
Radius Aerospace
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Location
Headquarters: Hot Springs Village, Arkansas, United States, North America
Region: Arkansas
Country: US
Continent: North America
About
Radius Aerospace is a leading aerospace fabricator with more than a half century of experience in forming, welding, machining, and processing aerospace fabrications and assemblies. Operating across six facilities in the United States and the United Kingdom, it serves commercial aviation, business jet, military, and industrial gas turbine markets with capabilities including titanium hot forming, superplastic forming, specialized alloy welding, hydroforming, and complex machining. The company emphasizes high-value, high-quality parts delivered on a timely basis through a skilled workforce and state-of-the-art manufacturing processes. Headquarters are in Hot Springs, Arkansas, with additional facilities in Phoenix, AZ; Shelbyville, IN; and Sheffield, UK.
Radius Aerospace manufactures structural components and assemblies for aviation, defense, and industrial applications. The company provides engineering, precision machining, and assembly services for commercial, military, and business jet markets. Its capabilities include titanium forming, welding, and complex machining across facilities in the US and UK.
2019
for_profit
active
Industries
Primary Industry: Manufacturing
Categories
Funding & Financials
Late Stage
unknown
private
Leadership
Technology Stack
Products
Formed Fabrications: Manufacturing of metal components shaped through various forming processes for aerospace applications.
Welded Fabrications: Production of metal assemblies joined by welding for aerospace structural and component applications.
Machined Fabrications: Precision machining of metal parts for aerospace components and assemblies.
Assemblies: Complex assembly of fabricated and machined aerospace components into finished structural units.
Titanium Hot Forming: Shaping titanium components through heating and forming processes for aerospace applications.
Super Plastic Forming: Forming aerospace components by deforming metals at elevated temperatures to achieve complex shapes.
Funding rounds
Acquired · (2019-04-22)