一种基于超声波的陶瓷浆料密度检测方法、系统及装置

By employing an ultrasonic-based method for detecting the density of ceramic slurry, and utilizing transmission speed and acoustic impedance calculations combined with a temperature compensation algorithm, the problem of accurate detection and real-time feedback during the mixing process of ceramic slurry in existing technologies has been solved, achieving rapid and low-cost density assessment.

CN115541447BActive Publication Date: 2026-07-17XUZHOU NORMAL UNIVERSITY +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
XUZHOU NORMAL UNIVERSITY
Filing Date
2022-10-08
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies struggle to monitor the state of ceramic slurry mixing in real time while ensuring accurate measurement and meeting timeliness requirements, and the evaluation costs are high.

Method used

An ultrasonic-based method for detecting the density of ceramic slurry is adopted. By acquiring the signal emitted by the ultrasonic transducer and the received echo signal, the transmission speed and acoustic impedance are calculated. Combined with a temperature compensation algorithm, the density of ceramic slurry can be detected quickly and accurately.

Benefits of technology

It enables rapid and accurate detection of ceramic slurry density, reduces evaluation costs, and provides real-time feedback on slurry status during the mixing process.

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Abstract

本发明提供的一种基于超声波的陶瓷浆料密度检测方法、系统及装置。所述方法包括:获取第一超声波换能器发出的超声波源信号和第二超声波换能器所接收的超声波回波信号,两个超声波换能器分别设置在体积容器的相对应两侧;根据源信号和回波信号,得到超声波在待测陶瓷浆料中的传输速度和声阻抗;将待测陶瓷浆料声阻抗与传输速度相除,得到第一密度;根据浆料的温度和超声波在浆料中的声衰减,通过温度补偿算法计算得到第二密度,进而得到待测陶瓷浆料密度。本发明能够快速精确地对陶瓷浆料密度检测,且评估成本低。
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