Rogkas Nikolaos, Vakouftsis Christos, Spitas Vasilios, Lagaros Nikos D, Georgantzinos Stelios K
Laboratory of Machine Design, National Technical University of Athens, 9 Iroon Polytechniou, 15780 Zografou, Greece.
Institute of Structural Analysis and Antiseismic Research, School of Civil Engineering, National Technical University of Athens, 9 Iroon Polytechniou, 15780 Zographou, Greece.
Micromachines (Basel). 2022 May 15;13(5):775. doi: 10.3390/mi13050775.
Additive manufacturing (AM) technology has been researched and developed for almost three decades. Microscale AM is one of the fastest-growing fields of research within the AM area. Considerable progress has been made in the development and commercialization of new and innovative microscale AM processes, as well as several practical applications in a variety of fields. However, there are still significant challenges that exist in terms of design, available materials, processes, and the ability to fabricate true three-dimensional structures and systems at a microscale. For instance, microscale AM fabrication technologies are associated with certain limitations and constraints due to the scale aspect, which may require the establishment and use of specialized design methodologies in order to overcome them. The aim of this paper is to review the main processes, materials, and applications of the current microscale AM technology, to present future research needs for this technology, and to discuss the need for the introduction of a design methodology. Thus, one of the primary concerns of the current paper is to present the design aspects describing the comparative advantages and AM limitations at the microscale, as well as the selection of processes and materials.
增材制造(AM)技术的研究与开发已历经近三十年。微尺度增材制造是增材制造领域中发展最为迅速的研究方向之一。在新型微尺度增材制造工艺的开发与商业化方面已取得了显著进展,并且在多个领域也有了一些实际应用。然而,在设计、可用材料、工艺以及在微尺度上制造真正的三维结构和系统的能力方面,仍然存在重大挑战。例如,由于尺度方面的原因,微尺度增材制造技术存在一定的局限性和限制,这可能需要建立和使用专门的设计方法来克服这些问题。本文旨在综述当前微尺度增材制造技术的主要工艺、材料和应用,提出该技术未来的研究需求,并讨论引入设计方法的必要性。因此,本文的主要关注点之一是阐述在微尺度下描述比较优势和增材制造局限性的设计方面,以及工艺和材料的选择。