Effects of the Infill Density on the Mechanical Properties of Nylon Specimens Made by Filament Fused Fabrication

Author:

Terekhina Svetlana,Skornyakov Innokentiy,Tarasova Tatiana,Egorov Sergei

Abstract

Additive manufacturing of polymer products over the past decade has become widespread in various areas of industry. Using the fused filament fabrication (FFF) method, one of the most technologically simple methods of additive manufacturing, it is possible to produce parts from a large number of different materials, including wear-resistant nylon. The novelty of the work is properties investigation of ±45° filling configuration with different filling degree for nylon, as well as calculating the effect of infill on the strength characteristics, excluding the shell. This article reflects the process of manufacturing samples from nylon using FFF technology with various internal topologies, as well as tensile tests. The analysis of the obtained results is performed and the relationship between the structure of the sample and the limit of its strength is established. To calculate real filling degree and the effect of internal filling on the strength characteristics of the specimen, it is proposed to use a method based on the geometric and mass parameters. The FFF method is promising for developing methods for producing a composite material. The results of this article can be useful in choosing the necessary manufacturing parameters.

Funder

Ministry of Education and Science of the Russian Federation

Publisher

MDPI AG

Reference37 articles.

1. A Brief History of Additive Manufacturing and the 2009 Roadmap for Additive Manufacturing: Looking Back and Looking Ahead;Bourell,2009

2. Additive Manufacturing Technologies: 3D Printing, Rapid Prototyping, and Direct Digital Manufacturing;Gibson,2015

3. 52900:2015 Additive Manufacturing—General Principles—Terminology,2015

4. Possibilities of additive manufacturing technology for the manufacturing of complex profile parts and the production of functional coatings for the production of powders. Metallovedenie i termicheskaya obrabotka metallov = Metal Science and Heat Treatment of Metalshttp://mitom.folium.ru/contents/2015/20151–0.php

5. Additivnye Tekhnologii v Mashinostroyenii: Posobie dlya Inzhenerov;Zlenko,2015

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