Skip to main content
Top

20-03-2024 | Original Paper

Effect of Specimen Size on the Dynamic Behavior of Tire-Derived Aggregates (TDA)

Authors: Ahmed Moussa, Hany El Naggar

Published in: Geotechnical and Geological Engineering

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Tire derived aggregates (TDA) has been used successfully in numerous civil engineering projects. However, considerably few researchers investigated its performance in dynamic applications, despite the high energy absorption ability of TDA. Moreover, testing TDA samples with larger aggregate size is troublesome due to the limitation in specimen sizes available in geotechnical laboratories. Therefore, this paper provides more insights on the dynamic behavior of TDA with larger aggregate sizes. This work also investigates the extent of specimen size effect on the dynamic properties of TDA and Granulated rubber (GR). A series of undrained strain-controlled cyclic triaxial tests were performed using three specimen sizes with diameters of 70, 101 and 152 mm. TDA samples had maximum aggregate size of 19.1 and 25.4 mm, however, the GR samples had only a maximum aggregate size of 4.75 mm. All tests were performed at consolidation stress range of 25 to 100 kPa and shear strain range of 0.1 to 10%. It was found that the 70 mm specimens overestimated the shear modulus of TDA samples by a maximum of 15 to 26%. However, no significant variation was found in the shear modulus that is mobilized by the 101 and 152 mm specimens. Also, GR samples were marginally influenced by specimen size. Furthermore, regardless of the aggregate size, the damping capacity is independent of specimen size. Lastly, it is recommended to use triaxial specimen size with a diameter four times larger than the maximum aggregate size of considered TDA material.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Ahn I-S, Cheng L (2017) Seismic analysis of semi-gravity RC cantilever retaining wall with TDA backfill. Front Struct Civ Eng 11(4):455–469CrossRef Ahn I-S, Cheng L (2017) Seismic analysis of semi-gravity RC cantilever retaining wall with TDA backfill. Front Struct Civ Eng 11(4):455–469CrossRef
go back to reference Amanta AS, Dasaka SM (2022) Dynamic characteristics and liquefaction behavior of sand–tire chip mixes. J Mater Civil Eng 34(10) Amanta AS, Dasaka SM (2022) Dynamic characteristics and liquefaction behavior of sand–tire chip mixes. J Mater Civil Eng 34(10)
go back to reference Anastasiadis A, Senetakis K, Pitilakis K (2012) Small-strain shear modulus and damping ratio of sand–rubber and gravel–rubber mixtures. Geotech Geol Eng 30(2):363–382CrossRef Anastasiadis A, Senetakis K, Pitilakis K (2012) Small-strain shear modulus and damping ratio of sand–rubber and gravel–rubber mixtures. Geotech Geol Eng 30(2):363–382CrossRef
go back to reference ASTM D3999 (2011) D3999/D3999M standard test methods for the determination of the modulus and damping properties of soils using the cyclic triaxial apparatus ASTM D3999 (2011) D3999/D3999M standard test methods for the determination of the modulus and damping properties of soils using the cyclic triaxial apparatus
go back to reference Bahadori H, Farzalizadeh R (2018) Dynamic properties of saturated sands mixed with tyre powders and tyre shreds. Int J Civil Eng 16(4):395–408CrossRef Bahadori H, Farzalizadeh R (2018) Dynamic properties of saturated sands mixed with tyre powders and tyre shreds. Int J Civil Eng 16(4):395–408CrossRef
go back to reference Boominathan A (2023) Innovative geotechnical solutions for base isolation of buildings. Indian Geotech J 54:3–39 Boominathan A (2023) Innovative geotechnical solutions for base isolation of buildings. Indian Geotech J 54:3–39
go back to reference El Naggar H, Iranikhah A (2021) Evaluation of the shear strength behavior of TDA mixed with fine and coarse aggregates for backfilling around buried structures. Sustainability 13(9):5087CrossRef El Naggar H, Iranikhah A (2021) Evaluation of the shear strength behavior of TDA mixed with fine and coarse aggregates for backfilling around buried structures. Sustainability 13(9):5087CrossRef
go back to reference El Naggar H, Ashari M, Mahgoub A (2022) Development of an empirical hyperbolic material model for TDA utilizing large-scale triaxial testing. Int J Geotech Eng 16(2):133–142CrossRef El Naggar H, Ashari M, Mahgoub A (2022) Development of an empirical hyperbolic material model for TDA utilizing large-scale triaxial testing. Int J Geotech Eng 16(2):133–142CrossRef
