Company Filing History:
Years Active: 2022-2024
Title: Carina Olsson: Innovator in Spinning Dope Composition Production
Introduction
Carina Olsson is a notable inventor based in Gothenburg, Sweden. She has made significant contributions to the field of material science, particularly in the production of spinning dope compositions. With a total of three patents to her name, her work is paving the way for advancements in this area.
Latest Patents
Carina's latest patents focus on methods and systems for the production of spinning dope compositions. One of her patents describes a method that involves a homogenization process, where a cellulosic pulp material is mixed in an alkali solution. This process requires a power density of at least 150 kW/m for the agitators used in homogenization. Following this, a dissolution step is performed, where the power density is maintained at a maximum of 75 kW/m. Importantly, the cellulosic pulp material is kept at a temperature of less than 0° C during both the homogenization and part of the dissolution process.
Another patent outlines a similar method and system for producing spinning dope compositions, emphasizing the importance of vigorous mixing and temperature control throughout the process. These innovations are crucial for enhancing the efficiency and quality of spinning dope production.
Career Highlights
Carina Olsson is currently associated with Treetotextile AB, where she continues to develop her innovative ideas. Her work has garnered attention in the industry, showcasing her expertise in material processing and production techniques.
Collaborations
Throughout her career, Carina has collaborated with talented individuals such as Bengt Hagström and Tobias Köhnke. These partnerships have contributed to her success and the advancement of her projects.
Conclusion
Carina Olsson is a pioneering inventor whose work in spinning dope composition production is making a significant impact in the field. Her innovative methods and systems are setting new standards for efficiency and quality in material science.