Port Washington, WI, United States of America

Stanley N Korb


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 9(Granted Patents)


Company Filing History:


Years Active: 1976

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1 patent (USPTO):Explore Patents

Title: The Innovative Work of Stanley N. Korb

Introduction: Stanley N. Korb, a talented inventor based in Port Washington, Wisconsin, has made notable contributions to the field of industrial materials. With a unique perspective on enhancements in manufacturing processes, Korb has focused on developing innovative solutions that improve the efficiency and durability of construction materials.

Latest Patents: Korb holds a patent for a "Clay tile pipe joint seal containing foamed unsaturated polyester resin." This invention presents an improved joint seal for clay tile pipes, designed with bell and spigot configurations. The innovation employs an unsaturated polyester resin in a foamed, low-density state, preferably below about 50 pounds per cubic foot, significantly enhancing the longevity and functionality of the pipe joints.

Career Highlights: Throughout his career, Korb has dedicated his efforts to Freeman Chemical Corporation, where he has applied his expertise to advance the company's product offerings. His commitment to innovation has been instrumental in positioning the company as a leader in chemical manufacturing and construction materials.

Collaborations: Collaborating with Eugene J. Grandlic, a fellow professional at Freeman Chemical Corporation, Korb has combined their knowledge and skills to push the boundaries of invention in their field. Their teamwork has led to improvements in product development and the implementation of innovative solutions.

Conclusion: In summary, Stanley N. Korb's work exemplifies the spirit of innovation in the construction materials industry. His patent for a clay tile pipe joint seal highlights his commitment to creating practical solutions that advance this sector. As he continues to collaborate with other professionals, the impact of his contributions is likely to inspire future advancements in materials science.

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