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The effects of temperature and humidity on cushioning properties of expanded polylactic acid foam.

机译:温度和湿度对膨胀聚乳酸泡沫的缓冲性能的影响。

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摘要

This research studied expanded polylactic acid cushioning foam and the effect the conditioning environment had on its shock absorbing properties. Polylactic acid, as a polymer, has been available since the 1960s. Only recently has the polymer been adapted to allow expanded foaming. This material's significance to industry lies in its sustainability. With global awareness at all-time highs, the push for sustainable materials is rising. The adaptation of PLA to EPLA is a result of that push. This research represents the first of its kind, by characterizing EPLA for cushioning and also to study the effects temperature and humidity on the material.;Samples of EPLA were obtained from Symbra in densities of 3.7 and 2.8 pcf. To describe the material, cushion curves were created for both densities in each of six environmental conditions ranging from freezing to tropical. Data was collected using ASTM D 1596 and combined using the stress energy method to create cushioning curves. The resulting cushion curves were then compared using linear regression. Accelerations, predicted with the created cushion curves were also compared.;Results of linear regression on stress energy equations showed no statistical difference between EPLA at six different environmental conditions. This was true for both 2.8 and 3.7 pcf material. Low correlations for drops 1 and 2 were observed when computing stress energy equations. These low correlations were the result of variability in material performance. When impact pulses were studied, first impact behavior of the material was descriptive of a non-elastic type cushioning system. Data from drops 2 though 5 typically appeared descriptive of an elastic closed cell cushioning material. Comparison of predicted drops did show changes in cushion behavior with environmental change. While some predicted drops ranged in acceleration level by over 60% for a specific drop, linear regression showed that the overall statistical differences were not significant. Results of this study indicate that EPLA foam behaved inconsistently during first impact and cushioning properties were not statistically changed by temperature and humidity. It should be noted that predicted acceleration levels were reported with high percent differences between environments. However, the stress energy equations were not statistically different.
机译:本研究研究了发泡聚乳酸缓冲泡沫及其调理环境对其减震性能的影响。自1960年代以来,就已经可以使用聚乳酸作为聚合物。直到最近,才对聚合物进行了改性以允许发泡。这种材料对工业的意义在于其可持续性。随着全球意识达到历史最高水平,对可持续材料的需求正在上升。 PLA推动EPLA适应的结果。这项研究是同类研究中的第一个,它通过表征EPLA的缓冲性以及研究温度和湿度对材料的影响。为了描述这种材料,在从冷冻到热带的六个环境条件下,分别为两种密度创建了缓冲曲线。使用ASTM D 1596收集数据,并使用应力能方法合并以创建缓冲曲线。然后使用线性回归比较所得的缓冲曲线。还比较了用创建的缓冲曲线预测的加速度。应力能量方程的线性回归结果表明,在六种不同的环境条件下,EPLA之间无统计学差异。对于2.8 pcf和3.7 pcf的材料都是如此。计算应力能量方程时,观察到液滴1和2的相关性较低。这些低相关性是材料性能变化的结果。当研究冲击脉冲时,材料的第一冲击行为描述了非弹性类型的缓冲系统。来自液滴2至5的数据通常表现出弹性闭孔缓冲材料的描述。预测下降的比较确实显示了缓冲行为随环境变化的变化。对于某些特定的下降,某些预测的下降加速度范围超过60%,而线性回归表明总体统计差异并不显着。这项研究的结果表明,EPLA泡沫在第一次撞击过程中的表现不一致,并且缓冲性能并未随温度和湿度的变化而统计变化。应当注意,报告的预测加速度水平在环境之间存在较高百分比差异。但是,应力能方程在统计上没有差异。

著录项

  • 作者

    Szymanski, Jason.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Packaging.;Engineering Environmental.
  • 学位 M.S.
  • 年度 2010
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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