Multi-material additive manufacturing: A systematic review of design, properties, applications, challenges, and 3D printing of materials and cellular metamaterials
Многоматериальное аддитивное производство: систематический обзор проектирования, свойств, применений, проблем, а также 3D-печати материалов и ячеистых метаматериалов
2023-01-27
SCID: 54.1/ngzkf2xf
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cellular metamaterialsdesign and optimizationmulti-material additive manufacturingmulti-material interfacespostprocessing
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Abstract (AI)
Extensive research on nature-inspired cellular metamaterials has globally inspired innovations using single material and limited multifunctionality. Additive manufacturing (AM) of intricate geometries using multi-materials provides additional functionality, environmental adaptation, and improved mechanical properties. Recently, several studies have been conducted on multi-material additive manufacturing (MMAM) technologies, including multi-materials, methodologies, design, and optimization. However, in the past six years, very few or no systematic and complete reviews have been conducted in this research domain. This review intends to comprehensively summarize MMAM systems and the working principles of its fundamental processes. Herein, the Multi-material combinations and their design, modeling, and analysis strategies have been reviewed systematically. In particular, the focus is on applications and opportunities for using MMAM for several industries and postprocessing MMAM fabricated parts. Furthermore, this review identified the limitations and challenges of existing software packages, MMAM processes, materials, and joining mechanisms, especially at the multi-material interfaces. Finally, we discuss the possible strategies to overcome the aforementioned technological challenges and state the future directions, which will provide insights to researchers and engineers designing and manufacturing complex nature-inspired objects.
Key Findings
1
MMAM applications across multiple industries and postprocessing methods for fabricated parts are comprehensively examined.
2
Multi-material additive manufacturing enables intricate cellular metamaterials with enhanced functionality, environmental adaptability, and mechanical properties compared with single-material designs.
3
Strategies for overcoming technological barriers and future research directions are proposed to support manufacturing complex, nature-inspired objects.
4
The review identifies major limitations in MMAM software, processes, materials, and joining mechanisms, particularly challenges at interfaces between dissimilar materials.
5
The review systematically summarizes MMAM systems, fundamental process principles, material combinations, and strategies for design, modeling, and analysis.
Research Object
Multi-material additive manufacturing (MMAM) systems and multimaterial cellular metamaterials produced by MMAM
Research Subject
MMAM systems, material combinations, design and modeling strategies, applications, postprocessing, and technological challenges, particularly at multi-material interfaces
Publication Details
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2023-01-27
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