Technology
3D Printing Gases Market to Reach $166.9 Million, Globally, by 2033 at 10.3% CAGR: Allied Market Research
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1 year agoon
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The growing adoption of 3D printing technology across various industries is driving a significant increase in the demand for specialized gases, including nitrogen, oxygen, and argon. In sectors such as aerospace, automotive, healthcare, and consumer goods, 3D printing has revolutionized manufacturing by offering more efficient, customizable, and cost-effective production methods.
WILMINGTON, Del., March 17, 2025 /PRNewswire/ — Allied Market Research published a report, titled, “3D Printing Gases Market by Product (Argon, Nitrogen, Gas Mixtures), by Technology (Stereolithography, Laser Sintering, Poly-Jet Technology, Others), by End-Use (Design and Manufacturing, Healthcare, Consumer Products, Others): Global Opportunity Analysis and Industry Forecast, 2024-2033”. According to the report, the “3D printing gases market” was valued at $63.1 million in 2023, and is estimated to reach $166.9 million by 2033, growing at a CAGR of 10.3% from 2024 to 2033.
Exploring Growth & Innovation Opportunities
The rapid expansion of metal additive manufacturing is transforming industries such as aerospace, automotive, medical, and tooling, creating a strong demand for high-performance materials and reliable printing technologies, metal 3D printing utilizes a layer-by-layer approach to build parts from metal powders, which requires careful control of the environment to achieve optimal results. Markforged, a leader in 3D printing, expanded its capabilities by introducing the FX10, a next-generation composite printer, in October 2023. At Formnext 2024, the company unveiled the FX10 metal print head, making it the first industrial printer capable of printing both composite and metal parts. Additionally, Markforged’s hardware and Eiger software received ISO 27001 security certification, underscoring their commitment to data security and privacy. In April 2024, INDO-MIM partnered with HP Inc. to advance end-use metal 3D printing in India. They installed two HP Metal Jet Binder 3D printers at INDO-MIM’s Bengaluru facility, targeting sectors such as automotive, aerospace, defense, consumer electronics, and medical equipment.
Moreover, In the Asia-Pacific region, the increasing adoption of 3D printing technologies across industries such as aerospace, automotive, and healthcare is driving the demand for advanced gas management systems. In May 2024, Agnikul Cosmos successfully launched India’s first 3D-printed rocket engine. This achievement highlights India’s growing capabilities in rapid and cost-effective rocket manufacturing. Metal 3D printing technologies such as Selective Laser Melting (SLM) or Direct Energy Deposition (DED) are used for manufacturing high-performance parts like rocket engines.
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Importance and dominance of 3D printing gases is various industries
3D printing gases, such as argon, nitrogen, and gas mixture, are essential in additive manufacturing processes to create high-quality, defect-free parts. As per Midwest Engineered Systems Inc, In aerospace, over 30% of titanium parts in aircraft engines and structural components are produced using metal additive manufacturing, necessitating a controlled gas atmosphere to prevent defects. The medical industry also relies on high-purity argon and nitrogen for producing custom implants, with over 100,000 3D-printed implants already in use worldwide. The increasing demand for precision manufacturing in these sectors continues to drive innovation in 3D printing gas solutions.
Prime determinants of growth
The growing use of metal additive manufacturing, which relies on inert gases to prevent oxidation and enhance print quality, is driving market expansion. In October 2024, ADNOC Gas, a leading energy company, unveiled plans to develop one of the largest digital libraries for critical components in the industry. This innovative digital warehouse will store scans of over 3,500 parts, enabling on-demand manufacturing via advanced 3D printing technology. ADNOC Gas expects to generate $50 million in savings by 2028, with this strategy reducing production lead times by 50%, minimizing operational downtime, and lowering CO₂ emissions by eliminating the need for overseas shipping. This initiative highlights ADNOC Gas’s commitment to leveraging modern 3D printing gas technologies for improved operational efficiency and sustainability.
Market Challenges & Solutions
The cost of high-purity gases and associated gas-handling equipment can be a barrier for small-scale or entry-level users. These gases are more expensive than industrial gases due to their high purity standards and complex manufacturing processes involving advanced blending, analysis, and cylinder preparation techniques. According to the MESA Specialty Gases & Equipment, a cylinder for industrial gas costs around $50, and a specialty gas cylinder can cost up to $500. All these factors are expected to hamper the growth of the market. Some key solutions are as follows:
Bulk Gas Purchasing and Distribution Networks: Small-scale users benefit from joining group purchasing agreements or cooperative buying programs. By purchasing gases in bulk or through distribution networks, the price per unit can be significantly reduced.
