This inventor holds 3 USPTO granted patents. Top assignees: Abbott Laboratories Corporation, Other. Active years: 1990-1995.
Location History:
- Lake Forest, IL (US) (1990)
- Round Lake, IL (US) (1992 - 1995)
Company Filing History:

Years Active: 1990-1995
Title: The Innovations of Bernard G Alzner
Introduction
Bernard G Alzner is a notable inventor based in Round Lake, IL (US). He has made significant contributions to the field of materials science, particularly in the development of advanced thermoplastic polyurethane elastomers and medical tubing.
Latest Patents
Alzner holds three patents, with his latest innovations focusing on thermoplastic urethane elastomers and kink-resistant medical tubing. The thermoplastic polyurethane elastomer invention provides a blend of polyurethane resins suitable for tubing applications. This blend boasts a tensile strength exceeding 7000 psi and an ultimate elongation greater than 200%. It consists of 50% to 80% elastomeric polyurethane resin with a hardness of 60 to 70 Shore D units, combined with 20% to 50% rigid polyurethane resin. Additionally, he has developed kink-resistant medical tubing, which is extruded from a composition of divalent metal ionomer, polyamide, and polyurethane. This tubing is designed to be sterilized and is adaptable in stiffness and mechanical strength for efficient catheter functionality.
Career Highlights
Throughout his career, Alzner has worked with prominent companies, including Abbott Laboratories Corporation. His work has significantly impacted the medical and materials industries, showcasing his expertise in polymer science.
Collaborations
Alzner has collaborated with various professionals in his field, including Desider G Csongor, enhancing the innovation process through teamwork and shared expertise.
Conclusion
Bernard G Alzner's contributions to the field of materials science and medical technology highlight his innovative spirit and dedication to advancing practical applications. His patents reflect a commitment to improving product performance and functionality in critical areas.