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Taş mastik asfalt karışımlarda SBS/nanokil/bitüm nano-kompozitler için optimum bileşim oranının araştırılması

Year 2021, Volume: 36 Issue: 4, 1847 - 1862, 02.09.2021
https://doi.org/10.17341/gazimmfd.619772

Abstract

Asfalt karışımlarda temel
bozulma problemlerinin en aza indirgenmesi ve performans artışı sağlanabilmesi
için çeşitli katkı maddeler kullanılabilmektedir. Bu katkı maddeleri arasında
stiren-bütadiyen-stiren (SBS) katkısı en çok tercih edilen katkılar
arasındadır. SBS’in asfalt çimentosu ve asfalt karışımın performansını önemli
oranda arttırdığı bilinmektedir. Ancak yüksek maliyeti ve bitüm ile olan zayıf
uyumu nedeniyle kullanımında sorunlar yaşanabilmektedir. Nanokil polimerlerle
birlikte kullanılarak onların özelliklerini arttırabilmektedir. Bu çalışmada,
farklı SBS oranlarında (%5, %4, %3, %2 ve %1) sabit %2 ve %3 nanokil ilavesinin
etkisi su hasarı, tekerlek izi ve çatlama direnci yönüyle irdelenmiş, SBS
oranının azaltılabilirliği sorgulanmıştır. Test sonuçlarına göre,
%2nanokil-%3SBS oranının memnun edici sonuçlar verdiği görülmüştür.

References

  • Wen G., Zhang Y., Zhang Y., Sun K., Fan Y., Rheological Characterization of Storagestable SBS-Modified Asphalts, Polym. Test. 21(3), 295-302, 2002.
  • Mokhtari A., Nejad F.M., Mechanistic Approach for Fiber and Polymer Modified SMA Mixtures, Constr. Build. Mater., 36, 381-390, 2012.
  • Ghasemi M., Marandi S.M., Engineering Properties of SMA Mixtures/Polymer/ RGP Blends, Int. J. Transp. Eng., 2(2), 97-106, 2014.
  • Golestani B., Nejad F.M., Galooyak S.S., Performance Evaluation of Linear and Nonlinear Nanocomposite Modified Asphalts, Constr. Build. Mater., 35, 197-203, 2012.
  • Galooyak S.S., Dabir B., Nazarbeygi A.E., Moeini A., Rheological Properties and Storage Stability of Bitumen/SBS/Montmorillonite Composites, Constr. Build. Mater., 24(3), 300-307, 2010.
  • You Z., Mills-Beale J., Foley J.M., Roy S., Odegard G.M., Dai Q., Goh S.W., Nanoclay Modified Asphalt Materials: Preparation and Characterization, Constr. Build. Mater., 25(2), 1072-1078, 2011.
  • Yusoff N.I.M., Breem A.A.S., Alattug H.N., Hamim A., The Effects of Moisture Susceptibility and Ageing Conditions on Nano-Silica/Polymer-Modified Asphalt Mixtures, Constr. Build. Mater., 72(15), 139-147, 2014.
  • Hamedi G.H., Nejad F.M., Oveisi K., Estimating the Moisture Damage of Asphalt Mixture Modified with Nano Zinc Oxide, Mater. Struct., 49(4), 1165–1174, 2016.
  • Diab A., You Z., Effects of Regular-Sized and Nanosized Hydrated Lime on Binder Rheology and Surface Free Energy of Adhesion of Foamed Warm Mix Asphalt, J. Mater. Civ. Eng., 27(9), 1-7, 2014.
  • İskender E., Evaluation of Mechanical Properties of Nano-Clay Modified Asphalt Mixtures, Measurement, 93, 359-371, 2016.
  • Pinnavaia T.J., Beall GW., Polymer-clay Nanocomposites, England: John Wiley and Sons Ltd, ISBN 978-0-471-63700-4, 2000.
  • Shafabakhsh G.H., Mirabdolazimi S.M., Sadeghnejad M., Evaluation the Effect of Nano-TiO2 on the Rutting and Fatigue Behavior of Asphalt Mixtures, Constr. Build. Mater., 54, 566-571, 2014.
