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Research on Performance of a Dense Graded Ultra-Thin Wearing Course Mixture

机译:致密分级超薄耐磨课程混合物性能研究

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This paper focused on the design and performance characterization of a modified ultra-thin wearing course mixture (M-UWM). A dense graded ultra-thin wearing course mixture with nominal maximum aggregate size of 10 mm was designed and named as UWM10. A multi-chain polyolefin modifier was used to modify the performance of UWM10 to get M-UWM10. Based on different laboratory performance tests including wheel tracking tests, low-temperature bending beam tests, immersion Marshall tests and freeze-thaw splitting tests, the high temperature rutting resistance, low-temperature cracking resistance and moisture resistance of the designed M-UWM10 were evaluated. The texture depth tests and wheel tracking tests were combined to characterize the degradation behaviour of the surface texture depth of M-UWM10. Based on test roads, the bonding conditions between the wearing course layer that consisted of M-UWM10 and its sublayer were evaluated by computed tomography (CT) scanning test and pull out test. Filed texture depth tests were also conducted on the test roads. It is proved that the designed wearing course mixture M-UWM10 shows excellent pavement performance as well as better wearing resistance and interlayer bonding than the traditional wearing course mixture.
机译:本文着重于改进型超薄耐磨课程混合物(M-UWM)的设计和性能表征。设计了一种标称最大骨料最大尺寸为10 mm的致密渐变超薄耐磨层混合物,并将其命名为UWM10。使用多链聚烯烃改性剂来改性UWM10的性能,以获得M-UWM10。根据不同的实验室性能测试,包括车轮跟踪测试,低温弯曲梁测试,浸入式马歇尔测试和冻融分离测试,对设计的M-UWM10的高温抗车辙性,低温抗裂性和耐湿性进行了评估。结合纹理深度测试和车轮跟踪测试来表征M-UWM10的表面纹理深度的退化行为。根据测试路线,通过计算机断层扫描(CT)扫描测试和拉拔测试评估了由M-UWM10组成的磨损层与其子层之间的粘结条件。在测试道路上也进行了纹理深度测试。实践证明,所设计的耐磨层混合物M-UWM10具有比传统耐磨层混合物优异的铺装性能以及更好的耐磨性和中间层粘结性。

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