Keyword search (4,164 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:Numerical Simulation of the Effect of Particle and Substrate Preheating on Porosity Level and Residual Stress of As-sprayed Ti6Al4V Components
Authors:Khamsepour PMoreau CDolatabadi A
Link:https://pubmed.ncbi.nlm.nih.gov/38624932/
DOI:10.1007/s11666-021-01286-9
Publication:Journal of thermal spray technology
Keywords:elastic-plastic simulationhigh-velocity air fuelparticle temperatureporosity levelresidual stresssolid-state additive manufacturing
PMID:38624932 Category: Date Added:2024-04-16
Dept Affiliation: ENCS
1 Department of Mechanical, Industrial and Aerospace Engineering, Concordia University, Montreal, Québec Canada.
2 Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, ON Canada.

Description:

Nowadays, in the aerospace industry, additive manufacturing and repairing damaged metallic components like Ti6Al4V samples have grabbed attention. Among repairing techniques, solid-state additive manufacturing processes like cold spray are promising because of their unique benefits such as high deposition rate with almost no oxidation in the deposited materials. However, its main drawback is the level of porosity of as-sprayed samples. To increase density and inter-particle bonding, deposited particles must go through more degrees of deformation by increasing particle velocity and particle temperature. In order to increase these two parameters simultaneously, high-velocity air fuel (HVAF) can be utilized. For understanding the effect of using HVAF on particle deformation, a proper elastic-plastic finite-element-based simulation is required. The obtained outcomes show that enhancing particle velocity and providing more kinetic energy will increase particle deformation and sample density. Importantly, increasing particle temperature will seize particle deformation by thermal softening effect, i.e., enhancing as-sprayed sample density, while rising substrate temperature by preheating will soften the substrate resulting in a decrease in particle deformation.





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