Design and Stiffness-Damping Optimizatino of Hybrid Coomposite Laminated Structures
Design and Stiffness-Damping Optimizatino of Hybrid Coomposite Laminated Structures
批准号:
1200506
负责人:
Marwan Al-Haik
金额:
$18.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-15 至 2015-07-31
中文摘要
该项目旨在开发、优化和验证具有优异阻尼和刚度特性的层压混杂复合材料。由商用碳纤维和表面生长碳纳米管(CNTs)组成的混杂复合材料为纤维增强复合材料(FRP)提供了有吸引力的替代品,并且为原始CNTs复合材料提供了更便宜的替代品。混合复合材料还包含氧化钒(VO2),其在由振动引起的热环境中表现出负刚度行为。我们预计混合复合材料获得高比刚度由于碳纳米管?提高刚度(TPa水平),同时通过VO2的负刚度以及固有的基质粘弹性阻尼特性获得增强的阻尼。 将采用有限元方法和多目标优化环境来优化混合复合材料的拓扑结构,以产生上级刚度和阻尼特性。 去验证混合复合材料?动力学性能,实验室控制振动测试将进行,以利用其对特定激励的反应。这些测试的数据分析将用于表征和识别振动系统参数(阻尼,刚度和非线性参数)。振动可能会损害结构部件FRP的安全性和耐久性。尽管其具有吸引人的机械性能,但FRP的低厚度机械性能限制了其在结构中的应用,以减轻平面外动态载荷。所开发的具有增强阻尼的混杂复合材料对利用FRP的应用产生了影响,例如商用和军用飞机框架(例如,波音787梦想飞机),船舶,汽车工业,基础设施和体育用品。 考虑到FRP在民用基础设施(桥梁、立柱等)中的新兴应用。所开发的材料提供了一种有吸引力和实用的解决方案,以减轻随机振动,例如地震中遇到的随机振动,它们还可以延长这些结构的疲劳寿命。该项目的教育部分将有利于弗吉尼亚理工大学(VT)工程学院的三个系。现有的一门研究生课程将进行修订,以包括基于项目任务的理论和实践模块。一名研究生将参与混合复合材料的合成,制造,表征,拓扑优化,振动测试和参数识别的实践,以获得博士学位。℃下
英文摘要
This project aims at developing, optimizing and validating laminated hybrid composites that possess excellent damping and stiffness properties. The hybrid composites comprising both commercial carbon fibers and surface-grown carbon nanotubes (CNTs) offer attractive alternative to fiber reinforce composites (FRPs) and cheaper alternative to pristine CNTs composites. The hybrid composites also incorporate vanadium oxide (VO2) that exhibits a negative stiffness behavior in thermal environments induced by vibrations. We anticipate the hybrid composite to acquire high specific stiffness due to the CNTs? elevated stiffness (TPa level) while gaining enhanced damping through the negative stiffness of VO2 together with the inherent matrix viscoelastic damping properties. Finite element methods and multi-objective optimization environment will be employed to optimize the topology of the hybrid composites to yield superior stiffness and damping properties. To validate the hybrid composites? dynamics performance, laboratory controlled vibration tests will be carried out to exploit their responses to specific excitations. The analysis of data from these tests will be used for characterization and identification of the vibrating system parameters (damping, stiffness and nonlinear parameters).Vibrations can compromise the safety and durability of structural components FRPs. Despite their attractive mechanical properties, the low through-thickness mechanical properties of FRPs have restricted their application in structures to mitigate out-of plane dynamic loads. The developed hybrid composites with enhanced damping have an impact on applications that utilize FRP such as commercial and military aircraft frames (ex. Boeing 787 Dreamliner), ship vessels, auto industries, infrastructures and sport goods. Considering the emerging applications of FRPs in civil infrastcrtures (bridges, columns, etc..) the developed materials offer an attractive and practical solution to mitigate random vibrations such as those encountered in earthquakes also they can extend the fatigue life of these structures. The educational components of the project will benefit three departments in the Virginia Tech (VT) College of Engineering. One existing graduate courses will be revised to include both theoretical and hands-on modules based on the project tasks. One graduate student will participate hands-on in the synthesis, fabrication,characterization, topological optimization, vibration testing and parametric identification of the hybrid composites toward a Ph.D. degree.
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Novel Structural Composites Using Surface Grown Carbon Nanotubes
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批准号:0800249
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项目类别:Standard Grant
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资助金额:$23.15万
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财政年份:2008
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负责人:Marwan Al-Haik
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依托单位:
NUE: An Integrated Multidisciplinary Nanotechnology Undergraduate Education Program at the University of New Mexico
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批准号:0741525
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项目类别:Standard Grant
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资助金额:$0.0万
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财政年份:2008
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负责人:Marwan Al-Haik
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依托单位:
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批准号:31900962
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项目类别:青年科学基金项目
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批准年份:2019
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负责人:陈佳林
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基质硬度(Stiffness)调控血管内皮祖细胞分化及在组织工程血管化中的应用
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批准号:81771125
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项目类别:面上项目
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资助金额:56.0万元
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批准年份:2017
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负责人:蔡潇潇
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