Folgen
Wenkui Dong
Wenkui Dong
Technische Universität Dresden
Bestätigte E-Mail-Adresse bei student.uts.edu.au
Titel
Zitiert von
Zitiert von
Jahr
Piezoresistive properties of cement-based sensors: Review and perspective
W Dong, W Li, Z Tao, K Wang
Construction and Building Materials 203, 146-163, 2019
2492019
Durability deterioration of concrete under marine environment from material to structure: A critical review
F Qu, W Li, W Dong, VWY Tam, T Yu
Journal of Building Engineering 35, 102074, 2021
2182021
A comprehensive review on performance of cementitious and geopolymeric concretes with recycled waste glass as powder, sand or cullet
W Dong, W Li, Z Tao
Resources, Conservation and Recycling 172, 105664, 2021
1382021
Piezoresistive behaviours of cement-based sensor with carbon black subjected to various temperature and water content
W Dong, W Li, N Lu, F Qu, K Vessalas, D Sheng
Composites Part B: Engineering 178, 107488, 2019
1342019
Piezoresistive behaviours of carbon black cement-based sensors with layer-distributed conductive rubber fibres
W Dong, W Li, L Shen, D Sheng
Materials & design 182, 108012, 2019
1002019
Enhanced mechanical properties and durability of coal gangue reinforced cement-soil mixture for foundation treatments
G Long, L Li, W Li, K Ma, W Dong, C Bai, JL Zhou
Journal of cleaner production 231, 468-482, 2019
842019
Self-sensing capabilities of cement-based sensor with layer-distributed conductive rubber fibres
W Dong, W Li, K Wang, Z Luo, D Sheng
Sensors and Actuators A: Physical 301, 111763, 2020
812020
Multifunctional cementitious composites with integrated self-sensing and hydrophobic capacities toward smart structural health monitoring
W Dong, W Li, X Zhu, D Sheng, SP Shah
Cement and Concrete Composites 118, 103962, 2021
732021
A comprehensive review on self-sensing graphene/cementitious composites: A pathway toward next-generation smart concrete
W Li, F Qu, W Dong, G Mishra, SP Shah
Construction and Building Materials 331, 127284, 2022
712022
Electrical resistivity and mechanical properties of cementitious composite incorporating conductive rubber fibres
W Dong, W Li, G Long, Z Tao, J Li, K Wang
Smart materials and structures 28 (8), 085013, 2019
632019
Investigation on physicochemical and piezoresistive properties of smart MWCNT/cementitious composite exposed to elevated temperatures
W Dong, W Li, K Wang, B Han, D Sheng, SP Shah
Cement and Concrete Composites 112, 103675, 2020
622020
Piezoresistivity enhancement of functional carbon black filled cement-based sensor using polypropylene fibre
W Dong, W Li, K Wang, Y Guo, D Sheng, SP Shah
Powder technology 373, 184-194, 2020
602020
Advances in multifunctional cementitious composites with conductive carbon nanomaterials for smart infrastructure
W Li, W Dong, Y Guo, K Wang, SP Shah
Cement and Concrete Composites 128, 104454, 2022
532022
Piezoresistivity of smart carbon nanotubes (CNTs) reinforced cementitious composite under integrated cyclic compression and impact
W Dong, W Li, L Shen, Z Sun, D Sheng
Composite Structures 241, 112106, 2020
532020
Conductivity and piezoresistivity of nano-carbon black (NCB) enhanced functional cement-based sensors using polypropylene fibres
W Li, W Dong, L Shen, A Castel, SP Shah
Materials Letters 270, 127736, 2020
442020
Development of piezoresistive cement-based sensor using recycled waste glass cullets coated with carbon nanotubes
W Dong, Y Guo, Z Sun, Z Tao, W Li
Journal of Cleaner Production 314, 127968, 2021
432021
Structural response monitoring of concrete beam under flexural loading using smart carbon black/cement-based sensors
W Dong, W Li, Z Luo, G Long, K Vessalas, D Sheng
Smart Materials and Structures 29 (6), 065001, 2020
412020
Physicochemical and Piezoresistive properties of smart cementitious composites with graphene nanoplates and graphite plates
W Dong, W Li, K Wang, SP Shah
Construction and Building Materials 286, 122943, 2021
402021
Piezoresistivity deterioration of smart graphene nanoplate/cement-based sensors subjected to sulphuric acid attack
W Dong, W Li, K Vessalas, X He, Z Sun, D Sheng
Composites Communications 23, 100563, 2021
402021
An empirical model for the shear strength of corroded reinforced concrete beam
ZH Lu, H Li, W Li, YG Zhao, W Dong
construction and Building materials 188, 1234-1248, 2018
382018
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