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Mechanical and Morphostructural Characteristics of Composite Materials Performed by Recycling Mixed Waste of Plastic and Paper

机译:通过回收塑料和纸张混合垃圾进行复合材料的机械和形态学特性

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摘要

In order to evaluate the possibility of reuse of some mixed waste from plastic and paper, composite samples of both HDPE and PP basis were made with different filler contents of crushed postage envelope waste. From the morphostructural characterization (SEM images) of the samples obtained it was observed that the HDPE and PP samples had had a homogeneous single-phase structure in contrast to the composite samples with filler from mixed plastic and paper waste. The latter, have a biphasic heterogeneous structure in which the cellulose particles are uniformly distributed. Determinations performed through the dielectric spectroscopy technique indicated that the cellulose content of the composite samples leads to a systematic increase of the dielectric losses (up to about 40% for the HDPE samples, respectively about 30% for the samples with PP), the increases being in direct correlation with the cellulose content of the composite.Mechanical determinations have shown that the average values of tensile strength recorded on the achieved samples, systematically decrease at the increase in the chips content of the samples decreases up to 10% at an addition up to 15% chips from the waste are explained by the substantially lower mechanical strength of waste paper than that of the HDPE, respective PP.
机译:为了评估从塑料和纸张中重用一些混合废物的可能性,用不同的填充物包络废物的不同填充物含量进行HDPE和PP的复合样品。从所获得的样品的样品(SEM图像)观察到,观察到HDPE和PP样品与具有来自混合塑料和纸废物的填充物的复合样品相比,HDPE和PP样品具有均相单相结构。后者具有双相异质结构,其中纤维素颗粒均匀分布。通过介电光谱技术进行的测定表明,复合样品的纤维素含量导致介电损耗的系统增加(HDPE样品最高约40%,分别为具有PP的样品约30%),增加存在与复合材料的纤维素含量直接相关。已经表明,记录在所达到的样品上的拉伸强度的平均值,在样品的芯片含量的增加下系统地降低至10%,加入最多10%废纸的15%碎片来自废纸的机械强度大于HDPE的基本上较低,相应的PP。

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