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IperionX Awarded Up to US$6.6M by OSW-SWIB to Scale U.S. Titanium Plate for Defense Applications

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IperionX (NASDAQ: IPX, ASX: IPX) was awarded up to US$6.6M by the U.S. Office of the Secretary of War – Submarine Workforce and Industrial Base (OSW-SWIB) to scale domestic production of ballistic-grade titanium plate and large-format military components at its Virginia Titanium Manufacturing Campus.

The program has two phases: US$0.2M for scoping and test work, then a potential US$6.4M for scaling and capital equipment within two years. IperionX will use its HAMR™, HSPT™ and THRM™ technologies and collaborate with Texas A&M’s BCDC and the U.S. Army ARL. The company also received a prototype purchase order for JLTV titanium fasteners.

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Positive

  • Up to US$6.6M OSW-SWIB award to scale U.S. titanium plate
  • Phase 2 funding of US$6.4M earmarked for capital equipment in Virginia
  • Two-year funded program to expand large-format military titanium component capacity
  • Collaboration with BCDC and U.S. Army ARL for testing and validation
  • Supports powder-to-plate titanium platform using HAMR™, HSPT™ and THRM™ processes

Negative

  • Only US$0.2M is committed initially; US$6.4M depends on Phase 1 success
  • JLTV titanium fastener prototype order is stated as not financially material

News Market Reaction – IPX

-2.69%
4 alerts
-2.69% Session close to close
$1.04B Market Cap
0.1x Rel. Volume

In the Jul 1 session, IPX declined 2.69%, reflecting a moderate negative market reaction. Our momentum scanner triggered 4 alerts that day, indicating moderate trading interest and price volatility.

Data tracked by StockTitan Argus on the day of publication.

Market Context

This announcement strengthens IperionX’s U.S. defense positioning with up to US$6.6M for titanium pl...
Analysis

This announcement strengthens IperionX’s U.S. defense positioning with up to US$6.6M for titanium plate scale-up over 2 years, while recent history shows meaningful reactions to defense and capacity updates. Execution on technology scale-up remains a key watchpoint.

Key Figures

OSW-SWIB award (max): US$6.6M Phase 1 funding: US$0.2M Phase 2 funding: US$6.4M +1 more
4 metrics
OSW-SWIB award (max) US$6.6M Total potential DoW OSW-SWIB funding for titanium plate and components
Phase 1 funding US$0.2M Initial scoping and test work under OSW-SWIB program
Phase 2 funding US$6.4M Capital equipment and capacity scale-up at Titanium Manufacturing Campus
Program duration 2 years Scheduled completion time for Phase 1 and Phase 2 of OSW-SWIB project

Historical Context

5 past events · Latest: Jun 15 (Neutral)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jun 15 Asset acquisition Neutral -3.5% Cash acquisition of Covia Camden mineral and infrastructure assets near Titan Project.
Jun 10 DFS presentation Neutral -5.1% Release of Titan Project DFS presentation outlining critical minerals supply ambitions.
Jun 04 Feasibility study Neutral +1.0% Publication of Titan DFS with modeled NPV, IRR and capital requirements.
Jun 01 Defense testing update Neutral +7.8% U.S. Army testing showing titanium fasteners match or beat Grade 8 steel benchmarks.
May 21 Capacity expansion Neutral +4.2% Commissioning of a powder metallurgy press tripling titanium component capacity.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Over the last five news events, IPX has typically posted single‑digit percentage moves, with a mix of gains and declines around project and defense updates.

