assignee: USA as Represented by Secretary of the Navy. Active years: 1976-1999.
Company Filing History:
Years Active: 1976-1999
Title: The Innovations of Robert B. Dillinger
Introduction
Robert B. Dillinger is a notable inventor based in Ridgecrest, CA (US). He has made significant contributions to the field of rocket propulsion technology, holding a total of 8 patents. His work focuses on enhancing the efficiency and safety of solid fuel rockets.
Latest Patents
Dillinger's latest patents include innovative technologies such as the "Vapor deposition of a thin polymer film on solid propellant rocket grain." This invention involves applying a thin film of ignition inhibitor uniformly to a rocket propellant grain, which can be large and complex in shape. The film is created through the condensation and polymerization of a vaporized monomer, which is thermally cracked from the dimer of paraxylylene or its halogenated derivatives. Another significant patent is the "Active spray rocket propellant ignition controller." This device utilizes hot gases from an initiator to drive a piston against a reservoir of combustion-modifying fluid, such as ethylene glycol. This fluid is then sprayed onto the propellant grain just before ignition, enhancing the ignition process.
Career Highlights
Dillinger works for the United States as represented by the Secretary of the Navy. His role involves developing advanced technologies that improve the performance and reliability of military rocket systems. His expertise in this area has made him a valuable asset to the defense sector.
Collaborations
Some of Dillinger's notable coworkers include W. James Stone and Vernon D. Burklund. Their collaborative efforts have contributed to the successful development of various innovative technologies in rocket propulsion.
Conclusion
Robert B. Dillinger's contributions to rocket technology through his patents and collaborative work highlight his importance in the field of aerospace engineering. His innovations continue to influence advancements in solid fuel rocket systems.