3D纤维增强复合材料的结构对力学性能的影响  被引量:3

Influence of Structures of Fiber 3D Composites on Their Mechanical Properties

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作  者:雷忆三[1] 陈佳[1] 张瑞刚[1] 王富强[1] 闫丽丽[1] 

机构地区:[1]中国电子科技集团公司第33研究所,山西太原030006

出  处:《材料开发与应用》2012年第5期37-41,共5页Development and Application of Materials

基  金:总装预研基金资助项目(9140A31030110JB3403)

摘  要:研究了树脂基镀镍碳纤维3D复合材料的不同结构,包括三维五向、正交三向结构对3D复合材料拉伸性能和冲击性能的影响。进行了两种试件力学性能的测定,结果表明,三维五向3D复合材料和正交三向3D复合材料都能达到高的力学性能,在纤维体积含量相近的情况下,三维五向3D复合材料的拉伸强度和冲击强度较正交三向3D复合材料高,拉伸强度可达920 MPa、冲击强度达150 KJ/m2。通过对编织结构的设计,可以设计3D复合材料的性能。In this paper,the mechanical properties of resin based nicked plated carbon fiber 3D composite materials with different structures are investigated,including the effects of 3D five-direction and 3D three orthogonal braiding composites on tensile strength and impact strength of the composite.Mechanical properties test results indicate that two kinds of specimens,both five-direction braiding composites and three orthogonal braiding composites achieve high mechanical properties,and the tensile strength and impact strength of 3D five-direction braiding composites are higher than that of 3D three orthogonal braiding composites,and the tensile strength of 3D five-direction composite reaches to 920MPa,the impact strength reaches to 150 kJ/m2.The mechanical properties of 3D braiding composites are determined by their designed braiding structure.

关 键 词:3D复合材料 三维五向 正交三向 力学性能 

分 类 号:TB332[一般工业技术—材料科学与工程]

 

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