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通过铸造和3D打印方法制备的短纤维增强地质聚合物的力学性能:一项对比研究。

Mechanical Properties of Short Fiber-Reinforced Geopolymers Made by Casted and 3D Printing Methods: A Comparative Study.

作者信息

Korniejenko Kinga, Łach Michał, Chou Shih-Yu, Lin Wei-Ting, Cheng An, Hebdowska-Krupa Maria, Gądek Szymon, Mikuła Janusz

机构信息

Institute of Materials Engineering, Faculty of Material Engineering and Physics, Cracow University of Technology, Jana Pawła II 37, 31-864 Cracow, Poland.

Department of Civil Engineering, National Ilan University, No.1, Sec. 1, Shennong Rd., I-Lan 260, Taiwan.

出版信息

Materials (Basel). 2020 Jan 26;13(3):579. doi: 10.3390/ma13030579.

Abstract

The main objective of this article is to develop ceramic-based materials for additive layer manufacturing (3D printing technology) that are suitable for civil engineering applications. This article is focused on fly ash-based fiber-reinforced geopolymer composites. It is based on experimental research, especially research comparing mechanical properties, such as compressive and flexural strength for designed compositions. The comparison includes various composites (short fiber-reinforced geopolymers and plain samples), different times of curing (investigation after 7 and 28 days), and two technologies of manufacturing (casted and injected samples-simulations of the 3D printing process). The geopolymer matrix is based on class F fly ash. The reinforcements were green tow flax and carbon fibers. The achieved results show that the mechanical properties of the new composites made by injection methods (simulations of 3D technology) are comparable with those of the traditional casting process. This article also discusses the influence of fiber on the mechanical properties of the composites. It shows that the addition of short fibers could have a similar influence on both of the technologies.

摘要

本文的主要目标是开发适用于土木工程应用的、用于增材制造(3D打印技术)的陶瓷基材料。本文聚焦于基于粉煤灰的纤维增强地质聚合物复合材料。它基于实验研究,尤其是对设计成分的抗压强度和抗弯强度等力学性能进行比较的研究。该比较包括各种复合材料(短纤维增强地质聚合物和普通样品)、不同的养护时间(7天和28天后的研究)以及两种制造技术(浇铸和注射样品——3D打印过程的模拟)。地质聚合物基体基于F类粉煤灰。增强材料为绿色亚麻丝束和碳纤维。所取得的结果表明,通过注射方法(3D技术模拟)制成的新型复合材料的力学性能与传统铸造工艺相当。本文还讨论了纤维对复合材料力学性能的影响。结果表明,短纤维的添加对两种技术可能具有相似的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79ad/7040772/c4f0af03e7fb/materials-13-00579-g001.jpg

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