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用于超声换能器应用的采用B阶段热固性聚合物树脂的声学匹配层薄膜

Acoustic Matching Layer Films Using B-Stage Thermosetting Polymer Resins for Ultrasound Transducer Applications.

作者信息

Park Jae-Hyeong, Lee Sang-Mok, Park Jongcheol, Lee Hyunjoo Jenny, Paik Kyung-Wook

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2020 Oct;67(10):2148-2154. doi: 10.1109/TUFFC.2020.2999178. Epub 2020 Jun 1.

Abstract

Acoustic matching layer films (MLFs) were fabricated using B-stage thermosetting polymer resins with various volume fractions of alumina and tungsten powders. After making certain thickness MLFs, ultrasonic matching layers were fabricated using a simple molding process. The thickness of the matching layers can be precisely adjusted from several micrometer to hundreds of micrometer, without any grinding process. Experimental values of acoustic impedances of the matching layers were in good agreement with theoretical values calculated by the Devaney model. Using the optimized acoustic matching layer by the MLFs, the maximum intensity and the fractional bandwidth of the ultrasonic transducer were increased by 10% and 37% respectively. The effectiveness of the matching layer using MLFs was successfully verified.

摘要

声学匹配层薄膜(MLFs)是使用含有不同体积分数氧化铝和钨粉的B阶段热固性聚合物树脂制成的。制成特定厚度的MLFs后,采用简单的成型工艺制作超声匹配层。匹配层的厚度可在几微米到几百微米之间精确调节,无需任何研磨工艺。匹配层声阻抗的实验值与通过德瓦尼模型计算的理论值吻合良好。使用由MLFs优化的声学匹配层后,超声换能器的最大强度和分数带宽分别提高了10%和37%。成功验证了使用MLFs的匹配层的有效性。

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