Key Terms

ballistic-grade titanium plate, vacuum melting, titanium sponge, powder-to-plate, +1 more
5 terms
ballistic-grade titanium plate technical
"to scale production of high-performance titanium alloy products, including ballistic-grade titanium plate, for land"
A ballistic-grade titanium plate is a thick, high-strength titanium alloy manufactured and tested to absorb or deflect bullets, shrapnel and explosive fragments, acting like a rigid metal shield for vehicles, buildings or body armor. Investors care because producing certified armor-grade metal ties a company to defense, security and aerospace contracts, commands premium pricing, and depends on specialized manufacturing, supply chains and government approvals that can materially affect revenues and margins.
vacuum melting technical
"The process typically involves sponge production, vacuum melting and remelting, ingot or slab casting"
Vacuum melting is a manufacturing process that melts metals or metal mixtures inside a sealed, low-pressure chamber to remove gases and impurities and produce cleaner, more consistent material. Like cooking in a sealed pot to keep out steam and contaminants, it yields higher-quality metal used in critical products; investors care because it improves product performance and regulatory compliance but adds cost, capital intensity and potential supply constraints that affect profitability and competitive position.
titanium sponge technical
"provide an alternative pathway that has the potential to reduce the U.S. dependency on imported titanium sponge."
A porous, sponge-like form of titanium metal produced as the primary raw ingredient used to make finished titanium metal and alloys. Think of it as the flour a bakery needs: manufacturers melt, refine and shape titanium sponge into parts for aircraft, medical implants and industrial equipment, so shortages, price swings or trade limits in sponge supply can directly affect makers’ costs, production and profitability—information investors monitor closely.
powder-to-plate technical
"Together, these technologies support IperionX’s powder-to-plate titanium manufacturing platform, which is designed"
A powder-to-plate process turns raw active powder materials into finished electrode plates used in batteries by mixing the powder into a paste, spreading it onto metal foil, and drying and compressing it into a uniform sheet. For investors, this step is where raw material quality, manufacturing efficiency and yield directly affect production cost, product performance and scaling speed—think of it like turning loose flour into evenly baked slices of bread, where consistency and speed determine profitability and competitive advantage.
metallurgical technical
"The project is a systematic metallurgical study to demonstrate how THRM/HSPT microstructural engineering"
Metallurgical describes the processes and techniques used to extract, separate, refine and test metals from ore or recycled material, including crushing, melting, chemical separation and quality assays. For investors, metallurgical performance determines how much saleable metal a project yields, how costly and risky production will be, and whether a mine or plant can meet product and environmental standards—like the recipe and kitchen that turn raw ingredients into a marketable product.

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Funding supports domestic production of ballistic-grade titanium plate and large-format military titanium components at IperionX’s Titanium Manufacturing Campus

  • IperionX awarded up to US$6.6 million by the Office of the Secretary of War – Submarine Workforce and Industrial Base program (OSW-SWIB)
  • The award forms part of a larger, multi-organization program to scale production of high-performance titanium alloy products, including ballistic-grade titanium plate, for land and maritime defense platforms
  • Funding will support expanded manufacturing capability for large-format military titanium components at IperionX’s Titanium Manufacturing Campus in Virginia, strengthening U.S. capacity for mission-critical titanium products and critical-material supply chains
  • IperionX will collaborate with the George H. W. Bush Combat Development Complex (BCDC) and the U.S. Army Combat Capabilities Development Command (DEVCOM) Army Research Laboratory (ARL) to accelerate product scale-up, validation, and transition pathways for defense and strategic industrial applications
  • Alongside the OSW-SWIB award, IperionX has received an additional purchase order from the U.S. Army Ground Vehicle Systems Center to manufacture a range of titanium fasteners for the JLTV in support of U.S. Army and Marine Corps operational requirements

SOUTH BOSTON, Va., July 01, 2026 (GLOBE NEWSWIRE) -- IperionX Limited (IperionX) (NASDAQ: IPX, ASX: IPX) has been awarded up to US$6.6 million under a U.S. Department of War (DoW) program, funded by the Office of the Secretary of War Submarine Workforce and Industrial Base, or OSW-SWIB.

The award forms part of a larger program to scale domestic production of high-performance titanium alloy products, including ballistic-grade titanium plate, for maritime and land defense platforms.

The multi-organization defense program will focus on titanium mill products and components for platforms requiring exceptional strength-to-weight performance, corrosion resistance, durability, ballistic-impact tolerance, and shock survivability. These requirements represent some of the most demanding performance standards in advanced defense materials, especially for applications exposed to harsh operating environments, high-impact loads, and extended service-life demands.