  • Paul D.R., Robeson L.M., Polymer Nanotechnology: Nanocomposites, Polymer, 49(15), 3187-3204, 2008.
  • Ray S.S., Okamoto M., Polymer/layered Silicate Nanocomposites: A Review From Preparation to Processing, Prog. Polym. Sci., 28(11), 1539-1641, 2003.
  • Yang J., Tighe S., A Review of Advances of Nanotechnology in Asphalt Mixtures, Procedia – Social and Behavioral Sciences, 96(6), 1269-1276, 2013.
  • Hossain Z., Zaman M., Hawa T., Saha M.C., Evaluation of Moisture Susceptibility of Nanoclay-Modified Asphalt Binders Through the Surface Science Approach, J. Mater. Civ. Eng., 27(10), 1-9, 2014.
  • Shahabadi A.Z., Shokuhfar A., Nejad S.E., Preparation and Rheological Characterization of Asphalt Binders Reinforced with Layered Silicate Nanoparticles, Constr. Build. Mater., 24(7), 1239-1244, 2010.
  • Liu G., van de Ven M., Wu S., Yu J., Molenaar A., Influence of Organomontmorillonites on Fatigue Properties of Bitumen and Mortar, Constr. Build. Mater., 33(12), 1574-1582, 2011.
  • Yao H., You Z., Li L., Goh S., Mills-Beale J., Shi X., Wingard D., Evaluation of Asphalt Blended with Low Percentage of Carbon Micro-Fiber and Nanoclay, J. Test. Eval., 41(2), 1-11, 2013.
  • Polacco G., Kriz P., Filippi S., Statstna J, Biondi D, Zanzotto L., Rheological properties of asphalt/SBS/clay blends, Eur. Polym. J., 44(11), 3512-3521, 2008.
  • Jahromi S.G., Andalibizade B., Vossough S., Engineering Properties of Nanoclay Modified Asphalt Concrete Mixtures, Arabian Journal for Science & Engineering 35, 89-103, 2010.
  • Xiao F., Amirkhanian A.N., Amirkhanian S.N., Influence on Rheological Characteristics of Asphalt Binders Containing Carbon Nanoparticles, J. Mater. Civ. Eng., 23, 423-431, 2011.
  • Ameri M., Mohammadi R., Vamegh M., Molayem M., Evaluation the Effects of Nanoclay on Permanent Deformation Behavior of Stone Mastic Asphalt Mixtures, Constr. Build. Mater., 156, 107-113, 2017.
  • Pamplona T.F., Amoni B. de C., Alencar A.E.V. de, Lima A.P.D., Ricardo Nágila M.P.S., Soares J.B., Soares S. de A., Asphalt Binders Modified by SBS and SBS/Nanoclays: Effect on Rheological Properties, J. Braz. Chem. Soc., 23(4), 639-647, 2012.
  • Fu H., Leidong X., Ming Y., Yao S., Storage stability and compatibility of asphalt binder modified by SBS graft copolymer, Constr. Build. Mater., 21, 1528–1533, 2007.
  • Wang S., Zhang Y., Zhang Y.K., SBS/Carbon Black Compounds Give Asphalts with Improved High-Temperature Storage Stability, Polym. Polym. Compos., 11(6), 477-485, 2003.
  • Karayolları Genel Müdürlüğü Yayınları, Karayolları Teknik Şartnamesi, Ankara, Türkiye, 2013.
  • Kraton, Kraton D1101 A polymer data document, K0412 Europe, 2018.
  • Lu X., Isacsson U., Laboratory Study on the Low Temperature Physical Hardening of Conventional and Polymer Modified Bitumens, Constr. Build. Mater., 14(4), 79-88, 2000.
  • Navarro F.J., Partal P., Martinez-Boza F., Valencia C., Gallegos C., Rheological Characteristics of Ground Tire Rubber-Modified Bitumens, Chemical Engineering Journal, 89, 53-61, 2002.
