ADDITIVE MANUFACTURING TECHNOLOGY
On-Demand Manufacturing info@ermaksanadditive.com +90 224 294 7500

WHY CHOOSE OUR METAL POWDERS ?

Exceptional Quality

We pride ourselves on delivering top-notch metal powders that meet the highest industry standards.

Precision & Durability

Our specially formulated powders offer unparalleled precision and unmatched durability. When you choose our metal powders, you’re choosing materials that are engineered to per- form under demanding conditions.

Versatility

Our powders are designed to be highly versatile, compatible with a wide range of 3D printers. This versatility makes them ideal for various applications, ensuring you have the flexibility you need for your projects.

Expert Support

We understand that success often requires more than just quality materials. That’s why we provide expert guidance and technical assistance to support your endeavors. Count on us to help you navigate the intricacies of additive manufacturing and make your projects a success.

METAL POWDER PRODUCTION

Together with the Ermaksan Additive team, we specialize in providing a range of tested and qualified metal powders crucial for additive manufacturing, thermal spraying, metal injection molding, and DED/laser cladding. Our portfolio includes Nickel, Titanium, Cobalt, and stainless steel metal powders, supported by essential technical expertise to ensure successful printing and production processes. We’ve established a rigorous materials development program aimed at certifying new materials tailored to the unique demands of additive manufacturing. Our printed materials deliver reference mechanical properties, heat treatment, and microstructure data, forming a solid foundation for further advancements.

Whether you require a material from our existing portfolio or need a custom solution to meet your specific specifications, our global engineering, sales, marketing, and logistics network is at your service. We are committed to helping you select the best materials for your unique application and stand ready to provide unwavering support throughout the process.

KEY INSIGHTS INTO OUR METAL POWDER PORTFOLIO

  • Our metal powder portfolio is exclusively developed, rigorously tested, and precision-produced for optimal performance in additive manufacturing applications.
  • Depending on the grade of metal-based materials, we employ a process involving melting raw materials under a vacuum atmosphere, which is then remelted as needed. Our in-house metal and metal alloy powder production processes prioritize the highest product quality. This is achieved through both Vacuum Inert Gas Atomization (VIGA) and Electrode Induction Gas Atomization (EIGA) methods.
  • Our metal powders are characterized by their exceptional quality, featuring high purity, spherical morphology, chemical homogeneity, tightly packed density, and excellent flow properties. These attributes are crucial for ensuring smooth and consistent production processes.
  • We have fine-tuned particle size distributions to meet the exacting demands of various additive manufacturing methods, including Laser Additive Manufacturing (LAM), Selective Laser Melting (SLM), Electron Beam Melting (EBM), thermal spraying, metal injection molding, and Direct Energy Deposition (DED) or laser clad- ding. Our tailored particle sizes are optimized to enhance the performance and efficiency of these processes.

OUR ADVANTAGES

  • Decades of Expertise: With nearly a decade of experience in materials development and manufacturing in powder metallurgy and additive manufacturing, coupled with over 60 years of experience in machine building for customers in critical applications, we bring a wealth of knowledge to every project.
  • In-House R&D Centers: We have dedicated research and development centers equipped for testing and optimizing process parameters on various additive manufacturing metal printing machines of our own production. This ensures that our materials are tailored for peak performance.
  • Global Reach: Our global sales and logistics network allows us to serve customers worldwide, offering seamless access to our exceptional products and services no matter where you are located.
  • Analytical Expertise: We maintain an advanced analysis and characterization test laboratory to ensure the quality and performance of our materials consistently meet industry standards.
  • Material Traceability: We prioritize material traceability, providing you with confidence in the origin and quality of the materials you choose.
  • Reliable Packaging: Our commitment to quality extends to our packaging, ensuring that our products arrive in pristine condition, ready for your applications.

