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Extrusion of Starch-based Loose-fill Packaging Foams: Effects of Temperature, Moisture and Talc on Physical Properties

机译:淀粉基疏松包装泡沫的挤出:温度,湿度和滑石粉对物理性能的影响

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摘要

Starch-based loose-fill packaging foams were made in a single-screw laboratory-rnscale extruder. Corn starch was blended with polystyrene in the ratio of 70 :30 and extruded into foams using talc and polycarbonate as additives. Extrusions were carried out at moisture contents of 16,18 and 20% (dry basis), and at barrel temperatures of 140 and 160℃. The influences of extrusion temperature, moisture content of starch, talc and polycarbonate on the radial expansion and other selected physical properties of starch foams were investigated. The effects of moisture and talc contents on the radial expansion of foams were found to be critical, while the role of temperature was close to significant. The expansion ratio increased when the moisture content was increased from 16 to 18%, and then decreased when moisture content was increased to 20%. In general, the expansion ratios of foams were higher at 160℃ as compared to 140℃. Although polycarbonate mixed well with the starch-polystyrene melt, it was not effective as a structural and anti-shrinking agent, and it did not contribute to the radial expansion. In general, the bulk densities and unit densities of the starch foams decreased as the moisture content and extrusion temperature increased. Scanning electron microscope images showed that the addition of talc yielded foams with smaller-sized cells, with less expansion of the foam melt, and thus a higher density. X-ray diffractograms revealed that the crystallinity of starch foams increased post-extrusion, and there was adequate dispersion of the starch and polystyrene polymers to make the foam water-resistant.
机译:淀粉基散装包装泡沫塑料是在单螺杆实验室规模的挤出机中制成的。将玉米淀粉与聚苯乙烯以70:30的比例混合,并使用滑石粉和聚碳酸酯作为添加剂挤出成泡沫。在含水量为16,18和20%(干基)下,在机筒温度为140和160℃下进行挤出。研究了挤出温度,淀粉,滑石和聚碳酸酯的水分含量对淀粉泡沫的径向膨胀和其他选定的物理性能的影响。发现水分和滑石含量对泡沫的径向膨胀的影响至关重要,而温度的作用接近显着。当水分含量从16%增加到18%时,膨胀率增加,而当水分含量增加到20%时,膨胀率降低。通常,泡沫在160℃时的膨胀率比140℃时高。尽管聚碳酸酯与淀粉-聚苯乙烯熔体充分混合,但它作为结构和抗收缩剂无效,并且对径向膨胀没有贡献。通常,淀粉泡沫的堆积密度和单位密度随着水分含量和挤出温度的升高而降低。扫描电子显微镜图像显示,滑石粉的添加产生的泡沫具有较小的泡孔,泡沫熔体的膨胀较小,因此密度较高。 X射线衍射图显示淀粉泡沫的结晶度在挤出后增加,并且淀粉和聚苯乙烯聚合物充分分散以使泡沫耐水。

著录项

  • 来源
    《Packaging Technology and Science》 |2008年第3期|171-183|共13页
  • 作者单位

    Industrial Agricultural Products Center and Department of Biological Systems Engineering, University of Nebraska -Lincoln, Lincoln, NE, 68583-0730, USA;

    Industrial Agricultural Products Center and Department of Biological Systems Engineering, University of Nebraska -Lincoln, Lincoln, NE, 68583-0730, USA;

    Industrial Agricultural Products Center and Department of Biological Systems Engineering, University of Nebraska -Lincoln, Lincoln, NE, 68583-0730, USA;

    Industrial Agricultural Products Center and Department of Biological Systems Engineering, University of Nebraska -Lincoln, Lincoln, NE, 68583-0730, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    expansion ratio; extrusion; starch foams; single screw; talc;

    机译:膨胀率挤压;淀粉泡沫;单螺杆滑石;

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