Meissen, Germany

Guenther Dineiger


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2010-2014

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2 patents (USPTO):Explore Patents

Title: Guenther Dineiger: Innovator in Organopolysiloxane Technologies

Introduction

Guenther Dineiger is a notable inventor based in Meissen, Germany. He has made significant contributions to the field of organopolysiloxane technologies, holding a total of 2 patents. His work focuses on innovative methods for metering and producing crosslinkable compositions.

Latest Patents

Dineiger's latest patents include a method for metering compounds based on organopolysiloxanes. This method involves metering viscous compositions discontinuously into storage vessels from a stable volume container that is free of dead space. The calculated volume is determined by the mathematical product of adiabatic compressibility coefficients of the composition, the outlet pressure, and the volume of the container, which exceeds the metered volume. Another significant patent is for a process for producing crosslinkable compositions based on organopolysiloxanes. This process ensures that the organopolysiloxane compositions are stored in a unit with a storage capacity of at least 15 minutes of production capacity, maintaining an internal pressure of more than 1200 hPa during filling.

Career Highlights

Guenther Dineiger is associated with Wacker Chemie AG, a leading company in the chemical industry. His work at Wacker Chemie AG has allowed him to develop and refine his innovative techniques in organopolysiloxane applications.

Collaborations

Dineiger has collaborated with notable coworkers such as Peter Schoeley and Stephan Schulz. Their combined expertise has contributed to advancements in the field of organopolysiloxane technologies.

Conclusion

Guenther Dineiger's contributions to organopolysiloxane technologies through his patents and collaborations highlight his role as an influential inventor in the industry. His innovative methods continue to shape the future of chemical applications.

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