Elasticity of Bamboo Fiber Variants from Brillouin Spectroscopy

Daniel R. Williams, D. J. Nurco, N. Rahbar, K. Koski
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引用次数: 8

Abstract

Abstract Bamboo is a fast growing biomaterial that is of great interest as a rapidly renewable structural building material. As such, knowledge of the elastic properties is crucial to its use. Using non-contact, non-invasive Brillouin spectroscopy, we measure the entire elastic stiffness tensor and determine the complete set of elastic moduli of six species of bamboo fiber variants. The Young’s moduli, bulk modulus, shear moduli, and Poisson’s ratios are determined and shown to scale linearly with fiber density. These results provide the first order elastic properties of several fiber variants of bamboo which is crucial to a thorough understanding of how species variation yields specific elastic properties thereby enabling a complex understanding of the properties of this unique biomaterial.
用布里渊光谱分析竹纤维的弹性
竹子是一种快速生长的生物材料,是一种快速可再生的建筑结构材料。因此,了解弹性特性对其使用至关重要。利用非接触、非侵入式布里渊光谱,测量了6种竹纤维变体的整个弹性刚度张量,并确定了其弹性模量的完整集合。杨氏模量、体积模量、剪切模量和泊松比被确定并显示与纤维密度成线性比例。这些结果提供了几种竹子纤维变体的一级弹性特性,这对于彻底理解物种变化如何产生特定弹性特性至关重要,从而能够复杂地理解这种独特生物材料的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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