Nickel Superalloy FGH95 Powder D50 30-40μm ATOMFAIR®

$500.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Research grade FGH95 nickel superalloy powder with D50 30-40 μm, D90 ≤60 μm, ≥0.92 sphericity, and 650°C tensile strength ≥1450 MPa.

ATOMFAIR® FGH95

RESEARCH GRADE MATERIAL

Product Overview

Optimize structural consistency and mechanical reliability in high-temperature component validation using our premier spherical alloy framework. This powder system establishes superior layer-to-layer integrity during additive manufacturing, eliminating microstructural variance and serving as a stable high-performance baseline platform to meet targeted industrial pricing milestones.

Technical Specifications

PARAMETER DETAILS
1. Chemical Composition (wt.%)
Nickel (Ni) / Carbon (C) Balance / 0.04 – 0.09%
Chromium (Cr) / Cobalt (Co) 12.0 – 14.0% / 7.0 – 9.0%
Tungsten (W) / Molybdenum (Mo) 3.3 – 3.7% / 3.3 – 3.7%
Aluminum (Al) / Titanium (Ti) 3.3 – 3.7% / 2.3 – 2.7%
Iron (Fe) / Niobium (Nb) ≤0.5% / 3.3 – 3.7%
Tantalum (Ta) / Boron (B) ≤0.02% / 0.006 – 0.015%
Zirconium (Zr) / Silicon (Si) 0.03 – 0.07% / ≤0.2%
Manganese (Mn) ≤0.15%
2. Core Physical Design & Properties
Particle Size Range D10 ≥15 μm
Particle Size Range D50 30 – 40 μm
Particle Size Range D90 ≤60 μm
Sphericity ≥0.92
3. Typical Post-HIP & Heat-Treated Mechanical Parameters
Tensile Strength (650°C) ≥1450 MPa
Yield Strength (650°C) ≥1050 MPa
Elongation (650°C) ≥15.0%
Manufacturing Rules Processed under strict aerospace industry standards conditions
Alternative Options Explore our related catalog or custom dimensions. For urgent technical custom requests or bulk inquiries, please contact our support team.

Key Features & Advantages

  • Homogeneous Material Purity: Features an uncompromised structural configuration with highly uniform elemental distribution across the matrix.
  • Enhanced Operational Efficiency: Specifically engineered to demonstrate superior electrochemical performance, significantly boosting transfer kinetics at targeted bands.
  • Optimized Sintering/Microstructure: Advanced synthesis allows for lower required operating temperatures and ideal grain boundary integration during cell fabrication.

APPLICATION SCOPE: Highly optimized for small-scale disc components including turbocharger wheel shields, turbine discs, guide discs, and similar complex structural parts for aerospace and advanced engine applications.
PACKAGING: Sealed argon-filled protective bottles or specialized vacuum containment drums.
IMPORTANT NOTICE: This product is highly sensitive to ambient exposure. Keep containers tightly sealed or handle exclusively within an anhydrous inert gas environment to prevent phase contamination or degradation before thermal validation.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

This nickel-based superalloy powder is highly sensitive to ambient exposure and requires strict environmental control to prevent phase contamination. Storage and handling must be performed in sealed inert gas or vacuum conditions to ensure material integrity before thermal validation.

  • Storage Container Integrity: Keep containers tightly sealed to prevent ambient exposure and atmospheric contamination.
  • Inert Gas Handling: Handle the powder exclusively within an anhydrous inert gas environment to avoid oxidation or moisture uptake.
  • Degradation Prevention: Prevent phase contamination and material degradation before thermal validation by maintaining controlled conditions.

What is the typical tensile strength of FGH95 at 650°C after post-HIP and heat treatment, and how does it relate to its yield strength?

Post-HIP and heat-treated FGH95 exhibits a tensile strength of ≥1450 MPa and a yield strength of ≥1050 MPa at 650°C. This indicates a strength-to-weight ratio suitable for high-temperature disc components, with elongation ≥15% ensuring ductility under stress.

What particle size distribution does FGH95 have and how does it affect its use in additive manufacturing for small-scale disc components?

FGH95 has a particle size distribution with D10 ≥15 μm, D50 30–40 μm, and D90 ≤60 μm, with sphericity ≥0.92. This narrow distribution and high sphericity ensure consistent layer-to-layer deposition and minimal microstructural variance, optimized for components like turbocharger wheel shields and turbine discs.

What are the specific storage and handling requirements for FGH95 powder to prevent oxidation or phase contamination?

FGH95 is highly sensitive to ambient exposure. It must be stored in sealed argon-filled protective bottles or specialized vacuum containment drums, and handled exclusively within an anhydrous inert gas environment to prevent phase contamination or degradation before thermal validation.

ATOMFAIR® FGH95 is a nickel-based superalloy powder with controlled particle size distribution (D50 30–40 μm) and high sphericity (≥0.92), designed for additive manufacturing of high-temperature components. It offers high strength at 650°C but requires strict inert gas handling to prevent ambient degradation.

Positive

  • Homogeneous elemental distribution: Uncompromised structural configuration with uniform elemental distribution across the matrix ensures consistent mechanical properties in additive manufacturing.
  • High-temperature mechanical strength: Post-HIP and heat-treated tensile strength ≥1450 MPa and yield strength ≥1050 MPa at 650°C, suitable for turbine disc and similar aerospace components.

Trade-offs

  • Ambient exposure sensitivity: The powder is highly sensitive to ambient exposure; containers must be sealed or handled exclusively in an anhydrous inert gas environment to prevent phase contamination or degradation before thermal processing.
  • Specialized processing infrastructure: Requires strict aerospace industry standards processing conditions and inert gas handling, increasing operational complexity and cost for laboratory deployment.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).