Location History:
- Treviso, IT (2021)
- Maserada Sul Piave, IT (2022 - 2023)
Company Filing History:
Years Active: 2021-2023
Title: Sandrine Dalbin: Innovator in Electrolytic Treatment Technologies
Introduction
Sandrine Dalbin is a prominent inventor based in Maserada sul Piave, Italy. She has made significant contributions to the field of electrolytic treatment technologies, particularly in the preparation of plastic parts for metallization. With a total of 3 patents to her name, her work showcases innovative methods that enhance the durability and functionality of materials.
Latest Patents
Dalbin's latest patents include an electrolytic treatment device designed for preparing plastic parts to be metallized. This invention features an anodic compartment that utilizes a non-chromium (VI) etching solution, which is separated by a membrane from a cathodic compartment containing an inorganic acid solution. The device employs a ternary or higher lead alloy anode, enhancing the efficiency of the treatment process. Additionally, she has developed a method for increasing the corrosion resistance of chrome-plated substrates. This method involves dipping a chrome-plated surface into an electrolyte containing trivalent chromium ions and applying a pulse reverse current to form a protective chromium oxide film.
Career Highlights
Throughout her career, Sandrine Dalbin has worked with notable companies such as Coventya S.p.a. and Coventya S.r.l. Her experience in these organizations has allowed her to refine her expertise in electrolytic treatments and contribute to advancements in the field.
Collaborations
Some of her notable coworkers include Giorgio Tesser and Diego Dal Zilio, who have collaborated with her on various projects, further enhancing the innovative landscape of electrolytic treatment technologies.
Conclusion
Sandrine Dalbin's contributions to the field of electrolytic treatment technologies reflect her dedication to innovation and excellence. Her patents not only advance the industry but also pave the way for future developments in material treatment processes.