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首页> 外文期刊>Archives of acoustics >ULTRASONIC PROPAGATION FOR MEASURING THE ACTIVATION ENERGY AND VOLUME OF A HOLE IN LIQUIDS
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ULTRASONIC PROPAGATION FOR MEASURING THE ACTIVATION ENERGY AND VOLUME OF A HOLE IN LIQUIDS

机译:超声波传播法测量液体中孔的活化能和体积

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摘要

Mathematical expressions are introduced in this paper in order to measure the compressional relaxation time by the propagation of ultrasonic waves in associated and nonassociated liquids. The expressions are based on the concept of complex and frequency-dependent compressibility represented as a function of ultrasonic velocity and absorption in liquids. The available experimental data reported earlier in the literature are used in these mathematical expressions to calculate the molecular activation energy and the volume of a hole for some liquids. The introduced expressions concern the relations between the liquid compressional relaxation time and FrenkePs intermolec-ular relaxation time at different values of temperature and pressure. The effect of vibrational relaxation, bulk viscosity and structural rearrangement on ultrasonic absorption in liquids has been investigated.
机译:本文引入数学表达式,以便通过超声波在缔合和非缔合液体中的传播来测量压缩弛豫时间。这些表达式基于复杂且依赖于频率的可压缩性的概念,表示为超声速度和液体吸收的函数。这些数学表达式中使用了较早的文献报道的可用实验数据来计算某些液体的分子活化能和孔的体积。引入的表达式涉及在不同温度和压力值下液体压缩弛豫时间与FrenkePs分子间弛豫时间之间的关系。研究了振动弛豫,体积粘度和结构重排对液体中超声波吸收的影响。

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