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Thermal Conditioning to Improve Geotechnical Properties of Recycled Asphalt Pavements

机译:通过热调节来改善再生沥青路面的岩土性能

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摘要

A procedure for thermal conditioning was introduced to accelerate the compression and improve geotechnical properties of recycled asphalt pavements (RAP) including resilient modulus, compressibility, shear strength, and creep response. Temperature-controlled resilient modulus, one-dimensional compression, and triaxial compression tests were conducted to evaluate the use of RAP as base course or embankment fill. For base course application, increasing temperature increased the plastic strain and reduced the resilient modulus of the RAP specimens that were compacted at room temperature. However, when the specimens were compacted at elevated temperatures and tested at room temperature, significant reduction in plastic strain and increase in resilient modulus were attained. For embankment fill applications, compaction and compression at elevated temperatures increased the shear strength and reduced the compressibility and creep strain of the RAP specimens tested at room temperature. Compaction and compression of the RAP specimens at elevated temperatures induced thermal conditioning and improved geotechnical properties. To improve performance of structural fills containing RAP, construction is recommended during warmest months of the year.
机译:引入了热调节程序,以加速压缩并改善再生沥青路面(RAP)的岩土性能,包括弹性模量,可压缩性,剪切强度和蠕变响应。进行了温度控制的弹性模量,一维压缩和三轴压缩测试,以评估RAP作为基层或路堤填充物的用途。对于基础应用,增加温度会增加在室温下压实的RAP样品的塑性应变并降低其弹性模量。但是,当样品在高温下压实并在室温下测试时,塑性应变显着降低,弹性模量提高。对于路堤填充应用,在高温下的压实和压缩会增加抗剪强度,并降低室温下测试的RAP试样的可压缩性和蠕变应变。 RAP试样在高温下的压实和压缩引起热调节并改善了岩土性能。为了提高包含RAP的结构填充物的性能,建议在一年中最温暖的月份进行施工。

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