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Mechanical properties and water absorption behaviour of PLA and PLA/wood composites prepared by 3D printing and injection moulding

机译:三维印刷和注射成型制备PLA和PLA /木质复合材料的机械性能和吸水性

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Purpose This papers aims to study the influence of water absorption on the mechanical properties of poly lactic acid (PLA) and PLA/Wood composites. Virgin PLA and PLA/Wood double-bone-shaped specimens were prepared by two methods: injection moulding and 3D printing. The results were compared to each other and showed the influence of the production method on the properties of the produced parts. Design/methodology/approach Morphology studies were done by scanning electron microscopy (SEM) from fracture surfaces of tensile and notched impact specimens of all samples. Tensile properties were analysed by the production and testing of dog-bone-shaped samples. Heat deflection temperature (HDT) was tested, as also was the crystallinity of the tested samples by differential scanning calorimetry. Findings The values for notched impact strength were higher upon water uptake in the case of injection-moulded specimens, which was not the case with 3D-printed specimens. Tensile properties of the specimens produced by both methods were reduced after water absorption tests. Values of the HDT were also lower after water absorption tests studied for both processing methods. Originality/value Morphology studies were done by SEM from fracture surfaces of tensile as well as notched impact specimens of injection-moulded and 3D-printed samples. The effect of water storage on various samples was tested. The two different production technologies were compared to each other owing to their influence of water storage. This study also dealt with NFC compounds and produced NFC composites and the influence of water storage on these samples.
机译:目的本文旨在研究吸水对多乳酸(PLA)和PLA /木复合材料的力学性能的影响。维珍PLA和PLA /木双骨形样品由两种方法制备:注塑和3D印刷。结果彼此比较,并显示了生产方法对所产生部件性能的影响。通过扫描电子显微镜(SEM)从所有样品的拉伸和缺口冲击标本的断裂表面扫描电子显微镜(SEM)来完成设计/方法/方法。通过生产和测试对狗骨形样品进行分析的拉伸性能。测试热偏转温度(HDT),也是通过差示扫描量热法的测试样品的结晶度。在注塑试样的情况下,在水吸收时,缺口冲击强度的值较高,这不是3D印刷样本的情况。在吸水测试后,通过两种方法产生的样品的拉伸性能降低。除了处理方法的吸水试验后,HDT的值也降低。来自拉伸裂缝以及注塑和3D印刷样品的缺口冲击标本,通过SEM通过SEM完成原创性/值形态学研究。测试了储水对各种样品的影响。由于它们对储水的影响,彼此相互比较了两种不同的生产技术。该研究还处理NFC化合物并产生NFC复合材料和储水对这些样品的影响。

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