This inventor holds 1 USPTO granted patent. Top assignee: Schott Glas. Active years: 2002.
Company Filing History:
Years Active: 2002
Title: The Innovative Contributions of Josef Molz
Introduction
Josef Molz is a notable inventor based in Zwiesel, Germany. He has made significant contributions to the field of glass manufacturing, particularly through his innovative methods for producing hollow glassware. His work has not only advanced the technology in this area but has also improved the efficiency of glass production processes.
Latest Patents
Josef Molz holds a patent for a "Method for producing glass goblets, tumblers and similar hollow glasses, and corresponding device for carrying out said method." This patent describes a device and process for forming hollow glassware, which includes producing solid glass blanks in a manufacturing line, storing the blanks, and feeding them into a manufacturing line for forming hollow glassware. The process involves preheating the blanks, supplying them to a heating stage, and then blow molding the glass gobs supported by a bottom lifter in a blow mold. This innovative approach has streamlined the production of glassware, making it more efficient and effective.
Career Highlights
Josef Molz is associated with Schott Glas, a leading company in the glass manufacturing industry. His work at Schott Glas has allowed him to apply his inventive ideas in a practical setting, contributing to the company's reputation for quality and innovation in glass products.
Collaborations
Throughout his career, Josef has collaborated with talented individuals such as Alois Gruber and Kurt Heller. These collaborations have fostered a creative environment that encourages the development of new ideas and technologies in glass manufacturing.
Conclusion
Josef Molz's contributions to the glass manufacturing industry through his innovative methods and patents have made a lasting impact. His work continues to influence the production of hollow glassware, showcasing the importance of innovation in manufacturing processes.
