José Norambuena-Contreras

José Norambuena-Contreras

Universidad del Bío-Bío

H-index: 32

Latin America-Chile

About José Norambuena-Contreras

José Norambuena-Contreras, With an exceptional h-index of 32 and a recent h-index of 30 (since 2020), a distinguished researcher at Universidad del Bío-Bío, specializes in the field of Bituminous Materials, Self-Healing Materials, Waste Materials, Innovative Materials.

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

Operando FTIR-ATR with molecular dynamic simulations to understand the diffusion mechanism of waste tire-derived pyrolytic oil for asphalt self-healing

Crosslinked oxidized-nanocellulose/chitosan hydrogels as a scaffold matrix for mesenchymal stem cell growth

Asphalt pyro-rejuvenators based on waste tyres: an approach to improve the rheological and self-healing properties of aged binders

Dynamic mechanical analysis of asphalt mortar samples containing millimetre-size capsules for self-healing purposes

Mechanical activation assisted of biobased encapsulated rejuvenators to promote asphalt self-healing

Rheological Properties’ Characterization of Self-Healing Asphalt Mortars

Application of Polymer Materials in Pavement Design

Effect of rejuvenating oil type on the synthesis and properties of alginate-based polynuclear capsules for asphalt self-healing

José Norambuena-Contreras Information

University

Position

Assistant Professor in Civil Engineering Materials -

Citations(all)

3237

Citations(since 2020)

2533

Cited By

1628

hIndex(all)

32

hIndex(since 2020)

30

i10Index(all)

56

i10Index(since 2020)

50

Email

University Profile Page

Universidad del Bío-Bío

Google Scholar

View Google Scholar Profile

José Norambuena-Contreras Skills & Research Interests

Bituminous Materials

Self-Healing Materials

Waste Materials

Innovative Materials

Top articles of José Norambuena-Contreras

Title

Journal

Author(s)

Publication Date

Operando FTIR-ATR with molecular dynamic simulations to understand the diffusion mechanism of waste tire-derived pyrolytic oil for asphalt self-healing

Fuel

Gonzalo R Quezada

Camilo Solar

Jorge H Saavedra

Karla Petit

Francisco J Martin-Martínez

...

2024/2/1

Crosslinked oxidized-nanocellulose/chitosan hydrogels as a scaffold matrix for mesenchymal stem cell growth

Mayra A Mariño

Karina Oyarce

Catalina Tovar

Rodrigo Segura

Gabriela Paredes

...

2023/4/26

Asphalt pyro-rejuvenators based on waste tyres: an approach to improve the rheological and self-healing properties of aged binders

Journal of Cleaner Production

Manuel Chávez-Delgado

José R Colina

Cristina Segura

Claudio Álvarez

Paula Osorio-Vargas

...

2024/4/10

Dynamic mechanical analysis of asphalt mortar samples containing millimetre-size capsules for self-healing purposes

Powder Technology

Jose L Concha

Angelica Viana-Sepulveda

Silvia Caro

Luis E Arteaga-Pérez

Jose Norambuena-Contreras

2024/4/6

Mechanical activation assisted of biobased encapsulated rejuvenators to promote asphalt self-healing

Materials Today Communications

Jose L Concha

Miguel Sáez-Gutierrez

Jose Norambuena-Contreras

2024/3/1

Rheological Properties’ Characterization of Self-Healing Asphalt Mortars

Angélica Viana-Sepúlveda

Silvia Caro

José L Concha

Jose Norambuena-Contreras

2023

Application of Polymer Materials in Pavement Design

Wei Jiang

Quantao Liu

Jose Norambuena-Contreras

Yue Huang

2023/11/17

Effect of rejuvenating oil type on the synthesis and properties of alginate-based polynuclear capsules for asphalt self-healing

Road Materials and Pavement Design

Jose L Concha

Luis E Arteaga-Pérez

Erik Alpizar-Reyes

Cristina Segura

Irene Gonzalez-Torre

...

