Branko Šavija

About Branko Šavija

Branko Šavija, With an exceptional h-index of 40 and a recent h-index of 37 (since 2020), a distinguished researcher at Technische Universiteit Delft, specializes in the field of Concrete modeling, Micromechanics, Additive manufacturing, Durability of Concrete.

His recent articles reflect a diverse array of research interests and contributions to the field:

Two scale models for fracture behaviours of cementitious materials subjected to static and cyclic loadings

Modelling of energy harvesting with bendable concrete and surface-mounted PVDF

Decarbonizing the cement industry: Findings from coupling prospective life cycle assessment of clinker with integrated assessment model scenarios

Size effect on compressive strength of foamed concrete: Experimental and numerical studies

Peanut shaped auxetic cementitious cellular composite (ACCC)

Self-healing of cementitious materials using sustainable cenosphere-based manufactured aggregate

Printing Path-Dependent Two-Scale Models for 3d Printed Planar Auxetics by Material Extrusion

Autogenous deformation-induced stress evolution in cementitious materials considering viscoelastic properties: A review of experiments and models

Branko Šavija Information

University

Position

___

Citations(all)

5263

Citations(since 2020)

4578

Cited By

1898

hIndex(all)

40

hIndex(since 2020)

37

i10Index(all)

94

i10Index(since 2020)

91

Email

University Profile Page

Google Scholar

Branko Šavija Skills & Research Interests

Concrete modeling

Micromechanics

Additive manufacturing

Durability of Concrete

Top articles of Branko Šavija

Two scale models for fracture behaviours of cementitious materials subjected to static and cyclic loadings

Construction and Building Materials

2024/5/3

Modelling of energy harvesting with bendable concrete and surface-mounted PVDF

Smart Materials and Structures

2024/4/25

Decarbonizing the cement industry: Findings from coupling prospective life cycle assessment of clinker with integrated assessment model scenarios

Journal of Cleaner Production

2024/4/15

Branko Šavija
Branko Šavija

H-Index: 25

Bernhard Steubing
Bernhard Steubing

H-Index: 16

Size effect on compressive strength of foamed concrete: Experimental and numerical studies

Materials & Design

2024/4/1

Peanut shaped auxetic cementitious cellular composite (ACCC)

Construction and Building Materials

2024/3/15

Yading Xu
Yading Xu

H-Index: 8

Branko Šavija
Branko Šavija

H-Index: 25

Self-healing of cementitious materials using sustainable cenosphere-based manufactured aggregate

Construction and Building Materials

2024/3/15

Printing Path-Dependent Two-Scale Models for 3d Printed Planar Auxetics by Material Extrusion

Available at SSRN 4741147

2024/2/9

Branko Šavija
Branko Šavija

H-Index: 25

Yading Xu
Yading Xu

H-Index: 8

Autogenous deformation-induced stress evolution in cementitious materials considering viscoelastic properties: A review of experiments and models

2024/2/7

Improving mechanical properties and sustainability of high-strength engineered cementitious composites (ECC) using diatomite

Materials and Structures

2024/2

Experimentally informed modeling of the early‐age stress evolution in cementitious materials using exponential conversion from creep to relaxation

Computer‐Aided Civil and Infrastructure Engineering

2024/1/26

The use of additive manufacturing in self-healing cementitious materials: A state-of-the-art review

2024/1/14

Effects of temperature on autogenous deformation and early-age stress evolution in cement pastes with low water to cement ratio

Construction and Building Materials

2024/1/12

Automatic enhancement of vascular configuration for self-healing concrete through reinforcement learning approach

Construction and Building Materials

2024/1/12

Yading Xu
Yading Xu

H-Index: 8

Branko Šavija
Branko Šavija

H-Index: 25

Assessment of self-healing behavior of polypropylene fiber-reinforced cement mortar with crystalline admixture: the effects of crack widths, cracking ages, and external conditions

Journal of Sustainable Cement-Based Materials

2024/1/2

Auxetic cementitious composites (ACCs) with excellent compressive ductility: Experiments and modeling

Materials & Design

2024/1/1

Yading Xu
Yading Xu

H-Index: 8

Branko Šavija
Branko Šavija

H-Index: 25

The role of eigen-stresses on apparent strength and stiffness of normal, high strength, and ultra-high performance fibre reinforced concrete

Developments in the Built Environment

2023/12/1

Micromechanical Models for FDM 3D-Printed Polymers: A Review

2023/11/23

Branko Šavija
Branko Šavija

H-Index: 25

3D Printable Strain Hardening Cementitious Composites (3DP-SHCC), tailoring fresh and hardened state properties

Construction and Building Materials

2023/11/3

Auxetic cementitious cellular composite (ACCC) PVDF-based energy harvester

Energy and Buildings

2023/11/1

Direct ink writing of vascularized self-healing cementitious composites

Cement and Concrete Composites

2023/11/1

See List of Professors in Branko Šavija University(Technische Universiteit Delft)

Co-Authors

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