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Mechanical and Thermal Properties of Polylactide (PLA) Composites Modified with Mg Fe and Polyethylene (PE) Additives

机译:用MgFe和聚乙烯(PE)添加剂改性聚丙酯(PLA)复合材料的机械和热性能

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摘要

In this article, polylactic acid-based composites reinforced with 5% of polyethylene, iron, and magnesium powders were prepared by extrusion and compressed under the pressure of about 10 MPa and characterized. These composites were mechanically, thermally, and morphologically evaluated. It was found, compared to the pure polylactic acid (PLA), an improvement in tensile strength (both σ and YS0.2) was obtained for the composite with the iron powder addition, while the magnesium powder slightly improved the ductility of the composite material (from 2.0 to 2.5%). Degradation studies of these composites in the 0.9% saline solution over a period of 180 days revealed changes in the pH of the solution from acidic to alkaline, in all samples. The most varied mass loss was observed in the case of the PLA-5%Mg sample, where initially the sample mass increased (first 30 days) then decreased, and after 120 days, the mass increased again. In the context of degradation phenomenon of the tested materials, it turns out that the most stable is the PLA composite with the Fe addition (PLA-5%Fe), with highest tensile strength and hardness.
机译:在本文中,通过挤出并在约10MPa的压力下挤出并在约10MPa的压力下压缩并压缩加强的基于聚酸基复合材料。这些复合材料是机械的,热和形态学评估的。发现与纯聚乳酸(PLA)相比,用铁粉加成得到抗拉强度(σ和yS0.2)的改善,而镁粉末略微提高复合材料的延展性(从2.0到2.5%)。在180天内,0.9%盐水溶液中这些复合材料的降解研究显示了所有样品中酸性至碱性的溶液的pH值的变化。在PLA-5%Mg样品的情况下观察到最多样化的质量损失,其中最初样品质量增加(前30天)然后减少,并且在120天后,质量再次增加。在测试材料的降解现象的背景下,首先是最稳定的是具有Fe添加(PLA-5%Fe)的PLA复合材料,具有最高的拉伸强度和硬度。

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