Location History:
- Moses Lake, WA (US) (2006)
- Soap Lake, WA (US) (2011 - 2017)
Company Filing History:
Years Active: 2006-2017
Title: Michael V Spangler: Innovator in Fluidized Bed Reactor Technology
Introduction
Michael V Spangler is a prominent inventor based in Soap Lake, WA (US), known for his significant contributions to the field of fluidized bed reactor technology. With a total of 11 patents to his name, Spangler has made remarkable advancements that enhance the efficiency and effectiveness of industrial processes.
Latest Patents
Among his latest patents is the "Non-contaminating bonding material for segmented silicon carbide liner in a fluidized bed reactor." This invention discloses segmented silicon carbide liners designed for the production of polysilicon-coated granulate material. It also includes methods for making and utilizing these liners, along with non-contaminating bonding materials for joining silicon carbide segments. Another notable patent is the "Probe assembly for a fluid bed reactor," which features a probe assembly that includes a fluid bed reactor member and a pressure tap. This innovative design reduces the need for support rods and rings within the reactor, thereby minimizing component fouling and product contamination.
Career Highlights
Michael V Spangler is currently employed at Rec Silicon Inc., where he continues to develop cutting-edge technologies that push the boundaries of fluidized bed reactor applications. His work has been instrumental in improving the performance and reliability of these systems in various industrial settings.
Collaborations
Throughout his career, Spangler has collaborated with notable colleagues, including Matthew J Miller and E Wayne Osborne. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas.
Conclusion
Michael V Spangler's contributions to fluidized bed reactor technology exemplify his dedication to innovation and excellence. His patents not only advance the field but also pave the way for future developments in industrial processes.