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Particle Velocity Measurements as a Breakthrough for Determining Acoustic Absorption Coefficient in Brazilian Trucks

机译:粒子速度测量作为基于卡车测定声学吸收系数的突破

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Methods for determining the acoustic absorption coefficient of materials are broadly known in NVH engineering and traditionally rely on measurements performed in specimens carefully prepared such as those used in the Kundt's tube. It is understood that the acoustic behavior of a material slice in a well-controlled test bench provides very different circumstances from those found when the material is used in its application location (in situ condition) mostly because of the structural interactions and the boundary conditions involved. Many questions arise when the goal is to understand which absorbing material will be more effective and, moreover, if its cost is worth enough to solve particular noise issues. To answer those questions, acoustic impedance determination using direct particle velocity measurements were used in this work, in which several absorbing coatings used in specific regions of Brazilian truck cabins were mapped and compared. Results show that the technique is extremely powerful in quantifying the in situ acoustic absorption coefficient, thus providing more realistic results and demonstrating clearly that a more expensive material is not necessarily the most effective solution when dealing with sound absorption problems.
机译:用于确定材料的声学吸收系数的方法在NVH工程中广泛是已知的,传统上依赖于在仔细制备的标本中进行的测量,例如Kundt管中使用的试样。应当理解,在受控的测试台中的材料切片中的材料切片的声学行为在其应用位置(原位条件)主要是因为结构相互作用和所涉及的边界条件而发现的那些,提供了非常不同的情况。当目标是了解哪些吸收材料更有效时,出现了许多问题,而且,如果其成本足以解决特定的噪音问题。为了回答这些问题,在这项工作中使用了使用直接粒子速度测量的声学阻抗测定,其中映射并比较了巴西卡车舱的特定区域中使用的几种吸收涂层。结果表明,该技术在量化原位声学吸收系数方面是极其强大的,从而提供更现实的结果并清楚地展示,更昂贵的材料在处理吸收问题时不一定是最有效的解决方案。

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