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Recent advances in mechanical properties of biopolymer composites: a review

机译:生物聚合物复合材料力学性能的最新进展:综述

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In recent years, biopolymers are getting wide attention with the perspective of developing high-performance biocomposites with low environmental impact owing to their unique and useful features such as abundant availability, renewability, eco-friendliness and lightweight. Biopolymer composites are expected to replace many conventional materials in optical, biological, and engineering applications as the investment and research on these materials increase substantially. The desired properties of biopolymer composites can be achieved by blending an appropriate biopolymer with suitable additives, which pave the way for polymer-filler interaction. A variety of parameters such as chemical composition, degradation kinetics and mechanical properties of biopolymer composites can be tailored according to the application needs. The interfacial interactions between the biopolymer and the nanofiller have a significant effect on the mechanical properties of biopolymer composites. The present review is focused on the recent advances in the mechanical properties of various biopolymer composites. In the first part of this review, the unfamiliar mechanical characterization techniques such as fatigue test, nanoindentation and nondestructive testing of biopolymer composites have been discussed. In the later part, the various popular processing techniques of biocomposite fabrication have been discussed. In addition, in the conclusion section, few challenges associated with the processing and mechanical performance of biopolymer composites have been described.
机译:近年来,生物聚合物通过开发高性能生物复合材料的观点来广泛关注,由于其独特的可用性,可再生能力,生态友好和轻量级,开发具有低对环境影响的高性能生物复合材料。预计生物聚合物复合材料将替代光学,生物和工程应用中的许多常规材料,因为对这些材料的投资和研究大幅增加。通过将适当的生物聚合物与合适的添加剂混合,可以实现生物聚合物复合材料的所需性质,该添加剂为聚合物填充物相互作用铺平了方法。可以根据应用需求来定制各种参数,如化学成分,降解动力学和生物聚合物复合材料的机械性能。生物聚合物和纳米填充物之间的界面相互作用对生物聚合物复合材料的机械性能具有显着影响。本综述专注于各种生物聚合物复合材料的机械性能的最新进展。在本综述的第一部分中,已经讨论了诸如疲劳试验,纳米内狭窄和无损检测的生物聚合物复合材料的不熟悉的机械表征技术。在后面的部分中,已经讨论了生物复合材料制造的各种流行的处理技术。另外,在结论部分中,已经描述了与生物聚合物复合材料的加工和机械性能相关的若干挑战。

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