This inventor holds 2 USPTO granted patents. Top assignees: Kadia Diamond Hone Corporation, Kopp Verfahrenstechnik Gmbh. Active years: 1989-1994.
Company Filing History:
Years Active: 1989-1994
Title: Oswald Kopp: Innovator in Machining Technologies
Introduction
Oswald Kopp is a notable inventor based in Nurtingen, Germany. He has made significant contributions to the field of machining technologies, holding two patents that showcase his innovative approaches. His work focuses on enhancing the efficiency and effectiveness of machining processes.
Latest Patents
Kopp's latest patents include a "Method and apparatus for shaping the interior surfaces of bores." This invention describes a method where a honing tool, covered with an abrasive material coating, is radially pressed against the wall of the bore. The tool performs both rotational and axial reciprocal motions, along with high-frequency, short-stroke self-oscillation excited by ultrasonic oscillation in the range of 16 to 40 kHz. Another significant patent is the "Method for manufacturing metal wires partially covered with abrasive." This method allows for the production of metal wires partially covered with abrasive particles for various cutting tools. The process involves placing covering elements over specific areas of the metal wire and dipping it into an electrolytic bath containing abrasive particles, resulting in a more economical production method.
Career Highlights
Throughout his career, Oswald Kopp has worked with several companies, including Kopp Verfahrenstechnik GmbH and Kadia Diamond Hone Corporation. His experience in these organizations has contributed to his expertise in machining technologies and innovation.
Collaborations
Kopp has collaborated with various professionals in his field, including Gerhard Flores, enhancing his work through shared knowledge and expertise.
Conclusion
Oswald Kopp's contributions to machining technologies through his patents and career experiences highlight his role as an innovator in the industry. His work continues to influence the development of more efficient machining processes.