Keyword search (4,163 papers available)

"additive manufacturing" Keyword-tagged Publications:

Title Authors PubMed ID
1 Effects of delayed post-polymerization on physical, chemical, and biological properties of a 3D printing interim resin Choi Y; Comeau P; Lim BS; Manso AP; Chung SH; 41152035
ENCS
2 Printing of Cantilevers and Millifluidic Devices Using Ultrasound Waves Foroughi S; Karamzadeh V; Habibi M; Packirisamy M; 40538575
ENCS
3 Electroforming of Personalized Multi-Level and Free-Form Metal Parts Utilizing Fused Deposition Modeling-Manufactured Molds Hamed H; Aghili S; Wüthrich R; Abou-Ziki JD; 38930706
ENCS
4 Numerical Simulation of the Effect of Particle and Substrate Preheating on Porosity Level and Residual Stress of As-sprayed Ti6Al4V Components Khamsepour P; Moreau C; Dolatabadi A; 38624932
ENCS
5 Interlacing Infills for Multi-Material Fused Filament Fabrication Using Layered Depth Material Images Mustafa I; Kwok TH; 35630240
ENCS
6 Analysis and Design of Lattice Structures for Rapid-Investment Casting Christopher T Richard 34500961
ENCS
7 Influence of Homogenization and Solution Treatments Time on the Microstructure and Hardness of Inconel 718 Fabricated by Laser Powder Bed Fusion Process. Fayed EM, Shahriari D, Saadati M, Brailovski V, Jahazi M, Medraj M 32516909
ENCS

 

Title:Analysis and Design of Lattice Structures for Rapid-Investment Casting
Authors:Christopher T Richard
Link:https://pubmed.ncbi.nlm.nih.gov/34500961/
DOI:10.3390/ma14174867
Publication:Materials (Basel, Switzerland)
Keywords:additive manufacturingcastabilitydigital light processing (DLP)lattice structurerapid-investment casting
PMID:34500961 Category: Date Added:2021-09-10
Dept Affiliation: ENCS
1 Department of Mechanical, Industrial and Aerospace Engineering, Concordia University, Montreal, QC H3G 1M8, Canada.

Description:

This paper aims to design lattice structures for rapid-investment casting (RIC), and the goal of the design methodology is to minimize casting defects that are related to the lattice topology. RIC can take full advantage of the unprecedented design freedom provided by AM. Since design for RIC has multiple objectives, we limit our study to lattice structures that already have good printability, i.e., self-supported and open-celled, and improve their castability. To find the relationship between topological features and casting performance, various lattice topologies underwent mold flow simulation, finite element analysis, casting experiments, and grain structure analysis. From the results, the features established to affect casting performance in descending order of importance are relative strut size, joint number, joint valence, and strut angle distribution. The features deemed to have the most significant effect on tensile and shear mechanical performance are strut angle distribution, joint number, and joint valence. The practical application of these findings is the ability to optimize the lattice topology with the end goal of manufacturing complex lattice structures using RIC. These lattice structures can be used to create lightweight components with optimized functionality for various applications such as aerospace and medical.





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