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Creep properties of single crystal Ni-base superalloys (SX): A comparison  between conventionally cast and additive manufactured CMSX-4 materials -  ScienceDirect
Creep properties of single crystal Ni-base superalloys (SX): A comparison between conventionally cast and additive manufactured CMSX-4 materials - ScienceDirect

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

Coatings | Free Full-Text | Investigations on the Diffusion of Platinum  between CMSX-4 Superalloy and Platinum-Enriched Bond Coat
Coatings | Free Full-Text | Investigations on the Diffusion of Platinum between CMSX-4 Superalloy and Platinum-Enriched Bond Coat

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

LOW CYCLE FATIGUE AND FRACTURE OF A COATED SUPERALLOY CMSX-4
LOW CYCLE FATIGUE AND FRACTURE OF A COATED SUPERALLOY CMSX-4

Additive manufacturing of CMSX-4 Ni-base superalloy by selective laser  melting: Influence of processing parameters and heat treatment -  ScienceDirect
Additive manufacturing of CMSX-4 Ni-base superalloy by selective laser melting: Influence of processing parameters and heat treatment - ScienceDirect

Microstructure and Mechanical Properties of CMSX-4 Single Crystals Prepared  by Additive Manufacturing | SpringerLink
Microstructure and Mechanical Properties of CMSX-4 Single Crystals Prepared by Additive Manufacturing | SpringerLink

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

Additive manufacturing of CMSX-4 Ni-base superalloy by selective laser  melting: Influence of processing parameters and heat treatment -  ScienceDirect
Additive manufacturing of CMSX-4 Ni-base superalloy by selective laser melting: Influence of processing parameters and heat treatment - ScienceDirect

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

Materials | Free Full-Text | The Effect of Withdrawal Rate on Crystal  Structure Perfection, Microstructure and Creep Resistance of Single Crystal  Castings Made of CMSX-4 Nickel-Based Superalloy
Materials | Free Full-Text | The Effect of Withdrawal Rate on Crystal Structure Perfection, Microstructure and Creep Resistance of Single Crystal Castings Made of CMSX-4 Nickel-Based Superalloy

The Microstructure and Properties of Laser Shock Peened CMSX4 Superalloy |  SpringerLink
The Microstructure and Properties of Laser Shock Peened CMSX4 Superalloy | SpringerLink

High temperature oxidation behaviour of single crystal superalloys RR3000  and CMSX-4
High temperature oxidation behaviour of single crystal superalloys RR3000 and CMSX-4

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

CMSX-4 single crystal interdendritic SEM microstructure: /'eutectic... |  Download Scientific Diagram
CMSX-4 single crystal interdendritic SEM microstructure: /'eutectic... | Download Scientific Diagram

Microstructure of CMSX-4. | Download Scientific Diagram
Microstructure of CMSX-4. | Download Scientific Diagram

Improved 3rd Generation Single Crystal Superalloy CMSX-4® Plus (SLS) – a  study of evolutionary alloy development
Improved 3rd Generation Single Crystal Superalloy CMSX-4® Plus (SLS) – a study of evolutionary alloy development

Figure 1 from HIGH TEMPERATURE MECHANICAL PROPERTIES OF CMSX 4 + YTTRIUM  SINGLE-CRYSTAL NICKEL-BASE SUPERALLOY | Semantic Scholar
Figure 1 from HIGH TEMPERATURE MECHANICAL PROPERTIES OF CMSX 4 + YTTRIUM SINGLE-CRYSTAL NICKEL-BASE SUPERALLOY | Semantic Scholar

University of Nevada, Reno
University of Nevada, Reno

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)