Nsugbe Ejay, Ruiz-Carcel Cristobal, Starr Andrew, Jennions Ian
School of Aerospace Transport and Manufacturing Building 50, College Rd, Cranfield University, Cranfield MK43 0AL, UK.
Sensors (Basel). 2018 Mar 13;18(3):851. doi: 10.3390/s18030851.
The final phase of powder production typically involves a mixing process where all of the particles are combined and agglomerated with a binder to form a single compound. The traditional means of inspecting the physical properties of the final product involves an inspection of the particle sizes using an offline sieving and weighing process. The main downside of this technique, in addition to being an offline-only measurement procedure, is its inability to characterise large agglomerates of powders due to sieve blockage. This work assesses the feasibility of a real-time monitoring approach using a benchtop test rig and a prototype acoustic-based measurement approach to provide information that can be correlated to product quality and provide the opportunity for future process optimisation. Acoustic emission (AE) was chosen as the sensing method due to its low cost, simple setup process, and ease of implementation. The performance of the proposed method was assessed in a series of experiments where the offline quality check results were compared to the AE-based real-time estimations using data acquired from a benchtop powder free flow rig. A designed time domain based signal processing method was used to extract particle size information from the acquired AE signal and the results show that this technique is capable of estimating the required ratio in the washing powder compound with an average absolute error of 6%.
粉末生产的最后阶段通常涉及混合过程,即所有颗粒与粘合剂结合并团聚形成单一化合物。检查最终产品物理性质的传统方法是通过离线筛分和称重过程来检查颗粒大小。该技术的主要缺点,除了是一种仅离线的测量程序外,还在于由于筛网堵塞,它无法表征大的粉末团聚物。这项工作评估了使用台式试验台和基于声学的原型测量方法进行实时监测的可行性,以提供可与产品质量相关的信息,并为未来的工艺优化提供机会。由于声发射(AE)成本低、设置过程简单且易于实施,因此被选作传感方法。在一系列实验中评估了所提出方法的性能,在这些实验中,将离线质量检查结果与使用从台式粉末自由流动试验台获取的数据进行的基于AE的实时估计进行了比较。使用一种设计的基于时域的信号处理方法从采集的AE信号中提取颗粒大小信息,结果表明该技术能够以6%的平均绝对误差估计洗衣粉化合物中所需的比例。