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1)  ultrasonic attenuation spectrum
超声衰减谱
1.
An ultrasonic path length-variation device was used to measure the pulsed ultrasonic attenuation spectrum of 2% nano-ATO dispersions at 25 ℃,and the McClements theoretical model coupled with the BLBL theoretical model were selected to describe simultaneously the ultrasonic attenuation spectrum of nano-ATO particles in dispersion.
通过发射脉冲超声波并利用变声程方法测量25℃时2%(体积分数)的纳米ATO-H2O分散液的超声衰减谱;选取McClements理论模型叠加BLBL理论模型共同描述纳米ATO颗粒分散液中的超声衰减现象;采用最优正则优化反演算法反演得到纳米ATO颗粒的粒度分布以及平均粒径。
2)  ultrasonic attenuation spectrum method
超声衰减谱法
3)  Ultrasonic attenuation
超声衰减
1.
Pulse-echo based ultrasonic attenuation model for porosity test of carbon fiber composites;
碳纤维复合材料孔隙率的脉冲反射法超声衰减测试模型
2.
Ultrasonic attenuation coefficient of the spray-atomized and co-deposited 6061Al/SiCp composite;
用超声衰减法研究喷射沉积6061Al/SiCp复合材料的阻尼性能
3.
Ultrasonic attenuation technique is used to investigate a method to measure mass concentration of paper fibers in dilute pulp suspensions.
采用超声衰减技术研究了稀释纸浆悬浮液中纸纤维质量浓度的测量方法,讨论了稀释纸浆悬浮液中超声的衰减机理。
4)  Ultrasonic attenuation
超声波衰减
1.
Based on analyzing the theoretical model of ultrasonic attenuation, the formula was integrated into the ultrasonic attenuation model, and the relation of ultrasonic attenuation to pulp density and particle size was derived.
在分析超声衰减基本理论模型的基础上,将不同粒径的筛下累积含量集成到超声波衰减模型中,推导出超声波衰减与矿浆浓度、粒度之间的关系模型。
2.
A formula is proposed for calculating the sand content of different size in the case of matching particle size of sand,thus obtaining the correlation between ultrasonic attenuation and density of solid particles in the pulp,as well as particle size.
提出了在矿砂粒径尺寸级配情况下的不同粒径时的矿砂含量的公式,并由此得到了超声波衰减与矿浆中固体颗粒浓度、粒度之间的关系。
5)  Ultrasonic velocity and attenuation
超声声速与衰减
6)  ultrasonic wave attenuation coefficient
超声波衰减系数
1.
The relationships among ultrasonic wave attenuation coefficient,mean grain size,fractur.
采用单探头直接接触纵波探伤的方法,检测了9根WC-10 Co硬质合金试样的超声波衰减系数α,结合试样的密度、晶粒度、断裂韧性KIc、维氏硬度及抗弯强度进行分析。
补充资料:超声


超声
UltrasofliCS

  是指超出人耳听力范围的高频声(频率超过20000Hz)。超声具有与一般声音共同的物理性质,还具有一些其他重要的物理特性,如能够成束发射,直线传导,方向性好。传导过程中遇有声阻抗不同的反射界面时产生反射、折射、聚焦和散焦等现象。用于临床诊断的超声频率一般为2~7.5MHz。频率越高,对组织结构的分辨力越强,但远场声能容易被组织吸收、衰减,不易穿透较深的层次。
  
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