PowDER

Superalloy powders.
Built for what launches next.

SeAH Superalloy Technologies produces high-performance nickel alloy powders for additive manufacturing, engineered for the most demanding applications on earth and beyond.

PowDER

Superalloy powders.
Built for what launches next.

SeAH Superalloy Technologies produces high-performance nickel alloy powders for additive manufacturing, engineered for the most demanding applications on earth and beyond.

ADDITIVE PARTNER

Advanced superalloys.
Built for additive.

From our Temple, Texas facility, we supply additive teams that need consistency, responsiveness, and scale from first batches through full-rate production. Where capacity-constrained providers feel rigid or unresponsive, we are a customer-first, production-focused partner for high-value powders and high-output programs.

FEATURED PRODUCTS

Proven superalloys, qualified for production.

Our nickel-base superalloy powders are engineered for pushing performance boundaries.

Powder Alloy

1.2709 (MS1)

1.2709 (MS1) is a maraging steel powder for additive manufacturing, with ultra-high strength after age hardening for tooling and aerospace parts.
industries
Aerospace
Military & Defense
General Industrial
Space Exploration
Power Generation
SPECIFICATION
ASTM A646 / AMS 6514 / 1.2709
Powder Alloy

17-4PH

17-4PH is a precipitation-hardening stainless steel powder with high strength and good corrosion resistance for additively manufactured parts.
industries
Aerospace
Military & Defense
General Industrial
Power Generation
Space Exploration
SPECIFICATION
UNS S17400
Powder Alloy

230

230 is a nickel-base superalloy powder with outstanding oxidation resistance for additively manufactured combustion hardware up to 1149°C.
industries
Aerospace
Power Generation
Military & Defense
General Industrial
Space Exploration
SPECIFICATION
UNS N06230
Powder Alloy

316L

316L is a low-carbon austenitic stainless steel powder with excellent corrosion resistance for additively manufactured industrial and marine hardware.
industries
Military & Defense
Power Generation
General Industrial
Space Exploration
Aerospace
SPECIFICATION
ASTM A276 / (DIN EN 10088) 1.4404
Powder Alloy

415 SS

415 SS is a martensitic stainless steel powder with good strength and wear resistance for additively manufactured valve bodies and industrial parts.
industries
Power Generation
General Industrial
Aerospace
Military & Defense
Space Exploration
SPECIFICATION
ASTM F3056 / ASTM B446 / AISI 415
Powder Alloy

625LFe

625LFe is an iron-bearing alloy 625 variant for additive manufacturing, offering corrosion resistance and strength for industrial components.
industries
General Industrial
Power Generation
Military & Defense
Space Exploration
SPECIFICATION
Powder Alloy

625 XP

625 XP is a weldable nickel-base superalloy powder for high-strength, corrosion-resistant parts up to 1093°C (2000°F).
industries
Aerospace
Power Generation
Military & Defense
Space Exploration
General Industrial
SPECIFICATION
AMS 7001 / 2.4856 / UNS N06625
Powder Alloy

718 XP

718 XP is a weldable nickel-base superalloy powder for high-strength, fatigue- and creep-resistant parts up to 704°C (1300°F).
industries
Aerospace
Power Generation
Military & Defense
Space Exploration
General Industrial
SPECIFICATION
ASTM F3055 / ASTM B637 / AMS 7006
Powder Alloy

939

939 is a nickel-base superalloy powder for additive manufacturing of industrial gas turbine vanes and blades requiring hot corrosion resistance.
industries
Aerospace
Power Generation
General Industrial
Military & Defense
Space Exploration
SPECIFICATION
Powder Alloy

HS31-X40

HS31-X40 is a cobalt-base superalloy powder for additively manufactured turbine nozzle vanes and hot-section hardware with hot corrosion resistance.
industries
Aerospace
Power Generation
Military & Defense
General Industrial
Space Exploration
SPECIFICATION
Powder Alloy

M300

M300 is an age-hardenable maraging steel powder for additively manufactured high-performance tooling, structural brackets, and aerospace components.
industries
Aerospace
Military & Defense
General Industrial
Space Exploration
SPECIFICATION
ASTM A646 / AMS 6514
Powder Alloy

Mar M 247

Mar M 247 is a nickel-base superalloy powder for additively manufactured turbine blades and vanes with high creep and oxidation resistance to 1010°C.
industries
Aerospace
Power Generation
Military & Defense
General Industrial
Space Exploration
SPECIFICATION
Powder Alloy

NiX XP

NiX XP is a non-magnetic, nickel-base superalloy powder for high-strength, heat- and corrosion-resistant parts up to 1204°C (2200°F).
industries
Aerospace
Power Generation
Military & Defense
Space Exploration
General Industrial
SPECIFICATION
AMS 7008
FEATURED PRODUCTS

Proven superalloys, qualified for production.

