1. Identificação | |
Tipo de Referência | Artigo em Revista Científica (Journal Article) |
Site | mtc-m12e.sid.inpe.br |
Código do Detentor | isadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S |
Identificador | 8JMKD2USNRW34T/4D4428H |
Repositório | sid.inpe.br/mtc-m12e/2025/03.03.15.43 (acesso restrito) |
Última Atualização | 2025:03.03.15.43.06 (UTC) simone |
Repositório de Metadados | sid.inpe.br/mtc-m12e/2025/03.03.15.43.06 |
Última Atualização dos Metadados | 2025:03.10.20.42.07 (UTC) administrator |
DOI | 10.1016/j.jallcom.2025.178822 |
ISSN | 0925-8388 |
Chave de Citação | BelloKAKAARAA:2025:MiMePr |
Título | Microstructure and mechanical properties of Al0.44Si0.32Ni0.09Fe0.05V0.05 alloy containing nanosilica for vehicle bonnet applications  |
Ano | 2025 |
Mês | Feb. |
Data de Acesso | 31 maio 2025 |
Tipo de Trabalho | journal article |
Tipo Secundário | PRE PI |
Número de Arquivos | 1 |
Tamanho | 9990 KiB |
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2. Contextualização | |
Autor | 1 Bello, Sefiu Adekunle 2 Kolawole, Maruf Yinka 3 Adeyemo, Raphael Gboyega 4 Kalawole, Funsho Olaitan 5 Aliu, Uthman Ayomide 6 Aboyeji, Ayodeji 7 Rafiu, Ahmed 8 Alabi, Abdul Gainyu Funsho 9 Akinlabi, Oyetunji |
ORCID | 1 0000-0003-0076-7837 |
Grupo | 1 2 3 4 COPDT-CGIP-INPE-MCTI-GOV-BR |
Afiliação | 1 Kwara State University 2 Kwara State University 3 The Gateway (ICT) Polytechnic 4 Instituto Nacional de Pesquisas Espaciais (INPE) 5 Kwara State University 6 Kwara State University 7 Kwara State University 8 Kwara State University 9 Federal University of Technology, Akure |
Endereço de e-Mail do Autor | 1 adekunle_b@yahoo.com 2 3 4 fusho.kolawole@inpe.br |
Revista | Journal of Alloys and Compounds |
Volume | 1015 |
Páginas | e178822 |
Nota Secundária | A1_MATERIAIS A1_INTERDISCIPLINAR A1_ENGENHARIAS_II A2_ODONTOLOGIA A2_GEOCIÊNCIAS A2_ENGENHARIAS_III A2_ENGENHARIAS_I B1_QUÍMICA B1_ENGENHARIAS_IV B1_BIOTECNOLOGIA B1_ASTRONOMIA_/_FÍSICA B2_ANTROPOLOGIA_/_ARQUEOLOGIA |
Histórico (UTC) | 2025-03-03 15:43:06 :: simone -> administrator :: 2025-03-03 15:43:08 :: administrator -> simone :: 2025 2025-03-03 15:44:26 :: simone -> administrator :: 2025 2025-03-10 20:42:07 :: administrator -> simone :: 2025 |
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3. Conteúdo e estrutura | |
É a matriz ou uma cópia? | é a matriz |
Estágio do Conteúdo | concluido |
Transferível | 1 |
Tipo do Conteúdo | External Contribution |
Tipo de Versão | publisher |
Palavras-Chave | Nanosilica modified Husler alloy Multicomponent Bonnet Properties Tensile strength optimisation |
Resumo | Stringent conditions of service that demand improved properties spurs continuous research on expired products to emerge new materials for engineering applications. An alloy was developed from aluminium scraps, ferrosilicon, and nickel alloy. The developed alloy was modified by nanosilica and the produced materials were examined. Result displays silica having an average size of 63.76 nm. In addition, new phases were detected in the alloys due to nanosilica additions and heat treatment. Moreover, the threadlike grain boundary phases of the control alloy changed to rounded tiny particles after the heat treatment. Silica addition to the alloy caused refinements of grains leading to numerous grain boundaries while the grain boundary phases of the heat treated nanosilica modified alloy appear in form of a modulated featherlike structure. An improvement in tensile strength was noted up to 10 wt% of nanosilica additions. Reduction in the impact energy prevails above 6 wt% of nanosilica addition. Heat treatment enhanced tensile properties and impact energies but reduced the hardness values of the developed alloys. Moreso, linear response surface models are significant in predicting the tensile strengths of the developed alloys. Model diagnostics like outlier and Cook's distance confirm no error in the models. Comparation of properties affirm that tensile strength, tensile strain, and impact energy of the heat treated Al0.44Si0.32Ni0.09Fe0.05V0.05 alloy containing 10 wt% of nanosilica are greater than those of the LEXUS LX570 (2018 model), TOYOTA HILUX (2017 model), and TOYOTA CAMRY (2018 model). Hence, it is a strong, ductile, tough, and less hard material for the bonnet applications. |
Área | FISMAT |
Conteúdo da Pasta doc | acessar |
Conteúdo da Pasta source | não têm arquivos |
Conteúdo da Pasta agreement | |
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4. Condições de acesso e uso | |
Idioma | en |
Arquivo Alvo | 1-s2.0-S0925838825003809-main.pdf |
Grupo de Usuários | simone |
Grupo de Leitores | administrator simone |
Visibilidade | shown |
Política de Arquivamento | denypublisher denyfinaldraft24 |
Permissão de Leitura | deny from all and allow from 150.163 |
Permissão de Atualização | não transferida |
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5. Fontes relacionadas | |
Repositório Espelho | urlib.net/www/2025/02.16.04.07.51 |
Unidades Imediatamente Superiores | 8JMKD3MGPCW/46KUES5 |
Divulgação | WEBSCI; PORTALCAPES. |
Acervo Hospedeiro | urlib.net/www/2025/02.16.04.07 |
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6. Notas | |
Campos Vazios | alternatejournal archivist callnumber copyholder copyright creatorhistory descriptionlevel e-mailaddress format isbn label lineage mark nextedition notes number parameterlist parentrepositories previousedition previouslowerunit progress project resumeid rightsholder schedulinginformation secondarydate secondarykey session shorttitle sponsor subject tertiarymark tertiarytype url |
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7. Controle da descrição | |
e-Mail (login) | simone |
atualizar | |
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