Severe plastic deformation: Nanostructured materials, metal-based and polymer-based nanocomposites: A review
Significant deformation of the metal structure can be achieved without breaking or cracking the metal. There are several methods for deformation of metal plastics. The most important of these methods are angular channel pressing process, high-pressure torsion, multidirectional forging process, extru...
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Elsevier
2023-12-01
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Series: | Heliyon |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2405844023097670 |
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author | M. Fattahi Chou-Yi Hsu Anfal Omar Ali Zaid H. Mahmoud N.P. Dang Ehsan Kianfar |
author_facet | M. Fattahi Chou-Yi Hsu Anfal Omar Ali Zaid H. Mahmoud N.P. Dang Ehsan Kianfar |
author_sort | M. Fattahi |
collection | DOAJ |
description | Significant deformation of the metal structure can be achieved without breaking or cracking the metal. There are several methods for deformation of metal plastics. The most important of these methods are angular channel pressing process, high-pressure torsion, multidirectional forging process, extrusion-cyclic compression process, cumulative climbing connection process, consecutive concreting and smoothing method, high-pressure pipe torsion. The nanocomposite is a multiphase material which the size of one of its phases is less than 100 nm in at least one dimension. Due to some unique properties, metal-based nanocomposites are widely used in engineering applications such as the automotive and aerospace industries. Polymer-based nanocomposites are two-phase systems with polymer-based and reinforcing phases (usually ceramic). These materials have a simpler synthesis process than metal-based nanocomposites and are used in a variety of applications such as the aerospace industry, gas pipelines, and sensors. Severe plastic deformation (SPD) is known to be the best method for producing bulk ultrafine grained and nanostructured materials with excellent properties. Different Severe plastic deformation methods were developed that are suitable for sheet and bulk solid materials. During the past decade, efforts have been made to create effective Severe plastic deformation processes suitable for producing cylindrical tubes. In this paper, we review Severe plastic deformation processes intended to nanostructured tubes, and their effects on material properties and severe plastic deformation is briefly introduced and its common methods for bulk materials, sheets, and pipes, as well as metal background nanocomposites, are concisely introduced and their microstructural and mechanical properties are discussed. The paper will focus on introduction of the tube Severe plastic deformation processes, and then comparison of them based on their advantages and disadvantages from the viewpoints of processing and properties. |
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language | English |
last_indexed | 2024-03-08T21:29:31Z |
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spelling | doaj.art-d27c3e059eb04b05b73ba93c36de6dc82023-12-21T07:33:49ZengElsevierHeliyon2405-84402023-12-01912e22559Severe plastic deformation: Nanostructured materials, metal-based and polymer-based nanocomposites: A reviewM. Fattahi0Chou-Yi Hsu1Anfal Omar Ali2Zaid H. Mahmoud3N.P. Dang4Ehsan Kianfar5Institute of Research and Development, Duy Tan University, Da Nang, Viet Nam; School of Engineering & Technology, Duy Tan University, Da Nang, Viet Nam; Corresponding author. Institute of Research and Development, Duy Tan University, Da Nang, Viet Nam.Department of pharmacy, Chia Nan University of Pharmacy and Science, Tainan, TaiwanMinistry of education, general directorate of education in Diyala, third teacher, Bint Al Rafidain secondary school for girls, IraqChemistry department, college of science, university of Diyala, IraqInstitute of Research and Development, Duy Tan University, Da Nang, Viet Nam; School of Engineering & Technology, Duy Tan University, Da Nang, Viet NamMechanical Engineering Department, Faculty of Engineering and Pure Sciences Istanbul Medeniyet University, Istanbul, Turkey; Department of Chemical Engineering, Arak Branch, Islamic Azad University, Arak, Iran; Young Researchers and Elite Club, Gachsaran Branch, Islamic Azad University, Gachsaran, Iran; Corresponding author. Mechanical Engineering Department, Faculty of Engineering and Pure Sciences Istanbul Medeniyet University, Istanbul, Turkey.Significant deformation of the metal structure can be achieved without breaking or cracking the metal. There are several methods for deformation of metal plastics. The most important of these methods are angular channel pressing process, high-pressure torsion, multidirectional forging process, extrusion-cyclic compression process, cumulative climbing connection process, consecutive concreting and smoothing method, high-pressure pipe torsion. The nanocomposite is a multiphase material which the size of one of its phases is less than 100 nm in at least one dimension. Due to some unique properties, metal-based nanocomposites are widely used in engineering applications such as the automotive and aerospace industries. Polymer-based nanocomposites are two-phase systems with polymer-based and reinforcing phases (usually ceramic). These materials have a simpler synthesis process than metal-based nanocomposites and are used in a variety of applications such as the aerospace industry, gas pipelines, and sensors. Severe plastic deformation (SPD) is known to be the best method for producing bulk ultrafine grained and nanostructured materials with excellent properties. Different Severe plastic deformation methods were developed that are suitable for sheet and bulk solid materials. During the past decade, efforts have been made to create effective Severe plastic deformation processes suitable for producing cylindrical tubes. In this paper, we review Severe plastic deformation processes intended to nanostructured tubes, and their effects on material properties and severe plastic deformation is briefly introduced and its common methods for bulk materials, sheets, and pipes, as well as metal background nanocomposites, are concisely introduced and their microstructural and mechanical properties are discussed. The paper will focus on introduction of the tube Severe plastic deformation processes, and then comparison of them based on their advantages and disadvantages from the viewpoints of processing and properties.http://www.sciencedirect.com/science/article/pii/S2405844023097670Severe plastic deformationNanostructured materialsMetal-based nanocompositesPolymer-based nanocompositesDeformation |
spellingShingle | M. Fattahi Chou-Yi Hsu Anfal Omar Ali Zaid H. Mahmoud N.P. Dang Ehsan Kianfar Severe plastic deformation: Nanostructured materials, metal-based and polymer-based nanocomposites: A review Heliyon Severe plastic deformation Nanostructured materials Metal-based nanocomposites Polymer-based nanocomposites Deformation |
title | Severe plastic deformation: Nanostructured materials, metal-based and polymer-based nanocomposites: A review |
title_full | Severe plastic deformation: Nanostructured materials, metal-based and polymer-based nanocomposites: A review |
title_fullStr | Severe plastic deformation: Nanostructured materials, metal-based and polymer-based nanocomposites: A review |
title_full_unstemmed | Severe plastic deformation: Nanostructured materials, metal-based and polymer-based nanocomposites: A review |
title_short | Severe plastic deformation: Nanostructured materials, metal-based and polymer-based nanocomposites: A review |
title_sort | severe plastic deformation nanostructured materials metal based and polymer based nanocomposites a review |
topic | Severe plastic deformation Nanostructured materials Metal-based nanocomposites Polymer-based nanocomposites Deformation |
url | http://www.sciencedirect.com/science/article/pii/S2405844023097670 |
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