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yading XU
yading XU
在 tudelft.nl 的电子邮件经过验证
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引用次数
引用次数
年份
An approach to develop printable strain hardening cementitious composites
SC Figueiredo, CR Rodríguez, ZY Ahmed, DH Bos, Y Xu, TM Salet, ...
Materials & Design 169, 107651, 2019
1862019
Deformation and fracture of 3D printed disordered lattice materials: Experiments and modeling
Y Xu, H Zhang, B Šavija, SC Figueiredo, E Schlangen
Materials & Design 162, 143-153, 2019
842019
Size effect on splitting strength of hardened cement paste: Experimental and numerical study
H Zhang, B Šavija, Y Xu, E Schlangen
Cement and Concrete Composites 94, 264-276, 2018
712018
Combined experimental and numerical study of uniaxial compression failure of hardened cement paste at micrometre length scale
H Zhang, Y Xu, Y Gan, ZE Chang, E Schlangen, B Šavija
Cement and Concrete Research 126, 105925, 2019
652019
On the use of machine learning models for prediction of compressive strength of concrete: influence of dimensionality reduction on the model performance
Z Wan, Y Xu, B Šavija
Materials 14 (4), 713, 2021
592021
Development of strain hardening cementitious composite (SHCC) reinforced with 3D printed polymeric reinforcement: Mechanical properties
Y Xu, B Šavija
Composites Part B: Engineering 174, 107011, 2019
562019
Cementitious composites reinforced with 3D printed functionally graded polymeric lattice structures: Experiments and modelling
Y Xu, H Zhang, Y Gan, B Šavija
Additive Manufacturing 39, 101887, 2021
542021
Microstructure informed micromechanical modelling of hydrated cement paste: Techniques and challenges
H Zhang, Y Xu, Y Gan, Z Chang, E Schlangen, B Šavija
Construction and Building Materials 251, 118983, 2020
522020
Mechanical behavior of printed strain hardening cementitious composites
S Chaves Figueiredo, C Romero Rodríguez, Z Y. Ahmed, DH Bos, Y Xu, ...
Materials 13 (10), 2253, 2020
502020
Cementitious cellular composites with auxetic behavior
Y Xu, H Zhang, E Schlangen, M Luković, B Šavija
Cement and Concrete Composites 111, 103624, 2020
452020
Experimentally informed fracture modelling of interfacial transition zone at micro-scale
H Zhang, Y Gan, Y Xu, S Zhang, E Schlangen, B Šavija
Cement and Concrete Composites 104, 103383, 2019
412019
Tunable mechanical behavior of auxetic cementitious cellular composites (CCCs): Experiments and simulations
Y Xu, E Schlangen, M Luković, B Šavija
Construction and Building Materials 266, 121388, 2021
392021
A discrete lattice model for assessment of buildability performance of 3D‐printed concrete
Z Chang, Y Xu, Y Chen, Y Gan, E Schlangen, B Šavija
Computer‐Aided Civil and Infrastructure Engineering 36 (5), 638-655, 2021
322021
Experimentally validated meso-scale fracture modelling of mortar using output from micromechanical models
H Zhang, Y Xu, Y Gan, E Schlangen, B Šavija
Cement and Concrete Composites 110, 103567, 2020
302020
Experimental study of flexural fatigue behaviour of cement paste at the microscale
Y Gan, H Zhang, Y Zhang, Y Xu, E Schlangen, K van Breugel, B Šavija
International Journal of Fatigue 151, 106378, 2021
242021
Convolutional neural network for predicting crack pattern and stress-crack width curve of air-void structure in 3D printed concrete
Z Chang, Z Wan, Y Xu, E Schlangen, B Šavija
Engineering Fracture Mechanics 271, 108624, 2022
202022
Mechanical properties and healing efficiency of 3D-printed ABS vascular based self-healing cementitious composite: Experiments and modelling
Z Wan, Y Xu, Y Zhang, S He, B Šavija
Engineering Fracture Mechanics 267, 108471, 2022
172022
Optimization of vascular structure of self-healing concrete using deep neural network (DNN)
Z Wan, Z Chang, Y Xu, B Šavija
Construction and Building Materials 364, 129955, 2023
152023
3D concrete printing: Lattice modeling of structural failure considering damage and deformed geometry
Z Chang, M Liang, Y Xu, E Schlangen, B Šavija
Cement and Concrete Composites 133, 104719, 2022
102022
Self-healing cementitious composites with a hollow vascular network created using 3D-printed sacrificial templates
Z Wan, Y Zhang, Y Xu, B Šavija
Engineering Structures 289, 116282, 2023
92023
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