Funding will support capital equipment at IperionX’s Titanium Manufacturing Campus in Virginia, expanding manufacturing capabilities for large-format titanium components and strengthening U.S. capacity for mission-critical titanium products. The program will be completed in two phases with Phase 1 granting US$0.2 million for project scoping and test work. Upon successful completion, IperionX is expected to receive a further US$6.4 million to scale manufacturing capacity and purchase capital equipment.

The program directly supports IperionX’s strategy to establish a secure, low-cost and resilient American titanium manufacturing platform for defense and advanced industrial customers.

Conventional titanium plate production is technically complex, capital- and energy-intensive, and often characterized by low yields. The process typically involves sponge production, vacuum melting and remelting, ingot or slab casting, breakdown forging, hot rolling, repeated annealing, and final surface conditioning. Each of these steps can contribute to extended lead times, elevated production costs, material yield losses, and supply-chain constraints.

IperionX’s patented titanium technologies are designed to simplify and shorten this production route. The Company’s proprietary HAMR™ process can produce low-cost titanium powder from titanium minerals or recycled titanium, while its HSPT™ and THRM™ technologies deliver high-performance, wrought-like titanium properties without reliance on the full conventional melt-remelt-forge pathway.

Together, these technologies support IperionX’s powder-to-plate titanium manufacturing platform, which is designed to reduce process steps, lower capital intensity, reduce energy intensity, improve material utilization and strengthen domestic supply-chain resilience for strategic titanium products.

Through this program, IperionX will produce and evaluate high-performance titanium alloy products for applications where titanium can provide lightweight alternatives to steel, including armor precursor plate, hatches, covers, brackets, structural components and maritime systems.

In maritime applications, titanium’s high strength, durability and corrosion resistance can support improved readiness, reduced maintenance and longer service life. Across land defense platforms, lower component weight can support improved mobility, payload capacity, fuel efficiency and survivability.

IperionX will collaborate with the George H.W. Bush Combat Development Complex, an organization within The Texas A&M University System (TAMUS), and the U.S. Army Combat Capabilities Development Command Army Research Laboratory. The collaboration is expected to support material testing, ballistic and shock-survival evaluation, product validation and transition into defense and strategic U.S. industrial applications.

The project is a systematic metallurgical study to demonstrate how THRM/HSPT microstructural engineering can be used to achieve ballistic performance. This project complements separately DoW-funded IperionX programs for powder-to-plate production. Together these DoW-funded activities provide an alternative pathway that has the potential to reduce the U.S. dependency on imported titanium sponge.

Joint Light Tactical Vehicle (JLTV) fastener prototype order

Alongside the OSW-SWIB award, IperionX has received a purchase order from the U.S. Army Ground Vehicle Systems Center to produce a range of prototype titanium fasteners for the JLTV and associated trailer – known as the “workhorse” of the Marine Corps’ ground tactical vehicle fleet – to support U.S. Army and Marine Corps operational requirements.

The JLTV is a U.S. military light tactical vehicle, originally built by Oshkosh Defense, designed to replace many Humvees by providing greater protection, mobility, payload capacity, and networked mission flexibility for combat and support operations.

While the value of the initial purchase order is not considered material, a successful prototyping program has the potential to progress into an accelerated roll-out program across a large number of ground vehicles, providing lightweight, strong and corrosion resistant titanium components for the U.S. warfighter.

IperionX Senior Adviser U.S. Army Lieutenant General Ross Coffman U.S. Army (Retired) said:

“During my time as Deputy Commanding General of Army Futures Command, I enjoyed my collaboration with BCDC, and I saw firsthand the importance of a secure U.S. low-cost titanium supply chain for national security.

The Army has a pressing need to reduce the weight of our ground vehicle platforms to maintain combat effectiveness. The benefits of titanium across all defense mobility platforms, including robotics, are well known and I’m proud to be on this mission with IperionX.”

IperionX CEO Taso Arima said:

“This award is an important validation of IperionX’s strategy to scale high-performance titanium manufacturing capacity in the United States. By combining lower-cost titanium feedstocks with our patented HAMR™, HSPT™ and THRM™ technologies, we are developing a more efficient domestic manufacturing platform for high-performance titanium plate and components.

