纤维增强复合材料
- 网络Fiber-reinforced Composites;FrP;Fiber Reinforced Polymer;fiber reinforced plastics;CFRP
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纤维增强复合材料管在海洋石油工业中的应用影响因素及检测分析
Application influence factors and test analysis of FRP pipes in marine oil industry
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因此,开展例如纤维增强复合材料预应力混凝土结构等研究,为达到既提高工程的耐久性,又使纤维增强聚合物的强度得以充分发挥的工程应用之目的具有重要意义。
Therefore , it has great significance to develop some researches , for example , research on FRP prestressed concrete structure , in order to realize the aim of both improving the endurance of projects and making the most of the strength of FRP in project applying .
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SiC纤维增强复合材料基体裂纹偏移机理的有限元分析
Finite element analysis of matrix crack deflection mechanisms in fiber-reinforced composites
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疲劳对铝基SiC纤维增强复合材料界面性能影响
Effect of fatigue on interfacial shear strength of SiC fiber reinforced MMC
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PAN基碳纤维增强复合材料生产工艺及应用
Production process and application of PAN-based CFRP
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纤维增强复合材料(FRP)筋在土木工程中的应用
Application of FRP rebars in Civil Engineering
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纤维增强复合材料FRP和活性粉末混凝土RPC在土木工程领域中的研究与应用得到了飞速发展。
The study and application of FRP and RPC in civil engineering greatly increase at the present time .
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对非平面状3D织物(预制件)结构、型材及其织造技术进行了介绍,希望能为国内发展纤维增强复合材料用织物提供参考。
Introduces the structures and weaving technology of 3D fabric preforms with various shapes , which can be used as references to develop the fabrics for the reinforcement application .
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13m空心板梁用碳纤维增强复合材料(CFRP)加固后的可靠度分析
Reliability Analysis of 13m Hollow Plate Girder Strengthened with CFRP
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粘贴预应力纤维增强复合材料(FRP)片材对土木建筑结构进行加固和修复,可以提高工程效率,改善构件的受力状况。
Bonding prestressed FRPs ( Fiber-Reinforced Plates ) to strengthen and repair civil engineering structures improves the working efficiency and the force conditions of structures .
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纤维增强复合材料(FRP)在加固工程中的应用是土木工程研究热点之一。
The application of Fiber Reinforced Plastics ( FRP ) in reinforcement engineering is one of the most popular fields in the studies of civil engineering .
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相对于传统建筑材料,碳纤维增强复合材料(CFRP)具有轻质、高强、耐久性好和可设计性强的优点。
Compared to the traditional structural materials , a carbon fiber reinforced polymer ( CFRP ) has advantages of light-weight , high-strength , long-maintenance and designable .
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FRP(fiberreinforcedplastics)即纤维增强复合材料加固混凝土结构是近十年来在国内出现和发展起来的一种新型加固技术,是近年来科学研究和工程应用的热点。
Reinforcing concrete structures by FRP ( fiber reinforced plastics ) is a new reinforcement technology developed in China in the late decade , which becomes current hotspot on scientific research and engineering application .
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研究了短纤维增强复合材料(MMC)的蠕变损伤和失效的细观机理。
The mechanisms of the creep damage and the failure of the short fiber reinforced metal matrix composites ( MMCs ) have been investigated .
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在结构损伤部位的表面粘贴纤维增强复合材料(FRP)进行加固修复是一种先进的结构修补方法,已被越来越多的工程人员所青睐。
Adhesively bonded Fiber Reinforced Polymers ( FRP ) on the surface of the damaged structures is an advanced repair method , which has been accepted by more and more engineers .
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对单向纤维增强复合材料粘弹性问题的控制方程进行Laplace变换,在像空间中利用均匀化理论建立宏观松弛模量的Laplace变换与微结构描述参数以及变换参数间的关系。
After Laplace-transforming the governing equation of the viscoelastic problem of unidirectional fiber reinforced composite materials , the relaxation modulus in Laplace transformed space is obtained with homogenization method .
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纤维增强复合材料(FRP)由于其优越的材料性能,在航空航天、汽车、土木工程等领域得到越来越广泛的应用。
Fiber Reinforced Plastics ( FRP ) is widely used in aerospace industry , automobile area and civil engineering , owing to its excellent properties , such as high specific strength and modulus and its designability .
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本实验通过适量加入增韧剂和增容剂,较大提高了挤出的复合材料丝的韧性及力学性能,从而使制备出的短切玻璃纤维增强复合材料适用于熔融沉积制造(FDM)工艺。
The toughness and mechanical properties of the resultant composite filament from injection molding machine are improved so as to be used for FDM ( Fused Deposition Manufacturing ) process .
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该复合材料的延伸率低于基体合金,但仍可达到较高水平(>4%),高于Al2O3及SiC纤维增强复合材料。
The elongation of the composites is lower than that of the matrix , but it keeps a high level ( > 4 % ) and is higher than that of the composite reinforced with Al 2O 3 and SiC fibres .
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具有轻质、高强、耐腐蚀、耐疲劳等优良性能的碳纤维增强复合材料(CFRP)引起了土木工程界的广泛重视和兴趣。
For its good performances , such as light weight , high strength , good corrosion resistance and fatigue resistance , Carbon Fiber Reinforced Polymer ( CFRP ) has caught the attention and interest of the civil engineering realm .
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碳纤维增强复合材料横向模量E2和E3的计算值也和实验结果完全吻合,而玻璃纤维/环氧横向模量E2、E3的计算值却比实测值偏小约10%~25%。
The E2 , E3 for carbon-fiber reinforced composites coincide with the experimental results excellently . However , for glass-fiber reinforced epoxy composite , the computation results of E2 , E3 are about l0 ~ 25 percent lower .
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根据质心运动定理导出了非惯性系下两端支承的倾斜纤维增强复合材料传动轴的弯曲振动方程,用Galerkin法求得方程的解。
Based on theorem of the motion for center of mass , a bending vibration equation for a tilting fiber composite transmission shaft with two supports was derived under a non-inertial system , and its solution was obtained by the Galerkin method .
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环氧树脂的力学性能影响着不同纤维增强复合材料的纵向压缩破坏特征,当复合材料发生Kinking破坏时,其压缩强度降低。
The mechanical properties of epoxy resins could influence the vertical compression failure characteristics of the composites . When the were subjected to " Kinking " fal ure , their compression strength would be decreased .
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碳纤维增强复合材料含孔层合板损伤破坏分析研究进展
Advances in Damage Analysis for Carbon Fiber-reinforced Composite Laminates with Hole
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传统织机上纤维增强复合材料三维预型件的织造
Weaving of 3-Dimensional Preforms for Fibre Reinforced Composites on Conventional Looms
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纵向变形协调时纤维增强复合材料的横向模量分析
Analysis about Transverse Modulus of Fibrous Composites form Longitudinal Deformation Compatibility
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纤维增强复合材料的冲击拉伸力学性能
The Researches on Fiber - Reformed Composites Impact Tensile Performance
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纤维增强复合材料结构阻尼研究进展
Advances in damping analysis and design of fiber reinforced composite material structures
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短纤维增强复合材料纤维和界面层残余热应力分析
A short fiber reinforced composition and interface residual stress analysis
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纤维增强复合材料电机护环的研制
The manufacturing methods of fibers-reinforced composites retaining rings for generator