欢迎访问《日用化学工业(中英文)》,今天是

日用化学工业 ›› 2022, Vol. 52 ›› Issue (5): 506-513.doi: 10.3969/j.issn.1001-1803.2022.05.007

• 开发与应用 • 上一篇    下一篇

日用化学品泡沫性能的多维度评价方法研究

徐杰,祝愿*(),徐项亮,鲍红洁   

  1. 纳爱斯浙江科技有限公司,浙江 杭州 310051
  • 收稿日期:2021-06-04 修回日期:2022-04-21 出版日期:2022-05-22 发布日期:2022-05-24
  • 通讯作者: 祝愿

Study on multidimensional evaluation method of foam performance of daily chemicals

Xu Jie,Zhu Yuan*(),Xu Xiangliang,Bao Hongjie   

  1. Nice Zhejiang Technical Co., Ltd., Hangzhou, Zhejiang 310051, China
  • Received:2021-06-04 Revised:2022-04-21 Online:2022-05-22 Published:2022-05-24
  • Contact: Yuan Zhu

摘要:

介绍了动态泡沫分析的测试方法和测试原理,并开展了表面活性剂常用原料、洗衣液、洗发水和牙膏等常规日化产品的泡沫性能研究。在动态泡沫的测试中,基于不同样品设置了差异化的测试程序,监测了整个测试周期内泡沫高度、泡沫体积、每平方毫米气泡个数、气泡平均面积、气泡平均半径等参数随时间的演化关系,计算出体积消泡率、气泡个数变化率等反映泡沫稳定性的相关参数。利用高度测试模块中泡沫体积、泡沫高度等参数的分析评价了各样品的发泡能力;通过结构测试模块中气泡个数、平均气泡面积、平均气泡半径等参数的分析评价了各样品的泡沫微观特性;同时结合高度测试和结构测试双模块中持久值、体积消泡率、气泡个数变化率、半衰期等多角度评价了各样品的泡沫稳定性。由此经双模块测试中各参数的协同分析实现了产品发泡快慢、泡沫多少、泡沫大小和稳定性等泡沫性能的多维度评价。

关键词: 泡沫高度, 泡沫结构, 泡沫稳定性, 消泡率, 半衰期

Abstract:

For daily chemical cleaning products, the size, compactness and stability of the foam can be easily perceived by consumers, which may even directly affect the comprehensive evaluation of the products. Therefore, the evaluation of foam performance is very important. Herein, the testing method and principle of dynamic foam analysis were introduced. The transmission light could be measured with time using LED panel and side line sensor. The liquid/foam and foam/air boundaries could be detected by light intensity difference, and the foam decay process in the measurement cycle could be read out through the line sensor. This testing method was used to test the foams of common raw materials of surfactants and conventional daily cleaning products such as laundry detergents, shampoos, and toothpastes. Differentiated test procedures were set for different samples. Then the evolution of foam height (hfoam), foam volume (Vfoam), number of bubbles per square millimeter (BC), average area of bubbles (MBA), average radius of bubbles (Ravg) and other parameters over time was monitored in the whole test period. Through the analysis of foam volume, foam height and other parameters in the height test module, the foaming abilities of the products were evaluated; by analyzing the number of bubbles, the average bubble area and the average bubble radius in the structure test module, the foam micro-structure was evaluated; the foam stability was evaluated by analyzing the parameters of foam volume fraction, maximum foam liquid carrying capacity, half-life of bubbles, etc. Therefore, based on the characteristics of daily chemical products, setting up different automatic test programs and analyzing the foam performance with the combination of the parameters in each test module can effectively realize the multi-dimensional evaluation of foam performance, so as to guide the development and optimization of new products.

Key words: foam height, foam structure, foam stability, defoaming rate, half-life

中图分类号: 

  • TQ649