Performance-based classification of hot behavior of domestic bitumens using the BTSV method
Abstract
The European bitumen categorization is traditionally based on empirical tests, which are of limited suitability for the evaluation of modern, modified binders. In our research, we were the first to comprehensively apply the BTSV rheological method in Hungary on five bitumen types (B50/70, B70/100, GmB 45/80-55, PmB 25/55-65, PmB 45/80-65). We determined the TBTSV and δBTSV values on a total of 137 industrial samples and compared them with the ring-ball softening point. According to the results, the BTSV method characterizes the performance of modified binders more reliably and shows clearer differences between the types tested.
References
AASHTO M320-23-UL (2023) Standard method of test for performance graded asphalt binder. American Association of State Highway and Transportation Offi-cials.
AASHTO T 240-23-UL (2023) Standard method of test for effect of heat and air on a moving film of asphalt binder (Rol-ling Thin-Film Oven Test). American As-sociation of State Highway and Transportation Officials.
AASHTO T 315-12-UL (2024) Standard method of test for determining the rheo-logical properties of asphalt binder using a dynamic shear rheometer (DSR). Ame-rican Association of State Highway and Transportation Officials.
AGPT/T142 (2020) AUSTROADS TEST METHOD - Rubber Content of Crumb Rubber Modified Bitumen: Soxhlet Method
AL BTSV (DSR) (2018) Arbeitsanlei-tung zur Bestimmung des Verfor-mungsverhaltens von Bitumen und bi-tumenhaltigen Bindemitteln im Dyna-mischen Scherrheometer (DSR) – Durchführung des BTSV (Bitumen-Typisierungs-Schnell-Verfahren). For-schungsgesellschaft für Straßen- und Verkehrswesen (FGSV)
Alisov, A. (2017) Typisierung von Bitu-men mittels instationärer Oszillations-rheometrie. Braunschweig: TU Braun-schweig (ISBS). 114 p.
Alisov, A., Riccardi, C., Schrader, J., Falchetto, A. C. Wistuba, M. P. (2018) A novel method to characterise asphalt binder at high temperature. Road Mate-rials and Pavement Design, 21(1), pp. 143-155. DOI: https://doi.org/10.1080/14680629.2018.1483258
ASTM D7405-21 (2021) Standard test method for multiple stress creep and re-covery (MSCR) of asphalt binder using a dynamic shear rheometer. West Cons-hohocken: ASTM International.
Biro, S., Gandhi, T., Amirkhanian, S. (2009) Determination of zero shear vis-cosity of warm asphalt binders. Const-ruction and Building Materials, 23, pp. 2080–2086. DOI: https://doi.org/10.1016/j.conbuildmat.2008.08.015
DIN 52050 (2018) Bitumen und bitu-menhaltige Bindemittel – BTSV-Prü-fung. Bitumen and bituminous binders – BTSV test. Berlin: German Standard.
e-UT 05.01.26 (2018) Bitumenes kötő-anyagok az útpályaszerkezetek aszfalt-burkolati keverékeinek gyártásához
Guericke, R. (2010) 100 Jahre Er-weichungspunkt Ring und Kugel – Was kommt danach? Straße und Autobahn, 61(7), pp. 481–491.
Mattischek, H.-P., Sobczak, R., Bleier, J. (1996) Der Einsatz eines neuen Meßgerätes in der Bitumenprüfung – Korrelation der Nullviskosität mit dem Erweichungspunkt Ring und Kugel. Bi-tumen, 1996(1), pp. 8–12.
MSZ EN 12591 (2009) Bitumen és bi-tumenes kötőanyagok. Az útépítési bi-tumenek minőségi követelményei.
MSZ EN 12607-1 (2025) Bitumen és bi-tumenes kötőanyagok. Hő és levegő ha-tására bekövetkező keményedéssel szembeni ellenálló képesség meghatáro-zása. 1. rész: RTFOT-módszer.
MSZ EN 14023 (2010) Bitumen és bi-tumenes kötőanyagok. Polimerrel modi-fikált bitumenek minőségének keretelő-írása.
MSZ EN 1426 (2016) Bitumen és bitu-menes kötőanyagok. A tűpenetráció meghatározása.
MSZ EN 1427 (2016) Bitumen és bitu-menes kötőanyagok. A Lágyuláspont meghatározása. Gyűrűs-golyós módszer.
Paez-Dueñas, A., Cabanillas, P., Carrera, V., Cerny, R., De Visscher, J., Durand, G., Lancaster, I. (2016) European round robin tests for the Multiple Stress Creep Recovery Test and contribution to the development of the European standard test method. Proceedings of the 6th Eurasphalt & Eurobitume Congress. DOI: https://doi.org/10.14311/EE.2016.059
prEN 14023 (2020) Bitumen és bitume-nes kötőanyagok. Polimerrel modifikált bitumenek minőségének keretelőírása. CEN
CEN/TC 336 (2025) Bitumens and bi-tuminous binders — Complementary performance-related specification fra-mework. prEN XXXXX:2025. Brussels: European Committee for Standardizati-on.
Radenberg, M., Gehrke, M. (2016) As-sessing bitumen in the whole service-temperature-range with the dynamic shear rheometer. Prague, Czech Repub-lic, E&E Congress, pp. 8-10. DOI: dx.doi.org/10.14311/EE.2016.259
Radenberg, M., Nytus, N., Gehrke, M. (2014) Chemische und physikalische Eigenschaften der in Deutsch-land ver-wendeten Straßenbaubitumen. Straße und Autobahn, 65(11), pp. 851–860.
Roberts, F. L., Kandhal, P. S., Brown, E. R., Lee, D. Y., Kennedy, T. W. (1996) Hot mix asphalt materials, mixture de-sign, and construction. Lanham, MD: National Asphalt Pavement Association Education Foundation.
Soenen, H., Blomberg, T., Pellinen, T., Laukkanen, O. (2013) The multiple stress creep-recovery test: A detailed analysis of repeatability and reproduci-bility. Road Materials and Pavement De-sign, 14, pp. 2–11. DOI: https://doi.org/10.1080/14680629.2013.774742
TL Bitumen-StB 25 (2025) Technische Lieferbedingungen für Straßenbaubitu-men und gebrauchsfertige. Polymermo-difizierte Bitumen. FGSV-Verlag
Wistuba, M. P., Alisov, A. Büchner, J. (2018) Das Bitumen-Typisierungs-Schnell-Verfahren. Straße und Auto-bahn, 8, pp. 645-652.
ZTV Asphalt-StB 07/13 (2013) Zusätz-liche Technische Vertragsbedingungen und Richtlinien für den Bau von Verkehrsflächenbefestigungen aus As-phalt, FGSV-Verlag
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