This inventor holds 1 USPTO granted patent. Top assignee: USA as Represented by Secretary of the Navy. Active years: 2003.
Company Filing History:
Years Active: 2003
Title: Roy A Lindauer: Innovator in Dynamic Tear Testing
Introduction
Roy A Lindauer is a notable inventor based in Ridgley, MD (US). He has made significant contributions to the field of materials testing, particularly through his innovative patent related to dynamic tear testing. His work is essential for industries that require precise testing of metallic materials.
Latest Patents
Lindauer holds a patent for an invention titled "Efficient use of metallic materials for dynamic tear testing." This invention features a unitary test piece that conforms to standardized dynamic tear testing guidelines. The design includes a middle section made of the test-subject metallic material, along with two end sections that are compatible with the middle section. This configuration allows for economical utilization of expensive or limited test-subject metallic materials, making it a valuable advancement in the field.
Career Highlights
Lindauer's career is marked by his role as an inventor for the USA, represented by the Secretary of the Navy. His work has been instrumental in developing testing methods that enhance the understanding of metallic materials under dynamic conditions. His innovative approach has led to advancements that benefit various applications in engineering and materials science.
Collaborations
Throughout his career, Lindauer has collaborated with notable colleagues, including Michael E Wells and Robert DeNale. These partnerships have contributed to the development and refinement of his inventions, fostering a collaborative environment that encourages innovation.
Conclusion
Roy A Lindauer's contributions to dynamic tear testing exemplify the importance of innovation in materials science. His patent not only enhances testing methodologies but also promotes the efficient use of resources in the industry. His work continues to influence the field and supports advancements in understanding metallic materials.