Additive Manufacturing Post-Processing Treatments, a Review with Emphasis on Mechanical Characteristics
Методы постобработки изделий аддитивного производства: обзор с акцентом на механические характеристики
2023-06-26
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AM anisotropyAdditive manufacturingMechanical characteristicsMicrostructurePost-processing treatments
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Abstract (AI)
Additive manufacturing (AM) comes in various types of technologies and comparing it with traditional fabrication methods provides the possibility of producing complex geometric parts directly from Computer-Aided Designs (CAD). Despite answering challenges such as poor workability and the need for tooling, the anisotropy of AM constructions is the most serious issue encountered by their application in industry. In order to enhance the microstructure and functional behavior of additively fabricated samples, post-processing treatments have gained extensive attention. The aim of this research is to provide critical, comprehensive, and objective methods, parameters and results' synthesis for post-processing treatments applied to AM builds obtained by 3D printing technologies. Different conditions for post-processing treatments adapted to AM processes were explored in this review, and demonstrated efficiency and quality enhancement of parts. Therefore, the collected results show that mechanical characteristics (stress state, bending stress, impact strength, hardness, fatigue) have undergone significant improvements for 3D composite polymers, copper-enhanced and aluminum-enhanced polymers, shape memory alloys, high-entropy alloys, and stainless steels. However, for obtaining a better mechanical performance, the research papers analyzed revealed the crucial role of related physical characteristics: crystallinity, viscosity, processability, dynamic stability, reactivity, heat deflection temperature, and microstructural structure.
Key Findings
1
Additive manufacturing enables direct fabrication of complex geometries from CAD while reducing workability challenges and tooling requirements.
2
Anisotropy is identified as the most serious barrier limiting the industrial application of additively manufactured structures.
3
Improved mechanical performance depends critically on physical characteristics including crystallinity, viscosity, processability, dynamic stability, reactivity, heat deflection temperature, and microstructure.
4
Post-processing treatments significantly improve stress state, bending stress, impact strength, hardness, and fatigue properties across several AM material classes.
5
The review synthesizes post-processing methods, conditions, parameters, and outcomes designed to improve the microstructure and functional performance of AM parts.
Research Object
additively manufactured parts and materials produced by 3D printing, including composite polymers, copper- and aluminum-enhanced polymers, shape memory alloys, high-entropy alloys, and stainless steels
Research Subject
the effects of post-processing treatments on the mechanical characteristics and related physical and microstructural properties of additively manufactured parts
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2023-06-26
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