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Effect of Fique Fibers in the Behavior of a New Biobased Composite from Renewable Mopa-Mopa Resin

机译:Fique纤维在可再生MOPA-MOPA树脂中新型生物复合材料行为的影响

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摘要

A fully biobased composite was developed using a natural resin from the plant, known as reinforced with fique fibers. Resin extraction was through solvent processing reaching an efficient extraction process of 92% and obtaining a material that acted as a matrix without using any supplementary chemical modifications as it occurs with most of the biobased resins. This material was processed by the conventional transform method (hot compression molding) to form the plates from which the test specimens were extracted. From physicochemical and mechanical characterization, it was found that the resin had obtained a tensile strength of 15 MPa that increased to values of 30 MPa with the addition of 20% of the fibers with alkalization treatment. This behavior indicated a favorable condition of the fiber-matrix interface in the material. Similarly, the evaluation of the moisture adsorption in the components of the composite demonstrated that such adsorption was mainly promoted by the presence of the fibers and had a negative effect on a plasticization phenomenon from humidity that reduced the mechanical properties for all the controlled humidities (47%, 77% and 97%). Finally, due to its physicochemical and mechanical behavior, this new biobased composite is capable of being used in applications such as wood–plastic (WPCs) to replace plastic and/or natural wood products that are widely used today.
机译:使用来自的天然树脂开发完全生物化的复合材料 植物,称为用纤维增强。树脂萃取是通过溶剂加工达到92%的有效提取过程,并获得作为基质的物质而不使用任何补充化学修饰,因为它与大多数生物化树脂发生。通过常规的变换方法(热压缩成型)处理该材料以形成萃取试样的平板。从物理化学和机械表征,发现树脂已经获得了15MPa的拉伸强度,其增加到30MPa的值,并加入20%的纤维具有碱化处理。该行为表示了材料中光纤矩阵界面的有利条件。类似地,在复合材料的组分中对水分吸附的评价证明了这种吸附主要通过纤维的存在而促进,并且对来自湿度的塑化现象具有降低所有受控湿度的机械性能的塑化现象(47 %,77%和97%)。最后,由于其物理化学和机械行为,这种新的生物化复合材料能够用于诸如木塑(WPC)的应用中,以取代今天广泛使用的塑料和/或天然木制品。

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