том 26 издание 1 страницы 107-121

Increasing strength of FFF three-dimensional printed parts by influencing on temperature-related parameters of the process

Тип публикацииJournal Article
Дата публикации2020-01-06
scimago Q2
wos Q1
white level БС1
SJR0.695
CiteScore7.4
Impact factor3.6
ISSN13552546, 17587670
Mechanical Engineering
Industrial and Manufacturing Engineering
Краткое описание
Purpose

This paper aims to investigate how the user-controlled parameters of the fused filament fabrication three-dimensional printing process define temperature conditions on the boundary between layers of the part being fabricated and how these conditions influence the structure and strength of the polylactic acid part.

Design/methodology/approach

Fracture load in a three-point bending test and calculated related stress were used as a measure. The samples were printed with the long side along the z-axis, thus, in the bend tests, the maximum stress occurred orthogonally to the layers. Temperature distribution on the sample surface during printing was monitored with a thermal imager. Sample mesostructure was analyzed using scanning electron microscopy. The influence of the extrusion temperature, the intensity of part cooling, the printing speed and the time between printing individual layers were considered.

Findings

It is shown that the optimization of the process parameters responsible for temperature conditions makes it possible to approximate the strength of the interlayer cohesion to the bulk material strength.

Originality/value

The novelty of the study consists in the generalization of the outcomes. All the parameters varied can be expressed through two factors, namely, the temperature of the previous layer and the extrusion efficiency, determining the ratio of the amount of extruded plastic to the calculated. A regression model was proposed that describes the effect of the two factors on the printed part strength. Along with interlayer bonding strength, these two factors determine the formation of the part mesostructure (the geometry of the boundaries between individual threads).

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ГОСТ |
Цитировать
Kuznetsov V. V. et al. Increasing strength of FFF three-dimensional printed parts by influencing on temperature-related parameters of the process // Rapid Prototyping Journal. 2020. Vol. 26. No. 1. pp. 107-121.
ГОСТ со всеми авторами (до 50) Скопировать
Kuznetsov V. V., Solonin A. N., Tavitov A., Urzhumtsev O., Vakulik A. Increasing strength of FFF three-dimensional printed parts by influencing on temperature-related parameters of the process // Rapid Prototyping Journal. 2020. Vol. 26. No. 1. pp. 107-121.
RIS |
Цитировать
TY - JOUR
DO - 10.1108/RPJ-01-2019-0017
UR - https://www.emerald.com/insight/content/doi/10.1108/RPJ-01-2019-0017/full/html
TI - Increasing strength of FFF three-dimensional printed parts by influencing on temperature-related parameters of the process
T2 - Rapid Prototyping Journal
AU - Kuznetsov, V. V.
AU - Solonin, Alexey N.
AU - Tavitov, Azamat
AU - Urzhumtsev, Oleg
AU - Vakulik, Anna
PY - 2020
DA - 2020/01/06
PB - Emerald
SP - 107-121
IS - 1
VL - 26
SN - 1355-2546
SN - 1758-7670
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2020_Kuznetsov,
author = {V. V. Kuznetsov and Alexey N. Solonin and Azamat Tavitov and Oleg Urzhumtsev and Anna Vakulik},
title = {Increasing strength of FFF three-dimensional printed parts by influencing on temperature-related parameters of the process},
journal = {Rapid Prototyping Journal},
year = {2020},
volume = {26},
publisher = {Emerald},
month = {jan},
url = {https://www.emerald.com/insight/content/doi/10.1108/RPJ-01-2019-0017/full/html},
number = {1},
pages = {107--121},
doi = {10.1108/RPJ-01-2019-0017}
}
MLA
Цитировать
Kuznetsov, V. V., et al. “Increasing strength of FFF three-dimensional printed parts by influencing on temperature-related parameters of the process.” Rapid Prototyping Journal, vol. 26, no. 1, Jan. 2020, pp. 107-121. https://www.emerald.com/insight/content/doi/10.1108/RPJ-01-2019-0017/full/html.
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