Our nickel-base superalloy powders are engineered for pushing performance boundaries.

Powder Alloy

718 XP

718 XP is a weldable nickel-based superalloy powder for high-strength, fatigue- and creep-resistant parts up to 704°C (1300°F).
Industries
Aerospace
Power Generation
Military & Defense
Space Exploration
General Industrial
Specification
Pending
Powder Alloy

625 XP

625 XP is a weldable nickel-base superalloy powder for high-strength, corrosion-resistant parts up to 1093°C (2000°F).
Industries
Aerospace
Power Generation
Military & Defense
Space Exploration
General Industrial
Specification
AMS 7001
Powder Alloy

282

282 is a gamma prime strengthened nickel-base superalloy powder with high creep strength and strong fabricability for additive manufacturing.
Industries
Aerospace
Power Generation
Military & Defense
General Industrial
Specification
Pending
CAPABILITIES

Innovation minded.
Production focused.

PRODUCTION

Powder capacity at scale.
Rooted in additive innovation.

Our powder operations are built for high-volume production, with vacuum inert gas atomization (VIGA) systems dedicated to nickel alloy powders and lot sizes up to 7 tons. Tight control of particle morphology, size distribution, and flowability delivers powders that print consistently batch to batch, across the workhorse chemistries that power additive manufacturing, including 625 XP, 718 XP, and an expanding portfolio qualified for production.

Atomization
Vacuum inert gas atomization (VIGA)
Lot Size
Up to 7 tons
LABORATORY

Excellence is the standard.

Behind every batch is deep metallurgical expertise and a fully accredited testing laboratory. We qualify powders to leading AMS, ASTM, and ISO specifications, supported by state-of-the-art automated quality systems. This framework gives customers confidence to move from initial heats and qualification runs to serial production with fewer surprises and shorter cycles.

Chemistry
Full elemental analysis and conformance to AMS, ASTM, ISO
Particle Size Distribution
Measured and controlled to specified ranges
Morphology & Flowability
Sphericity, apparent density, and flow rate
Traceability
Full documentation from atomization to certification
INSIDE THE FACILITY

Built for additive. Ready at scale.

Go inside our Temple, Texas facility, where cast ingot and powder superalloys are produced under one roof, and see how VIGA atomization and plant-wide automation build powders for what launches next.

Accredidations

Manufacturing, distribution, and laboratory credentials.

ISO-IEC 17025 MTL
2026

Accredited by A2LA. Confirms the laboratory's technical competence, method validity, and measurement traceability for reliable results.

NADCAP MTL
2026

Audit scheduled. Verifies materials testing procedures, equipment, and personnel against rigorous aerospace requirements.

AS9100 QMS
2026

Audit scheduled. Aerospace quality management system extending ISO 9001 with risk, configuration, safety, and counterfeit controls for manufacturing and services.

AS9145 APQP + AESQ AS13100
2026

Audits scheduled. Harmonized engine-industry requirements aligning suppliers with OEM expectations for defect prevention, APQP/PPAP, process capability, and continuous improvement.

AUTOMATION

Traceability. Repeatability.
Consistency.

Our atomization systems use real-time digital monitoring and closed-loop control of pour, gas flow, and temperature, with sensor feedback to minimize charge-to-charge variability.

A controlled workflow manages intake through packaging, with digital records supporting traceability, root-cause analysis, and process improvement. In-house lab data feeds directly into recipe controls, keeping quality stable as volumes scale.

FaQ

Frequently asked questions.

We are built to be a practical, dependable partner with flexible production options and clear communication on lead times. From early trials through full-rate output, we provide transparent pricing and direct access to metallurgical expertise to keep additive lines running.

01

Are additive specification sheets available?

In addition to our superalloy powder overview brochure, individual additive specification sheets are available upon request. Contact us below.

02

Where are SeAH’s production and engineering facilities located?

Our production facility is in Temple, Texas, in the heart of Central Texas and about an hour north of Austin. The location puts us in one of the country's fastest-growing regions, with strong access to talent, logistics, and the expanding industrial corridor along I-35.

03

What makes SeAH’s superalloys unique?

Our powders are produced via advanced vacuum melting and atomization with strict chemistry control, delivering the purity, morphology, and batch-to-batch consistency that additive applications demand.

04

How can I request a quote, product consultation, or facility tour?

Contact us through the inquiry form and a member of our team will respond promptly with tailored support.

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Keep your additive lines supplied and running.

From first powder trials through full-rate production, we are a customer-first partner for high-value powders and high-output programs. Tell our team about your alloy, specification, and volume requirements.