This inventor holds 1 USPTO granted patent. Top assignee: General Electric Company. Active years: 2001.
Company Filing History:
Years Active: 2001
Title: Ilse Schlosser: Innovator in Conductive Compositions
Introduction
Ilse Schlosser is a notable inventor based in Spijkenisse, Netherlands. She has made significant contributions to the field of conductive materials, particularly through her innovative patent. As a woman in a predominantly male industry, her achievements stand out and inspire future generations of female inventors.
Latest Patents
Ilse Schlosser holds a patent for "Conductive compositions with compositionally controlled bulk resistivity." This invention relates to a method of creating a conductive thermoplastic composition that includes at least one dispersed phase polymer combined with a continuous phase polymer and a conductivity imparting agent. The unique aspect of her invention is that the bulk resistivity of the composition is influenced by the particle size of the dispersed phase within the continuous phase. The thermoplastic composition is designed to include a compatibilized blend of polyphenylene ether resin, polyamide resin, and various conductivity imparting agents, along with optional additives such as impact modifiers, stabilizers, antioxidants, lubricants, and fillers. This innovative approach enhances the performance and applicability of conductive materials in various industries.
Career Highlights
Ilse Schlosser is associated with General Electric Company, where she has been able to apply her expertise in materials science. Her work has contributed to advancements in the development of conductive compositions, which are essential in numerous applications, including electronics and automotive industries.
Collaborations
Throughout her career, Ilse has collaborated with esteemed colleagues such as Raja Dharmarajan and Robert Hossan. These collaborations have allowed her to expand her research and contribute to innovative projects within her field.
Conclusion
Ilse Schlosser's contributions to the field of conductive compositions exemplify her innovative spirit and dedication to advancing technology. Her patent highlights the importance of material properties in engineering applications, and her work continues to influence the industry.
