Company Filing History:
Years Active: 2002
Title: Innovations by Jari Aarilä in Polymer Composition for Pipes
Introduction
Jari Aarilä is a notable inventor based in Borgå, Finland. He has made significant contributions to the field of polymer technology, particularly in the development of advanced materials for piping systems. His innovative work has led to the creation of a unique polymer composition that enhances the performance and durability of pipes.
Latest Patents
Jari Aarilä holds a patent for a multimodal polymer composition specifically designed for pipes. This composition features a multimodal polyethylene with a density ranging from 0.930 to 0.965 g/cm³. The polymer exhibits a viscosity at a shear stress of 747 Pa of at least 650 Pa.s. The composition includes both a low molecular weight (LMW) ethylene homopolymer fraction and a high molecular weight (HMW) ethylene copolymer fraction. The HMW fraction has a weight ratio of the LMW fraction to the HMW fraction of (35-55):(65-45). This innovative polymer composition allows for pipes that can withstand a stress of 8.0 MPa gauge for 50 years at 20°C, showcasing its exceptional durability.
Career Highlights
Jari Aarilä is associated with Borealis Technology Oy, where he has been instrumental in advancing polymer technology. His work has not only contributed to the company's portfolio but has also set new standards in the industry for pipe materials. His expertise in polymer science has made him a valuable asset to his team and the broader engineering community.
Collaborations
Jari has collaborated with several professionals in his field, including Mats Bäckman and Eeva-Leena Heino. These collaborations have fostered innovation and have led to the successful development of new materials and technologies.
Conclusion
Jari Aarilä's contributions to polymer technology, particularly in the development of advanced pipe materials, highlight his role as an influential inventor. His patented innovations continue to impact the industry positively, ensuring the longevity and reliability of piping systems.