  • Airey G.D., Rheological evaluation of ethylene vinyl acetate polymer modified bitumens, Constr. Build. Mater., 16(8), 473-487, 2002.
  • Zhuang C., Li N., Zhao W., Cai C., Effects of SBS Content on the Performance of Modified Asphalt, Mater. Sci. Eng., 216, 2017.
  • AASHTO T 283-03., Standard Method of Test for Resistance of Compacted Asphalt Mixtures to Moisture-Induced Damage, American Association of State Highway and Transportation Officials, Washington, D.C., 2014.
  • Tayfur S., Ozen H., Aksoy A., Investigation of Rutting Performance of Asphalt Mixtures Containing Polymer Modifiers, Constr. Build. Mater., 21(2), 328-37, 2007.
  • Bostancioglu M., Oruç S., Effect of Activated Carbon and Furan Resin on Asphalt Mixture Performance, Road Materials and Pavement Design, 17(2), 512-525, 2016.
  • Yilmaz M., Kök B.V., Kuloglu N., Effects of Using Asphaltite as Filler on Mechanical Properties of Hot Mix Asphalt, Constr. Build. Mater., 25(11), 4279–4286, 2011.
  • Arabani M., Tahami S.A., Assessment of Mechanical Properties of Rice Husk Ash Modified Asphalt Mixture, Constr. Build. Mater., 149, 350-358, 2017.
  • Crucho, J., Picado-Santos, L., Neves, J., Capitão, S., A Review of Nanomaterials’ Effect on Mechanical Performance and Aging of Asphalt Mixtures. Appl. Sci., 9(18), 3657, 2019.
  • Wang, H., Guo, Y., Shen, A., Yang, X., Li, P. (2020). Effect of Nanoclays on Moisture Susceptibility of SBS-Modified Asphalt Binder. Adv. Mater. Sci. Eng., 2020.
  • Abdullah M.E., Zamhari K.A., Hainin M.R., Oluwasola E.A., Yusoff N.I., Hassan N.A., High Temperature Characteristics of Warm Mix Asphalt Mixtures with Nanoclay and Chemical Warm Mix Asphalt Modified Binders, J. Cleaner Prod., 122, 326-334, 2016.
  • Malarvizhi, G., Sabermathi, R., Kamaraj, C., Laboratory Study on Nano Clay Modified Asphalt Pavement, Int. J. Appl. Eng. Res., 10, 8, 20175-20190, 2015.
  • Goh S.W., Akin M., You Z., Shi X., Effect of Deicing Solutions on the Tensile Strength of Micro- or Nano-Modified Asphalt Mixtur, Constr. Build. Mater., 25(1), 195-200, 2011.
  • Mousavinezhad, S. H., Shafabakhsh, G. H., Ani, O. J., Nano-clay and styrene-butadiene-styrene modified bitumen for improvement of rutting performance in asphalt mixtures containing steel slag aggregates, Constr. Build. Mater., 226, 793-801, 2019.
  • Zapién-Castillo, S., Rivera-Armenta, J. L., Chávez-Cinco, M. Y., Salazar-Cruz, B. A., Mendoza-Martínez, A. M., Physical and rheological properties of asphalt modified with SEBS/montmorillonite nanocomposite. Constr. Build. Mater., 106, 349–356, 2016.
  • Bhargava, S., Raghuwanshi, A. K., Gupta, P. Nanomaterial Compatibility and Effect on Properties of Base Bitumen Binder and Polymer Modified Bitumen. IJISET-Int. J. Innovative Sci., Eng. & Technol., 3(6), 276-282, 2016.
  • Martínez-Anzures, J. D., Zapién-Castillo, S., Salazar-Cruz, B. A., Rivera-Armenta, J. L., Antonio-Cruz, R. D. C., Hernández-Zamora, G., & Méndez-Hernández, M. L., Preparation and properties of modified asphalt using branch SBS/nanoclay nanocomposite as a modifier. Road Materials and Pavement Design, 20(6), 1275-1290, 2019.
