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Preparing, characterizing, on-line digital image processing of residence time distribution and modeling of mechanical properties of nanocomposite foams.

机译:停留时间分布的制备,表征,在线数字图像处理以及纳米复合泡沫的力学性能建模。

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摘要

The objectives of this research were to prepare, characterize and to study the effects of organoclay and extrusion variables on the physical, mechanical, structural, thermal and functional properties of tapioca starch (TS)/poly(lactic acid) (PLA) nanocomposite foams. On-line digital imaging processing was used to determine residence time distribution (RTD). Adaptive neuro-fuzzy inference system (ANFIS) was used to model the mechanical properties of nanocomposite foams.;Four different organoclays (Cloisite 10A, 25A, 93A, 15A) were used to produce nanocomposite foams by melt-intercalation. The properties were characterized using X-ray diffraction, scanning electron microscopy, differential scanning calorimetric, and Instron universal testing machine. The properties were influenced significantly with the addition of different organoclays. TS/PLA/Cloisite 30B nanocomposite foams, with four clay contents of 1, 3, 5, 7 wt%, were prepared by a melt-intercalation method. Among the four nanocomposites, 3 wt% clay content produced significantly different properties.;Screw speed, screw configuration, die nozzle diameter and moisture content were varied to determine their effects on organoclay intercalation. These extrusion variables had significant effects on the properties of TS/PLA/Cloisite 10A nanocomposite foams due to the intercalation of organoclay.;Multiple inputs single output (MISO) models were developed to predict mechanical properties of nanocomposite foams. Four individual ANFIS models were developed. All models preformed well with R2 values > 0.71 and had very low root mean squared errors (RMSE). Effects of screw configurations and barrel temperatures on the RTD and MISO models were developed to predict mechanical properties. The influence of the extrusion variables had a significant effect on the mean residence time (MTR).;On-line digital image processing (DIP) technique was developed to measure the RTD as compared to the colorimeter method. R2 showed a correlation of 0.88 of a* values from both methods. The influence of screw configuration and temperature on RTD were analyzed by the MRT and variance for both methods. Mixing screws and lower temperature resulted in higher MRT and variance for both methods.
机译:这项研究的目的是准备,表征和研究有机粘土和挤出变量对木薯淀粉(TS)/聚乳酸(PLA)纳米复合泡沫塑料的物理,机械,结构,热和功能性能的影响。在线数字成像处理用于确定停留时间分布(RTD)。使用自适应神经模糊推理系统(ANFIS)对纳米复合泡沫材料的力学性能进行建模。;四种不同的有机粘土(Cloisite 10A,25A,93A,15A)用于通过熔融插层生产纳米复合泡沫材料。使用X射线衍射,扫描电子显微镜,差示扫描量热法和Instron通用测试机对性能进行了表征。添加不同的有机粘土会显着影响性能。通过熔融插层法制备了四种粘土含量分别为1、3、5、7 wt%的TS / PLA / Cloisite 30B纳米复合泡沫。在这四种纳米复合材料中,粘土含量为3 wt%时产生了显着不同的性能。改变螺杆速度,螺杆结构,模头喷嘴直径和水分含量,以确定它们对有机粘土插层的影响。由于有机粘土的插层,这些挤出变量对TS / PLA / Cloisite 10A纳米复合泡沫的性能产生了显着影响。建立了多输入单输出(MISO)模型来预测纳米复合泡沫的力学性能。开发了四个单独的ANFIS模型。所有模型的R2值> 0.71均表现良好,并且均方根误差(RMSE)非常低。开发了螺杆配置和机筒温度对RTD和MISO模型的影响,以预测机械性能。挤压变量的影响对平均停留时间(MTR)有显着影响。与色度计方法相比,开发了在线数字图像处理(DIP)技术来测量RTD。两种方法的R2均显示a *值为0.88。通过MRT和两种方法的方差分析了螺杆配置和温度对RTD的影响。混合螺丝和降低温度会导致两种方法的MRT和方差更高。

著录项

  • 作者

    Lee, Siew Yoong.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Engineering Agricultural.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:40

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