This inventor holds 1 USPTO granted patent. Top assignee: Bristol-Myers Squibb Compnay. Active years: 2000.
Company Filing History:
Years Active: 2000
Title: Innovator Kris K Merchant: Pioneering Orthopaedic Implant Manufacturing
Introduction
Kris K Merchant is a notable inventor based in Fort Wayne, IN (US). She has made significant contributions to the field of orthopaedic implants, particularly through her innovative patent. Her work focuses on the manufacturing process of cobalt-chromium orthopaedic implants, showcasing her expertise and dedication to advancing medical technology.
Latest Patents
Kris K Merchant holds a patent for a process of manufacturing a cobalt-chromium orthopaedic implant. This innovative method involves forging an implant from a metallic body consisting of a cobalt-chromium alloy. The forged implant undergoes a descaling process using a particulate blasting agent, which effectively removes scale formed during forging without causing major structural surface deformation. Following this, the implant is electro-chemically polished in an acid bath containing approximately 45% sulfuric acid and 50% phosphoric acid, maintained at a temperature between 80°F and 90°F. Direct current electrical power is applied to the implant, and it is subsequently ultrasonically cleaned and inspected for surface defects using a fluorescent penetrant.
Career Highlights
Kris K Merchant is currently employed at Bristol-Myers Squibb Company, where she continues to apply her expertise in the field of orthopaedic implants. Her innovative approach to manufacturing has positioned her as a key player in the development of advanced medical devices.
Collaborations
Kris has collaborated with notable colleagues, including Larry S Bender and David M Blakemore, contributing to a dynamic work environment that fosters innovation and excellence in medical technology.
Conclusion
Kris K Merchant's contributions to the field of orthopaedic implants through her patented manufacturing process highlight her role as a pioneering inventor. Her work not only advances medical technology but also enhances the quality of care for patients requiring orthopaedic solutions.