go back to reference Fathali M, Esmaeili M, Moghadas Nejad F (2019) Influence of tire-derived aggregates mixed with ballast on ground-borne vibrations. J Modern Transp 27(4):355–363CrossRef Fathali M, Esmaeili M, Moghadas Nejad F (2019) Influence of tire-derived aggregates mixed with ballast on ground-borne vibrations. J Modern Transp 27(4):355–363CrossRef
go back to reference Feng ZY, Sutter KG (2000) Dynamic properties of granulated rubber/sand mixtures. Geotech Test J 23(3):338–344CrossRef Feng ZY, Sutter KG (2000) Dynamic properties of granulated rubber/sand mixtures. Geotech Test J 23(3):338–344CrossRef
go back to reference Hazarika H, Yasuhara K, Kikuchi Y, Karmokar AK, Mitarai Y (2010) Multifaceted potentials of tire-derived three dimesional geosynthetics in geotechnical applications and their evaluation. Geotext Geomembr 28(3):303–315 Hazarika H, Yasuhara K, Kikuchi Y, Karmokar AK, Mitarai Y (2010) Multifaceted potentials of tire-derived three dimesional geosynthetics in geotechnical applications and their evaluation. Geotext Geomembr 28(3):303–315
go back to reference Humphrey DN, Sandford TC, Cribbs MM, Manion WP (1993) Shear strength and compressibility of tire chips for use as retaining wall backfill. Transp Res Record Issue (1422):29–35 Humphrey DN, Sandford TC, Cribbs MM, Manion WP (1993) Shear strength and compressibility of tire chips for use as retaining wall backfill. Transp Res Record Issue (1422):29–35
go back to reference Karaman M, Demirci HE, Ecemis N, Bhattacharya S (2022) Usage of tyre derived aggregates as backfill around buried pipelines crossing strike-slip faults; model tests. Bull Earthq Eng 20(7):3143–3165CrossRef Karaman M, Demirci HE, Ecemis N, Bhattacharya S (2022) Usage of tyre derived aggregates as backfill around buried pipelines crossing strike-slip faults; model tests. Bull Earthq Eng 20(7):3143–3165CrossRef
go back to reference Kowalska M (2016) Compactness of scrap tyre rubber aggregates in standard proctor test. Proc Eng 161:975–979CrossRef Kowalska M (2016) Compactness of scrap tyre rubber aggregates in standard proctor test. Proc Eng 161:975–979CrossRef
go back to reference Lee JH, Salgado R, Lovell CW, Bernal A (1999) Shredded tires and rubber–sand as lightweight backfill. J Geotech Geoenviron Eng 125(2):132–141 Lee JH, Salgado R, Lovell CW, Bernal A (1999) Shredded tires and rubber–sand as lightweight backfill. J Geotech Geoenviron Eng 125(2):132–141
go back to reference Madhusudhan BR, Boominathan A, Banerjee S (2017) Static and large-strain dynamic properties of sand–rubber tire shred mixtures. J Mater Civ Eng 29(10):4017165CrossRef Madhusudhan BR, Boominathan A, Banerjee S (2017) Static and large-strain dynamic properties of sand–rubber tire shred mixtures. J Mater Civ Eng 29(10):4017165CrossRef
go back to reference Madhusudhan BR, Boominathan A, Banerjee S (2020) Cyclic simple shear response of sand–rubber tire chip mixtures. Int J Geomech 20(9):4020136CrossRef Madhusudhan BR, Boominathan A, Banerjee S (2020) Cyclic simple shear response of sand–rubber tire chip mixtures. Int J Geomech 20(9):4020136CrossRef
go back to reference Mahgoub A, El Naggar H (2019) Using TDA as an engineered stress-reduction fill over preexisting buried pipes. J Pipeline Syst 10(1):4018034CrossRef Mahgoub A, El Naggar H (2019) Using TDA as an engineered stress-reduction fill over preexisting buried pipes. J Pipeline Syst 10(1):4018034CrossRef
go back to reference Mahgoub A, El Naggar H (2020a) Coupled TDA–geocell stress-bridging system for buried corrugated metal pipes. J Geotech Geoenviron Eng 146(7):4020052CrossRef Mahgoub A, El Naggar H (2020a) Coupled TDA–geocell stress-bridging system for buried corrugated metal pipes. J Geotech Geoenviron Eng 146(7):4020052CrossRef
go back to reference Mahgoub A, El Naggar H (2020b) Innovative application of tire-derived aggregate around corrugated steel plate culverts. J Pipeline Syst 11(3):4020025CrossRef Mahgoub A, El Naggar H (2020b) Innovative application of tire-derived aggregate around corrugated steel plate culverts. J Pipeline Syst 11(3):4020025CrossRef
go back to reference Mahgoub A, El Naggar H (2020c) Shallow foundations on lightweight TDA backfill: field tests and 3D numerical modelling. Comput Geotech 126:103761CrossRef Mahgoub A, El Naggar H (2020c) Shallow foundations on lightweight TDA backfill: field tests and 3D numerical modelling. Comput Geotech 126:103761CrossRef
