金属-聚合物纳米复合材料在组织工程应用三维生物打印中的最新进展

IF 3.3 Q3 NANOSCIENCE & NANOTECHNOLOGY
Bableen Flora, Rohith Kumar, Ramisa Mahdieh, Kimiya Zarei, Shaghayegh Chehrazi, S. Kaur, Arushi Sharma, Priyanka Mohapatra, Akshita Sakshi, Anjuvan Singh, K. Kesari, P. K. Gupta
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引用次数: 0

摘要

使用增材制造或3D打印的快速加工是一种新兴的制造技术,它有可能仅使用计算机和设计程序就彻底改变复杂零件的生产。使用这些印刷零件,可以实现具有卓越尺寸精度和较低成本的轻型结构,以实现可定制的几何形状。近年来,聚合物、金属和陶瓷的固有限制促使研究人员转向卓越的替代复合材料,以增强机械和其他关键特性;目前的3D打印研究遵循从纯材料到复合材料的这条路线。本文综述了使用增材制造方法生产的复合材料的特性、性能和未来用途。此外,为了讨论增材制造的现状,本文还制造了许多技术,包括机器人、机器学习、芯片上的组织和4D生物打印。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Updates on Metal-Polymer Nanocomposites in 3D Bioprinting for Tissue Engineering Applications
Rapid tooling using additive manufacturing, or 3D printing, is an emerging manufacturing technology that has the potential to revolutionize the production of complex parts using only a computer and a design program. Lightweight structures with excellent dimensional precision and lower cost for customizable geometries are possible with these printed parts. In recent years, inherent constraints of polymers, metals, and ceramics have pushed researchers toward superior alternative composite materials to boost mechanical and other critical features; current 3D printing research follows this route from neat to composite materials. The characteristics, performance, and future uses of composite materials produced using additive manufacturing methods are discussed in this review. In addition, to discuss the state of the art in additive manufacturing, this article also fabricated many technologies, including robotics, machine learning, organ-on-a-chip, and 4D bioprinting.
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来源期刊
Nanofabrication
Nanofabrication NANOSCIENCE & NANOTECHNOLOGY-
自引率
10.30%
发文量
13
审稿时长
16 weeks
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