Nawawi Chouw & Chunwei Zhang 
Proceedings of the 26th Australasian Conference on the Mechanics of Structures and Materials [PDF ebook] 
ACMSM26, 3–6 December 2023, Auckland, New Zealand

Supporto

This book presents peer reviewed articles from The 26th Australasian Conference on the Mechanics of Structures and Materials (ACMSM26) held in December 2023 at the University of Auckland in New Zealand. Bringing together international experts and leaders to disseminate recent research findings in the fields of structural mechanics, civil engineering and materials, it offers a forum for participants from around the world to review, discuss, and present the latest developments in the broad discipline of mechanics and materials in civil engineering.

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Tabella dei contenuti

Spatial correlation of flexural tensile bond strength in unreinforced masonry walls.- Seismic assessment and upgrade of concrete wharf structure.- Modelling compressive strength of concrete incorporating supplementary cementitious materials using machine learning technologies.- Towards the development of a low-carbon emission sandwich panel — a state-of-the-art review.- Toxic leaching and engineering properties of copper contaminated soil cured by magnesium phosphate cement.- Impact of concrete properties on the carbon footprint of a structure when using green concrete.- Impact of corroded galvanised wall ties on the structural integrity of masonry veneer walls.- Mesoscale analysis of rubber particle effect on tensile strength of crumb rubber concrete.- Meso-scale numerical creep Analysis of steel fibre reinforced concrete – effect of aggregate and fibre content.- Effect of cracks along the rebars on the bond deterioration under tensile stress in reinforced concrete.- Interface bonding behaviour of ordinary concrete reinforced with lightweight high-strength engineered cementitious composite.- Stability assessment of masonry domes using thrust network analysis in earth and lunar environments.- Use of innovative materials as ground improvement technique to mitigate soil liquefaction.- Flexural behaviour of pultruded GFRP profiles filled with layered composite panels for railway sleepers.

Circa l’autore

Dr. Nawawi Chouw is Associate Professor and was Director of the University of Auckland Centre for Earthquake Engineering Research. Prior to joining the University of Auckland, he worked at universities in Germany, Japan, and Australia. He has been awarded several prizes, including Fritz-Peter-Mueller Prize of the Technical University of Karlsruhe, Germany and the Best Research Award of Chugoku Denryoku Research Foundation, Japan. He was invited to teach at several universities in many countries. He was Guest Editor of several journals, e.g., Soil Dynamics and Earthquake Engineering. He is Editor of Materials, Shock and Vibration and Frontiers in Build Environment. He was Guest Professor at several universities in China, Germany, Canada, Australia, and Japan.
Dr. Chunwei Zhang is Professor and Du Xing Endowed Scholar at the South China University of Technology in Guangzhou, China. He has held various honorary positions, including Adjunct Professor at Queensland University of Technology, Shenyang Jianzhu University, and Shenyang University of Technology. His research interests include structural vibration control, health monitoring, protective structures, influence of impact and blast loads, offshore structures, and smart materials. He has published over 200 Scopus-indexed papers and received over 100 patents in China, USA, Europe, Japan, Korea, Canada, Australia, Russia, India, South Africa, and Brazil. He has received several prestigious awards, e.g., from the State Council of the People’s Republic of China, the Ministry of Education of China, and the Japan Society of Seismic Isolation. He is among Clarivate’s most cited researchers in 2022.
 

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Lingua Inglese ● Formato PDF ● Pagine 970 ● ISBN 9789819733972 ● Dimensione 109.4 MB ● Età 02-99 anni ● Editore Nawawi Chouw & Chunwei Zhang ● Casa editrice Springer Nature Singapore ● Città Singapore ● Paese SG ● Pubblicato 2024 ● Scaricabile 24 mesi ● Moneta EUR ● ID 9703207 ● Protezione dalla copia DRM sociale

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