  • Robert F.L., Kandhal P.S., Brown E.R., Dah Y.L., Kennedy T.W., Hot Mix Asphalt Materials, Mixture Design and Construction, second ed., NAPA Education Foundation, Lanham, Maryland, 248-485, 1996.
  • Ghile D.B., Effects of Nanoclay Modification on Rheology of Bitumen and on Performance of Asphalt Mixtures, Master Thesis, Delft University of Technology, Delft, The Netherlands, 2006.
  • Liu D.L., Yao H.B., Bao S.Y., Performance of Nano-Calcium Carbonate and SBS Compound Modified Asphalt, Zhongnan Daxue Xuebao (Ziran Kexue Ban)/J. Cent. South Univ. (Sci. Technol.), 38(3), 579-582, 2007.
  • Ma F., Zhang C., Fu Z., Performance and Modification Mechanism of Nano-CaCO3 Modified Asphalt, Wuhan Ligong Daxue Xuebao Jiaotong Kexue Yu Gongc Ban, 2007.
  • Brown E.R., Kandhal P.S., Zhang J., Performance Testing for Hot Mix Asphalt, National Center for Asphalt Technology Auburn University, Alabama NCAT Report 01-05 November 2001.
  • Sarışın, E , Yalçın, E , Öner, J., Analysis of rheological properties of modified bitumen with hybrid polymers. Journal of the Faculty of Engineering and Architecture of Gazi University, 36, 201-212, 2020.
  • Arslan D., Gürü M., Çubuk M.K., Çubuk M., Farshbafian F.K., Investigation of rheological and mechanical properties of kaolin-clay modified bitumen, Journal of the Faculty of Engineering and Architecture of Gazi University, 35 (3), 1409-1419, 2020.
  • Chelovian A., Shafabakhsh G., Laboratory evaluation of Nano Al2O3 effect on dynamic performance of stone mastic asphalt, Int. J. Pavement Res. Technol., 10(2), 131-138, 2017.
  • Ghasemi M., Marandi S.M., Tahmooresi M., Kamali R.J., Taherzade R., Modification of Stone Matrix Asphalt With Nano-Sio2, J Basic Appl Sci Res, 2(2), 1338-1344, 2012.
  • Ashish, P., Singh, D., Bohm, S., Evaluation of rutting, fatigue and moisture damage performance of nanoclay modified asphalt binder. Constr. Build. Mater., 113, 341–350, 2016.
  • Li, R., Xiao, F., Amirkhanian, S., You, Z., & Huang, J., Developments of nano materials and technologies on asphalt materials – a review. Constr. Build. Mater., 143, 633–648, 2017.
  • Farias, L., Leitinho, J., Amoni, B., Bastos, J., Soares, J., Soares, S., Sant’Ana, H., Effects of nanoclay and nanocomposites on bitumen rheological properties. Constr. Build. Mater., 125, 2016.
  • Hossain, Z., Elsayed, A., Use of Nanoclays as Alternatives of Polymers Toward Improving Performance of Asphalt Binders. Transportation Consortium of South-Central States, Project No. 17BASU01, 2018.
Year 2021, Volume: 36 Issue: 4, 1847 - 1862, 02.09.2021
https://doi.org/10.17341/gazimmfd.619772

Abstract

References

  • Wen G., Zhang Y., Zhang Y., Sun K., Fan Y., Rheological Characterization of Storagestable SBS-Modified Asphalts, Polym. Test. 21(3), 295-302, 2002.
  • Mokhtari A., Nejad F.M., Mechanistic Approach for Fiber and Polymer Modified SMA Mixtures, Constr. Build. Mater., 36, 381-390, 2012.
  • Ghasemi M., Marandi S.M., Engineering Properties of SMA Mixtures/Polymer/ RGP Blends, Int. J. Transp. Eng., 2(2), 97-106, 2014.
  • Golestani B., Nejad F.M., Galooyak S.S., Performance Evaluation of Linear and Nonlinear Nanocomposite Modified Asphalts, Constr. Build. Mater., 35, 197-203, 2012.
