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Investigation on an Absorbing Layer Suitable for a Noise-Reducing Two-Layer Pavement

机译:适用于降噪两层路面的吸收层的研究

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摘要

A polyurethane-based rubber-modified layer within a road superstructure leads to absorption of traffic emissions. Noise emissions have quite a negative effect on society, as they lead to high stress levels and health risks for people. Therefore, constructional methods of noise-reducing road layers have been developed before. This research paper focuses on the questions whether the existing noise-reducing road constructions, which have a low durability, can be optimized in terms of a longer duration while simultaneously maintaining the noise-reducing effects. Within this research, a large parametric study contributed to an optimal solution of a noise-reducing and durable layer. We found that noise absorption is mainly dependent of the void content of the pavement and its flexibility. Also, a result is that the durability of a road layer is based on the properties of the binder as well as the composition of the mixture, i.e., the grading curve. As we used polyurethane binders within our mixtures, which have a low dependency on regular environmental temperatures after their complete chemical reaction, we can imply a low temperature dependence of the entire polyurethane asphalt mixture. Based on these results, the construction of a noise-reducing and durable road layer is a great solution. The application of such road layers leads to lower traffic emissions at major hotspots. These might be urban highways, where the infrastructure is too tight to build noise barriers, enclosures or tunnels.
机译:道路上部结构内的聚氨酯基橡胶改性层导致交通排放的吸收。噪声排放对社会具有相当大的负面影响,因为它们导致高压力水平和对人类健康的危害。因此,以前已经开发了降低噪声的道路层的构造方法。本文的研究重点是这样一个问题:现有的具有低耐久性的降噪道路结构能否在延长使用寿命的同时进行优化,同时保持降噪效果。在这项研究中,一项大型参数研究为降低噪音和耐用层的最佳解决方案做出了贡献。我们发现,噪声的吸收主要取决于人行道的空隙含量及其柔韧性。而且,结果是,道路层的耐久性基于粘合剂的性质以及混合物的组成,即分级曲线。当我们在混合物中使用聚氨酯粘合剂时,它们在完全化学反应后对常规环境温度的依赖性较低,因此我们可以暗示整个聚氨酯沥青混合物的温度依赖性较低。基于这些结果,降低噪音和耐用的道路层的构造是一个很好的解决方案。这样的道路层的应用导致主要热点处的交通排放降低。这些可能是城市高速公路,那里的基础设施太紧,无法建立隔音屏障,围墙或隧道。

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