用响应面法研究了发泡变量对发泡TPU的孔结构和膨胀率的影响

IF 3.2 4区 工程技术 Q2 CHEMISTRY, APPLIED Journal of Cellular Plastics Pub Date : 2023-03-01 DOI:10.1177/0021955X231165344
Jiankang Wang, Houjian Fa, Hongwei Lu
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引用次数: 0

摘要

采用超临界流体二氧化碳(SC-CO2)在高压高压灭菌器中制备了热塑性聚氨酯弹性体(TPU)泡沫。研究了发泡变量(饱和温度、饱和压力、减压速率)对泡沫结构和膨胀比的影响。采用响应面法(RSM)的Box-Behnken设计(BBD)建立膨胀率与发泡变量之间的模型,并进行方差分析(ANOVA)来评价模型的有效性和显著性。最后,研究了发泡变量对膨胀比的交互影响,并通过实验验证了数值模型中最大值和中心点的膨胀比。结果表明:饱和压力和减压速率越高,胞体结构越均匀,胞体密度越高;饱和温度越高,胞体越大,胞体结构越不均匀。细胞平均直径为15.26 ~ 45.4 μm,细胞平均密度为0.32 ~ 6.24 × 108 cells/cm3。利用RSM的BBD模型可以有效地预测设计窗口内的膨胀比。饱和温度是影响膨胀比的最重要因素。随着饱和温度的升高,膨胀比在设计窗口内始终呈增大趋势。数值优化得到的膨胀比最大值为4.91,位于饱和温度190℃、饱和压力12.51 MPa、减压速率5 MPa/s时,对应的实验值为4.56。两者误差为7.13%。
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Investigation into the effects of foaming variables on the cellular structure and expansion ratio of foamed TPU using response surface methodology
Thermoplastic polyurethane elastomer (TPU) foams were prepared using the high-pressure autoclave with supercritical fluid carbon dioxide (SC-CO2). The effects of foaming variables (i.e. saturation temperature, saturation pressure, and depressurization rate) on cellular structure and expansion ratio were investigated. The model between expansion ratio and foaming variables was constructed using the Box-Behnken design (BBD) of response surface methodology (RSM), and analysis of variance (ANOVA) was conducted to evaluate the validity and significance of the model. Finally, the interactive effects of foaming variables on the expansion ratio were investigated, and the expansion ratios of maximum and center point from numerical model were verified by experiment. The result showed higher saturation pressure and depressurization rate resulted in the more uniform cellular structure and higher cell density, however the higher saturation temperature resulted in the bigger cell and nonuniform structure. The ranges of average cell diameter and cell density were 15.26–45.4 μm and 0.32 × 108 to 6.24 × 108 cells/cm3, respectively. The model obtained using BBD of RSM was valid to predict the expansion ratio in the design window. The saturation temperature was the most important factor influencing the expansion ratio. With the increase of saturation temperature, the expansion ratio always increases in the design window. The maximum expansion ratio from numerical optimization was 4.91, which was located at saturation temperature 190°C, saturation pressure 12.51 MPa, and depressurization rate 5 MPa/s, and the corresponding experiment value was 4.56. The error between them was 7.13%.
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来源期刊
Journal of Cellular Plastics
Journal of Cellular Plastics 工程技术-高分子科学
CiteScore
5.00
自引率
16.00%
发文量
19
审稿时长
3 months
期刊介绍: The Journal of Cellular Plastics is a fully peer reviewed international journal that publishes original research and review articles covering the latest advances in foamed plastics technology.
期刊最新文献
I-WP geometry structural assessment: A theoretical, experimental, and numerical analysis Foam density measurement using a 3D scanner Effect of temperature on the mechanical behavior of pvc foams Preparation and energy absorption of flexible polyurethane foam with hollow glass microsphere A review on the mechanical behaviour of microcellular and nanocellular polymeric foams: What is the effect of the cell size reduction?
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