论文标题
纳米陶瓷的3D打印:当前状态和未来观点
3D printing of nanoceramics: Present status and future perspectives
论文作者
论文摘要
在涉及添加剂制造(AM)制造各种材料的技术的材料研究中,目前的最新趋势是主要集中于纳米陶瓷的3D打印(3DP),目前从基本和工业的角度来看,这是具有这些技术在这些技术中所提供的巨大多功能性的基本和工业观点,这在这些技术上具有地理位置上的复杂性。其两个主要原因是:使用3DP技术制造的纳米陶瓷零件的低密度和机械性能差。 3DP制造的纳米陶瓷部分的两个上述特征背后的基本原因是微观结构不均匀性的很大程度,主要是由于逐点逐点的冷却速率的变化,逐线或层划分的方法划分或层划分方法,然后以3DP技术进行了3DP技术,随后是3DP技术,导致了一定的缺陷。此外,使用3DP技术生产的纳米陶瓷零件的工业应用非常有限,这主要是由于这些纳米陶瓷零件的高生产成本。尽管在过去的十年中,基于3DP的技术进行了相当多的工作,用于制造具有增强的陶瓷零件,并提高了机械性能,但是,对3DP制作的3DP纳米陶瓷组件的微结构的相关性的了解有限,但有限的了解。本评论的目的是回顾一些用于制造纳米陶瓷的最常用的3DP技术,并概述了未来的观点,与通过这些材料中的相关性特征方法来开发系统的结构 - 特性相关性有关。
In materials research involving additive manufacturing (AM)-based techniques for fabrication of a wide variety of materials, the latest trend at present is to focus largely on 3D printing (3DP) of nanoceramics, which at present is highly challenging, from both fundamental and industrial viewpoints inspite of the tremendous versatility offered by these techniques in terms of addressing design complexities. The two main reasons for the same are: low density and poor mechanical properties of nanoceramic parts fabricated using 3DP techniques. The fundamental reason behind the two aforementioned features of 3DP-fabricated nanoceramic parts is the huge extent of microstructural inhomogeneity arising primarily due to variation in cooling rates during point by point, line by line or layer by layer deposition methodology followed in 3DP techniques, leading to a number of defects in the microstructure. Moreover, the industrial application of nanoceramic parts manufactured using 3DP techniques, is rather limited, primarily owing to the high manufacturing cost associated with these nanoceramic parts. Although, in the last ten years, there has been a considerable volume of work on 3DP-based techniques for manufacturing ceramic parts with enhanced densities and improved mechanical properties, however, there is limited understanding on the correlation of microstructure of 3DP-fabricated nanoceramic components with the mechanical properties. The present review is aimed to review some of the most commonly used 3DP techniques for the fabrication of nanoceramics and provide an overview of the future perspectives, associated with the necessity towards developing a systematic structure-property correlation through correlative characterisation methodology in these materials.