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测量3D打印光聚合物材料在1至3.5兆赫兹范围内的超声衰减和频散。

Measurement of the ultrasound attenuation and dispersion in 3D-printed photopolymer materials from 1 to 3.5 MHz.

作者信息

Bakaric Marina, Miloro Piero, Javaherian Ashkan, Cox Ben T, Treeby Bradley E, Brown Michael D

机构信息

Department of Medical Physics and Biomedical Engineering, University College London, Gower Street, London WC1E 6BT, United Kingdom.

Ultrasound and Underwater Acoustics, National Physical Laboratory, Hampton Road, Teddington TW11 0LW, United Kingdom.

出版信息

J Acoust Soc Am. 2021 Oct;150(4):2798. doi: 10.1121/10.0006668.

Abstract

Over the past decade, the range of applications in biomedical ultrasound exploiting 3D printing has rapidly expanded. For wavefront shaping specifically, 3D printing has enabled a diverse range of new, low-cost approaches for controlling acoustic fields. These methods rely on accurate knowledge of the bulk acoustic properties of the materials; however, to date, robust knowledge of these parameters is lacking for many materials that are commonly used. In this work, the acoustic properties of eight 3D-printed photopolymer materials were characterised over a frequency range from 1 to 3.5 MHz. The properties measured were the frequency-dependent phase velocity and attenuation, group velocity, signal velocity, and mass density. The materials were fabricated using two separate techniques [PolyJet and stereolithograph (SLA)], and included Agilus30, FLXA9960, FLXA9995, Formlabs Clear, RGDA8625, RGDA8630, VeroClear, and VeroWhite. The range of measured density values across all eight materials was 1120-1180 kg  · m, while the sound speed values were between 2020 to 2630 m  · s, and attenuation values typically in the range 3-9 dB  ·  MHz· cm.

摘要

在过去十年中,利用3D打印的生物医学超声应用范围迅速扩大。特别是对于波前整形,3D打印已经实现了多种新型低成本控制声场的方法。这些方法依赖于对材料体声学特性的准确了解;然而,迄今为止,对于许多常用材料,缺乏对这些参数的可靠认识。在这项工作中,对八种3D打印光聚合物材料在1至3.5 MHz频率范围内的声学特性进行了表征。测量的特性包括频率相关的相速度、衰减、群速度、信号速度和质量密度。这些材料采用两种不同的技术[PolyJet和立体光刻(SLA)]制造,包括Agilus30、FLXA9960、FLXA9995、Formlabs Clear、RGDA8625、RGDA8630、VeroClear和VeroWhite。所有八种材料的测量密度值范围为1120 - 1180 kg·m,声速值在2020至2630 m·s之间,衰减值通常在3 - 9 dB·MHz·cm范围内。

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