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层数与碳纤维方向对木质-碳纤维复合材料声学振动性能的影响 被引量:9
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作者 吕晓东 苗媛媛 +4 位作者 林斌 张元梓 高源 刘乾 刘镇波 《林业工程学报》 北大核心 2018年第4期96-101,共6页
为探究木质-碳纤维复合材料声学振动性能的影响因素及其用作乐器用木材替代材料的可行性,从复合材料层数结构和碳纤维铺设方向两个角度出发,对木质-碳纤维复合材料试件的声学振动性能参数(比动弹性模量、E/G、声阻抗等)进行对比分析,并... 为探究木质-碳纤维复合材料声学振动性能的影响因素及其用作乐器用木材替代材料的可行性,从复合材料层数结构和碳纤维铺设方向两个角度出发,对木质-碳纤维复合材料试件的声学振动性能参数(比动弹性模量、E/G、声阻抗等)进行对比分析,并以常用作乐器音板材料的美国西加云杉作为参照。结果表明,碳纤维方向对复合材料的声学振动性能影响显著,当碳纤维铺设方向从0°到45°,90°时,其声学振动参数比动弹性模量和E/G值都出现不同程度的下降;层数结构对复合材料的音色品质影响较大,当层数从5层增加到7层后,音色品质明显下降。采用层数较少的5层结构(单板/碳纤维布/单板/碳纤维布/单板)和碳纤维方向为0°的铺层设计能获得综合表现较好的声学振动性能,其比动弹性模量为25.55 GPa·cm^3/g,比美国西加云杉比动弹性模量25.98GPa·cm^3/g仅低1.66%,而其E/G值(27.89)甚至比美国西加云杉E/G值(20.14)高38.48%,具有媲美美国西加云杉的音色表现。 展开更多
关键词 碳纤维 复合材料 碳纤维方向 层数结构 比动弹性模量
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云杉属木材密度与声学特性参数之间关系的研究 被引量:14
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作者 沈隽 刘一星 +2 位作者 田站礼 冈野健 和田昌久 《华中农业大学学报》 CAS CSCD 北大核心 2001年第2期181-184,共4页
关键词 云杉属 木材密度 声学特性参数 乐器材 比动弹性模量 损耗角正切
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Experimental study on mechanical properties of basalt fiber-reinforced silty clay 被引量:3
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作者 JIA Yu ZHANG Jia-sheng +3 位作者 WANG Xuan DING Yu CHEN Xiao-bin LIU Tao 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1945-1956,共12页
Fiber reinforcement technology can significantly improve the mechanical properties of soil and has been increasingly applied in geotechnical engineering.Basalt fiber is a new kind of environment-friendly and highperfo... Fiber reinforcement technology can significantly improve the mechanical properties of soil and has been increasingly applied in geotechnical engineering.Basalt fiber is a new kind of environment-friendly and highperformance soil reinforcement material,and the mechanical properties of basalt fiber-reinforced soil have become a hot research topic.In this paper,we conducted monotonic triaxial and cyclic triaxial tests,and analyzed the influence of the fiber content,moisture content,and confining pressure on the shear characteristics,dynamic modulus,and damping ratio of basalt fiber-reinforced silty clay.The results illustrate that basalt fiber can enhance the shear strength of silty clay by increasing its cohesion.We find that the shear strength of reinforced silty clay reaches its maximum when the fiber content is approximately 0.2%and the moisture content is 18.5%(optimum moisture content).Similarly,we also find that the dynamic modulus that corresponds to the same strain first increases then decreases with increasing fiber content and moisture content and reaches its maximum when the fiber content is approximately 0.2%and the moisture content is 18.5%.The dynamic modulus is positively correlated with the confining pressure.However,the change in the damping ratio with fiber content,moisture content,and confining pressure is opposite to that of the dynamic modulus.It can be concluded that the optimum content of basalt fiber for use in silty clay is 0.2%.After our experiments,we used scanning electron microscope(SEM)to observe the microstructure of specimens with different fiber contents,and our results show that the gripping effect and binding effect are the main mechanisms of fiber reinforcement. 展开更多
关键词 basalt fiber-reinforced silty clay shear behavior dynamic modulus damping ratio optimum fiber content
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