Location History:
- Vigliano Biellese, IT (2017)
- Vigliano Blellese, IT (2019)
Company Filing History:
Years Active: 2017-2019
Title: Innovations by Galliano Boscolo
Introduction
Galliano Boscolo is an accomplished inventor based in Vigliano Blellese, Italy. He has made significant contributions to the field of nonwoven fabric production, holding 2 patents that showcase his innovative approaches. His work focuses on processes and apparatuses that enhance the efficiency and quality of fibrous materials.
Latest Patents
Boscolo's latest patents include a "Process and apparatus for producing a fibrous-containing and/or particle-containing nonwoven." This apparatus features a spinning unit with a spinning head and a movable forming surface. It is designed to spin a stream of polymeric filaments or fibers, which are deposited onto the forming surface. The apparatus also includes supplying means for blowing cooling gas and fibrous material into the channel, allowing for simultaneous cooling and transportation of materials. Another notable patent is for an "Apparatus for spinning fibres and producing a fibrous-containing nonwoven." This device is utilized for producing melt-blown fibers and incorporates a die head with multiple spinning orifices, along with means for extruding melted polymeric material.
Career Highlights
Throughout his career, Galliano Boscolo has worked with notable companies such as Boma Engineering Srl and Boma Engineering S.p.a. His experience in these organizations has contributed to his expertise in the field of nonwoven fabric technology.
Collaborations
Boscolo has collaborated with talented individuals, including Antonino Maltese and Remo Di Girolamo. These partnerships have likely enriched his work and led to further advancements in his inventions.
Conclusion
Galliano Boscolo's innovative contributions to the field of nonwoven fabric production demonstrate his expertise and commitment to advancing technology. His patents reflect a deep understanding of the processes involved in creating high-quality fibrous materials.