Multi-Scale Rheo-Mechanical Study of SMA Mixtures Containing Fine Crumb Rubber in a New Dry-Hybrid Technology

Aiming to study the rheo-mechanical effects of fine crumb rubber into gap graded stone mastic asphalt (SMA) mixtures, a multi-scale experimental approach was adopted. Therefore, in the perspective of the reuse of end of life tires’ in asphalt layers, the adopted new dry-hybrid technology effects hav...

Full description

Bibliographic Details
Main Authors: Francesco Mazzotta, Piergiorgio Tataranni, Andrea Simone, Daniele Fornai, Gordon Airey, Cesare Sangiorgi
Format: Article
Language:English
Published: MDPI AG 2020-06-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/11/3887
id doaj-74104f94b3134d22a996a55e3cf3f733
record_format Article
spelling doaj-74104f94b3134d22a996a55e3cf3f7332020-11-25T03:02:13ZengMDPI AGApplied Sciences2076-34172020-06-01103887388710.3390/app10113887Multi-Scale Rheo-Mechanical Study of SMA Mixtures Containing Fine Crumb Rubber in a New Dry-Hybrid TechnologyFrancesco Mazzotta0Piergiorgio Tataranni1Andrea Simone2Daniele Fornai3Gordon Airey4Cesare Sangiorgi5DICAM, University of Bologna, Viale Risorgimento 2, 40136 Bologna, ItalyDICAM, University of Bologna, Viale Risorgimento 2, 40136 Bologna, ItalyDICAM, University of Bologna, Viale Risorgimento 2, 40136 Bologna, ItalyEcopneus Scpa, Via Messina, 38-Torre B, 20154 Milano, ItalyFaculty of Engineering, The University of Nottingham, University Park, Nottingham NG72RD, UKDICAM, University of Bologna, Viale Risorgimento 2, 40136 Bologna, ItalyAiming to study the rheo-mechanical effects of fine crumb rubber into gap graded stone mastic asphalt (SMA) mixtures, a multi-scale experimental approach was adopted. Therefore, in the perspective of the reuse of end of life tires’ in asphalt layers, the adopted new dry-hybrid technology effects have been investigated from the mastic, mortar and mixture points of view. The new rubberized asphalt production technology allows the use of rubber powder as filler, the rubber amount optimization being validated through multi-scale performance tests. Mastics and mortars’ complex modulus measured with dynamic shear and torsional tests were related to the mixture stiffness modulus recorded in direct tension-compression mode. The rheological properties of mastic are strictly influenced by the rubber presence, and consequently the asphalt mixtures stiffness and thermo-sensitivity are connected to the mastic and mortar rheo-mechanical behavior. Results are consistent through the adopted approach and reveal that with the new dry-hybrid technology, overcoming the wet and dry limits, it seems to be possible obtaining more durable and eco-friendly bituminous pavement layers.https://www.mdpi.com/2076-3417/10/11/3887fine crumb rubberdry-hybrid technologymastic and mortardynamic shear rheometerrecycling
collection DOAJ
language English
format Article
sources DOAJ
author Francesco Mazzotta
Piergiorgio Tataranni
Andrea Simone
Daniele Fornai
Gordon Airey
Cesare Sangiorgi
spellingShingle Francesco Mazzotta
Piergiorgio Tataranni
Andrea Simone
Daniele Fornai
Gordon Airey
Cesare Sangiorgi
Multi-Scale Rheo-Mechanical Study of SMA Mixtures Containing Fine Crumb Rubber in a New Dry-Hybrid Technology
Applied Sciences
fine crumb rubber
dry-hybrid technology
mastic and mortar
dynamic shear rheometer
recycling
author_facet Francesco Mazzotta
Piergiorgio Tataranni
Andrea Simone
Daniele Fornai
Gordon Airey
Cesare Sangiorgi
author_sort Francesco Mazzotta
title Multi-Scale Rheo-Mechanical Study of SMA Mixtures Containing Fine Crumb Rubber in a New Dry-Hybrid Technology
title_short Multi-Scale Rheo-Mechanical Study of SMA Mixtures Containing Fine Crumb Rubber in a New Dry-Hybrid Technology
title_full Multi-Scale Rheo-Mechanical Study of SMA Mixtures Containing Fine Crumb Rubber in a New Dry-Hybrid Technology
title_fullStr Multi-Scale Rheo-Mechanical Study of SMA Mixtures Containing Fine Crumb Rubber in a New Dry-Hybrid Technology
title_full_unstemmed Multi-Scale Rheo-Mechanical Study of SMA Mixtures Containing Fine Crumb Rubber in a New Dry-Hybrid Technology
title_sort multi-scale rheo-mechanical study of sma mixtures containing fine crumb rubber in a new dry-hybrid technology
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2020-06-01
description Aiming to study the rheo-mechanical effects of fine crumb rubber into gap graded stone mastic asphalt (SMA) mixtures, a multi-scale experimental approach was adopted. Therefore, in the perspective of the reuse of end of life tires’ in asphalt layers, the adopted new dry-hybrid technology effects have been investigated from the mastic, mortar and mixture points of view. The new rubberized asphalt production technology allows the use of rubber powder as filler, the rubber amount optimization being validated through multi-scale performance tests. Mastics and mortars’ complex modulus measured with dynamic shear and torsional tests were related to the mixture stiffness modulus recorded in direct tension-compression mode. The rheological properties of mastic are strictly influenced by the rubber presence, and consequently the asphalt mixtures stiffness and thermo-sensitivity are connected to the mastic and mortar rheo-mechanical behavior. Results are consistent through the adopted approach and reveal that with the new dry-hybrid technology, overcoming the wet and dry limits, it seems to be possible obtaining more durable and eco-friendly bituminous pavement layers.
topic fine crumb rubber
dry-hybrid technology
mastic and mortar
dynamic shear rheometer
recycling
url https://www.mdpi.com/2076-3417/10/11/3887
work_keys_str_mv AT francescomazzotta multiscalerheomechanicalstudyofsmamixturescontainingfinecrumbrubberinanewdryhybridtechnology
AT piergiorgiotataranni multiscalerheomechanicalstudyofsmamixturescontainingfinecrumbrubberinanewdryhybridtechnology
AT andreasimone multiscalerheomechanicalstudyofsmamixturescontainingfinecrumbrubberinanewdryhybridtechnology
AT danielefornai multiscalerheomechanicalstudyofsmamixturescontainingfinecrumbrubberinanewdryhybridtechnology
AT gordonairey multiscalerheomechanicalstudyofsmamixturescontainingfinecrumbrubberinanewdryhybridtechnology
AT cesaresangiorgi multiscalerheomechanicalstudyofsmamixturescontainingfinecrumbrubberinanewdryhybridtechnology
_version_ 1724690871758094336