This inventor holds 1 USPTO granted patent. Top assignee: Kimberly-Clark Corporation. Active years: 1979.
Company Filing History:
Years Active: 1979
Title: Joseph G. Bicho: Innovator in Tissue Formation Technology
Introduction
Joseph G. Bicho is a notable inventor based in Neenah, Wisconsin, recognized for his contributions to the field of tissue formation technology. He holds a patent for a unique process that enhances the quality and functionality of creped tissue products. His innovative approach has implications for the absorbent products industry, particularly in creating softer and bulkier tissue.
Latest Patents
Joseph G. Bicho's most significant patent is titled "Multiple layer formation process for creped tissue." This patent describes a process for directly forming a multiple layer web and creping such webs to produce absorbent, soft, and bulky creped tissue. The process results in a laminar fibrous formation with outer layers of strongly bonded fibers, separated by an intermediate central section of weakly bonded fibers. This innovative method allows for independent creping of the outer layers, enhancing the product's softness and bulk while simulating a two-ply tissue.
Career Highlights
Joseph G. Bicho is associated with Kimberly-Clark Corporation, a leading company in the production of consumer and professional paper products. His work has significantly contributed to the advancement of tissue technology, making it more efficient and effective for consumer use. His patent reflects his commitment to innovation and quality in the industry.
Collaborations
Throughout his career, Joseph has collaborated with notable colleagues, including Charles Everett Dunning and William D. Lloyd. These partnerships have fostered a collaborative environment that encourages the exchange of ideas and advancements in tissue technology.
Conclusion
Joseph G. Bicho's innovative contributions to the field of tissue formation technology exemplify the impact of dedicated inventors in enhancing product quality. His patented process not only improves the functionality of creped tissue but also sets a standard for future innovations in the industry.
