This inventor holds 1 USPTO granted patent. Top assignee: USA as Represented by Secretary of the Navy. Active years: 1990.
Company Filing History:
Years Active: 1990
Title: Innovations of Steven G. Fishman
Introduction
Steven G. Fishman is an accomplished inventor based in Columbia, MD (US). He is known for his significant contributions to the field of armor penetration technology. With a focus on enhancing the effectiveness of projectiles, Fishman has developed innovative solutions that have practical applications in defense.
Latest Patents
One of Fishman's notable patents is for a composite tungsten-steel armor penetrator. This invention features an armor-penetrating projectile that consists of a matrix made from iron or a steel alloy. The matrix has a Rockwell C hardness ranging from about 40 to about 60 and a density of approximately 99.5 to 100 percent. It is reinforced with wires made from heavy metals such as tungsten, molybdenum, tantalum, or their alloys. This innovative design aims to improve the performance and effectiveness of armor-penetrating projectiles.
Career Highlights
Fishman works for the United States government, specifically as represented by the Secretary of the Navy. His role involves applying his expertise in materials science and engineering to develop advanced technologies for military applications. His work has contributed to enhancing the capabilities of defense systems.
Collaborations
Throughout his career, Fishman has collaborated with notable professionals in his field, including Raymond C. Wiley and William N. Wishard. These collaborations have allowed for the exchange of ideas and the advancement of innovative technologies in armor penetration.
Conclusion
Steven G. Fishman is a prominent inventor whose work in armor penetration technology has made a significant impact in the defense sector. His innovative patent for composite tungsten-steel armor penetrators showcases his commitment to advancing military technology. His contributions continue to influence the effectiveness of defense systems today.