Mechanical properties of lightweight 316L stainless steel lattice structures fabricated by selective laser melting
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- Type
- article
- Published
- 2019-11-05
- Cited by
- 194
- References
- 31
- Access
- Open access
- OpenAlex
- https://openalex.org/W2963900186
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:200042423
Keywords
Materials science, Selective laser melting, Porosity, Composite material, Compressive strength
References
- Structural Design, Optimization and Application of 3D Re-entrant Auxetic Structures.
- The topological design of multifunctional cellular metals
- Evaluations of cellular lattice structures manufactured using selective laser melting
- Parametric analysis of thermal behavior during selective laser melting additive manufacturing of aluminum alloy powder
- Efficient Design-Optimization of Variable-Density Hexagonal Cellular Structure by Additive Manufacturing: Theory and Validation
- Surface roughness prediction using measured data and interpolation in layered manufacturing
- Effects of scan line spacing on pore characteristics and mechanical properties of porous Ti6Al4V implants fabricated by selective laser melting
- Micro-CT-based improvement of geometrical and mechanical controllability of selective laser melted Ti6Al4V porous structures
- Compressive Strain at the Onset of Densification of Cellular Solids
- Fabrication, properties, and applications of porous metals with directional pores
- Finite element modelling of the compressive response of lattice structures manufactured using the selective laser melting technique
- Properties of Ti–6Al–4V non-stochastic lattice structures fabricated via electron beam melting
- Selective Laser Melting: a regular unit cell approach for the manufacture of porous, titanium, bone in-growth constructs, suitable for orthopedic applications.
- Mechanical properties of a Ti6Al4V porous structure produced by selective laser melting
- Advanced lightweight 316L stainless steel cellular lattice structures fabricated via selective laser melting
- An investigation into the compressive properties of stainless steel micro-lattice structures
- Selective laser melting of iron-based powder
- Rapid manufacturing of lattice structures with selective laser melting
- Finite element simulation of the temperature and stress fields in single layers built without-support in selective laser melting
- Numerical simulation of the fatigue behavior of additive manufactured titanium porous lattice structures.
Cited by
- Effect of hot cracking on the mechanical properties of Hastelloy X superalloy fabricated by laser powder bed fusion additive manufacturing
- Anisotropy characteristics of microstructures for bone substitutes and porous implants with application of additive manufacturing in orthopaedic
- Parametric design of Voronoi-based lattice porous structures
- Hybrid additive manufacturing of steels and alloys
- Laser powder bed fusion manufacturing of aluminum honeycomb structures: Theory and testing
- Mesoscopic-Scale Numerical Simulation Including the Influence of Process Parameters on SLM Single-Layer Multi-pass Formation
- Dry mechanical-electrochemical polishing of selective laser melted 316L stainless steel
- Experimental and empirical model analysis of microsurface texturing on 316 L press-fit joints fabricated by selective laser melting
- Effect of powder bed fusion laser melting process parameters, build orientation and strut thickness on porosity, accuracy and tensile properties of an auxetic structure in IN718 alloy
- Compressive Properties of Al-Si Alloy Lattice Structures with Three Different Unit Cells Fabricated via Laser Powder Bed Fusion
- Dimensionless process development for lattice structure design in laser powder bed fusion
- On the macro- and micro-deformation mechanisms of selectively laser melted damage tolerant metallic lattice structures
- Design and Optimization of Lattice Structures: A Review
- Meta-modeling of Lattice Mechanical Responses via Design of Experiments
- Energy Absorption and Deformation Behavior of 3D Printed Triply Periodic Minimal Surface Stainless Steel Cellular Structures under Compression
- Compressive Properties of 316L Stainless Steel Topology‐Optimized Lattice Structures Fabricated by Selective Laser Melting
- Mechanical characterization and properties of laser-based powder bed–fused lattice structures: a review
- Uniaxial compression of bi-directionally graded lattice structures: Finite element modelling
- Experimental study on the high-damping properties of metallic lattice structures obtained from SLM
- Additively manufactured Ti6Al4V lattice structures: mechanical characterization and numerical investigation
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