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多材料增材制造中的多样性综述:工艺、能力、规模和结构

A Review on Multiplicity in Multi-Material Additive Manufacturing: Process, Capability, Scale, and Structure.

作者信息

Verma Ayush, Kapil Angshuman, Klobčar Damjan, Sharma Abhay

机构信息

Department of Mechanical Engineering, Netaji Subhas University of Technology, New Delhi 110078, India.

Department of Materials Engineering, Faculty of Engineering Technology, KU Leuven, Campus De Nayer, 2860 Sint-Katelijne Waver, Belgium.

出版信息

Materials (Basel). 2023 Jul 26;16(15):5246. doi: 10.3390/ma16155246.

Abstract

Additive manufacturing (AM) has experienced exponential growth over the past two decades and now stands on the cusp of a transformative paradigm shift into the realm of multi-functional component manufacturing, known as multi-material AM (MMAM). While progress in MMAM has been more gradual compared to single-material AM, significant strides have been made in exploring the scientific and technological possibilities of this emerging field. Researchers have conducted feasibility studies and investigated various processes for multi-material deposition, encompassing polymeric, metallic, and bio-materials. To facilitate further advancements, this review paper addresses the pressing need for a consolidated document on MMAM that can serve as a comprehensive guide to the state of the art. Previous reviews have tended to focus on specific processes or materials, overlooking the overall picture of MMAM. Thus, this pioneering review endeavors to synthesize the collective knowledge and provide a holistic understanding of the multiplicity of materials and multiscale processes employed in MMAM. The review commences with an analysis of the implications of multiplicity, delving into its advantages, applications, challenges, and issues. Subsequently, it offers a detailed examination of MMAM with respect to processes, materials, capabilities, scales, and structural aspects. Seven standard AM processes and hybrid AM processes are thoroughly scrutinized in the context of their adaptation for MMAM, accompanied by specific examples, merits, and demerits. The scope of the review encompasses material combinations in polymers, composites, metals-ceramics, metal alloys, and biomaterials. Furthermore, it explores MMAM's capabilities in fabricating bi-metallic structures and functionally/compositionally graded materials, providing insights into various scale and structural aspects. The review culminates by outlining future research directions in MMAM and offering an overall outlook on the vast potential of multiplicity in this field. By presenting a comprehensive and integrated perspective, this paper aims to catalyze further breakthroughs in MMAM, thus propelling the next generation of multi-functional component manufacturing to new heights by capitalizing on the unprecedented possibilities of MMAM.

摘要

在过去二十年中,增材制造(AM)呈指数级增长,如今正处于向多功能部件制造领域(即多材料增材制造,MMAM)转型的变革性范式转变的风口浪尖。与单材料增材制造相比,MMAM的进展较为缓慢,但在探索这一新兴领域的科学技术可能性方面已取得重大进展。研究人员进行了可行性研究,并研究了多种材料沉积的各种工艺,包括聚合物、金属和生物材料。为促进进一步发展,本综述论文满足了对MMAM综合文档的迫切需求,该文档可作为该领域技术现状的全面指南。以往的综述往往侧重于特定工艺或材料,忽略了MMAM的整体情况。因此,这篇开创性的综述致力于综合集体知识,全面了解MMAM中使用的多种材料和多尺度工艺。综述首先分析了多样性的影响,深入探讨其优点、应用、挑战和问题。随后,它对MMAM在工艺、材料、能力、尺度和结构方面进行了详细研究。在将七种标准增材制造工艺和混合增材制造工艺应用于MMAM的背景下进行了全面审查,并列举了具体示例、优点和缺点。综述范围涵盖聚合物、复合材料、金属-陶瓷、金属合金和生物材料中的材料组合。此外,它还探讨了MMAM在制造双金属结构和功能/成分梯度材料方面的能力,提供了对各种尺度和结构方面的见解。综述最后概述了MMAM未来的研究方向,并对该领域多样性的巨大潜力给出了总体展望。通过呈现全面和综合的观点,本文旨在推动MMAM取得进一步突破,从而通过利用MMAM前所未有的可能性,将下一代多功能部件制造提升到新高度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9085/10420305/770b6fe65f7a/materials-16-05246-g001.jpg

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