go back to reference Mahgoub A, El Naggar H (2022) Using TDA underneath shallow foundations: simplified design procedure. Int J Geotech Eng 16(7):787–801 Mahgoub A, El Naggar H (2022) Using TDA underneath shallow foundations: simplified design procedure. Int J Geotech Eng 16(7):787–801
go back to reference McCartney JS, Ghaaowd I, Fox PJ, Sanders MJ, Thielmann SS, Sander AC (2017) Shearing behavior of tire-derived aggregate with large particle size. II: cyclic simple shear. J Geotech Geoenviron Eng 143(10):4017079 McCartney JS, Ghaaowd I, Fox PJ, Sanders MJ, Thielmann SS, Sander AC (2017) Shearing behavior of tire-derived aggregate with large particle size. II: cyclic simple shear. J Geotech Geoenviron Eng 143(10):4017079
go back to reference Moussa A, El Naggar H (2020) Numerical evaluation of buried wave barriers performance. Int J Geosynth Ground Eng 6(4):1–13CrossRef Moussa A, El Naggar H (2020) Numerical evaluation of buried wave barriers performance. Int J Geosynth Ground Eng 6(4):1–13CrossRef
go back to reference Moussa A, El Naggar H (2021) Dynamic characterization of tire derived aggregates. J Mater Civil Eng 33(2):04020471 Moussa A, El Naggar H (2021) Dynamic characterization of tire derived aggregates. J Mater Civil Eng 33(2):04020471
go back to reference Moussa A, El Naggar H, Sadrekarimi A (2023) Dynamic characterization of tire derived aggregates using cyclic simple shear and bender element tests. Soil Dyn Earthq Eng 165:107700CrossRef Moussa A, El Naggar H, Sadrekarimi A (2023) Dynamic characterization of tire derived aggregates using cyclic simple shear and bender element tests. Soil Dyn Earthq Eng 165:107700CrossRef
go back to reference Ni P, Qin X, Yi Y (2018) Use of tire-derived aggregate for seismic mitigation of buried pipelines under strike-slip faults. Soil Dyn Earthq Eng 1984 115:495–506CrossRef Ni P, Qin X, Yi Y (2018) Use of tire-derived aggregate for seismic mitigation of buried pipelines under strike-slip faults. Soil Dyn Earthq Eng 1984 115:495–506CrossRef
go back to reference Rios S, Kowalska M, Viana da Fonseca A (2021) Cyclic and dynamic behavior of sand–rubber and clay–rubber mixtures. Geotech Geol Eng 39(5):3449–3467CrossRef Rios S, Kowalska M, Viana da Fonseca A (2021) Cyclic and dynamic behavior of sand–rubber and clay–rubber mixtures. Geotech Geol Eng 39(5):3449–3467CrossRef
go back to reference Rizvi SMF, Wang K, Jalal FE, Tu Y (2022) Evaluation of open and filled (TDA and RSM) trenches efficacy on vibration screening caused by transient loads. Transp Geotech 35:100770CrossRef Rizvi SMF, Wang K, Jalal FE, Tu Y (2022) Evaluation of open and filled (TDA and RSM) trenches efficacy on vibration screening caused by transient loads. Transp Geotech 35:100770CrossRef
go back to reference Sarajpoor S, Kavand A, Zogh P, Ghalandarzadeh A (2020) Dynamic behavior of sand–rubber mixtures based on hollow cylinder tests. Constr Build Mater 251:118948CrossRef Sarajpoor S, Kavand A, Zogh P, Ghalandarzadeh A (2020) Dynamic behavior of sand–rubber mixtures based on hollow cylinder tests. Constr Build Mater 251:118948CrossRef
go back to reference Senetakis K, Anastasiadis A, Pitilakis K (2012a) Dynamic properties of dry sand/rubber (SRM) and gravel/rubber (GRM) mixtures in a wide range of shearing strain amplitudes. Soil Dyn Earthq Eng (1984) 33(1):38–53 Senetakis K, Anastasiadis A, Pitilakis K (2012a) Dynamic properties of dry sand/rubber (SRM) and gravel/rubber (GRM) mixtures in a wide range of shearing strain amplitudes. Soil Dyn Earthq Eng (1984) 33(1):38–53
go back to reference Senetakis K, Anastasiadis A, Pitilakis K, Souli A (2012b) Dynamic behavior of sand/rubber mixtures, part II: effect of rubber content on G/G. J ASTM Int 9(2):1–12CrossRef Senetakis K, Anastasiadis A, Pitilakis K, Souli A (2012b) Dynamic behavior of sand/rubber mixtures, part II: effect of rubber content on G/G. J ASTM Int 9(2):1–12CrossRef
Metadata
Title
Effect of Specimen Size on the Dynamic Behavior of Tire-Derived Aggregates (TDA)
Authors
Ahmed Moussa
Hany El Naggar
Publication date
20-03-2024
Publisher
Springer International Publishing
Published in
Geotechnical and Geological Engineering
Print ISSN: 0960-3182
Electronic ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-024-02775-8