Atomic force microscopy-based nanomechanical characterization of kenaf fiber

材料科学 复合材料 弹性模量 纳米压痕 纤维 红麻 模数 杨氏模量
作者
M Subbir Parvej,Xinnan Wang,Joseph Fehrenbach,Chad A. Ulven
出处
期刊:Journal of Composite Materials [SAGE Publishing]
卷期号:54 (15): 2065-2071 被引量:6
标识
DOI:10.1177/0021998319892073
摘要

Kenaf ( Hibiscus cannabinus L.) fiber is being extensively used as a reinforcement material in composites due to its excellent mechanical properties. To use this fiber more efficiently, it is necessary to understand its mechanical properties at micro/nano meter scale. Despite the evidence of some past studies to determine the elastic modulus of kenaf fiber, most of them were performed on fiber bundles. Bundle-based method to find the elastic moduli has some obvious issues of foreign materials being present, incorrect gauge length, and sample diameter due to void spaces. These issues pose as obvious hurdles to determine the elastic modulus accurately. In this study, individual kenaf micro fiber was used to find elastic modulus in the radial direction. The radial elastic modulus of the fiber was characterized by atomic force microscopy-based nanoindentation. To determine the radial elastic modulus from the force versus sample deformation data, the extended Johnson–Kendall–Roberts model was used which considered adhesion force from the fiber surface. The radial elastic modulus of the kenaf fiber was found to be 2.3 GPa.
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