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Bending Deformation Behavior of Eggshell and Eggshell–Polymer Composites. / Panfilov, Peter; Zaytsev, Dmitry; Mezhenov, Maxim и др.
в: Journal of Composites Science, Том 7, № 8, 336, 2023.

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Panfilov P, Zaytsev D, Mezhenov M, Grigoriev S. Bending Deformation Behavior of Eggshell and Eggshell–Polymer Composites. Journal of Composites Science. 2023;7(8):336. doi: 10.3390/jcs7080336

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BibTeX

@article{d5abb4c9c51249ea859be1553e9ad438,
title = "Bending Deformation Behavior of Eggshell and Eggshell–Polymer Composites",
abstract = "Deformation behavior of the composite “eggshell–polymer plomb” was examined under bending. Hen eggs were taken as a biological material for experiments. It was shown that a viscoelastic polymer coating does not change the type of deformation behavior of the composite, given that the eggshell continued to be brittle despite its mechanical characteristics varying widely for a brittle solid. Joint “polymer plomb–eggshell” never cracked under bending and hence exhibited a high cohesion strength under the stresses applied in these experiments. It seems that the composite “eggshell—polymer plomb” could substitute for the composite “tooth enamel–polymer plomb” under elaboration of novel restorative materials for dentistry, namely, for examination of their mechanical properties, including cohesive strength.",
author = "Peter Panfilov and Dmitry Zaytsev and Maxim Mezhenov and Sergei Grigoriev",
note = "The Russian Science Foundation supported this research (# 23-29-00253).",
year = "2023",
doi = "10.3390/jcs7080336",
language = "English",
volume = "7",
journal = "Journal of Composites Science",
issn = "2504-477X",
publisher = "Multidisciplinary Digital Publishing Institute (MDPI)",
number = "8",

}

RIS

TY - JOUR

T1 - Bending Deformation Behavior of Eggshell and Eggshell–Polymer Composites

AU - Panfilov, Peter

AU - Zaytsev, Dmitry

AU - Mezhenov, Maxim

AU - Grigoriev, Sergei

N1 - The Russian Science Foundation supported this research (# 23-29-00253).

PY - 2023

Y1 - 2023

N2 - Deformation behavior of the composite “eggshell–polymer plomb” was examined under bending. Hen eggs were taken as a biological material for experiments. It was shown that a viscoelastic polymer coating does not change the type of deformation behavior of the composite, given that the eggshell continued to be brittle despite its mechanical characteristics varying widely for a brittle solid. Joint “polymer plomb–eggshell” never cracked under bending and hence exhibited a high cohesion strength under the stresses applied in these experiments. It seems that the composite “eggshell—polymer plomb” could substitute for the composite “tooth enamel–polymer plomb” under elaboration of novel restorative materials for dentistry, namely, for examination of their mechanical properties, including cohesive strength.

AB - Deformation behavior of the composite “eggshell–polymer plomb” was examined under bending. Hen eggs were taken as a biological material for experiments. It was shown that a viscoelastic polymer coating does not change the type of deformation behavior of the composite, given that the eggshell continued to be brittle despite its mechanical characteristics varying widely for a brittle solid. Joint “polymer plomb–eggshell” never cracked under bending and hence exhibited a high cohesion strength under the stresses applied in these experiments. It seems that the composite “eggshell—polymer plomb” could substitute for the composite “tooth enamel–polymer plomb” under elaboration of novel restorative materials for dentistry, namely, for examination of their mechanical properties, including cohesive strength.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85168911093

UR - https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=tsmetrics&SrcApp=tsm_test&DestApp=WOS_CPL&DestLinkType=FullRecord&KeyUT=001056372200001

U2 - 10.3390/jcs7080336

DO - 10.3390/jcs7080336

M3 - Article

VL - 7

JO - Journal of Composites Science

JF - Journal of Composites Science

SN - 2504-477X

IS - 8

M1 - 336

ER -

ID: 44649752