  • Galooyak S.S., Dabir B., Nazarbeygi A.E., Moeini A., Rheological Properties and Storage Stability of Bitumen/SBS/Montmorillonite Composites, Constr. Build. Mater., 24(3), 300-307, 2010.
  • You Z., Mills-Beale J., Foley J.M., Roy S., Odegard G.M., Dai Q., Goh S.W., Nanoclay Modified Asphalt Materials: Preparation and Characterization, Constr. Build. Mater., 25(2), 1072-1078, 2011.
  • Yusoff N.I.M., Breem A.A.S., Alattug H.N., Hamim A., The Effects of Moisture Susceptibility and Ageing Conditions on Nano-Silica/Polymer-Modified Asphalt Mixtures, Constr. Build. Mater., 72(15), 139-147, 2014.
  • Hamedi G.H., Nejad F.M., Oveisi K., Estimating the Moisture Damage of Asphalt Mixture Modified with Nano Zinc Oxide, Mater. Struct., 49(4), 1165–1174, 2016.
  • Diab A., You Z., Effects of Regular-Sized and Nanosized Hydrated Lime on Binder Rheology and Surface Free Energy of Adhesion of Foamed Warm Mix Asphalt, J. Mater. Civ. Eng., 27(9), 1-7, 2014.
  • İskender E., Evaluation of Mechanical Properties of Nano-Clay Modified Asphalt Mixtures, Measurement, 93, 359-371, 2016.
  • Pinnavaia T.J., Beall GW., Polymer-clay Nanocomposites, England: John Wiley and Sons Ltd, ISBN 978-0-471-63700-4, 2000.
  • Shafabakhsh G.H., Mirabdolazimi S.M., Sadeghnejad M., Evaluation the Effect of Nano-TiO2 on the Rutting and Fatigue Behavior of Asphalt Mixtures, Constr. Build. Mater., 54, 566-571, 2014.
  • Paul D.R., Robeson L.M., Polymer Nanotechnology: Nanocomposites, Polymer, 49(15), 3187-3204, 2008.
  • Ray S.S., Okamoto M., Polymer/layered Silicate Nanocomposites: A Review From Preparation to Processing, Prog. Polym. Sci., 28(11), 1539-1641, 2003.
  • Yang J., Tighe S., A Review of Advances of Nanotechnology in Asphalt Mixtures, Procedia – Social and Behavioral Sciences, 96(6), 1269-1276, 2013.
  • Hossain Z., Zaman M., Hawa T., Saha M.C., Evaluation of Moisture Susceptibility of Nanoclay-Modified Asphalt Binders Through the Surface Science Approach, J. Mater. Civ. Eng., 27(10), 1-9, 2014.
  • Shahabadi A.Z., Shokuhfar A., Nejad S.E., Preparation and Rheological Characterization of Asphalt Binders Reinforced with Layered Silicate Nanoparticles, Constr. Build. Mater., 24(7), 1239-1244, 2010.
  • Liu G., van de Ven M., Wu S., Yu J., Molenaar A., Influence of Organomontmorillonites on Fatigue Properties of Bitumen and Mortar, Constr. Build. Mater., 33(12), 1574-1582, 2011.
  • Yao H., You Z., Li L., Goh S., Mills-Beale J., Shi X., Wingard D., Evaluation of Asphalt Blended with Low Percentage of Carbon Micro-Fiber and Nanoclay, J. Test. Eval., 41(2), 1-11, 2013.
  • Polacco G., Kriz P., Filippi S., Statstna J, Biondi D, Zanzotto L., Rheological properties of asphalt/SBS/clay blends, Eur. Polym. J., 44(11), 3512-3521, 2008.
  • Jahromi S.G., Andalibizade B., Vossough S., Engineering Properties of Nanoclay Modified Asphalt Concrete Mixtures, Arabian Journal for Science & Engineering 35, 89-103, 2010.
