Mechanical Properties of Cork Composite Boards Reinforced with Metal, Glass Fiber, and Carbon Fiber

Min-Seong Cha, So-Jeong Yoon, Jin-Ho Kwon, H. Byeon, Han-Min Park
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引用次数: 3

Abstract

For effective applicability of reinforced cork, cork composites reinforced with metal, glass fiber, and carbon fiber were developed, and the effects of the reinforcing materials on the mechanical properties of cork composites were investigated. The bending moduli of elasticity (MOE) of cork composites were in the 32.7–35.9 MPa range, while the bending strength values were in the 1.62–1.73 MPa range. The strength performance decreased in the order cork-metal > cork-carbon fiber > cork-glass fiber. The bending MOEs were improved by 29%–41% compared with simple cork boards, while the bending strengths of reinforced cork were 35%–45% higher. The strength performance significantly improved following the incorporation of thin mesh materials into the middle layer of the studied cork composites. The bending strains of the cork composites were remarkably higher compared with oak wood, making them promising for applications that require bending processing, such as curved jointing. The internal bond strengths of the cork composites were 0.26–0.44 MPa, approximately 0.36–0.60 times lower compared with medium-density fiber boards.
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金属、玻璃纤维和碳纤维增强软木复合板的机械性能
为了增强软木的有效适用性,开发了金属、玻璃纤维和碳纤维增强软木复合材料,并研究了增强材料对软木复合材料力学性能的影响。软木复合材料的弯曲弹性模量(MOE)在32.7–35.9 MPa范围内,而弯曲强度值在1.62–1.73 MPa范围内。强度性能下降的顺序为软木金属>软木碳纤维>软木玻璃纤维。与简单软木板相比,弯曲弹性模量提高了29%-41%,而增强软木的弯曲强度提高了35%-45%。在所研究的软木复合材料的中间层中加入薄网格材料后,强度性能显著提高。与橡木相比,软木复合材料的弯曲应变明显更高,这使其有望用于需要弯曲加工的应用,如弯曲连接。软木复合材料的内部粘结强度为0.26–0.44 MPa,与中密度纤维板相比约低0.36–0.60倍。
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来源期刊
Journal of the Korean wood science and technology
Journal of the Korean wood science and technology Materials Science-Materials Science (miscellaneous)
CiteScore
5.20
自引率
0.00%
发文量
32
期刊介绍: The Journal of the Korean Wood Science and Technology (JKWST) launched in 1973 as an official publication of the Korean Society of Wood Science and Technology has been served as a core of knowledges on wood science and technology. The Journal acts as a medium for the exchange of research in the area of science and technology related to wood, and publishes results on the biology, chemistry, physics and technology of wood and wood-based products. Research results about applied sciences of wood-based materials are also welcome. The Journal is published bimonthly, and printing six issues per year. Supplemental or special issues are published occasionally. The abbreviated and official title of the journal is ''J. Korean Wood Sci. Technol.''. All submitted manuscripts written in Korean or English are peer-reviewed by more than two reviewers. The title, abstract, acknowledgement, references, and captions of figures and tables should be provided in English for all submitted manuscripts.
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