首页> 外文学位 >The effect of physical aging, starch particle size, and starch oxidation on thermal-mechanical properties of poly(lactic acid)/starch composites.
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The effect of physical aging, starch particle size, and starch oxidation on thermal-mechanical properties of poly(lactic acid)/starch composites.

机译:物理老化,淀粉粒度和淀粉氧化对聚乳酸/淀粉复合材料热机械性能的影响。

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摘要

Poly(lactic acid) (PLA), a synthetic biopolymer, is a promising substitute of some petroleum-based polymers due to its mechanical and biodegradable properties. But, because of the high cost of PLA (compared to those petroleum plastics for disposable application), starch has been incorporated into PLA to reduce cost and accelerate the biodegradability rate of the composites. But, the addition of starch as filler to PLA decreased mechanical performance of the composite. The addition of methylenediphenyl diisocyanate (MDI) into PLA/starch blends improved drastically the mechanical properties of the composite.; Results from thermal-degradation analysis showed that PLA had the highest Arrhenius activation energy and strongest thermal endurance of all samples, followed by PLA/starch/MDI and PLA/starch. Aged samples exposed to fluctuating humidity storage conditions significantly decreased their performance. But, storing the samples in plastic bags could minimize degradation of properties. PLA and its composites with starch would not significantly affect application function when they are stored in controlled environment. PLA and PLA/starch based composites sealed in plastic bags can be stored in fluctuating humidity conditions (30-90% RH) for up to 30 days.; Tensile strength, elongation, and damping increased with average particle size of starch granules (APS). But, declination of these properties was detected with APS larger than 45 mum. Crystallinity increased as the APS decreased. Young's modulus, storage modulus, and moisture absorption were not significantly affected by the starch APS. The use of MDI as a coupling agent altered the role of starch APS on those properties of poly(lactic acid)/starch composite.; The oxidation of the primary alcohol group on C6 of starch molecules up to 10% degree of substitution did not significantly affect the mechanical properties of PLA/starch/MDI, but the composites showed a reduced inelastic deformation (tensile curve) and significant increase in storage modulus and damping. Results suggest that a substitution of hydroxyl group on C6 of starch molecules for carboxyl group (up to 10%) increased the strengthening effect of MDI enough to reduce inelastic deformation of the composites upon load, but not enough to enhance mechanical properties.
机译:聚乳酸(PLA)是一种合成生物聚合物,由于其机械和可生物降解的特性,因此有望替代某些石油基聚合物。但是,由于PLA的高成本(与那些一次性使用的石油塑料相比),淀粉已被掺入PLA中以降低成本并加快复合材料的生物降解率。但是,将淀粉作为填料添加到PLA中会降低复合材料的机械性能。将亚甲基二苯基二异氰酸酯(MDI)添加到PLA /淀粉共混物中可极大地改善复合材料的机械性能。热降解分析结果表明,在所有样品中,PLA具有最高的Arrhenius活化能和最强的耐热性,其次是PLA /淀粉/ MDI和PLA /淀粉。暴露于波动的湿度存储条件下的老化样品会大大降低其性能。但是,将样品存储在塑料袋中可以使性能下降降到最低。当将PLA及其淀粉复合材料储存在受控环境中时,不会显着影响其应用功能。密封在塑料袋中的PLA和PLA /淀粉基复合材料可以在波动的湿度条件下(30-90%RH)保存长达30天。拉伸强度,伸长率和阻尼随淀粉颗粒(APS)的平均粒径而增加。但是,使用大于45毫米的APS可以检测到这些特性的偏差。结晶度随着APS的降低而增加。淀粉APS对杨氏模量,储能模量和水分吸收没有显着影响。 MDI作为偶联剂的使用改变了淀粉APS对聚乳酸/淀粉复合物的那些性能的作用。淀粉分子上C6上高达10%取代度的伯醇基团的氧化不会显着影响PLA /淀粉/ MDI的机械性能,但复合材料显示出减少的非弹性变形(拉伸曲线)并显着增加了储存模量和阻尼。结果表明,淀粉分子的C6上的羟基被羧基取代(最多10%)提高了MDI的增强效果,足以减少复合材料在加载时的非弹性变形,但不足以增强机械性能。

著录项

  • 作者

    Moura, Ricardo Acioli.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Agriculture Food Science and Technology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 92 p.
  • 总页数 92
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农产品收获、加工及贮藏;
  • 关键词

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