  • Xiao F., Amirkhanian A.N., Amirkhanian S.N., Influence on Rheological Characteristics of Asphalt Binders Containing Carbon Nanoparticles, J. Mater. Civ. Eng., 23, 423-431, 2011.
  • Ameri M., Mohammadi R., Vamegh M., Molayem M., Evaluation the Effects of Nanoclay on Permanent Deformation Behavior of Stone Mastic Asphalt Mixtures, Constr. Build. Mater., 156, 107-113, 2017.
  • Pamplona T.F., Amoni B. de C., Alencar A.E.V. de, Lima A.P.D., Ricardo Nágila M.P.S., Soares J.B., Soares S. de A., Asphalt Binders Modified by SBS and SBS/Nanoclays: Effect on Rheological Properties, J. Braz. Chem. Soc., 23(4), 639-647, 2012.
  • Fu H., Leidong X., Ming Y., Yao S., Storage stability and compatibility of asphalt binder modified by SBS graft copolymer, Constr. Build. Mater., 21, 1528–1533, 2007.
  • Wang S., Zhang Y., Zhang Y.K., SBS/Carbon Black Compounds Give Asphalts with Improved High-Temperature Storage Stability, Polym. Polym. Compos., 11(6), 477-485, 2003.
  • Karayolları Genel Müdürlüğü Yayınları, Karayolları Teknik Şartnamesi, Ankara, Türkiye, 2013.
  • Kraton, Kraton D1101 A polymer data document, K0412 Europe, 2018.
  • Lu X., Isacsson U., Laboratory Study on the Low Temperature Physical Hardening of Conventional and Polymer Modified Bitumens, Constr. Build. Mater., 14(4), 79-88, 2000.
  • Navarro F.J., Partal P., Martinez-Boza F., Valencia C., Gallegos C., Rheological Characteristics of Ground Tire Rubber-Modified Bitumens, Chemical Engineering Journal, 89, 53-61, 2002.
  • Airey G.D., Rheological evaluation of ethylene vinyl acetate polymer modified bitumens, Constr. Build. Mater., 16(8), 473-487, 2002.
  • Zhuang C., Li N., Zhao W., Cai C., Effects of SBS Content on the Performance of Modified Asphalt, Mater. Sci. Eng., 216, 2017.
  • AASHTO T 283-03., Standard Method of Test for Resistance of Compacted Asphalt Mixtures to Moisture-Induced Damage, American Association of State Highway and Transportation Officials, Washington, D.C., 2014.
  • Tayfur S., Ozen H., Aksoy A., Investigation of Rutting Performance of Asphalt Mixtures Containing Polymer Modifiers, Constr. Build. Mater., 21(2), 328-37, 2007.
  • Bostancioglu M., Oruç S., Effect of Activated Carbon and Furan Resin on Asphalt Mixture Performance, Road Materials and Pavement Design, 17(2), 512-525, 2016.
  • Yilmaz M., Kök B.V., Kuloglu N., Effects of Using Asphaltite as Filler on Mechanical Properties of Hot Mix Asphalt, Constr. Build. Mater., 25(11), 4279–4286, 2011.
  • Arabani M., Tahami S.A., Assessment of Mechanical Properties of Rice Husk Ash Modified Asphalt Mixture, Constr. Build. Mater., 149, 350-358, 2017.
  • Crucho, J., Picado-Santos, L., Neves, J., Capitão, S., A Review of Nanomaterials’ Effect on Mechanical Performance and Aging of Asphalt Mixtures. Appl. Sci., 9(18), 3657, 2019.
  • Wang, H., Guo, Y., Shen, A., Yang, X., Li, P. (2020). Effect of Nanoclays on Moisture Susceptibility of SBS-Modified Asphalt Binder. Adv. Mater. Sci. Eng., 2020.
  • Abdullah M.E., Zamhari K.A., Hainin M.R., Oluwasola E.A., Yusoff N.I., Hassan N.A., High Temperature Characteristics of Warm Mix Asphalt Mixtures with Nanoclay and Chemical Warm Mix Asphalt Modified Binders, J. Cleaner Prod., 122, 326-334, 2016.
