Location History:
- Gladstone, MO (US) (2005)
- Knoxville, TN (US) (2011)
Company Filing History:
Years Active: 2005-2011
Title: Innovations by John K Schaefer
Introduction
John K Schaefer is a notable inventor based in Knoxville, TN (US). He has made significant contributions to the field of fluid control and fire suppression systems. With a total of 2 patents, Schaefer's work reflects his commitment to enhancing safety and efficiency in various applications.
Latest Patents
Schaefer's latest patents include an impulse actuated valve and a retrofitted non-Halon fire suppression system. The impulse actuated valve is designed to control the flow of pressurized fluid from a confined area. It operates to relieve overpressure conditions while allowing fluid flow in response to a pressure relief command. This innovative valve features a valve body with a fluid passage, a reverse buckling rupture disc, and a selectively actuatable device that disrupts the disc to permit fluid flow.
The retrofitted non-Halon fire suppression system provides a method for converting existing Halon-based systems by substituting HFC 125 for Halon. This method allows for the retrofitting of fire suppression systems without changing the existing distribution piping. The system is designed to meet fire extinguishing requirements for Class A and Class B fires, ensuring safety and compliance.
Career Highlights
John K Schaefer is currently associated with Fike Corporation, where he continues to innovate and develop solutions in fire safety and fluid control. His work has been instrumental in advancing technologies that prioritize safety and efficiency.
Collaborations
Schaefer has collaborated with notable coworkers such as Bradford T Stilwell and Bon F Shaw, contributing to a dynamic team focused on innovation and problem-solving.
Conclusion
John K Schaefer's contributions to the fields of fluid control and fire suppression systems demonstrate his expertise and dedication to innovation. His patents reflect a commitment to improving safety standards and efficiency in critical applications.