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Damage evaluation during installation of geosynthetics \ud used in asphalt pavements

机译:土工合成材料安装过程中的损坏评估\ ud 用于沥青路面

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摘要

Geosynthetics are commonly used as anti-reflective cracking systems in asphalt pavements. The rehabilitation design methods use the characteristics of as-received geosynthetics as inputs. However, these materials undergo physical damage during their installation due to mechanical and thermal loads which currently are not taken into account in the design processes. These loads can produce a reduction in geosynthetic strength and therefore, it is necessary to know the secant modulus after installation in order to improve the pavement design incorporating these materials. The secant modulus of a material indicates its initial stiffness. This paper describes an experimental study of damage due to installation of five different geosynthetics using three different procedures: (i) mechanical damage induced in the laboratory considering the action of aggregates, (ii) in situ mechanical and thermal damage due to actual installation in a test section, and (iii) a new mechanical and thermal damage experimental test developed with the aim of reproducing the real installation conditions. The main results of the study indicate that the obtained secant modulus of the tested geosynthetics reduced after applying the three damage procedures, and the loss of properties differed depending on the type and constitutive material and on the applied damage procedure.
机译:土工合成材料通常用作沥青路面的抗反射裂缝系统。修复设计方法将接收到的土工合成材料的特征用作输入。但是,由于机械和热负荷,这些材料在安装过程中会遭受物理损坏,目前在设计过程中并未考虑这些因素。这些载荷会降低土工合成强度,因此,有必要知道安装后的正割模量,以改善结合了这些材料的路面设计。材料的正割模量表明其初始刚度。本文描述了通过三种不同的程序安装五种不同的土工合成材料造成的破坏的实验研究:(i)考虑集料作用的实验室引起的机械破坏,(ii)实际安装在现场导致的机械和热破坏测试部分;以及(iii)开发了新的机械和热损伤实验测试,目的是再现真实的安装条件。研究的主要结果表明,在采用三种破坏程序后,所测试土工合成材料的割线模量降低,并且性能损失因类型和本构材料以及所施加的破坏程序而异。

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