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Recommendations on the use of modified binders to retard reflective cracking.

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dc.contributor.author Coetser, K
dc.contributor.author Strauss, P
dc.contributor.author Rust, FC
dc.contributor.author Vos, RM
dc.date.accessioned 2007-11-30T07:10:09Z
dc.date.available 2007-11-30T07:10:09Z
dc.date.issued 1994-10
dc.identifier.citation Coetser, K, et al. 1994. Recommendations on the use of modified binders to retard reflective cracking. 6th Conference on asphalt pavements for Southern Africa, Cape Town, South Africa, October, 1994, pp 31-43 en
dc.identifier.uri http://hdl.handle.net/10204/1722
dc.description.abstract Research on Heavy Duty Asphalt Pavements [HDAPs] was conducted by the CSIR Division of Roads and Transport Technology on behalf of the South African Bitumen and Tar Association [SABITA]. This research soon focused on Large Aggregate Mixes for Bases [LAMBS] for which new mix design procedures had been developed. An early focus of this research was the constructibility issues associated with this road building material. The superior performance of LAMBS was validated by means of accelerated road tests done by the Department of Transport. The need for structural stengthening of the M2-Motorway in Johannesburg during its rehabilitation afforded opportunity of transferring the technology to the road construction industry. LAMBS was selected as it was cost-effective and had proven bearing capacity under high traffic volumes and heavy axle loads. LAMBS was exposed to very heavy traffic on the M2-Motorway without any problems before it was overlaid with a final surfacing. en
dc.language.iso en en
dc.subject Infrastructure materials en
dc.subject Heavy Duty Asphalt Pavements en
dc.subject HDAPs en
dc.subject LAMBS en
dc.subject Large Aggregate Mixes Bases en
dc.subject 6th Conference on asphalt pavements for Southern Africa en
dc.title Recommendations on the use of modified binders to retard reflective cracking. en
dc.type Conference Presentation en
dc.identifier.apacitation Coetser, K., Strauss, P., Rust, F., & Vos, R. (1994). Recommendations on the use of modified binders to retard reflective cracking. http://hdl.handle.net/10204/1722 en_ZA
dc.identifier.chicagocitation Coetser, K, P Strauss, FC Rust, and RM Vos. "Recommendations on the use of modified binders to retard reflective cracking." (1994): http://hdl.handle.net/10204/1722 en_ZA
dc.identifier.vancouvercitation Coetser K, Strauss P, Rust F, Vos R, Recommendations on the use of modified binders to retard reflective cracking; 1994. http://hdl.handle.net/10204/1722 . en_ZA
dc.identifier.ris TY - Conference Presentation AU - Coetser, K AU - Strauss, P AU - Rust, FC AU - Vos, RM AB - Research on Heavy Duty Asphalt Pavements [HDAPs] was conducted by the CSIR Division of Roads and Transport Technology on behalf of the South African Bitumen and Tar Association [SABITA]. This research soon focused on Large Aggregate Mixes for Bases [LAMBS] for which new mix design procedures had been developed. An early focus of this research was the constructibility issues associated with this road building material. The superior performance of LAMBS was validated by means of accelerated road tests done by the Department of Transport. The need for structural stengthening of the M2-Motorway in Johannesburg during its rehabilitation afforded opportunity of transferring the technology to the road construction industry. LAMBS was selected as it was cost-effective and had proven bearing capacity under high traffic volumes and heavy axle loads. LAMBS was exposed to very heavy traffic on the M2-Motorway without any problems before it was overlaid with a final surfacing. DA - 1994-10 DB - ResearchSpace DP - CSIR KW - Infrastructure materials KW - Heavy Duty Asphalt Pavements KW - HDAPs KW - LAMBS KW - Large Aggregate Mixes Bases KW - 6th Conference on asphalt pavements for Southern Africa LK - https://researchspace.csir.co.za PY - 1994 T1 - Recommendations on the use of modified binders to retard reflective cracking TI - Recommendations on the use of modified binders to retard reflective cracking UR - http://hdl.handle.net/10204/1722 ER - en_ZA


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