TY - JOUR U1 - Wissenschaftlicher Artikel A1 - Neubauer, Moritz A1 - Schwaericke, Felix A1 - Radmann, Vincent A1 - Sarradj, Ennes A1 - Modler, Niels A1 - Dannemann, Martin T1 - Material Selection Process for Acoustic and Vibration Applications Using the Example of a Plate Resonator JF - Materials N2 - In this work, a new method for selecting suitable materials is presented. This method has a high potential for a variety of engineering applications, such as the design of sound-absorbing and vibration-loaded structures, where a large number of different requirements have to be met. The method is based on the derivation of functional dependencies of selected material parameters. These dependencies can be used in parameter studies to consider parameter combinations that lie in the range of real existing and targeted material groups. This allows the parameter space to be reduced, the calculation to be accelerated, and suitable materials to be (pre-)selected for the respective application, which contributes to a more target-oriented design. The method is applied to the example of a plate resonator. For this purpose, a semi-analytical model is implemented to calculate the transmission loss as well as the reflected and dissipated sound power of plate silencers, taking into account the influence of flow velocity and fluid temperature on the performance of plate silencers. AB - In this work, a new method for selecting suitable materials is presented. This method has a high potential for a variety of engineering applications, such as the design of sound-absorbing and vibration-loaded structures, where a large number of different requirements have to be met. The method is based on the derivation of functional dependencies of selected material parameters. These dependencies can be used in parameter studies to consider parameter combinations that lie in the range of real existing and targeted material groups. This allows the parameter space to be reduced, the calculation to be accelerated, and suitable materials to be (pre-)selected for the respective application, which contributes to a more target-oriented design. The method is applied to the example of a plate resonator. For this purpose, a semi-analytical model is implemented to calculate the transmission loss as well as the reflected and dissipated sound power of plate silencers, taking into account the influence of flow velocity and fluid temperature on the performance of plate silencers. KW - General Materials Science Y1 - 2022 SN - 1996-1944 SS - 1996-1944 U6 - https://doi.org/10.3390/ma15082935 DO - https://doi.org/10.3390/ma15082935 VL - 15 IS - 8 AR - 2935 S2 - 2935 PB - MDPI ER -