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Nanomechanical and Topochemical Changes in Elm Wood from Ancient Timber Constructions in Relation to Natural Aging

机译:古代木材结构榆木的纳米力学和拓扑化学变化与自然老化的关系

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摘要

Knowledge of properties of building materials affected by aging is of great importance to conserve cultural heritages or replace their biopolymer components. The objective of the study was to investigate the chemical characterization change in the biopolymer components and identify whether these changes are correlated with alterations in the nanomechanical properties of the wood cell wall bio-composites in relation to natural aging. The effects of natural aging on the elm (Ulmus) wood component (dated from 1642 to 1681) of Chenghuang Temple, an ancient timber construction in China were investigated to understand the chemical and mechanical changes in the wood cell wall. Especially, confocal Raman microscopy and nanoindentation (NI) were used to track changes in the chemical structure and nanomechanical properties. The results showed that the morphological, chemical and physical properties of cell walls changed with aging. After aging, the cell structure showed evidential alternations, and the wood components, especially hemicellulose and lignin, were degraded, leading to deterioration of mechanical properties of aged wood compared with normal wood. Morphology deterioration and micromechanical changes only occurred on the surface with the depth of about 3.6 mm of the aged element. This study would be helpful to provide practical guidance for protecting the apparent performance of ancient timber structures.
机译:了解受老化影响的建筑材料的特性对于保护文化遗产或替换其生物聚合物成分非常重要。这项研究的目的是调查生物聚合物成分中的化学表征变化,并确定这些变化是否与木材细胞壁生物复合材料的纳米机械性能与自然老化有关的变化有关。研究了自然老化对中国古代木结构城皇庙的榆木(榆树)(1642年至1681年)的影响,以了解木格壁的化学和机械变化。特别是,共焦拉曼显微镜和纳米压痕(NI)用于跟踪化学结构和纳米力学性能的变化。结果表明,细胞壁的形态,化学和物理性质随老化而变化。老化后,细胞结构表现出明显的交替,并且木材组分,特别是半纤维素和木质素被降解,与普通木材相比导致老化木材的机械性能劣化。形态恶化和微机械变化仅发生在表面深度约为老化元素3.6 mm的表面上。这项研究将为保护古代木结构的表观性能提供实用指导。

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