This inventor holds 1 USPTO granted patent. Top assignee: Diamond Innovations. Inc.. Active years: 2015.
Company Filing History:
Years Active: 2015
Title: Ray Phillip Conley: Innovator in Component Bonding Technology
Introduction
Ray Phillip Conley is an accomplished inventor based in Johnstown, Ohio. He is known for his innovative contributions to the field of component bonding technology. With a focus on ensuring axial and angular alignment between components, Conley's work has significant implications in various engineering applications.
Latest Patents
Conley holds a patent for a method of joining two components to ensure axial and angular alignment therebetween. This method involves bonding components, such as a tip and a shaft, which feature mutually facing carbide end surfaces. The tip is designed with circumferentially spaced flutes on its cylindrical outer periphery, while the shaft has a cylindrical outer periphery with multiple coolant holes extending through it. The bonding process utilizes gauge wires inserted into the coolant holes and associated flutes, positioning brazing material between the end surfaces. A water-soluble bond-blocking material is applied to the gauge wires to prevent brazing to the material. The brazing process is completed by heating the brazing material, ensuring alignment through the gauge wires, followed by the removal of the wires and dissolution of the bond-blocking material in water.
Career Highlights
Conley has made significant strides in his career, particularly through his work at Diamond Innovations, Inc. His expertise in bonding technologies has positioned him as a valuable asset in the engineering community.
Collaborations
Conley collaborates with Dwight Dyer, further enhancing the innovative capabilities within their field.
Conclusion
Ray Phillip Conley is a notable inventor whose work in component bonding technology has paved the way for advancements in engineering applications. His patent reflects a deep understanding of the complexities involved in ensuring precise alignment between components.
