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Quantifying the Mechanical Properties of Materials and the Process of Elastic-Plastic Deformation under External Stress on Material

The paper solves the problem of the nonexistence of a new method for calculation of dynamics of stress-deformation states of deformation tool-material systems including the construction of stress-strain diagrams. The presented solution focuses on explaining the mechanical behavior of materials after...

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Autores principales: Valíček, Jan, Harničárová, Marta, Öchsner, Andreas, Hutyrová, Zuzana, Kušnerová, Milena, Tozan, Hakan, Michenka, Vít, Šepelák, Vladimír, Mitaľ, Dušan, Zajac, Jozef
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5458897/
https://www.ncbi.nlm.nih.gov/pubmed/28793645
http://dx.doi.org/10.3390/ma8115385
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author Valíček, Jan
Harničárová, Marta
Öchsner, Andreas
Hutyrová, Zuzana
Kušnerová, Milena
Tozan, Hakan
Michenka, Vít
Šepelák, Vladimír
Mitaľ, Dušan
Zajac, Jozef
author_facet Valíček, Jan
Harničárová, Marta
Öchsner, Andreas
Hutyrová, Zuzana
Kušnerová, Milena
Tozan, Hakan
Michenka, Vít
Šepelák, Vladimír
Mitaľ, Dušan
Zajac, Jozef
author_sort Valíček, Jan
collection PubMed
description The paper solves the problem of the nonexistence of a new method for calculation of dynamics of stress-deformation states of deformation tool-material systems including the construction of stress-strain diagrams. The presented solution focuses on explaining the mechanical behavior of materials after cutting by abrasive waterjet technology (AWJ), especially from the point of view of generated surface topography. AWJ is a flexible tool accurately responding to the mechanical resistance of the material according to the accurately determined shape and roughness of machined surfaces. From the surface topography, it is possible to resolve the transition from ideally elastic to quasi-elastic and plastic stress-strain states. For detecting the surface structure, an optical profilometer was used. Based on the analysis of experimental measurements and the results of analytical studies, a mathematical-physical model was created and an exact method of acquiring the equivalents of mechanical parameters from the topography of surfaces generated by abrasive waterjet cutting and external stress in general was determined. The results of the new approach to the construction of stress-strain diagrams are presented. The calculated values agreed very well with those obtained by a certified laboratory VÚHŽ.
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spelling pubmed-54588972017-07-28 Quantifying the Mechanical Properties of Materials and the Process of Elastic-Plastic Deformation under External Stress on Material Valíček, Jan Harničárová, Marta Öchsner, Andreas Hutyrová, Zuzana Kušnerová, Milena Tozan, Hakan Michenka, Vít Šepelák, Vladimír Mitaľ, Dušan Zajac, Jozef Materials (Basel) Article The paper solves the problem of the nonexistence of a new method for calculation of dynamics of stress-deformation states of deformation tool-material systems including the construction of stress-strain diagrams. The presented solution focuses on explaining the mechanical behavior of materials after cutting by abrasive waterjet technology (AWJ), especially from the point of view of generated surface topography. AWJ is a flexible tool accurately responding to the mechanical resistance of the material according to the accurately determined shape and roughness of machined surfaces. From the surface topography, it is possible to resolve the transition from ideally elastic to quasi-elastic and plastic stress-strain states. For detecting the surface structure, an optical profilometer was used. Based on the analysis of experimental measurements and the results of analytical studies, a mathematical-physical model was created and an exact method of acquiring the equivalents of mechanical parameters from the topography of surfaces generated by abrasive waterjet cutting and external stress in general was determined. The results of the new approach to the construction of stress-strain diagrams are presented. The calculated values agreed very well with those obtained by a certified laboratory VÚHŽ. MDPI 2015-11-03 /pmc/articles/PMC5458897/ /pubmed/28793645 http://dx.doi.org/10.3390/ma8115385 Text en © 2015 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Valíček, Jan
Harničárová, Marta
Öchsner, Andreas
Hutyrová, Zuzana
Kušnerová, Milena
Tozan, Hakan
Michenka, Vít
Šepelák, Vladimír
Mitaľ, Dušan
Zajac, Jozef
Quantifying the Mechanical Properties of Materials and the Process of Elastic-Plastic Deformation under External Stress on Material
title Quantifying the Mechanical Properties of Materials and the Process of Elastic-Plastic Deformation under External Stress on Material
title_full Quantifying the Mechanical Properties of Materials and the Process of Elastic-Plastic Deformation under External Stress on Material
title_fullStr Quantifying the Mechanical Properties of Materials and the Process of Elastic-Plastic Deformation under External Stress on Material
title_full_unstemmed Quantifying the Mechanical Properties of Materials and the Process of Elastic-Plastic Deformation under External Stress on Material
title_short Quantifying the Mechanical Properties of Materials and the Process of Elastic-Plastic Deformation under External Stress on Material
title_sort quantifying the mechanical properties of materials and the process of elastic-plastic deformation under external stress on material
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5458897/
https://www.ncbi.nlm.nih.gov/pubmed/28793645
http://dx.doi.org/10.3390/ma8115385
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