CAREER: Nanowire Interfaces for Increased Strength and Multifunctionality
CAREER: Nanowire Interfaces for Increased Strength and Multifunctionality
批准号:
0846539
负责人:
Henry Sodano
金额:
$0.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-07-01 至 2011-05-31
中文摘要
该职业研究和教育计划的目标是研究PI最近确定的新型陶瓷ZnO纳米线界面,以研究纳米线界面在纤维增强复合材料的力学和多功能性能中的作用。这项基础研究将发展一种理论,定义从纳米线界面属性到宏观响应的转换,并表征界面的破坏机制。实验和理论分析将用于研究界面的结构-性能关系及其对材料的影响。S力学和功能反应。这项研究的智力价值超越了碳纤维复合材料,具有潜在的科学发现,可以应用于连续和不连续纤维增强金属和陶瓷基复合材料。这一努力也可能导致对其他界面进行功能分级的新方法,例如在假肢和生物植入物中发现的那些方法,从而导致新的受生物学启发的界面,这些界面很少在两种机械性能截然不同的材料之间表现出离散的边界。将完成在界面中具有活性纳米级包裹体的复合系统建模的基本进展,从而导致该技术的未来应用,从自我监测生物植入物到能量收集结构。该职业计划的教育部分旨在将最先进的研究成果转移到课堂上,并通过针对中学到研究生水平的学生来提高工程专业的招聘和保留。一个家庭工程之夜(FEN)已经计划好了,它将包括亚利桑那州立大学四个少数民族学生群体的本科生,纳米和多尺度复合材料的研究驱动课程,以及一个强大的本科研究项目的延续。其目的是加强工程师的招聘和保留,包括少数民族和代表性不足的群体,并激励学生致力于终身学习和持续参与科学和工程领域。
英文摘要
The objective of this CAREER research and education plan is to study a novel ceramic ZnO nanowire interface recently identified by the PI to study the role of a nanowire interphase on the mechanical and multifunctional properties of a fiber reinforced composite. This fundamental study will develop a theory defining the translation of the properties from the nanowire interface to the macroscopic response and characterize the failure mechanism of the interface. Both experimental and theoretical analyses will be employed to study the structure-property relationships of the interface and their influence on the material?s mechanical and functional response. The intellectual merit of this research extends beyond carbon fiber composites with potential scientific findings that can be applied to continuous and discontinuous fiber reinforced metal and ceramic matrix composites. The effort may also lead to new methods for functionally grading other interfaces such as those found in prosthetics and biological implants leading to new biologically inspired interfaces which rarely exhibit discrete boundaries between two materials of vastly different mechanical properties. Fundamental advances in the modeling of composite systems with active nanoscale inclusions in the interphase will be accomplished, resulting in future applications of this technology, ranging from self-monitoring biological implants to energy harvesting structures.The educational component of this CAREER plan is designed to transfer state-of-the-art research to the classroom and enhance engineering recruitment and retention by targeting students from middle school to graduate level. A Family Engineering Night (FEN) has been planned which will incorporate ASU undergraduates from four minority student groups, a research-driven course in nano and multi-scale composites, and the continuation of a strong undergraduate research program. The purpose is to enhance recruitment and retention of engineers, including minorities and underrepresented groups, and motivate students to commit to a life-long process of learning and sustained involvement in science and engineering fields.
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依托单位:
CAREER: Nanowire Interfaces for Increased Strength and Multifunctionality
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财政年份:2007
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依托单位:
国内基金
海外基金
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批准号:--
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项目类别:--
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批准年份:2020
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依托单位: