Saudi Arabia is undergoing a historic economic transformation under the blueprint of Vision 2030. Driven by the National Industrial Development and Logistics Program (NIDLP), the Kingdom is pivoting from a resource-dependent economy to a global high-tech manufacturing hub. At the core of this transition lies the adoption of advanced manufacturing technologies, particularly metal 3D printing (Additive Manufacturing). High-purity, spherical titanium powder has emerged as an indispensable raw material to fuel this industrial revolution.
Titanium alloys exhibit unparalleled strength-to-weight ratios, exceptional biocompatibility, and superior resistance to corrosion. These properties make them perfect for the extreme environments found in the Middle East—ranging from high-salinity marine applications to intense heat in petrochemical refining and advanced defense aviation.
Whether it is the localized development of defense systems through SAMI (Saudi Arabian Military Industries), the structural components of the futuristic city of NEOM, or downhole tools for Saudi Aramco’s drilling operations, the demand for premium-grade titanium powder (such as Ti6Al4V and Ti6Al4V ELI) has reached unprecedented heights.
Our titanium powder solutions are meticulously engineered to meet the strict regulatory frameworks and operational demands of the Kingdom's key industries:
In the oil-rich Eastern Province (Al Khobar, Dammam, and Jubail), equipment is constantly exposed to highly corrosive saltwater and sulfur-rich hydrocarbons. Titanium powder is widely used for Laser Cladding and Hot Isostatic Pressing (HIP) to manufacture corrosion-resistant valves, heat exchangers, and pump impellers, significantly reducing maintenance downtime for Saudi Aramco and SABIC facilities.
In line with the Kingdom's mandate to localize over 50% of its military spending by 2030, defense manufacturers in Riyadh are leveraging Selective Laser Melting (SLM) technologies. Spherical titanium powder is utilized to print lightweight structural parts, brackets, and engine components that withstand extreme thermal fluctuations.
As the world's largest producer of desalinated water, Saudi Arabia's SWCC (Saline Water Conversion Corporation) plants require materials that resist chloride-induced stress corrosion. Additive manufacturing with titanium powder allows for the optimized design of complex fluid-dynamics components, extending the service life of desalination infrastructure.
With the rapid modernization of healthcare systems, Saudi medical institutions are shifting towards customized, patient-specific implants. Titanium Grade 23 (Ti6Al4V ELI) powder is the gold standard for producing orthopedic joint replacements, cranial meshes, and dental substructures, ensuring excellent osseointegration and bio-compatibility.
When requesting a quotation for titanium powder in Saudi Arabia, several variables dictate the pricing structure. Understanding these factors ensures that procurement teams secure the most cost-effective and high-performing materials for their specific systems:
The method of atomization directly impacts the powder's spherical geometry and purity. EIGA (Electrode Induction Melting Gas Atomization) is ideal for high-purity aerospace and medical applications because it avoids ceramic crucible contact, reducing contamination risks. VIGA (Vacuum Induction Melting Gas Atomization) offers a cost-effective alternative for industrial-grade cladding and general additive manufacturing.
Different 3D printing and manufacturing processes require specific particle sizes. For instance:
• 15-53μm: Standard for SLM (Selective Laser Melting) machines.
• 45-105μm: Optimized for LED (Laser Directed Energy Deposition) and Electron Beam Melting (EBM).
• 15-45μm: Frequently demanded for Metal Injection Molding (MIM).
Prices quoted for delivery to Riyadh, Jeddah Port, or Dammam Port include custom duties, compliance certificates (ISO 9001, AS9100), and specialized vacuum packaging to prevent oxidation during sea or air freight. Furthermore, aligning with local content initiatives (like Aramco's IKTVA program) can influence long-term supply contract quotes.
Avimetal AM Tech Co., Ltd. (hereinafter referred to as AVIMETAL), established in 2014, is a subsidiary of JCMEH. We specialize in metal powder materials and metal 3D printing equipments, with core technologies in high-performance alloy design, spherical powder preparation, and high-precision AM equipment and process. We deliver metal 3D printing equipment and material solutions to global clients.
One-Stop Service Provider Of Metal Additive Manufacturing Equipment, Materials And Process
More than a hundred kinds of high-performance metal powder brands, such as titanium alloy, superalloy, aluminum alloy, die steel and medical cobalt-chromium alloy, are applicable to a variety of metal additive manufacturing processes.
Selective Laser Melting (SLM), Laser Solid Forming (LSF), Laser Cladding (LC) and other open-source additive equipment can help users increase production and efficiency, and achieve batch "smart" manufacturing.
For specific application scenarios, we provide one-stop technical services such as customized material design, powder trial-production, structure optimization, forming technology, heat treatment, surface treatment, detection and analysis.
Metal Powder Materials
Advanced Additive Equipment
Comprehensive Technical Services
An annual production capacity of 5,000 tons of metal powder;
An annual production capacity of 400 pieces of metal additive manufacturing equipment.

Print the Future
Beauty the World

To Build A World-class AM Technology Enterprise

Innovation Integrity
Dedication Accountability
• Avimetal was founded in Zhongguancun, Beijing, launching the venture of advanced metal powder materials;
• Put the first set of EIGA furnace MT-E50 into production;
• Established Hebei subsidiary;
• Put the first set of VIGA furnace MT-V100 into production;
• Participated in the revision of China's first aerospace standard for metal additive manufacturing.
Procuring titanium powder for critical sectors in Saudi Arabia requires strict adherence to international and local standards. Under the guidelines of SASO (Saudi Standards, Metrology and Quality Organization) and international bodies like ASTM, our manufacturing processes guarantee the highest level of stability and trace-ability.
Our powder materials undergo rigorous testing procedures, including:
• Chemical Composition Analysis: Confirming low interstitial elements (oxygen, nitrogen, hydrogen, and carbon) to prevent brittleness in critical aerospace and medical components.
• Particle Size Distribution (PSD) Testing: Verified via laser diffraction to ensure high flowability and packing density inside the powder bed of SLM systems.
• Morphology Verification: SEM (Scanning Electron Microscope) imaging to guarantee high sphericity and minimal satellite particles, which ensures uniform melting behavior.
By maintaining these standards, we provide Saudi manufacturers with materials that optimize print success rates, minimize build defects, and deliver mechanical properties that meet or exceed traditional forged parts.