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Innovative low noise surfaces - comparison of damping and absorption

机译:创新的低噪音表面-阻尼和吸收率的比较

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While sound absorption is an acoustic related property reasonably well known and currently used to characterize low noise surfaces, damping is a property commonly used in other domains to define the energy dissipation of a material but rarely used to characterize this important mechanism in road pavements. This paper compares noise related properties such as damping and absorption of five road pavement surfaces. Two of which are innovative and therefore expected to be low noise since they have high voids content, incorporate fine grading aggregates and expanded clay. Other two incorporate rubber and waste high-density polyethylene giving them an elastic and stiff behaviour respectively. The fifth is a conventional material, asphalt concrete, used for control. Sound absorption tests and mechanical impedance tests were carried out in 30×30 cm slabs at 20°C. To measure absorption, an impedance tube with an open end was put on the surfaces. To determine damping, the response of a hammer impact measured by an accelerometer on suspended slabs was analysed. Results show that the innovative surfaces have better acoustic related properties while the surface with high-density polyethylene provided the worst results. Furthermore, a strong correlation of damping and air voids was found.
机译:吸声是众所周知的与声学相关的特性,目前已用于表征低噪声表面,而阻尼是其他领域通常用于定义材料能量耗散的特性,但很少用于表征路面的这种重要机理。本文比较了与噪声相关的特性,例如五个路面的阻尼和吸收。其中两个是创新产品,因此由于具有高空隙含量,掺入了细粒状集料和膨胀粘土,因此有望实现低噪音。另外两种结合了橡胶和废弃的高密度聚乙烯,分别赋予了它们弹性和刚性。第五种是用于控制的常规材料,沥青混凝土。吸声测试和机械阻抗测试在20°C的30×30 cm平板中进行。为了测量吸收,将具有开口端的阻抗管放在表面上。为了确定阻尼,分析了由加速度计测得的锤击对悬置板的响应。结果表明,创新的表面具有更好的声学相关性能,而具有高密度聚乙烯的表面却提供了最差的结果。此外,还发现阻尼和气孔之间有很强的相关性。

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