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Meeting Materials Science & Technology 2020
Symposium Additive Manufacturing: Mechanical Behavior of Lattice Structures Produced via AM
Presentation Title Residual Stress Mitigation in Lattice Structures Built by Laser Powder Bed Fusion
Author(s) Anna K. Hayes, Rachel Gorelik, Krishna Muralidharan
On-Site Speaker (Planned) Anna K. Hayes
Abstract Scope Laser powder bed fusion (LPBF) additive manufacturing offers unprecedented design freedom including the fabrication of technologically relevant lightweight, topologically optimized lattice structures. A limitation in the LPBF process however, is the lack of control over residual stress, negatively affecting mechanical properties and geometrical accuracy. In this regard, using thermomechanical modeling as the primary investigative tool and Inconel 718 as the material of choice, the effect of part geometry, strut diameter, and lattice type on developed residual stress and part distortion is examined. Particular attention is paid to heat accumulation and thermal gradients within the fabricated part and their interplay with residual stress. Using these models as the basis, recommendations are provided for LPBF processing parameters to limit residual stress within topologically optimized lattice structures, which are experimentally verified via targeted fabrication of such structures.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Additive Manufacturing Laser Powder Bed Fusion Optimization for Dissolvable Supports with SS 316L
Direct Metal Laser Sintering Strategies for Fabrication of Finer Resolution Cellular Structures
Effect of Processing on Micro/Mesoscale Structures and Properties of Stainless Steel 316L Lattices
High-Throughput Screening of Additive Lattices using a Deep Neural Network
Mechanical Properties of Additively Manufactured Metal Lattices
Mesoscale Open Structures for Lightweight Structures
Microstructure and Mechanical Properties of Additively Manufactured Lattice Structures of Co-Cr-Mo Alloy
Predicting Interfacial Cracking between Solid and Lattice Support Structure during Laser Powder Bed Fusion Processing
Predicting the Response of Additively Manufactured IN625 Thin-walled Elements
Process-Aware Design of Additively Manufactured Lattice Structures
Residual Stress Mitigation in Lattice Structures Built by Laser Powder Bed Fusion
Tailoring Hierarchical Material Performance Through Process Manipulation

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