当前位置: X-MOL 学术Polym. Test. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
A state-of-the-art review on particulate wood polymer composites: Processing, properties and applications
Polymer Testing ( IF 5.1 ) Pub Date : 2020-09-01 , DOI: 10.1016/j.polymertesting.2020.106721
Mohammad Z.R. Khan , Sunil Kumar Srivastava , M.K. Gupta

Abstract In the present decade, the demands for recyclable, environmentally friendly and low-cost with good strength composites materials have been significantly increased. In this context, the particulate wood polymer composites have attracted the researchers owing to their eco-friendliness, low-cost as they are prepared using waste wood particles, and good mechanical and physical properties. These composites were prepared by filling the waste wood particles into the polymers using different fabrication methods such as extrusion, hand layup, compression moulding, injection moulding and additive manufacturing (3D printing). A good number of research works have been reported on the testing and characterization of wood composites for the various applications so far. This fact motivated to prepare a state-of-the-art review on the recent developments in processing, characterization, and applications of wood composites. This paper presents a discussion on the chemical structure and properties of different types of wood species. The mechanical, thermal and water absorption behaviour of thermosets, thermoplastics and biopolymers based wood composites have also been discussed. Further, characterization of the nano biocomposites prepared using nanocellulose/nanoparticles of wood are also presented. The outcomes of the present review provide a good understanding of wood composites that will encourage the researchers for further research works & developments of novel wood composites for the advanced applications.

中文翻译:

颗粒木聚合物复合材料的最新评论:加工、性能和应用

摘要 近十年来,对可回收、环保、低成本且强度好的复合材料的需求显着增加。在此背景下,颗粒状木材聚合物复合材料因其环保、使用废木颗粒制备而成的低成本以及良好的机械和物理性能而吸引了研究人员。这些复合材料是通过使用不同的制造方法(例如挤出、手糊、压缩成型、注塑和增材制造(3D 打印))将废木颗粒填充到聚合物中来制备的。迄今为止,已经有大量关于木材复合材料在各种应用中的测试和表征的研究工作。这一事实促使我们准备对木材复合材料的加工、表征和应用的最新发展进行最先进的审查。本文讨论了不同类型木材的化学结构和特性。还讨论了基于热固性塑料、热塑性塑料和生物聚合物的木质复合材料的机械、热和吸水行为。此外,还介绍了使用纳米纤维素/纳米木材颗粒制备的纳米生物复合材料的表征。本综述的结果提供了对木质复合材料的良好理解,这将鼓励研究人员进一步研究和开发用于高级应用的新型木质复合材料。本文讨论了不同类型木材的化学结构和特性。还讨论了基于热固性塑料、热塑性塑料和生物聚合物的木质复合材料的机械、热和吸水行为。此外,还介绍了使用纳米纤维素/纳米木材颗粒制备的纳米生物复合材料的表征。本综述的结果提供了对木质复合材料的良好理解,这将鼓励研究人员进一步研究和开发用于高级应用的新型木质复合材料。本文讨论了不同类型木材的化学结构和特性。还讨论了基于热固性塑料、热塑性塑料和生物聚合物的木质复合材料的机械、热和吸水行为。此外,还介绍了使用纳米纤维素/纳米木材颗粒制备的纳米生物复合材料的表征。本综述的结果提供了对木质复合材料的良好理解,这将鼓励研究人员进一步研究和开发用于高级应用的新型木质复合材料。还介绍了使用纳米纤维素/纳米木材颗粒制备的纳米生物复合材料的表征。本综述的结果提供了对木质复合材料的良好理解,这将鼓励研究人员进一步研究和开发用于高级应用的新型木质复合材料。还介绍了使用纳米纤维素/纳米木材颗粒制备的纳米生物复合材料的表征。本综述的结果提供了对木质复合材料的良好理解,这将鼓励研究人员进一步研究和开发用于高级应用的新型木质复合材料。
更新日期:2020-09-01
down
wechat
bug