TECHNICAL SPECIFICATIONS

Material Base Material Characteristic Product Chemistry Particle Size Distribution (μm)
Cobalt The parts manufactured with this powder are appropriate for the production of the surgical implants in terms of mechanical specifications and components. It is also used in the aviation applications since it is a stainless steel and temperature resistive material. CoCrMo (F75) Co 28Cr 6Mo <-20, -45 +15, -53 +20, -105 + 45, -105 + 53, > +105
CoNiCrW Co 10Ni 24Cr 7W
Iron The parts that are manufactured with maraging steel powder having high yield strength and fracture toughness are ideal for aviation and injection mould productions. They are used in the gear box sets in automotive sector and production of press casting moulds in casting sector. Also, have high corrosion resistance and resistance against temperature and friction in terms of components. With these specifications, they are preferred in the production of sensitive parts in the automotive and aviation sectors. 304 (1.4307) 18Ni 8Cr <-20, -45 +15, -53 + 20, -105 + 45, -105 + 53, > +105
316L (1,4404) Fe 18Cr 12Ni 2Mo 0.02C
15-5PH Fe 15Cr 4.5Ni 3.5Cu 0.3Nb 0.07C
17-4PH Fe 17Cr 4.5Ni 4Cu 0.3(Nb+Ta) 0.07C
H11 (1,2343) Fe 5Cr 1Mo 1Si 0.5V 0.4C
H13 (1,2344) Fe 5Cr 1Mo 1Si 1V 0.4C
Nickel The parts manufactured with this powder find application in environments demanding high temperature and corrosion resistance. Widely employed in aviation and space industries, these powders are also utilized in components exposed to chemicals, tools, maritime conditions, nuclear reactor components, and rocket engine parts. Inconel-625 (UNS N06625) Ni 21Cr 9Mo 4Fe 4(Nb+Ta) 0.4Al 0.4Ti <-20, -45 +15, -53 + 20, -105 + 45, -105 + 53, > +105
Inconel-718 (UNS N07718) Ni 21Cr 9Mo 4Fe 4(Nb+Ta) 0.4Al 0.4Ti
Inconel-738LC (UNS R30783) Ni 18Cr 18Fe 5(Nb+Ta) 3Mo 1Ti 0.6Al
Inconel-939 (UNS N0 9639) Ni 21Cr 3,75(Nb+Tc) 4 Fe 9Mo 0.1C
Titanium Titanium (Ti) is a remarkable material known for its low density, approximately 56% less than steel, and its exceptional tensile strength to density ratio. Thanks to its impressive strength and outstanding corrosion resistance, titanium components find a broad range of applications. Since it is a bio compatible product particularly in the space and aviation sectors, it has a wide usage area in the medical field too. The Ti6Al4V alloy, the world’s most common titanium alloy, plays a pivotal role in various industries. At Ermaksan, we specialize in powder production for Grade 5 and Grade 23 of these alloys. Our global Ti-6Al-4V titanium alloy powder boasts global recognition, featuring low oxygen content, high density, and controlled particle size for optimal performance. Ti6Al4V Gd-5 Ti 6Al 4V <-20, -45 +15, -53 + 20, -105 + 45, -105 + 53, > +105
Ti6Al4V Gd-23
Aluminum AlSi10Mg alloy is a widely used alloy that combines light weight and good mechanical properties. Typical aluminum based alloy that offers good strength, hardness and dynamic properties, and is therefore used for parts subject to high mechanical loads. Parts made with Aluminum AlSi10Mg alloy are ideal for applications which require a combination of good thermal properties and low weight. They can be machined, spark eroded, welded, micro shot peened, polished and coated if required. AlSi10Mg metal powder for additive manufacturing (3D printing) is an excellent choice for the 3D printing of lightweight parts with good thermal properties, also as a substitution of casted parts. AlSi10Mg Al-Si10-Mg <-20, -45 +15, -53 + 20, -105 + 45, -105 + 53, > +105
Material (Powder) Yield Strength (σa) (MPa) Tensile Strength (σç) (MPa) Elongation (%) Density % (g/cm3)
AlSi10Mg 260 ± 20 470 ± 35 8 ± 3 > 99,5%
CoCrMo 690 ± 20 1115 ± 35 19 ± 3 > 99,5%
Ti6Al4V 1050 ± 20 1100 ± 35 11 ± 3 > 99,5%
316L 320 ± 20 550 ± 35 42 ± 3 > 99,5%
17-4 PH 470 ± 20 930 ± 35 15 ± 3 > 99,5%
H13 470 ± 20 1950 ± 35 7,5 ± 3 > 99,5%
H11 1550 ± 20 1580 ± 35 10 ± 3 > 99,5%
INCONEL-718 725 ± 20 1050 ± 35 21 ± 3 > 99,5%
INCONEL-625 650 ± 20 950 ± 35 33 ± 3 > 99,5%

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