This inventor holds 7 USPTO granted patents and 6 EPO patents. Top assignees: Andritz Asselin-Thibeau, Other. Active years: 2022-2024.
Location History:
- Montville, FR (2022 - 2024)
- Elbeuf, FR (2024)
Company Filing History:
Years Active: 2022-2024
Title: Frédéric Demange: Innovator in Needle Loom Technology
Introduction
Frédéric Demange is a notable inventor based in Montville, France. He has made significant contributions to the field of textile machinery, particularly in needle loom technology. With a total of 7 patents to his name, Demange has developed innovative methods and machines that enhance the efficiency of fiber consolidation.
Latest Patents
Demange's latest patents include a needle loom designed for consolidating a web or lap of fibers, especially nonwoven materials. One of his key inventions is a method for operating a needle loom that involves a unique back-and-forth movement of the needle board. This method allows for improved speed profiles during the operation, optimizing the consolidation process. Another significant patent is for a needling machine that features multi-needle boards, which are designed to consolidate a web of fibers effectively. This machine incorporates a series of needle-field boards, each with distinct needle patterns that enhance the needling process.
Career Highlights
Throughout his career, Frédéric Demange has worked with various companies, including Andritz Asselin-Thibeau. His expertise in needle loom technology has positioned him as a key player in the textile machinery industry. His innovative designs and methods have contributed to advancements in the efficiency and effectiveness of fiber processing.
Collaborations
Demange has collaborated with professionals in the field, including Eric Potdevin. These partnerships have fostered the development of cutting-edge technologies in needle loom operations.
Conclusion
Frédéric Demange's contributions to needle loom technology have significantly impacted the textile industry. His innovative patents and collaborative efforts continue to drive advancements in fiber consolidation methods.