Additive manufacturing of structural materials

Аддитивное производство конструкционных материалов
Jian Lü, Xiaofeng Zhang, Xuliang Chen, Liu Guo, Peiyu Wang, Yunhu He, Lizi Cheng, Mengke Huo, Jianan Yin, Fengqian Hao, Siyao Chen, Shenghui Yi, Lei Wan, Zhengyi Mao, Zhou Chen, Xu Wang, Zhaowenbo Cao, Guo Liu
2021-04-01

4D printingadditive manufacturingmulti-material additive manufacturingmulti-scale additive manufacturingstructural materials
Additive manufacturing (AM), also known as three-dimensional (3D) printing, has boomed over the last 30 years, and its use has accelerated during the last 5 years. AM is a materials-oriented manufacturing technology, and printing resolution versus printing scalability/speed trade-off exists among various types of materials, including polymers, metals, ceramics, glasses, and composite materials. Four-dimensional (4D) printing, together with versatile transformation systems, drives researchers to achieve and utilize high dimensional AM. Multiple perspectives of the AM of structural materials have been raised and illustrated in this review, including multi-material AM (MMa-AM), multi-modulus AM (MMo-AM), multi-scale AM (MSc-AM), multi-system AM (MSy-AM), multi-dimensional AM (MD-AM), and multi-function AM (MF-AM). The rapid and tremendous development of AM materials and methods offers great potential for structural applications, such as in the aerospace field, the biomedical field, electronic devices, nuclear industry, flexible and wearable devices, soft sensors, actuators, and robotics, jewelry and art decorations, land transportation, underwater devices, and porous structures.
1
A fundamental trade-off exists between printing resolution and scalability or speed across polymers, metals, ceramics, glasses, and composites.
2
Additive manufacturing has rapidly expanded over the past 30 years, with particularly accelerated adoption during the last five years.
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Advancing additive-manufacturing materials and methods offers substantial potential for applications spanning aerospace, biomedicine, electronics, nuclear technology, robotics, transportation, and porous structures.
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Four-dimensional printing and transformation systems enable fabrication and utilization of structures with higher dimensional complexity.
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The review organizes structural-material additive manufacturing into multi-material, multi-modulus, multi-scale, multi-system, multi-dimensional, and multi-function approaches.

Additive manufacturing (AM) of structural materials

multi-material, multi-modulus, multi-scale, multi-system, multi-dimensional, and multi-function additive manufacturing capabilities and their structural applications

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Publication Date
2021-04-01
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Authors
Jian Lü
Xiaofeng Zhang
Xuliang Chen
Liu Guo
Peiyu Wang
Yunhu He
Lizi Cheng
Mengke Huo
Jianan Yin
Fengqian Hao
Siyao Chen
Shenghui Yi
Lei Wan
Zhengyi Mao
Zhou Chen
Xu Wang
Zhaowenbo Cao
Guo Liu
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