Šavija, Branko
97  Ergebnisse:
Personensuche X
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1

Influence of Micro-Pore Connectivity and Micro-Fractures on..:

Perko, Janez ; Ukrainczyk, Neven ; Šavija, Branko..
https://tuprints.ulb.tu-darmstadt.de/16970/1/materials-13-02697-v2.pdf.  , 2024
 
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2

Influence of printing direction on 3D-printed vascular base..:

Wan Zhi ; Xu Yading ; Šavija Branko
https://www.matec-conferences.org/articles/matecconf/pdf/2023/05/matecconf_smartincs2023_02027.pdf.  , 2023
 
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3

Influence of Fiber Orientation on the Water and Ions Transp..:

Tawfek, Abdullah M ; Ge, Zhi ; Li, Jian...
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10343832/.  , 2023
 
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4

3D printing and self-healing concrete: a good match?:

Šavija Branko
https://www.matec-conferences.org/articles/matecconf/pdf/2023/05/matecconf_smartincs2023_01005.pdf.  , 2023
 
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5

Thermomechanical performance analysis of novel cement-based..:

Marín Montín, Jorge Julio ; Roque, Eduardo ; Xu, Yading..
Marin-Montin, J.; Roque, E.; Xu, Y.; .Savija, B.; Serrano-Ruiz, J.C.; Montero-Chacón, F. Thermomechanical Performance Analysis of Novel Cement-Based Building Envelopes with Enhanced Passive Insulation Properties. Materials 2022, 15, 4925. https:// doi.org/10.3390/ma15144925.  , 2022
 
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6

Design and analyses of printable strain hardening cementiti..:

van Overmeir, Anne Linde ; Chaves Figueiredo, Stefan ; Savija, Branko..
van Overmeir , A L , Chaves Figueiredo , S , Savija , B , Bos , F P & Schlangen , E 2022 , ' Design and analyses of printable strain hardening cementitious composites with optimized particle size distribution ' , Construction and Building Materials , vol. 324 , 126411 . https://doi.org/10.1016/j.conbuildmat.2022.126411.  , 2022
 
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11

Impact of chemically treated waste rubber tire aggregates o..:

Khern, Yih Chen ; Paul, Suvash Chandra ; Kong, Sih Ying...
Khern , Y C , Paul , S C , Kong , S Y , Babafemi , A J , Anggraini , V , Miah , M J & Šavija , B 2020 , ' Impact of chemically treated waste rubber tire aggregates on mechanical, durability and thermal properties of concrete ' , Frontiers in Materials , vol. 7 , 90 . https://doi.org/10.3389/fmats.2020.00090.  , 2020
 
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