Nanostructural and Nanomechanical Properties of LDPE-Modified Binders

Author:

Aljarrah Mohammad Fuad1ORCID,Roja K. Lakshmi2ORCID,Masad Eyad3,Ouederni Mabrouk4ORCID,Ibikunle Oluwagbemi Banji5ORCID

Affiliation:

1. Graduate Research Assistant, Zachry Dept. of Civil and Environmental Engineering, Texas A&M Univ., College Station, TX 77843 (corresponding author). ORCID: .

2. Assistant Research Scientist, Mechanical Engineering Program, Texas A&M Univ. at Qatar, P.O. Box 23874, Doha, Qatar. ORCID: .

3. Professor, Mechanical Engineering Program, Texas A&M Univ. at Qatar, P.O. Box 23874, Doha, Qatar.

4. Head of R&D, Qatar Petrochemical Company (QAPCO) Q.P.J.S.C., P.O. Box 756, Doha, Qatar. ORCID: .

5. QA/QC & Technical Manager, RAETEX Doha, P.O. Box 30432, Doha, Qatar. ORCID: .

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanics of Materials,General Materials Science,Building and Construction,Civil and Structural Engineering

Reference56 articles.

1. Nanoscale viscoelastic characterization of asphalt binders using the AFM-nDMA test

2. Laboratory evaluation of HMA with high density polyethylene as a modifier

3. Baumgardner G. L. 2010. “Why and how of polyphosphoric acid modification—An industry perspective.” J. Assoc. Asphalt Paving Technol. 74: 663–678.

4. Baumgardner G. L. J. F. Masson J. R. Hardee A. M. Menapace and A. G. Williams. 2005. “Polyphosphoric acid modified asphalt: Proposed mechanisms.” J. Assoc. Asphalt Paving Technol. 79: 283–305.

5. Morphology, rheology, and physical properties of polymer-modified asphalt binders

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