Relating porosity to fatigue failure in additively manufactured alloy 718
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- Type
- article
- Published
- 2018-06-01
- Cited by
- 90
- References
- 13
- Access
- Open access
- OpenAlex
- https://openalex.org/W2800371388
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:139601197
Keywords
Porosity, Materials science, Process (computing), Alloy, Structural engineering
References
- Effect of heat treatment on the microstructure and mechanical properties of Inconel 718 processed by selective laser melting
- Fatigue and Strength Studies of Titanium 6Al–4V Fabricated by Direct Metal Laser Sintering
- Prediction of high-cycle fatigue life reliability of aluminum cast alloy from statistical characteristics of defects at meso-scale
- On the relationship between statistical distributions of defect size and fatigue life in 7050-T7451 thick plate and A356-T6 castings
- Site specific control of crystallographic grain orientation through electron beam additive manufacturing
- Process Maps for Predicting Residual Stress and Melt Pool Size in the Laser-Based Fabrication of Thin-Walled Structures
- Numerical analysis for the influence of casting micro porosity on fatigue life
- Long fatigue crack growth in Inconel 718 produced by selective laser melting
- Effects of building orientation and heat treatment on fatigue behavior of selective laser melted 17-4 PH stainless steel
- Fatigue performance of additive manufactured TiAl6V4 using electron and laser beam melting
- Synchrotron-Based X-ray Microtomography Characterization of the Effect of Processing Variables on Porosity Formation in Laser Power-Bed Additive Manufacturing of Ti-6Al-4V
- Effect of scan strategy on density and metallurgical properties of 17-4PH parts printed by Selective Laser Melting (SLM)
- Trends in Solidification Grain Size and Morphology for Additive Manufacturing of Ti-6Al-4V
Cited by
- The influence of additive manufacturing processing parameters on surface roughness and fatigue life
- Interrupted fatigue testing with periodic tomography to monitor porosity defects in wire + arc additive manufactured Ti-6Al-4V
- The effect of primary processing parameters on surface roughness in laser powder bed additive manufacturing
- Mechanisms driving high-cycle fatigue life of as-built Inconel 718 processed by laser powder bed fusion
- Long fatigue crack propagation behavior of laser powder bed-fused inconel 625 with intentionally-seeded porosity
- Microstructural porosity in additive manufacturing: The formation and detection of pores in metal parts fabricated by powder bed fusion
- An investigation into specimen property to part performance relationships for laser beam powder bed fusion additive manufacturing
- Effects of build direction on tensile and fatigue performance of selective laser melting Ti6Al4V titanium alloy
- Methods for Rapid Pore Classification in Metal Additive Manufacturing
- Primary Processing Parameters, Porosity Production, and Fatigue Prediction for Additively Manufactured Alloy 718
- Fatigue Damage of Aluminum Alloy Spot-Welded Joint Based on Defects Reconstruction
- ICME Approach to Determining Critical Pore Size of IN718 Produced by Selective Laser Melting
- Fatigue strength prediction of laser powder bed fusion processed Inconel 625 specimens with intentionally-seeded porosity: Feasibility study
- Influence of surface conditions and specimen orientation on high cycle fatigue properties of Inconel 718 prepared by laser powder bed fusion
- An analysis of fatigue failure mechanisms in an additively manufactured and shot peened IN 718 nickel superalloy
- Fabricated shape estimation for additive manufacturing processes with uncertainty
- Modeling and Monitoring of the Effect of Scan Strategy on Microstructure in Additive Manufacturing
- Rapid initiation and growth life characterization of additively manufactured alloy 718 through compliance monitoring
- Effects of laser-energy density and build orientation on the structure–property relationships in as-built Inconel 718 manufactured by laser powder bed fusion
- Prediction of microstructural defects in additive manufacturing from powder bed quality using digital image correlation
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