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RESPONSE VARIABILITY OF BROADBAND MULTI-FREQUENCY METASTRUCTURE FROM ADDITIVE MANUFACTURING

机译:宽带多频度从添加剂制造的响应变异性

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Additive manufacturing has been used to propose several designs of phononic crystals and metamaterials due to the low cost to produce complex geometrical features. However, like any other manufacturing process, it can introduce material and geometrical variability in the nominal design and therefore affect the structural dynamic performance. Locally resonant metamaterials are typically designed such that the distributed resonators have the same natural frequency or, in the case of rainbow meta-structures, a well-defined spatial profile. In this work, manufacturing tolerances of beam samples produced from a Selective Laser Sintering process are assessed and variability levels are used to investigate the vibration suppression performance of broadband multi-frequency metastructures. Evenly spaced non-symmetric resonators are attached to a beam with U-shaped cross-section. An analytical model based on a transfer matrix approach is used to calculate transfer receptance due to a point time harmonic force. Moreover, a random field model is assumed based in previous experimental results and the effects of the correlation length, a measure of the spatial fluctuation, are also investigated for individual beams and also in terms of ensemble statistics. The obtained results are expected to be useful for further robust design in mass produced industrial applications.
机译:添加剂制造已被用于提出由于产生复杂的几何特征的成本低而提出了几种声子晶体和超材料的设计。然而,与任何其他制造过程一样,它可以在标称设计中引入材料和几何变异,因此影响结构动态性能。局部谐振超材料通常设计成使得分布式谐振器具有相同的固有频率,或者在彩虹元结构的情况下,定义明确的空间轮廓。在这项工作中,评估由选择性激光烧结过程产生的光束样品的制造公差,并且使用可变性水平来研究宽带多频性多频性的振动抑制性​​能。均匀间隔的非对称谐振器附接到具有U形横截面的梁。基于传输矩阵方法的分析模型用于计算由于点时间谐波的转移接收。此外,基于先前的实验结果和相关长度的效果,空间波动的效果,还研究了随机场模型,还针对各个光束以及集合统计而研究。预计得到的结果对于大规模生产的工业应用中的进一步稳健设计有用。

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