Our objective is to shorten the conventional titanium production chain, reduce supply-chain complexity and build a more resilient, lower-cost U.S. titanium supply chain for defense, aerospace and advanced manufacturing customers.

In addition to the award, the new prototype order for titanium fasteners for the JLTV is a further signal of the important role that is developing for IperionX in supporting the U.S. defense industrial base.”

APPENDIX

Award details

IperionX has been awarded an initial $0.2 million in funding under the OSW Submarine Workforce and Industrial Base Program for project scoping and test work (Phase 1). Upon, and subject to, successful completion of Phase 1, IperionX will be awarded a further $6.4 million to scale process technology and purchase capital equipment to be installed at IperionX’s Titanium Manufacturing Campus (Phase 2). Phase1 and Phase 2 of the project are scheduled to be complete within two years.

About THRM™ and HSPT™

IperionX’s patented THRM™ and HSPT™ processes use hydrogen-enabled thermodynamics and powder-metallurgy processing to engineer wrought-like microstructures and mechanical properties in titanium alloys. These technologies reduce processing complexity and limit reliance on conventional high-cost forging and extensive thermo-mechanical work, enabling a faster and lower-cost route to advanced titanium components.

IperionX’s leading R&D team includes THRM™ and HSPT™ co-inventor Dr. James Paramore, who joined the Company after previously serving at both the U.S. Army DEVCOM ARL and BCDC.

Titanium for U.S. Defense Industrial Base

U.S. Department of War’s SWIB program reflects the strategic priority of rebuilding domestic industrial capability in critical defense materials.

Why titanium matters

  • Defense platforms require titanium plate, sheet and fabricated components where weight, durability, corrosion resistance and strength matter most.
  • In land defense systems, titanium plate supports armor precursor plate, hatches, covers, brackets and structural components where lower mass can improve mobility, payload, fuel efficiency and survivability.
  • In maritime defense platforms, titanium’s strength, durability and corrosion resistance can reduce maintenance, extend service life and improve readiness.

Why incumbent production is difficult

  • Conventional wrought titanium plate typically requires sponge production, vacuum melting and remelting, ingot or slab casting, breakdown forging, hot rolling, repeated annealing and final surface conditioning.
  • Titanium’s high reactivity requires tight process control, multiple high-temperature steps and large specialized equipment, driving high capital intensity, long lead times and significant energy use.
  • As plate thickness falls, manufacturing costs compound. Repeated rolling and annealing reduce throughput, while alpha-case removal through grinding, pickling or chemical milling lowers product yield.

IperionX’s powder-to-plate manufacturing platform

  • HAMR™ produces low-cost titanium powder from titanium minerals or recycled titanium, and HSPT™ + THRM™ deliver wrought-like titanium properties without the full conventional melt-remelt-forge pathway
  • Together, these technologies support a powder-to-plate manufacturing platform with fewer major process steps, lower capital intensity, lower energy consumption, improved material utilization and stronger domestic supply-chain resilience

About IperionX

IperionX is a leading American titanium metal and critical materials company – using patented metal technologies to produce high performance titanium alloys, from titanium minerals or scrap titanium, at lower energy, cost and carbon emissions.

Our Titan critical minerals project is the largest JORC-compliant mineral resource of titanium, rare earth and zircon minerals sands in the United States.

IperionX’s titanium metal and critical minerals are essential for advanced U.S. industries including space, aerospace, defense, consumer electronics, hydrogen, automotive and additive manufacturing.

Forward Looking Statements

Information included in this release constitutes forward-looking statements. Often, but not always, forward looking statements can generally be identified by the use of forward-looking words such as “may”, “will”, “expect”, “intend”, “plan”, “estimate”, “anticipate”, “continue”, and “guidance”, or other similar words and may include, without limitation, statements regarding plans, strategies and objectives of management, anticipated production or construction commencement dates and expected costs or production outputs.