Gas Reuse and Recycling: Investing in systems that allow for the capture, purification, and reuse of 3D printing gases could cut costs. Gas recycling systems are developed and integrated into 3D printing operations to minimize waste and reduce the need for constant replenishment of specialty gases.
Report Coverage & Details:
Report Coverage
Details
Forecast Period
2024–2033
Base Year
2023
Market Size in 2023
$63.1 million
Market Size in 2033
$166.9 million
CAGR
10.3 %
No. of Pages in Report
300
Segments Covered
Product, Technology, End-Use, and Region
Drivers
• Advancements in materials science
• Growing adoption of 3D printing technology
Opportunity
• Growth in aerospace & healthcare applications
Restraint
• High cost of gases
Request For Customization: https://www.alliedmarketresearch.com/request-for-customization/A60726
Surge in Adoption of 3D Printing in Manufacturing in Asia-Pacific Region
The Asia-Pacific region is witnessing a significant surge in the adoption of 3D printing in manufacturing, driven by advancements in technology, government initiatives, and the increasing demand for customized and high-performance components. Countries such as China, Japan, South Korea, India, and Singapore are at the forefront of this growth, leveraging additive manufacturing (AM) to enhance production efficiency, reduce material waste, and accelerate product development. The rise of Industry 4.0 and smart manufacturing practices has further fueled the adoption of 3D printing across industries like aerospace, automotive, healthcare, and consumer goods. In October 2022, Air Liquide announced a substantial investment of $539.72 million (EURO 500 million) in three new plants in Taiwan. These facilities are set to supply ultra-pure nitrogen, oxygen, and argon gas, with the first plant expected to be operational in 2024. Moreover, In December 2024, the Asia-Pacific Commerce and Industry Confederation (APCIC) established the Chamber of 3D Printing and Advanced Manufacturing. This initiative aims to accelerate the adoption of Morden manufacturing technologies across the region, fostering innovation, collaboration, and strategic development to position the Asia-Pacific as a global leader in advanced manufacturing.
China’s Strategic Investment in Additive Manufacturing
China is heavily investing in additive manufacturing for a wide range of sectors such as automotive, aerospace, electronics, and healthcare. The demand for customized automotive parts, electronics, and medical devices is increasing, particularly in high-growth sectors like smart manufacturing. The export of 3D printers from China grew from 656,000 units in 2017 to 2.539 million units in 2020, with a 25% year-on-year increase in the first three quarters of 2022 compared to the same period in 2021.
3D Printing Gases Industry News
In April 2024, the UK government introduced new export controls targeting emerging technologies, including metal 3D printers that utilize inert gases like argon or nitrogen for atmospheric control. These regulations require exporters to obtain licenses for shipping such technologies outside the UK, aiming to protect national security and align with similar measures in the US and EU.The Additive Manufacturer Green Trade Association (AMGTA) reported in April 2024 that helium gas atomization is the most energy-efficient method for producing common metal powders used in 3D printing. This process consumes 13% less energy per kilogram of powder compared to argon and 28% less than nitrogen, highlighting the importance of gas selection in sustainable manufacturing practices.Research published in November 2022 explored the synthesis of porous amorphous nitinol a nickel titanium alloy through the injection of argon gas into a liquid melt, followed by rapid cooling. This method demonstrated that varying the argon fraction could exponentially increase porosity, offering potential advancements in material properties for 3D-printed components.
Leading Market Players: –
Linde plcAir Products and Chemicals, IncAirgas, IncMesser Group GmbHTAIYO NIPPON SANSO CORPORATIONAir LiquideGaztron Engineering Private LimitedMatheson Tri-Gas, IncCoregas Pty LtdUniversal Industrial Gases
Bargaining Power of Suppliers
Concentration of Suppliers: The suppliers of industrial gases (e.g., Air Liquide, Linde, Praxair) are well-established, meaning they hold significant power over pricing and supply. However, there is a growing number of companies entering the specialized gas supply sector for 3D printing, which can slightly reduce supplier power. In January 2023, Linde acquired nexAir, LLC, enhancing its packaged gas distribution network in the southeastern U.S. This acquisition complements Linde’s existing business and expands its footprint in a core and fast-growing geography.Switching Costs: Switching between gas suppliers in 3D printing can be complex due to the unique requirements of each printer and material. This increases supplier power, as manufacturers may rely on specific gas compositions.
