利用流变学和图像分析研究热塑性弹性体 (TPE) 的发泡过程

IF 2.9 4区 工程技术 Q2 CHEMISTRY, MULTIDISCIPLINARY Korean Journal of Chemical Engineering Pub Date : 2024-07-20 DOI:10.1007/s11814-024-00229-8
Hyo Jae Kong, Hyeong Yong Song, Seung Hak Lee, Sumkun Lee, Gyungbok Kim, Nakyong Yun, Kyu Hyun
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引用次数: 0

摘要

本研究介绍了一种方法,可同时表征含有封装物理发泡剂的热塑性弹性体在发泡过程中发生的时间分辨流变和体积变化。为此,一台传统的旋转流变仪配备了一台商用数码相机,用于捕捉视频记录。这些视频记录通过定制的基于计算机视觉的算法数字化为体积数据。我们首先研究了温度斜坡测试期间的流变和体积变化。计算得出的细胞体积分数随细胞的膨胀和收缩而发生定量变化。粘弹性模量遵循细胞体积分数的特征行为。此外,为了分析假设加工条件下的体积变化,还设计了一个由时间扫描和温度斜坡组成的四阶段方案。结果显示,高温时内部气体渗透引起的细胞收缩明显大于冷却时内部压力降低引起的收缩。最后,通过比较使用我们的算法计算出的泡沫密度和使用密度计测量出的泡沫密度,发现两者之间的一致性很好,相对误差在 3% 以内。这表明我们的算法适用于定量评估泡沫的体积变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Investigating the Foaming Process of a Thermoplastic Elastomer (TPE) Using Rheology and Image Analysis

This study introduced a method to simultaneously characterize time-resolved rheological and volumetric changes occurring during the foaming process of a thermoplastic elastomer containing an encapsulated physical blowing agent. For this, a conventional rotational rheometer was equipped with a commercial digital camera to capture video recordings. These video recordings were digitized into volumetric data using custom-written computer-vision-based algorithm. We first investigated rheological and volumetric changes during temperature ramp tests. The calculated cell volume fractions varied quantitatively depending on cell expansion and shrinkage. The viscoelastic moduli followed the characteristic behavior of the cell volume fraction. Furthermore, to analyze the volumetric changes under hypothetical processing conditions, a four-stage protocol comprising time sweep and temperature ramp was designed. The results revealed that the cell shrinkage induced by internal gas permeation at high temperatures was significantly greater than that induced by internal pressure reduction during cooling. Finally, comparison between foam densities computed using our algorithm and those measured using a densimeter revealed good agreement within 3% relative error. This demonstrates the applicability of our algorithm for quantitatively assessing volumetric changes of foam.

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来源期刊
Korean Journal of Chemical Engineering
Korean Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
4.60
自引率
11.10%
发文量
310
审稿时长
4.7 months
期刊介绍: The Korean Journal of Chemical Engineering provides a global forum for the dissemination of research in chemical engineering. The Journal publishes significant research results obtained in the Asia-Pacific region, and simultaneously introduces recent technical progress made in other areas of the world to this region. Submitted research papers must be of potential industrial significance and specifically concerned with chemical engineering. The editors will give preference to papers having a clearly stated practical scope and applicability in the areas of chemical engineering, and to those where new theoretical concepts are supported by new experimental details. The Journal also regularly publishes featured reviews on emerging and industrially important subjects of chemical engineering as well as selected papers presented at international conferences on the subjects.
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