Cargando…

The Effect of Solid-State Processes and Heat Treatment on the Properties of AA7075 Aluminum Waste Recycling Nanocomposite

Direct solid-states, such as hot extrusion and equal channel angular pressing (ECAP), are alternative and efficient solid-state processes for use in recycling aluminium scrap. These processes utilise less energy and are eco-friendly. Ceramic particles such as ZrO(2) are suggested as alternatives in...

Descripción completa

Detalles Bibliográficos
Autores principales: Sabbar, Huda Mohammed, Leman, Zulkiflle, Shamsudin, Shazarel, Tahir, Suraya Mohd, Jaafar, Che Nor Aiza, Ariff, Azmah Hanim Mohamed, Zahari, Nur Ismarrubie, Rady, Mohammed H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8588412/
https://www.ncbi.nlm.nih.gov/pubmed/34772193
http://dx.doi.org/10.3390/ma14216667
_version_ 1784598450939101184
author Sabbar, Huda Mohammed
Leman, Zulkiflle
Shamsudin, Shazarel
Tahir, Suraya Mohd
Jaafar, Che Nor Aiza
Ariff, Azmah Hanim Mohamed
Zahari, Nur Ismarrubie
Rady, Mohammed H.
author_facet Sabbar, Huda Mohammed
Leman, Zulkiflle
Shamsudin, Shazarel
Tahir, Suraya Mohd
Jaafar, Che Nor Aiza
Ariff, Azmah Hanim Mohamed
Zahari, Nur Ismarrubie
Rady, Mohammed H.
author_sort Sabbar, Huda Mohammed
collection PubMed
description Direct solid-states, such as hot extrusion and equal channel angular pressing (ECAP), are alternative and efficient solid-state processes for use in recycling aluminium scrap. These processes utilise less energy and are eco-friendly. Ceramic particles such as ZrO(2) are suggested as alternatives in the production of metal composites. This study investigated and optimised the effects of various parameters of reinforced ZrO(2) nanoparticles on the mechanical and physical properties via response surface methodology (RSM). These parameters were the volume fraction (VF), preheating temperature (T), and preheating time (t). The effects of these parameters were examined before and after the heat treatment condition and ECAP. Each parameter was evaluated at varying magnitudes, i.e., 450, 500, and 550 °C for T, 1, 2, and 3 h for t, and 1, 3, and 5% for VF. The effect that process variables had on responses was elucidated using the factorial design with centre point analysis. T and VF were crucial for attaining the optimum ultimate tensile strength (UTS) and microhardness. Reducing VF increased the mechanical properties to 1 vol% of oxide. The maximum hardness of 95 HV was attained at 550 °C, 1.6 h, and 1 vol% ZrO(2) with a density of 2.85 g/cm(3) and tensile strength of 487 MPa. UTS, density, and microhardness were enhanced by 14%, 1%, and 9.5%, respectively. Additionally, the hot extrusion parameters and ECAP followed by heat treatment strengthened the microhardness by 64% and density by 3%. Compression pressure and extrusion stress produced in these stages were sufficient to eliminate voids that increased the mechanical properties.
format Online
Article
Text
id pubmed-8588412
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85884122021-11-13 The Effect of Solid-State Processes and Heat Treatment on the Properties of AA7075 Aluminum Waste Recycling Nanocomposite Sabbar, Huda Mohammed Leman, Zulkiflle Shamsudin, Shazarel Tahir, Suraya Mohd Jaafar, Che Nor Aiza Ariff, Azmah Hanim Mohamed Zahari, Nur Ismarrubie Rady, Mohammed H. Materials (Basel) Article Direct solid-states, such as hot extrusion and equal channel angular pressing (ECAP), are alternative and efficient solid-state processes for use in recycling aluminium scrap. These processes utilise less energy and are eco-friendly. Ceramic particles such as ZrO(2) are suggested as alternatives in the production of metal composites. This study investigated and optimised the effects of various parameters of reinforced ZrO(2) nanoparticles on the mechanical and physical properties via response surface methodology (RSM). These parameters were the volume fraction (VF), preheating temperature (T), and preheating time (t). The effects of these parameters were examined before and after the heat treatment condition and ECAP. Each parameter was evaluated at varying magnitudes, i.e., 450, 500, and 550 °C for T, 1, 2, and 3 h for t, and 1, 3, and 5% for VF. The effect that process variables had on responses was elucidated using the factorial design with centre point analysis. T and VF were crucial for attaining the optimum ultimate tensile strength (UTS) and microhardness. Reducing VF increased the mechanical properties to 1 vol% of oxide. The maximum hardness of 95 HV was attained at 550 °C, 1.6 h, and 1 vol% ZrO(2) with a density of 2.85 g/cm(3) and tensile strength of 487 MPa. UTS, density, and microhardness were enhanced by 14%, 1%, and 9.5%, respectively. Additionally, the hot extrusion parameters and ECAP followed by heat treatment strengthened the microhardness by 64% and density by 3%. Compression pressure and extrusion stress produced in these stages were sufficient to eliminate voids that increased the mechanical properties. MDPI 2021-11-05 /pmc/articles/PMC8588412/ /pubmed/34772193 http://dx.doi.org/10.3390/ma14216667 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sabbar, Huda Mohammed
Leman, Zulkiflle
Shamsudin, Shazarel
Tahir, Suraya Mohd
Jaafar, Che Nor Aiza
Ariff, Azmah Hanim Mohamed
Zahari, Nur Ismarrubie
Rady, Mohammed H.
The Effect of Solid-State Processes and Heat Treatment on the Properties of AA7075 Aluminum Waste Recycling Nanocomposite
title The Effect of Solid-State Processes and Heat Treatment on the Properties of AA7075 Aluminum Waste Recycling Nanocomposite
title_full The Effect of Solid-State Processes and Heat Treatment on the Properties of AA7075 Aluminum Waste Recycling Nanocomposite
title_fullStr The Effect of Solid-State Processes and Heat Treatment on the Properties of AA7075 Aluminum Waste Recycling Nanocomposite
title_full_unstemmed The Effect of Solid-State Processes and Heat Treatment on the Properties of AA7075 Aluminum Waste Recycling Nanocomposite
title_short The Effect of Solid-State Processes and Heat Treatment on the Properties of AA7075 Aluminum Waste Recycling Nanocomposite
title_sort effect of solid-state processes and heat treatment on the properties of aa7075 aluminum waste recycling nanocomposite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8588412/
https://www.ncbi.nlm.nih.gov/pubmed/34772193
http://dx.doi.org/10.3390/ma14216667
work_keys_str_mv AT sabbarhudamohammed theeffectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT lemanzulkiflle theeffectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT shamsudinshazarel theeffectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT tahirsurayamohd theeffectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT jaafarchenoraiza theeffectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT ariffazmahhanimmohamed theeffectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT zaharinurismarrubie theeffectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT radymohammedh theeffectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT sabbarhudamohammed effectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT lemanzulkiflle effectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT shamsudinshazarel effectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT tahirsurayamohd effectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT jaafarchenoraiza effectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT ariffazmahhanimmohamed effectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT zaharinurismarrubie effectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite
AT radymohammedh effectofsolidstateprocessesandheattreatmentonthepropertiesofaa7075aluminumwasterecyclingnanocomposite