Recent Key Developments
In June 2023, Linde plc expanded its partnership with ExOne to enhance the production of high-performance 3D printing materials.In March 2023, Air Products and Chemicals, Inc, announced a partnership with 3D Systems to deliver optimized gases for metal additive manufacturing processes.In March 2024, Air Liquide introduced a new range of high-purity gases designed specifically for additive manufacturing, catering to processes like laser sintering and stereolithography.
The report provides a detailed analysis of these key players in the global 3D printing gases market. These players have adopted different strategies such as new product launches, collaborations, expansion, joint ventures, and agreements to increase their market share and maintain dominant shares in different regions. The report is valuable in highlighting business performance, operating segments, product portfolio, and strategic moves of market players to highlight the competitive scenario.
Want to Access the Statistical Data and Graphs, Key Players’ Strategies: https://www.alliedmarketresearch.com/3d-printing-gases-market/purchase-options
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About Us
Allied Market Research (AMR) is a full-service market research and business-consulting wing of Allied Analytics LLP based in Portland, Oregon. Allied Market Research provides global enterprises as well as medium and small businesses with unmatched quality of “Market Research Reports” and “Business Intelligence Solutions.” AMR has a targeted view to provide business insights and consulting to assist its clients to make strategic business decisions and achieve sustainable growth in their respective market domain.
Pawan Kumar, the CEO of Allied Market Research, is leading the organization toward providing high-quality data and insights. We are in professional corporate relations with various companies and this helps us in digging out market data that helps us generate accurate research data tables and confirms utmost accuracy in our market forecasting. Each and every data presented in the reports published by us is extracted through primary interviews with top officials from leading companies of domain concerned. Our secondary data procurement methodology includes deep online and offline research and discussion with knowledgeable professionals and analysts in the industry.
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Tony Jaa Becomes GAC’s 30-Millionth Customer – GAC Wins Global Trust with “True Craftsmanship”
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GUANGZHOU, China, July 25, 2026 /PRNewswire/ — On July 16, at the roll-off ceremony for GAC’s 30-millionth vehicle, Feng Xingya, Chairman of GAC Group, handed over the key to the right-hand-drive GAC M8 PHEV (named GN8 overseas) to Tony Jaa. The milestone vehicle is headed straight for overseas markets.
Thai action superstar Tony Jaa’s choice reflects the trust of 30 million customers worldwide. That trust is built not on showmanship, but on GAC’s solid manufacturing “true craftsmanship.”
From Guangzhou to the world, there are no shortcuts – quality speaks for itself. While the industry runs standard “three-high” tests, GAC pushes further with “five-high, one-mountain, one-dust” extreme vehicle trials. New models undergo at least “two winters and one summer” of validation – a minimum 18 months of real-world road testing, covering 12 major categories and over 1,500 sub-items across wind tunnel labs and proving grounds.
For each overseas market, GAC conducts additional adaptive testing for local climate and road conditions – from Middle Eastern desert heat to Southeast Asia’s humidity and heavy rains.
Quality consistency starts at the smart manufacturing front. GAC’s AION Intelligent Eco-Plant is the world’s first “Lighthouse Factory” for new energy vehicles, featuring full-process digital quality monitoring. Automated robots with AI vision systems deliver millisecond response and millimeter-level precision – ensuring uniform quality whether vehicles roll off lines in Guangzhou or overseas plants.
Safety comes first. GAC’s magazine battery has been deployed in 1.5 million vehicles, accumulating over 160 billion kilometers of safe driving. The Starlink Safety Protection System serves nearly 2 million users, preventing 6.28 million potential incidents.
With this commitment to quality and safety, GAC has established a presence in 110 countries and won the trust of 30 million users. Standing at this new milestone, GAC will continue to refine its craftsmanship and deliver worry-free, high-quality mobility experiences to every customer worldwide.
For further information about GAC, please visit: https://www.gacgroup.com/en or follow us on social media.
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Technology
Alisira OÜ Publishes Findings on Why Most Marketing Dashboards Miss the Metrics That Matter
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July 25, 2026By
Alisira OÜ has published a set of findings examining why so many marketing dashboards continue to fail to surface the numbers that actually shape decisions. The review looks at the gap between the volume of data modern platforms can collect and the amount that actually gets used when a marketing team sits down to figure out what is supposed to happen next.
