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dc.contributor.authorSunarjono, Sri
dc.date.accessioned2015-06-16T03:20:37Z
dc.date.available2015-06-16T03:20:37Z
dc.date.issued2011-01
dc.identifier.citationF.M.L. Akeroyd, and B.J. Hicks. "Foamed Bitumen Road Recycling, " Highways, Volume 56, Number1933, pp 42, 43, 45. A.F. Bissada, "Structural Response of Foamed-Asphalt-Sand Mixtures in Hot Environments, " In: Asphalt materials and mixtures. Washington, DC: Transportation Research Board. (Transportation Research Record, 1115), pp 134-149. 1987. M. Brennen, M. Tia, A.G. Altschaeffl, and L.E. Wood, "Laboratory Investigation of The Use of Foamed Asphalt for Recycled Bituminous Pavements, " In: Asphalt materials, mixtures, construction, moisture effects and sulfur. Washington, DC: Transportation Research Board. (Transportation Research Record; 911), pp 80-87. 1983. C.J.W. Breward, "The Mathematics of Foam," PhD Thesis, St. Anne’s College, University of Oxford. 1999. S.F. Brown, Properties of Road Layers, In: Bituminuous mixtures in road construction, pp 43-63. Edited by Hunter, R.N. Thomas Telford, London, 1994. L.H. Castedo-Franco and L.E. Wood, "Stabilisation with Foamed Asphalt of Aggregate Commonly Used in Low Volume Road, " In: Low volume road: 3rd International Conference. Washington, DC: Transportation Research Board. Transportation Research Record: 898, pp 297-302, 1983. K.J. Jenkins, A.A.A. Molenaar, J.L.A. de Groot, M.F.C. van de Ven, "Foamed Asphalt Produced Using Warmed Aggregates," The Association of Asphalt Paving Technologists, 2002. K.J. Jenkins, S. Robroch, M.G. Henderson, J. Wilkinson, and A.A.A. Molenaar. "Advanced Testing for Cold Recycling Treatment Selection on N7 Near Cape Town, " in Proc. of the 8th Conference on Asphalt Pavements for Southern Africa (CAPSA ’04), ISBN Number: 1-920-01718-6, paper 079, 12-19 September 2004, Sun City, South Africa. A.M. Kraynik, "Foam Drainage," Sandia Report, Sand 83-0844, Prepared by Sandia National Laboratories, Albuquerque, New Mexico 87185 and Livermore, California 94550 for the United States Department of Energy under Contract DE-AC04-76DP00789, 1983. D.Y. Lee, "Treating Marginal Aggregates and Soil with Foamed Asphalt," In: Proceedings of the Association of Asphalt Paving Technologists, Vol. 50, pp 211-150. 1981. S. Maccarone, G. Holleran, D.J. Leonard, and S. Hey, "Pavement Recycling Using Foamed Bitumen," in Proceeding 17th ARRB Conference, Part 3, 1994. S. Maccarone, G. Holleran, and A. Ky, "Cold Asphalt System as an Alternative to Hot Mix," in Proc. 9th AAPA International Asphalt Conference, 1995. D. Miller and B. Nothard, "The Blending of Marginal Materials Using Foamed Bitumen," in Proceedings of the 8th Conference on Asphalt Pavements for Southern Africa (CAPSA ’04), ISBN Number: 1-920-01718-6, 12-16 September 2004, Sun City, South Africa, 2004. A. Nataatmaja. "Some Foamed Bitumen Mix: Soil or Asphalt?, "In Proc. 2002, 9th International Conference on Asphalt Pavements, pp. 14-21. M. E. Nunn, and N.H. Thom, "Foamix: Pilot Scale Trials and Design Considerations," Viridis Report VR1, First Published ISSN 1478-0143, Copyright TRL Limited, 2002. M.D. Rankin, T.J. Friesenhahn, W.R. Price and C. Pool, Lightened Fluid Hydraulics and Inclined Boreholes, SPE/IADC 18670, New Orleans, 1989. H.A. Sakr and P.G. Manke, "Innovations in Oklahoma Foamix Design Procedures, " In: Asphalt materials, mixes, construction and quality. Washingtong, DC: Transportation Research Board. (Transportation Research Record;1034), pp 26-34. 1985. C. Schick, "A Mathematical Analysis of Foam Films," Dem Fachbereich Mathematik der Universitat Kaiserslautern zur Verleihung des akademischen Grades Doktor der Naturwissenschaften (Doctor rerum naturalium, Dr. rer. nat.) vorgelegte Dissertation. 2004. www.physics.ucla.edu/~dws/foam.html. L.L Schramm. "Foams: Fundamentals and Applications in the Petroleum Industry, " Advances in Chemistry series 242, American Chemical Society, Washington DC, 1994. B. Shackel, K. Makhiuchi, and J.R. Derbyshire. "The Response of a Foamed Bitumen Stabilised Soil to Repeated Triaxial Loading, " in Proc. 1974 ARRB, Paper No A23, Volume 7, Part 7, 1974, 74-87. S. Sunarjono, N.H. Thom, and S.E. Zoorob. "Influence of Foaming Water on the Foaming Process and Resultant Asphalt Mix Stiffness," in Proc. 2007 4th International SIIV Congress, Palermo,Italy, September 12-14. D. Weaire, N. Pittet, S. Hutzler, and D. Pardal. "Steady-State Drainage of an Aqueous Foam, " Physical review letters, volume 71, Number 16, The American Physical Society, 1993. Wirtgen, Cold Recycling Manual, 2nd edition. ISBN 3-936215-05-7, Wirtgen GmbH, Hohner Strasse 2.53578 Windhagen, Germany, 2004.in_ID
dc.identifier.issn978-979-636-118-2
dc.identifier.urihttp://hdl.handle.net/11617/6088
dc.description.abstractThis paper introduces a sustainable pavement construction using foamed cold mix asphalt (FCMA) technology in order to achieve a better understanding of its road material properties. It is important because the use of cold mix asphalt lags behind hot mix asphalt applications. The methodology used in this paper is by characterisation into FCMA technology based on literature review and experimental studies. The experimental study covers a laboratory investigation of FCMA properties. The closure can be drawn in four issues, i.e. foamed bitumen characteristics, the use of foamed bitumen in road construction, the role of mixing in the process of generating foamed asphalt material, and the considerations for selecting foamed bitumen properties in order to achieve an optimised FCMAin_ID
dc.language.isoidin_ID
dc.publisherUniversitas Muhammadiyah Surakartain_ID
dc.subjectSustainable constructionin_ID
dc.subjectpavementin_ID
dc.subjectfoamed asphaltin_ID
dc.subjectfoamed bitumenin_ID
dc.subjectcold mixin_ID
dc.subjectmixingin_ID
dc.titleIntroduction to a Sustainable Pavement Construction using Foamed Cold Mix Asphalt Technologyin_ID
dc.typeArticlein_ID


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