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增材制造结构声学模拟的材料参数识别

Material Parameter Identification for Acoustic Simulation of Additively Manufactured Structures.

作者信息

Rothe Sebastian, Blech Christopher, Watschke Hagen, Vietor Thomas, Langer Sabine C

机构信息

Institute for Acoustics, Technische Universität Braunschweig, Langer Kamp 19, 38106 Braunschweig, Germany.

Institute for Engineering Design, Technische Universität Braunschweig, Hermann-Blenk-Straße 42, 38108 Braunschweig, Germany.

出版信息

Materials (Basel). 2020 Dec 31;14(1):168. doi: 10.3390/ma14010168.

Abstract

One possibility in order to manufacture products with very few restrictions in design freedom is additive manufacturing. For advanced acoustic design measures like Acoustic Black Holes (ABH), the layer-wise material deposition allows the continuous alignment of the mechanical impedance by different filling patterns and degrees of filling. In order to explore the full design potential, mechanical models are indispensable. In dependency on process parameters, the resulting homogenized material parameters vary. In previous investigations, especially for ABH structures, a dependency of the material parameters on the structure's thickness can be observed. In this contribution, beams of different thicknesses are investigated experimentally and numerically in order to identify the material parameters in dependency on the frequency and the thickness. The focused material is polyactic acid (PLA). A parameter fitting is conducted by use of a 3D finite element model and it's reduced version in a Krylov subspace. The results yield homogenized material parameters for the PLA stack as a function of frequency and thickness. An increasing Young's modulus with increasing frequency and increasing thickness is observed. This observed effect has considerable influence and has not been considered so far. With the received parameters, more reliable results can be obtained.

摘要

为了制造设计自由度限制极少的产品,一种可能性是增材制造。对于像声学黑洞(ABH)这样的先进声学设计措施,逐层材料沉积允许通过不同的填充模式和填充程度来连续调整机械阻抗。为了探索完整的设计潜力,力学模型是必不可少的。根据工艺参数,所得的均匀化材料参数会有所不同。在先前的研究中,特别是对于ABH结构,可以观察到材料参数对结构厚度的依赖性。在本论文中,对不同厚度的梁进行了实验和数值研究,以确定材料参数与频率和厚度的关系。所关注的材料是聚乳酸(PLA)。通过使用三维有限元模型及其在克雷洛夫子空间中的简化版本进行参数拟合。结果得出了PLA叠层作为频率和厚度函数的均匀化材料参数。观察到随着频率和厚度的增加,杨氏模量也在增加。这种观察到的效应具有相当大的影响,并且到目前为止尚未被考虑。利用所获得的参数,可以得到更可靠的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6009/7795163/497761cfe013/materials-14-00168-g001.jpg

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