TALLINN, Estonia, July 25, 2026 /PRNewswire-PRWeb/ — A Widening Gap Between Data Collection and Decision-Making
What there is often a shortage of, according to Alisira, is a dashboard that actually connects the numbers it displays to a decision someone in the room is genuinely trying to make. That distinction is where most measurement setups tend to fall apart quietly. A dashboard can be full of activity metrics, things like impressions, click volume, and session counts, without ever getting around to answering the question a budget owner is really asking. That question is usually some version of whether a given effort is working and whether more resources should be put behind it. Engagement is easy to display. Revenue contribution by channel takes more work to calculate correctly, particularly once multiple touchpoints and delayed purchases are involved, so it is the piece that tends to be most often left out of the weekly report. However, it is also the piece that leadership actually cares about when the conversation turns serious.
Where Standard Dashboards Fall Short
Alisira’s review identifies several categories of metrics that tend to be underrepresented on standard marketing dashboards, even in cases where the underlying data would in principle be accessible:
Cross-channel attribution, as opposed to last-click or single-platform creditCustomer lifetime value by acquisition source, rather than only first-purchase conversion ratesTime-to-conversion, which is frequently collapsed into a single count with no indication of the lag that is actually involvedAssisted conversions, where a channel contributed to a sale without being the final touchpointCohort-based retention figures, in place of a single blended retention % that has a tendency to hide which groups are actually staying and which are quietly leaving
Part of the difficulty is traceable back to how fragmented most measurement setups tend to be in the first place. Only 32% of marketers globally measure their media spending across both digital and traditional channels, according to Nielsen, which leaves the majority of teams working from a partial view before the dashboard-design questions have even come into play. Alisira’s findings suggest this is less a tooling problem than it is a structural one. What most organizations lack, more often than not, is a single point in the workflow where channel-level data is reconciled before it reaches a decision-maker in a usable form.
Alisira OÜ frames these findings as part of a broader shift away from dashboards built to display everything a platform can track, toward dashboards built around a smaller, more deliberate set of numbers tied to what a team actually decides to do next. The company plans to continue publishing analysis on measurement practices and marketing reporting in the months ahead.
Media Contact
Norman Drew, Alisira OÜ, 372 53687131, info@alisira.net, https://www.alisira.net/
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Technology
Hyundai Motor Group Executive Chair Euisun Chung Announces Physical AI Vision at San Francisco AI Summit
Published
1 hour agoon
July 25, 2026By
Hyundai Motor Group shares roadmap for realizing its Physical AI vision and collaboration strategy with global tech leaders at the San Francisco AI Summit
Executive Chair Euisun Chung presented, “Hyundai Motor Group is evolving beyond the traditional boundaries of automotive manufacturing to become a Physical AI solution company,” adding, “The ultimate Physical AI vision we pursue is the realization of integrated intelligence at the city level”
The Group to leverage manufacturing competitiveness and leading robotics capabilities centered on Boston Dynamics, while establishing a data flywheel system connecting real-world operational data with continuous AI model advancement
The Group to leverage strategic partnerships with global technology leaders, including NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMind
The Group to collaborate with NVIDIA to develop a Robot Reference Platform that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities
… The initiative to support Korea’s Physical AI industry through an open ecosystem
The Group to cultivate strategic domestic hubs through investments in Saemangeum AI Valley and future advanced industries in Korea’s Yeongnam region
SAN FRANCISCO, July 25, 2026 /PRNewswire/ — Hyundai Motor Group (the Group) Executive Chair Euisun Chung today outlined the Group’s vision and strategy for Physical AI at the San Francisco AI Summit held in San Francisco, California.
The event brought together approximately 150 attendees, including Executive Chair Chung, business leaders from major Korean companies, executives from leading U.S. technology firms, startup representatives and students.
At the summit, Executive Chair Chung presented the Group’s roadmap for advancing Physical AI and outlined strategic collaboration plans with global technology leaders.
“Hyundai Motor Group is evolving beyond the traditional boundaries of automotive manufacturing by expanding into autonomous driving, robotics and AI Defined Factories, accelerating our transformation into a Physical AI solution company.” — Hyundai Motor Group Executive Chair Euisun Chung
Accelerating the Transition to a Physical AI Solution Company
Hyundai Motor Group’s Physical AI vision extends beyond intelligent devices such as vehicles and robots to intelligent spaces, including AI factories where AI seamlessly connects and optimizes entire operations. Ultimately, the Group envisions integrated intelligence at the city level, where urban infrastructure is organically connected and operated through AI.
