Shape Memory Polymer Composites with Complex Fibre Architectures
Shape Memory Polymer Composites with Complex Fibre Architectures
批准号:
418533-2012
负责人:
Ayranci, Cagri
金额:
$1.68万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2013
资助国家:
加拿大
项目状态:
已结题
起止时间:
2013-01-01 至 2014-12-31
中文摘要
形状记忆聚合物(SMPs)可以存储临时形状,然后在施加外部刺激(如热)时恢复到原始形状。与其他形状记忆材料相比,smp具有重要的优势,例如重量轻、应变恢复能力高、更容易定制。相反,当以纯形式使用时,smp受到其固有的低机械性能和形状恢复力(SRF)的影响。对于可展开空间结构和微型飞行器等应用来说,这些都是需要改进的重要特性。这些缺点可以通过纤维增强smp来解决,以创建smp复合材料(smpc)。编织是一种广泛应用的结构复合预制体制造技术,它能够形成复杂的纤维结构,并能很好地控制纤维纱线的方向。本项目旨在研究编织增强smp复合材料(BSMPCs)。长期目标是通过详细和系统的实验和分析研究,显著提高对BSMPCs热机械性能的基本理解。未来五年三个短期目标(项目)的形式,提出了实现的长期目标:(1)描述的编织角的影响BSMPCs理解BSMPCs的行为,(2)开发的预测模型形变场BSMPCs属性(包括SRF),和(3)Field-activation BSMPCs提供的激活这些材料不仅在控制的实验室环境中,也在现实生活场景。这些项目的成功完成将使我们了解这些新型多功能复合材料所提供的优势,并将使我们更接近制定bsmpc的设计指南,从而最有效地利用这些材料。这将使加拿大成为多功能智能建筑的领先国家。这些结构的重要性被NSERC认可,因为它被列为NSERC战略项目资助的目标领域之一。该项目还将培养一批高素质人才,这些人才将成为加拿大工业/研究队伍的巨大资产。
英文摘要
Shape Memory Polymers (SMPs) can store a temporary shape and then be restored to their original shape upon application of an external stimulus, such as heat. SMPs offer important advantages over other shape memory materials, such as lightweight, high strain recover-ability, and easier tailorable properties. Conversely, when used in pure form, SMPs suffer from their inherent low mechanical properties and shape recovery forces (SRF). These are important properties that need to be improved for applications such as deployable space structures and micro aerial vehicles. These shortcomings can be addressed by fiber-reinforcing SMPs to create SMP-composites (SMPCs). Braiding is a widely used structural composite preform manufacturing technique that is capable of forming complex fibre architectures with excellent control over the fibre yarn orientation. This project aims to investigate braid-reinforced SMP-composites (BSMPCs). The long-term objectives are to significantly improve the fundamental understanding of the thermo-mechanical properties of BSMPCs via a detailed and methodical experimental and analytical investigation. For the next five years three short-term objectives (in the form of projects) are proposed to fulfill some of the long-term objectives: (1) Characterization of the effect of braid angle on BSMPCs to understand the behavior of BSMPCs, (2) Development of a predictive model for thermo-mechanical properties (including SRF) of BSMPCs, and (3) Field-activation of BSMPCs to provide means of activation of these materials not only in controlled laboratory environments but also in real life scenarios. Successful completion of these projects will lead to understanding the advantages offered by these new multifunctional composite materials and will bring us closer to develop design guidelines for BSMPCs that will allow the most effective use of these materials. It will put Canada forward as a leading country on multifunctional smart structures. Importance of these structures is recognized by NSERC as it is listed as one of NSERC Strategic Project Grants target areas. The project will also train a number of Highly Qualified Personnel that will be tremendous assets to Canadian industry/research workforce.
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会议论文
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项目类别:Discovery Grants Program - Individual
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资助金额:$1.68万
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依托单位:
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依托单位:
Shape Memory Polymer Composites with Complex Fibre Architectures
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批准号:418533-2012
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项目类别:Discovery Grants Program - Individual
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资助金额:$1.68万
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依托单位:
Shape Memory Polymer Composites with Complex Fibre Architectures
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批准号:418533-2012
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项目类别:Discovery Grants Program - Individual
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资助金额:$1.68万
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财政年份:2012
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负责人:Ayranci, Cagri
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依托单位:
国内基金
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