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Additive manufacturing of metallic lattice structures: Unconstrained design, accurate fabrication, fascinated performances, and challenges

期刊

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.mser.2021.100648

关键词

Additive manufacturing; Lattice structures; Metallic materials; Topography optimization; Bioimplant; Energy absorber

资金

  1. Jiangsu Province six talent peaks project [XCL-117]
  2. National Natural Science Foundation of China [52001030]
  3. Natural Science Foundation of Jiangsu [BK20201456]
  4. Alexander von Humboldt Foundation
  5. Open Foundation of Guangxi Key Laboratory of Processing for Non-ferrous Metals and Featured Materials, Guangxi University [2020GXYSOF01, 2021GXYSOF03]
  6. Australian Research Council [DP110101653, DP130103592]

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Lattice structures, also known as architected cellular structures, have been widely used in various industrial sectors due to their excellent performance characteristics. Conventional manufacturing methods for lattice structures are often complex and limited, while additive manufacturing technology, based on computer-aided design models, offers a flexible and efficient platform for manufacturing complex components like lattice structures with minimal material waste. This overview highlights the potential of additive manufacturing in providing accurate fabrication for lattice structures with good quality by summarizing the state-of-the-art progress in metallic lattice structures manufacturing.
Lattice structures, which are also known as architected cellular structures, have been applied in various industrial sectors, owing to their fascinated performances, such as low elastic modulus, high stiffness-to-weight ratio, low thermal expansion coefficient, and large specific surface area. The lattice structures fabricated by conventional manufacturing technologies always involve complicated process control, additional assembly steps, or other uncontrollable factors. Furthermore, limited types of unit cells can be used to construct lattice structures when using conventional processes. Fortunately, additive manufacturing technology, based on a layer-by-layer process from computer-aided design models, demonstrates the unique capability and flexibility and provides an ideal platform in manufacturing complex components like lattice structures, resulting in an effective reduction in the processing time to actual application and minimum of material waste. Therefore, additive manufacturing relieves the constraint of structure design and provides accurate fabrication for lattice structures with good quality. This work systematically presents an overview of conventional manufacturing methods and novel additive manufacturing technologies for metallic lattice structures. Afterward, the design, optimization, a variety of properties, and applications of metallic lattice structures produced by additive manufacturing are elaborated. By summarizing state-of-the-art progress of the additively manufactured metallic lattice structures, limitations and future perspectives are also discussed.

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