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3D Printing Powder

3D printing is a rapid prototyping technology. It is a technique of constructing objects by layer-by-layer printing based on digital model files and using adhesive materials such as metal powder or plastic powder. For decade years, 3D printing has been used in a wild range of industries including industrial design, construction, engineering and construction (AEC), automotive, aerospace, dental and medical industries.

PRODUCT LIST

3D Printing Powder
High Entropy Alloy Powder
Ti-based Metal Powder
Al-based Metal Powder
Ni-based Metal Powder
Co-based Metal Powder
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Pre-alloyed Powder FeCuNiSn (X6-620)
FE5249 Iron Copper Nickel Tin Pre-alloyed Powder FeCuNiSn (X6-620)

Pre-alloyed FeCuNiSn (X6-620) powder offers a low sintering temperature, which helps minimize sintering loss, reduce the use of elemental tin, and lower production costs. Stanford Advanced Materials (SAM) has extensive expertise in manufacturing and supplying high-quality pre-alloyed powders.

Related products: Pre-Alloyed Powder X3-311 Fe-Cu, Pre-alloyed Powder X3-321 Fe-Cu

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Superfine 316L Stainless Steel Powder
SS5741 Superfine 316L Stainless Steel Powder

Superfine 316L Stainless Steel Powder refers to a highly refined, ultra-fine version of 316L stainless steel, which is known for its excellent corrosion resistance, ductility, and weldability. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality 316L Stainless Steel Powder.

Related products: Spherical H13 Steel Powder, 410 Stainless Steel Powder, 440C Stainless Steel Powder

The estimated delivery time of 7 to 14 days applies to standard powders. For other products, delivery times may vary.

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Pre-alloyed Powder FeCuCo (X6-630)
FE5250 Iron Copper Cobalt Pre-alloyed Powder FeCuCo (X6-630)

Pre-alloyed FeCuCo (X6-630) powder is a premium-grade fortified material with a fine particle size. Stanford Advanced Materials (SAM) boasts extensive expertise in the production and supply of high-quality pre-alloyed powders.

Related products: Pre-Alloyed Powder X3-311 Fe-Cu, Pre-alloyed Powder X3-321 Fe-Cu

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Cobalt Chromium Alloy Powder
CO5742 Cobalt Chromium Alloy Powder

Cobalt Chromium Alloy Powder refers to a highly refined, ultra-fine version of 316L stainless steel, which is known for its excellent corrosion resistance, ductility, and weldability. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality Cobalt Chromium Alloy Powder.

Related products: Spherical H13 Steel Powder, 410 Stainless Steel Powder, 440C Stainless Steel Powder

The estimated delivery time of 7 to 14 days applies to standard powders. For other products, delivery times may vary.

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Pre-alloyed Powder FeCoNi (X6-605)
FE5251 Pre-alloyed Powder FeCoNi (X6-605)

Pre-alloyed Powder FeCoNi (X6-605) is a high-end reinforced powder with high toughness and strength and has a significant effect on tool modification. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality Pre-alloyed Powders.

Related products: Pre-Alloyed Powder X3-311 Fe-Cu, Pre-alloyed Powder X3-321 Fe-Cu

 

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556 Nickel Alloy Powder
NI5743 556 Nickel Alloy Powder

556 Nickel Alloy Powder is a highly refined, ultra-fine variant of 316L stainless steel, renowned for its exceptional corrosion resistance, ductility, and weldability. Stanford Advanced Materials (SAM) brings extensive expertise in manufacturing and supplying high-quality 556 Nickel Alloy Powder.

Related products: Spherical Haynes 282 Powder, Spherical Haynes 247 Powder, Spherical Haynes 230 Powder

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In738LC High Temperature Alloy Powder
NC6630 In738LC High Temperature Alloy Powder

Stanford Advanced Materials, a company specializing in the research and production of advanced materials, guarantees that each of its products reaches international leading standards through meticulous craftsmanship and strict quality control. In738LC High Temperature Alloy Powder is a nickel-based, gamma prime precipitation-strengthened material optimized for additive manufacturing (e.g., laser powder bed fusion), offering exceptional high-temperature strength, creep resistance, and corrosion resistance in environments up to 900°C, widely used in aerospace engines and industrial gas turbine components.

Related Products: Inconel 738 Powder, Spherical Inconel 939 Powder, Spherical Inconel 690 Powder, Spherical Inconel 713C Powder, Spherical Inconel 617 Powder

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30CrNi2SiMoVA Steel Powder
SS6631 Chromium Nickel Silicon Steel 30CrNi2SiMoVA Powder

Stanford Advanced Materials, a company specializing in the research and production of advanced materials, guarantees that each of its products reaches international leading standards through meticulous craftsmanship and strict quality control. 30CrNi2SiMoVA Steel Powder is a high-strength low-alloy (HSLA) powder characterized by ultra-high tensile strength (1800±20 MPa), optimized particle size distribution (15-53 μm primary), and low oxygen content (300 ppm), designed for advanced additive manufacturing processes and critical applications in wear-resistant and high-load components.

Related Products: AISI 8620 Steel Powder, Spherical H13 Steel Powder, A100 Spherical Steel Alloy Powder, SAE 1524 Steel Alloy Powder

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40CrNi3SiMoVA Steel Powder
SS6632 Chromium Nickel Silicon Steel 40CrNi3SiMoVA Powder

Stanford Advanced Materials, a company specializing in the research and production of advanced materials, guarantees that each of its products reaches international leading standards through meticulous craftsmanship and strict quality control. 40CrNi3SiMoVA Steel Powder is a high-strength low-alloy (HSLA) material featuring exceptional tensile strength (1800 ± 20 MPa), a refined particle size distribution (primarily 15-53 μm), and low oxygen levels (300 ppm). It is engineered for advanced additive manufacturing technologies and is well-suited for critical applications requiring high wear resistance and the ability to withstand heavy mechanical loads.

Related Products: AISI 8620 Steel Powder, Spherical H13 Steel Powder, A100 Spherical Steel Alloy Powder, SAE 1524 Steel Alloy Powder

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DP4972 Titanium Vanadium Zirconium Niobium High Entropy Alloy TiVZrNb Powder
DP4972 Titanium Vanadium Zirconium Niobium High Entropy Alloy TiVZrNb Powder

TiVZrNb High Entropy Alloy Powder is a fine, homogeneous material made from an equimolar or near-equimolar blend of titanium (Ti), vanadium (V), zirconium (Zr), and niobium (Nb). Stanford Advanced Materials (SAM) specializes in the manufacturing and supply of high-quality TiVZrNb High Entropy Alloy Powder, backed by extensive experience.

Related products: TiVCrZrNb, TiCrZrNb

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