A Sensory Material Approach for Reducing Variability in Additively Manufactured Metal Parts
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Summary
Detailed microstructural investigations revealed that when the laser scan distance is wide, there is an inhomogeneity in subgrain size, precipitate distribution, and dislocation density in the microstructure, responsible for the observed variability.
- Type
- article
- Published
- 2017-06-15
- Cited by
- 67
- References
- 49
- Access
- Open access
- OpenAlex
- https://openalex.org/W28620228
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3308294
Keywords
Computer science
References
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- The role of a low-energy–density re-scan in fabricating crack-free Al85Ni5Y6Co2Fe2 bulk metallic glass composites via selective laser melting
- Development of nickel‐titanium graded composition components
- Origin of abnormal multi-stage martensitic transformation behavior in aged Ni-rich Ti–Ni shape memory alloys
- Influence of cold work and heat treatment on the shape memory effect and plastic strain development of NiTi
- Energy input effect on morphology and microstructure of selective laser melting single track from metallic powder
- State of the Industry
- Single track formation in selective laser melting of metal powders
- Influence of Ni on martensitic phase transformations in NiTi shape memory alloys
- Thermomechanical cyclic response of an ultrafine-grained NiTi shape memory alloy
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- Towards High-Frequency Shape Memory Alloy Actuators Incorporating Liquid Metal Energy Circuits
- Enhancing the magnetic anisotropy energy by tuning the contact areas of Ag and Ni at the Ag/Ni interface.
- Design of novel materials for additive manufacturing - Isotropic microstructure and high defect tolerance
- Multivariate Calibration and Experimental Validation of a 3D Finite Element Thermal Model for Laser Powder Bed Fusion Metal Additive Manufacturing
- Anisotropic tensile and actuation properties of NiTi fabricated with selective laser melting
- Influence of Structure and Microstructure on Deformation Localization and Crack Growth in NiTi Shape Memory Alloys
- Effects of laser processing on the transformation characteristics of NiTi: A contribute to additive manufacturing
- Corrosion assessment of Ti-6Al-4V fabricated using laser powder-bed fusion additive manufacturing
- On the printability and transformation behavior of nickel-titanium shape memory alloys fabricated using laser powder-bed fusion additive manufacturing
- A Short Review on the Microstructure, Transformation Behavior and Functional Properties of NiTi Shape Memory Alloys Fabricated by Selective Laser Melting
- Layerwise Anomaly Detection in Laser Powder-Bed Fusion Metal Additive Manufacturing
- Experimental Determination of Residual Stresses Generated by Single Point Incremental Forming of AlSi10Mg Sheets Produced Using SLM Additive Manufacturing Process
- The Integration of Gallium-Based Liquid Metal Energy Circuits into Additively Manufactured Shape Memory Alloy Actuators for Increased Actuation Frequencies
- Effect of process parameters and electropolishing on the surface roughness of interior channels in additively manufactured nickel-titanium shape memory alloy actuators
- Uncertainty analysis of microsegregation during laser powder bed fusion
- Enhancing silicide formation in Ni/Si(111) by Ag-Si particles at the interface
- Assessing printability maps in additive manufacturing of metal alloys
- Finite interface dissipation phase field modeling of Ni–Nb under additive manufacturing conditions
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