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Ocean Battlespace Sensing
The Ocean Battlespace Sensing Department explores science and technology in the ocean battlespace environment.
Unmanned Capabilities Front and Center During Naval Exercise
During a visit to San Diego for the U.S. Pacific Fleet-led Unmanned Integrated Battle Problem 21, Chief of Naval Research Rear Adm. Lorin Selby said America’s growing focus on autonomous capabilities is showing impressive results.
Navy Strengthens Defense Industrial Base with New Small Business Funding Opportunity
The Department of the Navy's agile Small Business Innovation Research (SBIR) and Small Business Technology Transfer (STTR) programs announced today $30 million in rapid-funding opportunities through a new Broad Agency Announcement, which is a request for scientific or research proposals, through May 28.
Recruiting Robots: DoD Summit Promotes Robotics in Maintenance and Repair
ONR recently participated in the 2020 JROBOT Summit, which discussed bringing more robotics systems into sustainment.
Corrosion Science and Corrosion Control Technologies
The Office of Naval Research's Corrosion Science and Corrosion Control Technologies program has a primary focus to create a science-based understanding of corrosion through damage evolution mechanisms, develop corrosion-informed materials concepts, and evolve surface protection and modification sciences.
Code 33 Undersea Systems Focus Area
The Undersea Systems Focus Area addresses innovative affordable, persistent and stealthy undersea systems that leverage the asymmetric U.S. Navy advantage afforded by subsurface operations.
Farewell, FLIP! Renowned Navy-Owned Research Platform Retired after 60 Years of Service
A dynamic era in naval oceanography recently ended as the iconic Floating Instrument Platform — popularly known as FLIP — was officially retired from service. Built in 1962 with funding from the Office of Naval Research (ONR), FLIP helped generations of scientists and oceanographers better understand the mysteries of the sea, including internal waves, air-sea interaction and long-range sound propagation. Sadly, age and exorbitant life-extension costs resulted in the platform being disestablished. On Aug. 3, a solemn gathering of well-wishers watched as FLIP was towed, at sunset, to a dismantling and recycling facility. Last month, a formal good-bye ceremony was hosted by the Marine Physical Laboratory at the University of California, San Diego (UCSD). Though retired, FLIP will live on at Scripps. One of its booms (crane-like arms for suspending instruments) will be installed on the Scripps research pier in La Jolla and used to deploy instruments. Also, artifacts from the platform will be displayed in a permanent exhibit at Scripps’ Birch Aquarium.
ONR-Sponsored Research Could Potentially Lead to Millions of New Materials
Extraordinarily rugged with a melting temperature of several thousand degrees Fahrenheit. That describes the results of research into new ceramic materials sponsored by the Office of Naval Research (ONR) and recently published in the Journal Nature. A research team, led by ONR’s Principal Investigator, Dr. Stefano Curtarolo, Duke University, developed a computational method for creating new types of ceramics using transition metals – carbonitrides or borides – through a process called Disordered Enthalpy-Entropy Descriptor (DEED). The applications are endless, said Dr. Eric Wuchina, a research materials engineer who was the program officer with ONR’s Sea Warfare and Weapons department when Curtarolo’s research team was awarded the Multidisciplinary University Research Initiative (MURI). According to Wuchina, the variety of new compositions could create potentially millions of new materials.
Down Under Demo: ONR Touts Additive Manufacturing Tech at Australian Event
The Office of Naval Research (ONR) — and its international arm, ONR Global — participated in the recent Autonomous Warrior 2023 (AW23) exercise, located at HMAS Creswell in Jervis Bay, Australia.
Electrochemical Materials
The Office of Naval Research's Electrochemical Materials program is focused on developing a fundamental understanding of charge (electron and ion) storage, transport and transfer mechanisms, and applying that knowledge to inform the development of materials, materials architectures and devices that address Navy and Marine Corps application power and energy needs.