2023/7/3

Microcapsules and induction heating: two methods for closing cracks in asphalt porous pavements

Journal of Engineering and Sustainable Development

Siham Idan Salih

Alvaro Garcia

Jose Norambuena-Contreras

2023/7/1

Optimised Sunflower Oil Content for Encapsulation by Vibrating Technology as a Rejuvenating Solution for Asphalt Self-Healing

Polymers

Jose L Concha

Rodrigo Delgadillo

Luis E Arteaga-Pérez

Cristina Segura

Jose Norambuena-Contreras

2023/3/22

Microwave Crack-Healing Capability on Asphalt Mixtures with Silicon Carbide

Alvaro González

Jonathan Valderrama

José Norambuena-Contreras

2022

Modeling of Self-healing Process in Bituminous Materials: Experimental and Numerical Models

Self-Healing Construction Materials: Fundamentals, Monitoring and Large Scale Applications

Guoqiang Sun

Daquan Sun

Mingjun Hu

Alvaro Guarin

Jose Norambuena-Contreras

2022

Fundamentals of Self-Healing Construction Materials

Self-Healing Construction Materials: Fundamentals, Monitoring and Large Scale Applications

Antonios Kanellopoulos

Jose Norambuena-Contreras

2022

Biopolymeric capsules containing different oils as rejuvenating agents for asphalt self-healing: A novel multivariate approach

Polymers

Jose L Concha

Luis E Arteaga-Pérez

Irene Gonzalez-Torre

Quantao Liu

Jose Norambuena-Contreras

2022/12/11

Self-adaptive construction materials: future directions

Self-Healing Construction Materials: Fundamentals, Monitoring and Large Scale Applications

Antonios Kanellopoulos

Magdalini Theodoridou

Michael Harbottle

Sergio Lourenco

Jose Norambuena-Contreras

2022

Biobased spore microcapsules for asphalt self-healing

ACS Applied Materials & Interfaces

Erik Alpizar-Reyes

José L Concha

Francisco J Martín-Martínez

José Norambuena-Contreras

2022/6/30

Multiscale Measurements of the Self-Healing Capability on Bituminous Materials

Self-Healing Construction Materials: Fundamentals, Monitoring and Large Scale Applications

Guoqiang Sun

Daquan Sun

Alvaro Guarin

Jose Norambuena-Contreras

2022

Synthesis and characterisation of alginate-based capsules containing waste cooking oil for asphalt self-healing

Applied Sciences

Jose Norambuena-Contreras

Jose L Concha

Luis E Arteaga-Pérez

Irene Gonzalez-Torre

2022/3/7

Advances in Self-healing Bituminous Materials: From Concept to Large-Scale Application

Self-Healing Construction Materials: Fundamentals, Monitoring and Large Scale Applications

Jose Norambuena-Contreras

Quantao Liu

Alvaro Gonzalez

Alvaro Guarin

Nilo Ruiz-Riancho

...

2022

Self-Healing Construction Materials: Fundamentals, Monitoring and Large Scale Applications

Antonios Kanellopoulos

Jose Norambuena-Contreras

2022

See List of Professors in José Norambuena-Contreras University(Universidad del Bío-Bío)

Co-Authors

H-index: 84
Qing Wang

Qing Wang

Penn State University

H-index: 74
Erik Schlangen

Erik Schlangen

Technische Universiteit Delft

H-index: 27
Francisco J. Martin-Martinez

Francisco J. Martin-Martinez

Swansea University

H-index: 24
Philipp Schuetz

Philipp Schuetz

Hochschule Luzern

H-index: 24
Luis Ernesto Arteaga Pérez

Luis Ernesto Arteaga Pérez

Universidad del Bío-Bío

H-index: 23
Mehmet YILMAZ

Mehmet YILMAZ

Firat Üniversitesi

academic-engine