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Study on the compatible interface of bamboo fiber/polylactic acid composites by in-situ solid phase grafting

机译:用原位固相接枝研究竹纤维/聚乳酸复合材料的相容界面

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The in-situ reactive interfacial compatibilization and properties of polylactic acid-g-bamboo fiber (PLA-g-BF)/polylactic acid (PIA) composites, produced by blending with a three-component plasticizer, glycerol/formamide/tributyl citrate, were investigated. The PLA-g-BF/PLA composites were characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD), differential scanning calorimeter (DSC), thermal gravimetric analyzer (TGA) and rotational rheometer, and the bending, tensile, and water resistance properties were also tested. The bending strength and elongation at break of PLA-g-BF/PLA composite reached 35.6 MPa and 5.59%, which increased by 19.3% and 30.1% relative to the ungrafted composites. The initial contact angle of the PLA-g-BF/PLA composite was 74.3 degrees, which was larger than that of the ungrafted composite (41.2 degrees), and the water absorption ratio reached 4.3% after 24 h, which was less than the unmodified material (6.1%). SEM results showed that PIA matrix showed smooth surfaces and the interfacial adhesion between modified BF and matrix PLA was greatly improved after grafting modification. The crystal structure results proved that the grafting treatment of BF strengthened the interfacial interactions between the filler BF and matrix PLA, and reduced the mobility of PLA molecular chain. The rotational rheometer illustrated that the initial storage modulus of PLA-g-BF/PLA composites was the largest and decreased slowly, which improved the processing properties of composites. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过与三组分增塑剂,甘油/甲酰胺/柠檬酸丁酯共混制备的聚乳酸-G-竹纤维(PLA-G-BF)/聚乳酸(PIA)复合材料的原位反应性界面相容性和性能调查。通过扫描电子显微镜(SEM),X射线衍射(XRD),差示扫描量热计(DSC),热重分析仪(TGA)和旋转流变仪,以及弯曲,拉伸,旋转流量计,以及弯曲,拉伸,旋转流变仪,表征PLA-G-BF / PLA复合材料。还测试了耐水性。 PLA-G-BF / PLA复合材料断裂的弯曲强度和伸长率达到35.6MPa和5.59%,相对于未移植的复合材料增加了19.3%和30.1%。 PLA-G-BF / PLA复合材料的初始接触角为74.3度,比未移植复合材料(41.2度)大,水吸收率达到4.3%,但小于未修饰材料(6.1%)。 SEM结果表明,在接枝修饰后,PIA基质显示出平滑的表面,改性BF和基质PLA之间的界面粘附大大提高。晶体结构结果证明,BF的接枝处理强化了填料BF和基质PLA之间的界面相互作用,并降低了PLA分子链的迁移率。旋转流变仪示出了PLA-G-BF / PLA复合材料的初始储存模量是最大的并且缓慢降低,这改善了复合材料的加工性能。 (c)2019 Elsevier B.v.保留所有权利。

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