2022
DOI: 10.1177/09544062221111696
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Numerical prediction of mechanical behavior of acrylonitrile-butadiene-styrene under three-point bending and impact loadings by Anand–Gurtin material model

Abstract: A satisfactory reproduction of three-point bending and impact test data of an industrially important amorphous polymer, acrylonitrile-butadiene-styrene (ABS), in the context of finite element analysis is of prime importance to industry. Constitutive material models developed for amorphous polymers are capable of describing their complex mechanical behavior under multiaxial loadings with a variety of success; therefore, the computational accuracy directly depends on the selection of constitutive model and a pro… Show more

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Cited by 2 publications
(9 citation statements)
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“…Although the origin of strain softening is not well-known yet, 36,69 it has been claimed that damage-induced plastic localization or physical aging are the reasons for strain softening. 34,69 Micro-shear band deformation, which eventually initiates a macroscopic plastic zone called necking, has also been implicated as the cause of strain softening. [70][71][72] During the actual tension tests at all strain rates, necking was observed in ABS/Hemp-1 and ABS/Hemp-5, while almost not observed in ABS/Hemp-10.…”
Section: Tensile Test Resultsmentioning
confidence: 99%
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“…Although the origin of strain softening is not well-known yet, 36,69 it has been claimed that damage-induced plastic localization or physical aging are the reasons for strain softening. 34,69 Micro-shear band deformation, which eventually initiates a macroscopic plastic zone called necking, has also been implicated as the cause of strain softening. [70][71][72] During the actual tension tests at all strain rates, necking was observed in ABS/Hemp-1 and ABS/Hemp-5, while almost not observed in ABS/Hemp-10.…”
Section: Tensile Test Resultsmentioning
confidence: 99%
“…In other words, relying on only tension test data is not sufficient to assess their actual material behaviors under multiaxial loads like bending and impact. 2,3,6,34,68 Thus, there is a high need in testing these manufactured biocomposites under bending and impact loadings in order to ascertain their actual mechanical behaviors.…”
Section: Tensile Test Resultsmentioning
confidence: 99%
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