A key differentiator for the Group is its ability to create a data flywheel that continuously connects real-world operations with AI advancement. Drawing on extensive experience in large-scale manufacturing, mobility, robotics and service operations, the Group is positioned to deploy, refine and scale Physical AI technologies in real industrial environments.
Executive Chair Chung also outlined strategic partnerships with leading technology companies, including NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMind, to further advance Physical AI capabilities.
By combining Hyundai Motor Group’s manufacturing competitiveness, mobility and robotics technologies and extensive operational data with the AI infrastructure and algorithm capabilities of global technology leaders, the Group aims to help foster a new innovation ecosystem for the Physical AI era.
Executive Chair Chung also introduced initiatives designed to support the growth of Korea’s robotics and AI ecosystem, including the development of a Robot Reference Platform with NVIDIA that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities, as well as investments in initiatives such as the Saemangeum AI Valley.
Physical AI Vision: From Intelligent Devices to Integrated Intelligence at the City Level
During the summit, Executive Chair Chung presented Hyundai Motor Group’s Physical AI vision.
“The ultimate Physical AI vision Hyundai Motor Group pursues begins with intelligent devices such as vehicles and robots, expands to intelligent spaces such as AI factories, and ultimately realizes integrated intelligence at the city level, where urban infrastructure is seamlessly connected and operated.” — Hyundai Motor Group Executive Chair Chung
The Group’s vision begins with intelligent devices, where AI capabilities enhance vehicles and robots. It then expands to intelligent spaces, including AI factories where AI autonomously integrates logistics, production and quality management across entire operations.
Ultimately, Hyundai Motor Group envisions city-level intelligence, where critical infrastructure and assets — including energy, mobility and robotics systems — are connected and optimized in real time.
Executive Chair Chung also highlighted the Group’s key strengths in realizing its Physical AI vision:
World-class manufacturing competitiveness: Hyundai Motor Group has built extensive expertise through decades of operating global manufacturing facilities, managing quality systems and optimizing supply chains. This foundation enables the Group to apply AI technologies to products, processes and services while rapidly validating and scaling innovations in real-world environments.
Leading robotics capabilities: Hyundai Motor Group has established robotics as a key pillar of its future business portfolio. Boston Dynamics’ quadruped robot Spot®, logistics robot Stretch®, and Hyundai Motor Group Robotics LAB’s next-generation mobile robot platform MobED are recognized for combining technological competitiveness with real-world applicability.
In particular, the humanoid robot Atlas® is emerging as a representative example of Physical AI, supporting and collaborating with people across manufacturing, logistics and mobility environments.
Establishing a data flywheel system: Hyundai Motor Group is establishing a data flywheel system that leverages data generated across manufacturing operations, vehicles, logistics systems and robotics demonstrations to continuously advance AI models. Enhanced algorithms are then reapplied to real-world operations, creating a virtuous cycle that improves performance and strengthens Physical AI capabilities.
Accelerating the Future of Physical AI Through Partnerships with Global Tech Leaders
Executive Chair Chung also outlined concrete initiatives to position Hyundai Motor Group as a leader in human-centered Physical AI through strategic collaborations with NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMind.
“By combining Hyundai Motor Group’s strengths in manufacturing, robotics and data with the capabilities of global technology leaders, we can help create a new innovation ecosystem for the Physical AI era.” — Hyundai Motor Group Executive Chair Euisun Chung
NVIDIA – Advancing Physical AI infrastructure and talent development
Hyundai Motor Group is expanding collaboration with NVIDIA to strengthen Physical AI infrastructure and cultivate AI talent. Building on a supply agreement for 50,000 NVIDIA Blackwell GPUs and a memorandum of understanding signed last year to advance Korea’s Physical AI capabilities, the Group is pursuing a range of initiatives, including the establishment of Hyundai Motor Group Robot Application Center, as well as various collaborations aimed at strengthening Korea’s Physical AI infrastructure and AI talent ecosystem, including the NVIDIA’s AI Technology Center.
In manufacturing, the Group is leveraging NVIDIA’s platform to create more sophisticated digital twins of production facilities, enhancing process design, operational optimization and validation efficiency. The collaboration also includes the integration of NVIDIA’s autonomous driving solutions, including automotive semiconductors, sensors and architecture, with Hyundai Motor Group vehicle platforms.