Forward looking statements inherently involve known and unknown risks, uncertainties and other factors that may cause the Company’s actual results, performance, and achievements to differ materially from any forecast future results, performance, or achievements. Relevant factors may include, but are not limited to, changes in commodity prices, foreign exchange fluctuations and general economic conditions, increased costs and demand for production inputs, the speculative nature of exploration and project development, including the risks of obtaining necessary licenses and permits and diminishing quantities or grades of mineralization, the Company’s ability to comply with the relevant contractual terms to access the technologies, commercially scale its closed-loop titanium production processes, or protect its intellectual property rights, political and social risks, changes to the regulatory framework within which the Company operates or may in the future operate, environmental conditions including extreme weather conditions, recruitment and retention of personnel, industrial relations issues and litigation.

Forward looking statements are based on the Company and its management’s good faith assumptions relating to the financial, market, regulatory and other relevant environments that will exist and affect the Company’s business and operations in the future. The Company does not give any assurance that the assumptions on which forward looking statements are based will prove to be correct, or that the Company’s business or operations will not be affected in any material manner by these or other factors not foreseen or foreseeable by the Company or management or beyond the Company’s control.

Although the Company attempts and has attempted to identify factors that would cause actual actions, events or results to differ materially from those disclosed in forward looking statements, there may be other factors that could cause actual results, performance, achievements, or events not to be as anticipated, estimated or intended, and many events are beyond the reasonable control of the Company. Accordingly, readers are cautioned not to place undue reliance on forward looking statements. Forward looking statements in these materials speak only at the date of issue. Subject to any continuing obligations under applicable law or any relevant stock exchange listing rules, in providing this information the Company does not undertake any obligation to publicly update or revise any of the forward-looking statements or to advise of any change in events, conditions or circumstances on which any such statement is based.

Contacts

Anastasios (Taso) Arima, Founder and CEO
Toby Symonds, President
Dominic Allen, Chief Commercial Officer

Investors: investorrelations@iperionx.com
Media: media@iperionx.com

+1 980 237 8900
www.iperionx.com


FAQ

What did IperionX (NASDAQ: IPX) announce on July 1, 2026 about OSW-SWIB funding?

IperionX announced up to US$6.6M in funding from OSW-SWIB to scale U.S. titanium production. According to IperionX, the award backs ballistic-grade titanium plate and large-format military components at its Virginia Titanium Manufacturing Campus over a two-year program.

How is the US$6.6M OSW-SWIB award to IperionX (IPX) structured?

The award is split into two phases. According to IperionX, Phase 1 provides US$0.2M for scoping and test work, while successful completion is expected to unlock a further US$6.4M to scale titanium manufacturing and purchase capital equipment in Virginia.

How will the OSW-SWIB funding impact IperionX’s U.S. titanium plate capacity?

The funding is expected to expand large-format titanium component manufacturing for defense platforms. According to IperionX, capital equipment at its Virginia Titanium Manufacturing Campus should strengthen U.S. capacity for mission-critical titanium products and support its powder-to-plate titanium manufacturing platform.

What technologies will IperionX (IPX) use to deliver ballistic-grade titanium plate?

IperionX plans to use its proprietary HAMR™, HSPT™ and THRM™ technologies. According to IperionX, HAMR™ produces low-cost titanium powder, while HSPT™ and THRM™ enable wrought-like properties without full melt-remelt-forge routes, supporting a shorter powder-to-plate production chain.

Who are IperionX’s partners in the OSW-SWIB titanium program?

IperionX will collaborate with the George H. W. Bush Combat Development Complex and the U.S. Army Combat Capabilities Development Command Army Research Laboratory. According to IperionX, these partners will support material testing, ballistic and shock-survival evaluations, and product validation for defense applications.

What does the JLTV titanium fastener prototype order mean for IperionX (IPX) shareholders?

IperionX received a purchase order to produce prototype titanium fasteners for the JLTV and trailer. According to IperionX, the order is not currently material, but a successful prototyping program could lead to an accelerated rollout across a large number of ground vehicles.

When will IperionX complete the OSW-SWIB-funded titanium manufacturing program?

The two program phases are scheduled to finish within two years. According to IperionX, Phase 1 covers project scoping and test work, with Phase 2 focused on scaling process technology and installing capital equipment at the Virginia Titanium Manufacturing Campus.