Related Experiment Video
Updated: Jan 16, 2026

Advanced Self-Healing Asphalt Reinforced by Graphene Structures: An Atomistic Insight
Published on: May 31, 2022
Studying the Effect of Adding Polymeric Wastes on the Rheological Properties of Asphalt
1Department of Petroleum and Refining Engineering, College of Petroleum and Mining Engineering, University of Mosul, Mosul, Iraq. semaaibraheem@uomosul.edu.iq.
Abstract:
This research aims to prepare different types of asphalt materials with good rheological specifications compared to unmodified asphalt materials. Three types of polymeric materials used to enhance characteristics of Doura asphalt, namely PS, PFR, PP, to study effect of these polymers on rheological specifications of resulting asphalt systems and compare them with each other and with international, local specifications. To determine its suitability for use in a specific field and not another. Waste polymeric materials used instead of virgin materials for purpose of reducing environmental pollution, reducing costs of modification. The treatment was carried out using two methods: physical treatment based on mixing thermally broken down polymeric materials with asphalt. Chemical treatment depends on carrying out a catalytic chemical reaction using 2%anhydrous ferric chloride and 1%S. From the two methods, asphalt samples were obtained that could be used in field of producing of mastic which is used as a water proofing material, based on measurements that were made (softening point, penetration, ductility, PI, %asphaltene).
Related Concept Videos
Additives and Fillers in Concrete
The...
Polymer Classification: Architecture
Superplasticizers
Plasticizers
Plasticizers function by using surface-active agents to create repulsive electrostatic forces between cement particles. This dispersion enhances the concrete's...
Retarders
The function of retarders is to delay the setting of concrete, and this effect can be measured using a penetration test. The retardation process involves adding...
Polymer Classification: Crystallinity
Crystalline domains are the regions where polymer chains are aligned in an orderly manner and held together in proximity by intermolecular forces. For example, chains in the crystalline domains of polyethylene and nylon are bound together by van der Waals...