Waymo – Strengthening autonomous driving collaboration
Hyundai Motor Group continues to strengthen its strategic partnership with Waymo in the autonomous driving sector to support the development of a safe and innovative autonomous driving ecosystem. Autonomous driving vehicles require a wide range of specialized capabilities, including redundant systems for steering, braking, power and communications, dedicated features such as power-operated doors, as well as enhanced functional safety and cybersecurity technologies.
Hyundai Motor Group plans to produce IONIQ 5 vehicles with specific autonomous-ready modifications at Hyundai Motor Group Metaplant America (HMGMA) in Georgia.
Google DeepMind – Accelerating next-generation humanoid robotics
Boston Dynamics has established a strategic partnership with Google DeepMind to accelerate the development of next-generation humanoid robots. Advanced AI models and training systems are essential for robots to perform complex tasks in real-world environments and collaborate effectively with people. Through this partnership, Boston Dynamics robots are expected to achieve greater autonomy and adapt more effectively to complex operating environments.
Hyundai Motor Group plans to establish a robot production facility in the U.S. with an annual capacity of up to 30,000 units by 2028. The Atlas humanoid robot will first be deployed at production facilities including HMGMA before broader deployment is expanded through phased validation.
Building an Open Ecosystem Through the Robot Reference Platform and Continued Investment in Korea’s Physical AI Future
Executive Chair Chung also outlined initiatives aimed at supporting the growth of Korea’s Physical AI ecosystem through open collaboration and continued investment.
“The outcomes of collaboration with global technology leaders should contribute to the growth of Korea’s Physical AI industry. To that end, Hyundai Motor Group plans to foster an open ecosystem that supports innovation in robotics and AI technologies.” — Hyundai Motor Group Executive Chair Euisun Chung
Key initiatives to build an open ecosystem for robotics and AI innovation include:
Robot Reference Platform: Hyundai Motor Group and NVIDIA are collaborating to develop a Robot Reference Platform that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities.
The platform will provide research robot models to universities, research institutes and startups, helping foster an open ecosystem that supports technological innovation and the development of Physical AI talent while contributing to the broader growth of Korea’s robotics and AI industries.
Supporting universities, research institutes and startups: The Robot Reference Platform is expected to provide universities, research institutes and startups with a standardized hardware and software environment, enabling them to more easily develop and validate Physical AI technologies. The initiative aims to help address challenges faced by organizations with innovative ideas but limited access to commercialization opportunities and validation infrastructure.
Hyundai Motor Group is also continuing large-scale investments aimed at driving the next leap forward in Korea’s industrial and technology ecosystem. Continued investments in Korea’s industrial and technology ecosystem include:
Saemangeum AI Valley: In the Saemangeum region of Jeonbuk State, the Group is developing Saemangeum AI Valley, which includes an approximate KRW 9 trillion investment in AI data centers, robotics manufacturing clusters, electrolyzer plants and AI hydrogen city infrastructure.
In particular, the robotics manufacturing cluster will serve not only as a production base for the Group’s own robotics products, but also as a robotics foundry that provides manufacturing services for small and medium-sized enterprises that lack manufacturing expertise.
Advanced industrial hubs in the Yeongnam region: Hyundai Motor Group plans to invest a total of KRW 42 trillion over the next decade to foster advanced industrial hubs focused on AI-driven manufacturing, future aerospace industries and sustainable energy infrastructure.
Through these initiatives, Hyundai Motor Group aims to strengthen key foundations for the Physical AI era, including data and energy infrastructure, robotics production capabilities and real-world validation capabilities. The Group also expects these investments to contribute to enhanced industrial competitiveness, balanced regional development, job creation and broader economic vitality in Korea.
About Hyundai Motor Group
Hyundai Motor Group is a global enterprise that has created a value chain based on mobility, steel, and construction, as well as logistics, finance, IT, and service. With about 250,000 employees worldwide, the Group’s mobility brands include Hyundai, Kia, and Genesis. Armed with creative thinking, cooperative communication, and the will to take on any challenges, we strive to create a better future for all.
More information about Hyundai Motor Group can be found at: http://www.hyundaimotorgroup.com or Newsroom: Media Hub by Hyundai, Kia Global Newsroom, Genesis Newsroom
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SOURCE Hyundai Motor Company
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