This work investigates the critical plastic strain variation with stress triaxiality and the Lode angle parameter for an Acrylonitrile butadiene styrene (ABS)-based proprietary blend compound (commercial name VeroWhitePlus™ RGD835) manufactured through photopolymerization. Various triaxial states of stress and Lode angles were obtained with the help of notched flat specimens used in tensile loadings, notched round specimens used in compression (upsetting) tests and butterfly specimens used in Arcan tests. The tests were replicated using finite element analyses in order to evaluate the aforementioned parameters
Additive manufacturing (AM) has inherent mechanical strength inconsistencies when the build orientat...
We studied the influence of extruded filament dimensions and chemical composition on mechanical beha...
Owing to the huge demand and dependency of the industry on the lightweight and superior mechanical p...
failure, ductile damage, photopolymerization, mechanical testing, numerical analyse
Purpose: The study explores the dependence of material properties and failure criteria for fused dep...
In this article, the yielding and plastic flow of a rapid-prototyped ABS compound was investigated f...
Additive manufacturing technologies have developed rapidly in recent decades, pushing the limits of...
Purpose: The study explores the dependence of material properties and failure criteria for fused dep...
This paper presents a comprehensive experimental study in exploring the influence of key printing pa...
Fused Filament Fabrication (FFF) is arguably the most widely available additive manufacturing techno...
The mechanical properties of a product made in Fused Deposition Modelling (FDM) rapid prototyping ar...
This paper presents a comparative study of the tensile mechanical behaviour of pieces produced using...
Fused Deposition Modeling (FDM) is an additive manufacturing technology to fabricate three-dimension...
In this study, the effect of raster orientation (0’/90’, 30’ /120’ and 45’ /135’) and printing tempe...
Acrylonitrile–butadiene–styrene (ABS) is commonly used material in the fused deposition modeling (FD...
Additive manufacturing (AM) has inherent mechanical strength inconsistencies when the build orientat...
We studied the influence of extruded filament dimensions and chemical composition on mechanical beha...
Owing to the huge demand and dependency of the industry on the lightweight and superior mechanical p...
failure, ductile damage, photopolymerization, mechanical testing, numerical analyse
Purpose: The study explores the dependence of material properties and failure criteria for fused dep...
In this article, the yielding and plastic flow of a rapid-prototyped ABS compound was investigated f...
Additive manufacturing technologies have developed rapidly in recent decades, pushing the limits of...
Purpose: The study explores the dependence of material properties and failure criteria for fused dep...
This paper presents a comprehensive experimental study in exploring the influence of key printing pa...
Fused Filament Fabrication (FFF) is arguably the most widely available additive manufacturing techno...
The mechanical properties of a product made in Fused Deposition Modelling (FDM) rapid prototyping ar...
This paper presents a comparative study of the tensile mechanical behaviour of pieces produced using...
Fused Deposition Modeling (FDM) is an additive manufacturing technology to fabricate three-dimension...
In this study, the effect of raster orientation (0’/90’, 30’ /120’ and 45’ /135’) and printing tempe...
Acrylonitrile–butadiene–styrene (ABS) is commonly used material in the fused deposition modeling (FD...
Additive manufacturing (AM) has inherent mechanical strength inconsistencies when the build orientat...
We studied the influence of extruded filament dimensions and chemical composition on mechanical beha...
Owing to the huge demand and dependency of the industry on the lightweight and superior mechanical p...