Skip to main navigation Skip to search Skip to main content

SBIR Phase I: Production of Low-Cost Ti Alloys by Direct Reduction and Alloying

Project: Research

Abstract & Details

Description

Award ID: 2051641

The broader impact of this Small Business Innovation Research (SBIR) Phase I project is to address the shortage or lack of the U.S.'s supply chain for primary titanium metal production, for which the U.S. relies on imports almost entirely, by developing new low-cost process technology for making titanium alloys. Titanium alloys are critical materials to the nation's aerospace, defense, transportation, energy, chemical, and biomedical industries. This project will enhance the competitiveness of the U.S. titanium manufacturing industry. Furthermore, low-cost titanium will expand its use in vehicles, contributing to reducing fuel (or power) consumption of vehicles and carbon emissions. Conventionally, titanium (Ti) alloys are made by melting pure Ti sponge with alloying additives using vacuum arc remelting (VAR). Ti sponge is made by the Kroll process, which is a multi-step process involving chlorination of titanium dioxide (TiO2) to form titanium tetrachloride (TiCl4), the reduction of TiCl4 by magnesium (Mg). The cost of Ti alloy ingot depends on the cost of Ti sponge and the melt-refining (e.g., VAR) process. Typically, Ti sponge accounts for more than 70% of the cost of Ti alloy ingot. The melt-refining process is also a significant cost contributor because Ti alloy ingot has to be melted for two or more times to achieve the required purity and compositional homogeneity. This project proposes to develop a low-cost melt-less process for the production of titanium alloys by direct reduction and alloying (DRA). If successful, the DRA process can reduce the cost of Ti mill products significantly. The product of the proposed process can be used for many applications, including as Ti alloy powder, or as feedstock for manufacturing Ti mill products, or as consolidated near-net-shape components. This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.

NSF Program Director: Ela Mirowski
StatusClosed
Effective start/end date06/15/2105/31/22

Funding

  • SBIR Phase I: $252,648.00

Active Fiscal Year

  • FY2022

Start Fiscal Year

  • FY2021

TIP Programs

  • SBIR Phase I

Small Business

  • Yes

Key Technology Areas

  • Robotics and Advanced Manufacturing
  • (confidence score: 100%)

Technology Foci

  • Advanced Manufacturing (excluding biomanufacturing and semiconductor manufacturing)
  • (confidence score: 99%)

Congressional District at Award

  • District n. 02 of Utah

Current Congressional District

  • District n. 02 of Utah

United States

  • Utah

Core Based Statistical Area (CBSA)

  • Salt Lake City-Murray, UT

County

  • County: Salt Lake, UT

Fingerprint

Explore the research topics touched on by this project. These labels are generated based on the underlying awards/grants. Together they form a unique fingerprint. Learn more about Elsevier's Fingerprint Engine here: https://beta.elsevier.com/products/elsevier-fingerprint-engine