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Improved Single Crystal Superalloys, CMSX-4®(SLS)[La+Y] and CMSX-486®
Improved Single Crystal Superalloys, CMSX-4®(SLS)[La+Y] and CMSX-486®

Novel casting processes for single-crystal turbine blades of superalloys
Novel casting processes for single-crystal turbine blades of superalloys

Materials | Free Full-Text | Methodology for Revealing the Phases and  Microstructural Constituents of the CMSX-4 Nickel-Based Superalloy  Implicating Their Computer-Aided Detection for Image Analysis
Materials | Free Full-Text | Methodology for Revealing the Phases and Microstructural Constituents of the CMSX-4 Nickel-Based Superalloy Implicating Their Computer-Aided Detection for Image Analysis

Metals | Free Full-Text | Ultra-High Temperature Creep of Ni-Based SX  Superalloys at 1250 °C
Metals | Free Full-Text | Ultra-High Temperature Creep of Ni-Based SX Superalloys at 1250 °C

CMSX-4 microstructure with the typical γ-γ' phases observed in SEM. |  Download Scientific Diagram
CMSX-4 microstructure with the typical γ-γ' phases observed in SEM. | Download Scientific Diagram

PDF] MICROSTRUCTURE DEGRADATION OF NICKEL BASE SINGLE CRYSTAL SUPERALLOY  CMSX-4 | Semantic Scholar
PDF] MICROSTRUCTURE DEGRADATION OF NICKEL BASE SINGLE CRYSTAL SUPERALLOY CMSX-4 | Semantic Scholar

Effect of Heat Treatment on the Microstructures of CMSX-4® Processed  through Scanning Laser Epitaxy (SLE)
Effect of Heat Treatment on the Microstructures of CMSX-4® Processed through Scanning Laser Epitaxy (SLE)

Initial microstructure of CMSX-4 superalloy. | Download Scientific Diagram
Initial microstructure of CMSX-4 superalloy. | Download Scientific Diagram

SEM images of the CMSX-4 samples after four different heat treatment... |  Download Scientific Diagram
SEM images of the CMSX-4 samples after four different heat treatment... | Download Scientific Diagram

Kobayashi reports
Kobayashi reports

Dislocation microstructures of single crystal ⟨001⟩ CMSX-4 specimens  tensile tested at 700 and 1000°C
Dislocation microstructures of single crystal ⟨001⟩ CMSX-4 specimens tensile tested at 700 and 1000°C

PDF] Creep Deformation and Rupture Behaviour of the Monocrystalline  Superalloy CMSX-4: A Comparison with the Alloy SRR 99 | Semantic Scholar
PDF] Creep Deformation and Rupture Behaviour of the Monocrystalline Superalloy CMSX-4: A Comparison with the Alloy SRR 99 | Semantic Scholar

Very High Cycle Fatigue of Ni-Based Single-Crystal Superalloys at High  Temperature | SpringerLink
Very High Cycle Fatigue of Ni-Based Single-Crystal Superalloys at High Temperature | SpringerLink

Methodology for Revealing the Phases and Microstructural Constituents of  the CMSX-4 Nickel-Based Superalloy Implicating Their Co
Methodology for Revealing the Phases and Microstructural Constituents of the CMSX-4 Nickel-Based Superalloy Implicating Their Co

Stress Corrosion Testing of CMSX-4, CM247LC DS and IN6203DS Ni-Base  Superalloys | SpringerLink
Stress Corrosion Testing of CMSX-4, CM247LC DS and IN6203DS Ni-Base Superalloys | SpringerLink

Initial γ/γ' microstructure of CMSX-4. 5μm | Download Scientific Diagram
Initial γ/γ' microstructure of CMSX-4. 5μm | Download Scientific Diagram

Solidification behaviour of single crystalline nickel based superalloys |  Ústav materiálov a mechaniky strojov
Solidification behaviour of single crystalline nickel based superalloys | Ústav materiálov a mechaniky strojov

Nickel – Institute of Structural Materials
Nickel – Institute of Structural Materials

Improved Single Crystal Superalloys, CMSX-4®(SLS)[La+Y] and CMSX-486®
Improved Single Crystal Superalloys, CMSX-4®(SLS)[La+Y] and CMSX-486®