Wilmington, NC, United States of America

Lorne Eugene Nix


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2019-2022

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2 patents (USPTO):Explore Patents

Title: Lorne Eugene Nix: Innovator in Reactor Pressure Vessel Technology

Introduction

Lorne Eugene Nix is a notable inventor based in Wilmington, NC (US). He has made significant contributions to the field of nuclear energy through his innovative designs and patents. With a total of 2 patents, Nix has demonstrated his expertise and commitment to advancing technology in reactor pressure vessels.

Latest Patents

Nix's latest patents include a reactor pressure vessel featuring a pipe restraint device. This invention encompasses a reactor pressure vessel body, a nozzle structure connected to the vessel body, and a conduit structure linked to the nozzle. The restraint device is designed to secure a portion of the conduit structure, incorporating collar parts that correspond to the periphery of the conduit. The design also includes brackets attached to the nozzle structure and rods that connect the brackets to the collar parts. This innovative approach ensures the stability and safety of the reactor pressure vessel.

Career Highlights

Lorne Eugene Nix is currently employed at GE-Hitachi Nuclear Energy Americas LLC, where he continues to work on cutting-edge technologies in the nuclear energy sector. His role at the company allows him to apply his inventive skills to real-world applications, contributing to the safety and efficiency of nuclear power generation.

Collaborations

Nix has collaborated with several professionals in his field, including Joel Patrick Melito and Gerald Alan Deaver. These collaborations have fostered a creative environment that encourages innovation and the development of new technologies.

Conclusion

Lorne Eugene Nix is a distinguished inventor whose work in reactor pressure vessel technology has made a significant impact on the nuclear energy industry. His patents reflect his dedication to improving safety and efficiency in this critical field.

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