Mt. Laurel, NJ, United States of America

Mary J Daub


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 28(Granted Patents)


Company Filing History:


Years Active: 1998

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1 patent (USPTO):Explore Patents

Title: Celebrating the Innovative Contributions of Mary J. Daub

Introduction: Mary J. Daub is an accomplished inventor based in Mt. Laurel, New Jersey. With a focus on advancements in dental materials, she holds a patent for her innovative work in low-fusing temperature porcelain compositions. This development stands out in the field of dental prosthetics, contributing to enhanced methods and materials utilized in dental applications.

Latest Patents: Mary J. Daub's notable patent includes a low-fusing temperature porcelain composition. This invention details methods for utilizing the composition in creating dental prostheses, which are formed on both metal and porcelain substrates. The unique aspect of her composition is its fusing temperature, which is less than 800 degrees Celsius, paired with a coefficient of thermal expansion that is compatible with metal or ceramic substrates. The composition comprises specific percentages of various materials, including 40 to 65 percent by weight of SiO2, along with several other key components such as Al2O3, Na2O, K2O, and CaO.

Career Highlights: Mary J. Daub has dedicated her career to advancing the field of dental materials. Her inventiveness and keen understanding of materials science have led to significant contributions that improve the quality of dental procedures. The innovation she brings forth not only reflects her expertise but also her commitment to enhancing patient care through better dental solutions.

Collaborations: Throughout her career, Mary has collaborated with other professionals in her field. Notable colleagues include Carolyn M. Kramer and John F. McLaughlin, with whom she has likely exchanged ideas and innovations that foster a collaborative environment conducive to research and development.

Conclusion: Mary J. Daub’s contributions to the field of dental prosthetics through her patented low-fusing temperature porcelain compositions demonstrate the impact of innovation in healthcare. Her work exemplifies how inventors like her can significantly advance technology and improve patient outcomes in the dental industry. Through her dedication and collaboration with peers, she continues to inspire future innovations in dental materials.

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