Artificial Neural Networks for Modeling Mechanical and Microstructural Properties of Spark Plasma Sintered Powders
Katarzyna Peta, Jakub Wiśniewski, Piotr Siwak

TL;DR
This paper uses artificial neural networks to model and optimize the properties of 316L stainless steel made with spark plasma sintering.
Contribution
A novel integration of ANNs with SPS process optimization for predicting material properties.
Findings
ANN models achieved high accuracy (R2 > 0.95) in predicting material properties based on SPS parameters.
Validation experiments confirmed the models' reliability for industrial use with 316L stainless steel.
Abstract
This paper presents a novel approach to modeling and optimizing the mechanical and microstructural properties of 316L stainless steel surfaces manufactured by spark plasma sintering (SPS). The integration of artificial intelligence techniques, particularly artificial neural networks (ANNs), with the optimization of material properties and the spark plasma sintering (SPS) process reflects the growing emphasis on intelligent manufacturing in advanced industrial applications. The surface functionality depends on the material’s mechanical and microstructural characteristics. The optimization technique was developed through the processing of a comprehensive set of measurement data, forming the foundation for the artificial intelligence method. To model the relationships between SPS parameters (sintering temperature and holding time) and material properties (density, porosity, hardness, and…
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Taxonomy
TopicsPowder Metallurgy Techniques and Materials · Surface Treatment and Coatings · Metal and Thin Film Mechanics
