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Simultaneous measurements of ultrasound attenuation, phase velocity, thickness, and density spectra of polymeric sheets

机译:同时测量聚合物片材的超声衰减,相速度,厚度和密度光谱

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The size distribution and mechanical properties of microparticle dispersed in liquid can be characterized by ultrasonic spectroscopy with the aid of acoustic scattering theories. In order to carry out the accurate analysis of the particles, the basic properties, such as the density, viscosity, longitudinal and shear velocities and intrinsic attenuation coefficient of the particle must be known prior to the analysis. Particularly, for soft elastomers or rubbers which exhibit complex mechanical properties with comparable real and imaginary parts, such fundamental information should be provided prior to the particle analysis to minimize the uncertainty of estimation associated with the number of adjustable parameters. In this study, we examined the acoustical properties of poly(methyl methacrylate)(PMMA) and cross-linked poly(dimethyl siloxane) sheets having different cross-linker concentrations by Multiple-Echo Reflection Ultrasonic Spectroscopy which simultaneously enabled us to acquire 4 fundamental properties, the ultrasound attenuation coefficient, phase velocity, density, and thickness (MERUS4 for solid plate). In addition, it was confirmed that the acoustic spectra of PMMA particles dispersed in water were reproduced well with the physical properties determined by MERUS4 using the PMMA plates.
机译:分散在液体中的微粒的尺寸分布和机械性能可以通过超声波光谱借助于声学散射理论的表征。为了进行颗粒的准确分析,必须在分析之前已知粒子,诸如密度,粘度,纵向和剪切速度和颗粒的内在衰减系数。特别是,对于具有可比实部和虚部的复杂机械性能的软弹性体或橡胶,在颗粒分析之前应该提供这种基本信息,以最小化与可调参数的数量相关的估计的不确定性。在该研究中,我们研究了多相反射超声波谱具有不同的交联浓度的聚(甲基丙烯酸甲酯)(PMMA)(PMMA)和交联聚(二甲基硅氧烷)片材的声学性质,其同时使我们能够获得4个基本性质,超声衰减系数,相速度,密度和厚度(固体板的Merus4)。此外,证实,使用PMMA板通过Merus4测定的物理性质,再现分散在水中的PMMA颗粒的声光谱。

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