  • Malarvizhi, G., Sabermathi, R., Kamaraj, C., Laboratory Study on Nano Clay Modified Asphalt Pavement, Int. J. Appl. Eng. Res., 10, 8, 20175-20190, 2015.
  • Goh S.W., Akin M., You Z., Shi X., Effect of Deicing Solutions on the Tensile Strength of Micro- or Nano-Modified Asphalt Mixtur, Constr. Build. Mater., 25(1), 195-200, 2011.
  • Mousavinezhad, S. H., Shafabakhsh, G. H., Ani, O. J., Nano-clay and styrene-butadiene-styrene modified bitumen for improvement of rutting performance in asphalt mixtures containing steel slag aggregates, Constr. Build. Mater., 226, 793-801, 2019.
  • Zapién-Castillo, S., Rivera-Armenta, J. L., Chávez-Cinco, M. Y., Salazar-Cruz, B. A., Mendoza-Martínez, A. M., Physical and rheological properties of asphalt modified with SEBS/montmorillonite nanocomposite. Constr. Build. Mater., 106, 349–356, 2016.
  • Bhargava, S., Raghuwanshi, A. K., Gupta, P. Nanomaterial Compatibility and Effect on Properties of Base Bitumen Binder and Polymer Modified Bitumen. IJISET-Int. J. Innovative Sci., Eng. & Technol., 3(6), 276-282, 2016.
  • Martínez-Anzures, J. D., Zapién-Castillo, S., Salazar-Cruz, B. A., Rivera-Armenta, J. L., Antonio-Cruz, R. D. C., Hernández-Zamora, G., & Méndez-Hernández, M. L., Preparation and properties of modified asphalt using branch SBS/nanoclay nanocomposite as a modifier. Road Materials and Pavement Design, 20(6), 1275-1290, 2019.
  • Robert F.L., Kandhal P.S., Brown E.R., Dah Y.L., Kennedy T.W., Hot Mix Asphalt Materials, Mixture Design and Construction, second ed., NAPA Education Foundation, Lanham, Maryland, 248-485, 1996.
  • Ghile D.B., Effects of Nanoclay Modification on Rheology of Bitumen and on Performance of Asphalt Mixtures, Master Thesis, Delft University of Technology, Delft, The Netherlands, 2006.
  • Liu D.L., Yao H.B., Bao S.Y., Performance of Nano-Calcium Carbonate and SBS Compound Modified Asphalt, Zhongnan Daxue Xuebao (Ziran Kexue Ban)/J. Cent. South Univ. (Sci. Technol.), 38(3), 579-582, 2007.
  • Ma F., Zhang C., Fu Z., Performance and Modification Mechanism of Nano-CaCO3 Modified Asphalt, Wuhan Ligong Daxue Xuebao Jiaotong Kexue Yu Gongc Ban, 2007.
  • Brown E.R., Kandhal P.S., Zhang J., Performance Testing for Hot Mix Asphalt, National Center for Asphalt Technology Auburn University, Alabama NCAT Report 01-05 November 2001.
  • Sarışın, E , Yalçın, E , Öner, J., Analysis of rheological properties of modified bitumen with hybrid polymers. Journal of the Faculty of Engineering and Architecture of Gazi University, 36, 201-212, 2020.
  • Arslan D., Gürü M., Çubuk M.K., Çubuk M., Farshbafian F.K., Investigation of rheological and mechanical properties of kaolin-clay modified bitumen, Journal of the Faculty of Engineering and Architecture of Gazi University, 35 (3), 1409-1419, 2020.
  • Chelovian A., Shafabakhsh G., Laboratory evaluation of Nano Al2O3 effect on dynamic performance of stone mastic asphalt, Int. J. Pavement Res. Technol., 10(2), 131-138, 2017.
  • Ghasemi M., Marandi S.M., Tahmooresi M., Kamali R.J., Taherzade R., Modification of Stone Matrix Asphalt With Nano-Sio2, J Basic Appl Sci Res, 2(2), 1338-1344, 2012.
