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用于复合材料增强的亚麻(L.)纤维:探索植物生长、细胞壁发育与纤维性能之间的联系

Flax ( L.) Fibers for Composite Reinforcement: Exploring the Link Between Plant Growth, Cell Walls Development, and Fiber Properties.

作者信息

Goudenhooft Camille, Bourmaud Alain, Baley Christophe

机构信息

IRDL, UMR CNRS 6027, Université de Bretagne Sud, Lorient, France.

出版信息

Front Plant Sci. 2019 Apr 3;10:411. doi: 10.3389/fpls.2019.00411. eCollection 2019.

Abstract

Due to the combination of high mechanical performances and plant-based origin, flax fibers are interesting reinforcement for environmentally friendly composite materials. An increasing amount of research articles and reviews focuses on the processing and properties of flax-based products, without taking into account the original key role of flax fibers, namely, reinforcement elements of the flax stem ( L.). The ontogeny of the plant, scattering of fiber properties along the plant, or the plant growth conditions are rarely considered. Conversely, exploring the development of flax fibers and parameters influencing the plant mechanical properties (at the whole plant or fiber scale) could be an interesting way to control and/or optimize fiber performances, and to a greater extent, flax fiber-based products. The first part of the present review synthesized the general knowledge about the growth stages of flax plants and the internal organization of the stem biological tissues. Additionally, key findings regarding the development of its fibers, from elongation to thickening, are reviewed to offer a piece of explanation of the uncommon morphological properties of flax fibers. Then, the slenderness of flax is illustrated by comparison of data given in scientific research on herbaceous plants and woody ones. In the second section, a state of the art of the varietal selection of several main industrial crops is given. This section includes the different selection criteria as well as an overview of their impact on plant characteristics. A particular interest is given to the lodging resistance and the understanding of this undesired phenomenon. The third section reviews the influence of the cultural conditions, including seedling rate and its relation with the wind in a plant canopy, as well as the impact of main tropisms (namely, thigmotropism, seismotropism, and gravitropism) on the stem and fiber characteristics. This section illustrates the mechanisms of plant adaptation, and how the environment can modify the plant biomechanical properties. Finally, this review asks botanists, breeders, and farmers' knowledge toward the selection of potential flax varieties dedicated to composite applications, through optimized fiber performances. All along the paper, both fibers morphology and mechanical properties are discussed, in constant link with their use for composite materials reinforcement.

摘要

由于具有高机械性能和植物源性,亚麻纤维是用于环保复合材料的有趣增强材料。越来越多的研究文章和综述聚焦于亚麻基产品的加工和性能,却未考虑亚麻纤维原本的关键作用,即亚麻茎(亚麻属)的增强元件。植物的个体发育、纤维特性在植株上的分布,或植物生长条件很少被考虑。相反,探索亚麻纤维的发育以及影响植物机械性能(在整株植物或纤维尺度上)的参数,可能是控制和/或优化纤维性能以及在更大程度上优化亚麻纤维基产品的一种有趣方式。本综述的第一部分综合了关于亚麻植株生长阶段和茎生物组织内部结构的一般知识。此外,还综述了关于其纤维从伸长到增粗发育的关键发现,以解释亚麻纤维不寻常的形态特性。然后,通过比较草本植物和木本植物科学研究中的数据来说明亚麻的细长特性。在第二部分,给出了几种主要工业作物品种选择的现状。本节包括不同的选择标准以及它们对植物特性影响的概述。特别关注抗倒伏性以及对这种不良现象的理解。第三部分综述了栽培条件的影响,包括播种量及其与植物冠层中风的关系,以及主要向性(即向触性、感震性和向重力性)对茎和纤维特性的影响。本节阐述了植物适应的机制,以及环境如何改变植物的生物力学特性。最后,本综述探讨了植物学家、育种者和农民对于通过优化纤维性能来选择适用于复合材料应用的潜在亚麻品种的认识。在整篇论文中,都讨论了纤维形态和机械性能,并始终将它们与用于复合材料增强的用途联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea36/6456768/3059552d9986/fpls-10-00411-g001.jpg

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