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International Journal for Research Trends and Innovation
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Issue: July 2018

Volume 3 | Issue 7

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Authors Name: Yogesh Yadav , Anurag Mishra
Unique Id: IJRTI1707004
Published In: Volume 2 Issue 7, July-2017
Abstract: Abstract—In the present work, different optimization techniques used for 3D printing or fused deposition modeling processes are studied and after effects of various input parameters on some performance parameters of 3D printed component like surface finish have been reviewed. The aim of this work is to investigate the effect of input parameters like filament diameter, extruder temperature, feed rate, raster angle, characteristic of working material, nozzle angle, distance between parallel faces on output parameters like surface finishing, moving speed or movement of nozzle head, material volumetric concentration, cooling of print, strength, number of shells and deposition rate in 3D printing through different optimization techniques. Considerable amount of work has been reported by the researchers on 3D printing and optimization of various input parameters. Several approaches are proposed in the literature to optimize these parameters hence it is felt that a review of the various approaches developed would help to compare their main features and their relative advantages and limitations to allow choose the most suitable approach for a particular application. In view of above, this paper presents a review of development done in the area of optimization of process parameter of 3D printed components
Keywords: Additive manufacturing, finite element method, fused deposition modelling, laminate theory, orientation of material
Cite Article: "INVESTIGATIONS OF MECHANICAL PROPERTIES OF 3D PRINTED COMPONENTS: A REVIEW", International Journal of Science & Engineering Development Research (, ISSN:2455-2631, Vol.2, Issue 7, page no.17 - 20, July-2017, Available :
Downloads: 000326
Publication Details: Published Paper ID: IJRTI1707004
Registration ID:170411
Published In: Volume 2 Issue 7, July-2017
DOI (Digital Object Identifier):
ISSN Number: 2456 - 3315
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