  • Ashish, P., Singh, D., Bohm, S., Evaluation of rutting, fatigue and moisture damage performance of nanoclay modified asphalt binder. Constr. Build. Mater., 113, 341–350, 2016.
  • Li, R., Xiao, F., Amirkhanian, S., You, Z., & Huang, J., Developments of nano materials and technologies on asphalt materials – a review. Constr. Build. Mater., 143, 633–648, 2017.
  • Farias, L., Leitinho, J., Amoni, B., Bastos, J., Soares, J., Soares, S., Sant’Ana, H., Effects of nanoclay and nanocomposites on bitumen rheological properties. Constr. Build. Mater., 125, 2016.
  • Hossain, Z., Elsayed, A., Use of Nanoclays as Alternatives of Polymers Toward Improving Performance of Asphalt Binders. Transportation Consortium of South-Central States, Project No. 17BASU01, 2018.
There are 59 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Makaleler
Authors

Dündar Ayyıldız This is me 0000-0002-6851-6914

Erol İskender 0000-0001-7934-839X

Atakan Aksoy 0000-0001-5232-6465

Publication Date September 2, 2021
Submission Date September 13, 2019
Acceptance Date March 15, 2021
Published in Issue Year 2021 Volume: 36 Issue: 4

Cite

APA Ayyıldız, D., İskender, E., & Aksoy, A. (2021). Taş mastik asfalt karışımlarda SBS/nanokil/bitüm nano-kompozitler için optimum bileşim oranının araştırılması. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 36(4), 1847-1862. https://doi.org/10.17341/gazimmfd.619772
AMA Ayyıldız D, İskender E, Aksoy A. Taş mastik asfalt karışımlarda SBS/nanokil/bitüm nano-kompozitler için optimum bileşim oranının araştırılması. GUMMFD. September 2021;36(4):1847-1862. doi:10.17341/gazimmfd.619772
Chicago Ayyıldız, Dündar, Erol İskender, and Atakan Aksoy. “Taş Mastik Asfalt karışımlarda SBS/nanokil/Bitüm Nano-Kompozitler için Optimum bileşim oranının araştırılması”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 36, no. 4 (September 2021): 1847-62. https://doi.org/10.17341/gazimmfd.619772.
EndNote Ayyıldız D, İskender E, Aksoy A (September 1, 2021) Taş mastik asfalt karışımlarda SBS/nanokil/bitüm nano-kompozitler için optimum bileşim oranının araştırılması. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 36 4 1847–1862.
IEEE D. Ayyıldız, E. İskender, and A. Aksoy, “Taş mastik asfalt karışımlarda SBS/nanokil/bitüm nano-kompozitler için optimum bileşim oranının araştırılması”, GUMMFD, vol. 36, no. 4, pp. 1847–1862, 2021, doi: 10.17341/gazimmfd.619772.
ISNAD Ayyıldız, Dündar et al. “Taş Mastik Asfalt karışımlarda SBS/nanokil/Bitüm Nano-Kompozitler için Optimum bileşim oranının araştırılması”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 36/4 (September 2021), 1847-1862. https://doi.org/10.17341/gazimmfd.619772.
JAMA Ayyıldız D, İskender E, Aksoy A. Taş mastik asfalt karışımlarda SBS/nanokil/bitüm nano-kompozitler için optimum bileşim oranının araştırılması. GUMMFD. 2021;36:1847–1862.
MLA Ayyıldız, Dündar et al. “Taş Mastik Asfalt karışımlarda SBS/nanokil/Bitüm Nano-Kompozitler için Optimum bileşim oranının araştırılması”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, vol. 36, no. 4, 2021, pp. 1847-62, doi:10.17341/gazimmfd.619772.
Vancouver Ayyıldız D, İskender E, Aksoy A. Taş mastik asfalt karışımlarda SBS/nanokil/bitüm nano-kompozitler için optimum bileşim oranının araştırılması. GUMMFD. 2021;36(4):1847-62.