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多层软包装回收材料的可靠性和机械性能

Reliability and Mechanical Properties of Materials Recycled from Multilayer Flexible Packages.

作者信息

Antón Natividad, González-Fernández Álvaro, Villarino Alberto

机构信息

Department of Construction and Agronomy, Materials Science and Metallurgical Engineering Area, High Polytechnic School of Zamora, University of Salamanca, Avda. Requejo 33, 49022 Zamora, Spain.

Department of Construction and Agronomy, Construction Engineering Area, High Polytechnic School of Ávila, University of Salamanca, Hornos Caleros, 50, 05003 Ávila, Spain.

出版信息

Materials (Basel). 2020 Sep 9;13(18):3992. doi: 10.3390/ma13183992.

Abstract

Present work proposes a recycling form of multilayer food packages to avoid their incineration, landfill of wastes or re-using of their individual components. The manufacturing process of the material consists of binding several sheets by the non-simultaneous application of temperature and pressure, these being bound by the fusion of the polyethylene, without any other adhesives. The influence of elected variables (temperature, pressure, time and number of sheets) on the mechanical properties is determined. Bending tests in three points were carried out, with the purpose of obtaining flexural strength and flexural modulus. Finally, the reliability was determined through the method of Weibull using different failure estimators for the most appropriate materials (relative to flexural strength and porosity values). Light microscopy to obtain information about defectology before and after tests was used. The results obtained by this type of material are very similar to those presented by wood-based materials and present good reliability from the strength point of view.

摘要

目前的工作提出了一种多层食品包装的回收形式,以避免其被焚烧、填埋或对其单个组件进行再利用。该材料的制造过程包括通过非同时施加温度和压力来粘结几张薄片,这些薄片通过聚乙烯的融合而粘结在一起,无需任何其他粘合剂。确定了所选变量(温度、压力、时间和薄片数量)对机械性能的影响。进行了三点弯曲试验,目的是获得弯曲强度和弯曲模量。最后,通过威布尔方法,使用不同的失效估计器对最合适的材料(相对于弯曲强度和孔隙率值)确定可靠性。使用光学显微镜获取测试前后有关缺陷学的信息。这种材料获得的结果与木质材料的结果非常相似,并且从强度角度来看具有良好的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b648/7560011/64d63af136fe/materials-13-03992-g001.jpg

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