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Theoretical and Experimental Studies of Buckling Mechanics of 3D Thin Film/Shape Memory Polymer Systems

Theoretical and Experimental Studies of Buckling Mechanics of 3D Thin Film/Shape Memory Polymer Systems
3D 薄膜/形状记忆聚合物系统屈曲力学的理论与实验研究
批准号:
1405355
负责人:
Jianliang Xiao
金额:
$31.55万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-07-15 至 2018-06-30

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中文摘要
翻译
硬薄膜在软基片上的弯曲和扭曲导致表面上有序的波浪图案。这种现象已被证明具有许多潜在的应用,例如在新型传感器和致动器、可拉伸电子器件、精密计量、光栅和能量收集设备中。形状记忆聚合物作为一类智能材料,可以记忆不同的形状,并且可以通过外部刺激(如加热)从变形的形状恢复到原始形状。形状记忆聚合物的这些显着特征与薄膜屈曲相结合,可以为在平面和复杂的3D结构上创建可控的表面图案提供独特的机会。该奖项支持对形状记忆聚合物薄膜屈曲的基本力学的研究,并将开发用于分析和制造由形状记忆聚合物和金属薄膜组成的3D混合材料系统中的表面图案的策略。这项工作的结果将有利于表面工程,微/纳机电系统和可拉伸电子产品,并应用于生物医学设备,机器人,智能电子产品和可部署系统。根据该奖项,PI将为研究生和本科生提供多学科培训,并将积极寻求代表性不足的群体和K-12学生的参与。软衬底上薄膜的屈曲力学在最近的过去一直受到力学界的关注,然而,目前的理论模型假设衬底的力学性质在屈曲和翘曲形成期间不会发生显着变化。这种假设不适用于形状记忆聚合物,其在热机械形状记忆循环期间经历显著的性质变化。例如,模量通常变化两到三个数量级;粘度可以变化十到十五个数量级。目的是联合收割机理论和实验方法,发展一个新的理论,考虑到大的性能变化的不稳定过程中,并与相关的薄膜的屈曲和弯曲的力学。这将允许人们考虑形状记忆聚合物上的薄膜的屈曲过程,考虑时间、温度和机械性能变化的影响。研究了二维和三维形状记忆聚合物上薄膜带的屈曲行为,研究了屈曲模式随时间的演化以及三维形状记忆聚合物结构的演化,为可编程器件提供了相关的四维屈曲系统。此外,该研究还为复杂三维杂化材料系统的制备提供了实用的策略。
英文摘要
Buckling and wrinkling of stiff thin films on soft substrates results in ordered, wavy patterns on the surface. This phenomenon has been shown to have many potential applications, such as in novel sensors and actuators, stretchable electronics, precision metrology, optical gratings, and energy harvesting devices. Shape memory polymers, as a class of smart materials, can memorize distinct shapes, and can recover from the deformed shape to the original shape by external stimuli such as heating. These salient features of shape memory polymers, when combined with thin film buckling, can provide a unique opportunity for creating controllable surface patterns on planar as well as on complex 3D structures. This award supports research on the fundamental mechanics of thin film buckling on shape memory polymers, and will develop strategies for analysis and fabrication surface patterns in 3D hybrid material systems consisting of shape memory polymers and metallic thin films. The results from this work will benefit surface engineering, micro/nanoelectromechanical systems, and stretchable electronics with applications in biomedical devices, robotics, smart electronics, and deployable systems. Under the award the PI will provide multidisciplinary training to graduate and undergraduate students, and will actively seek participation from underrepresented groups and K-12 students. Buckling mechanics of thin films on soft substrates has been of interest to the mechanics community in the recent past, however, current theoretical models assume that the mechanical properties of the substrates do not change significantly during buckling and wrinkling formation. This assumption does not hold for shape memory polymers, which undergo dramatic property changes during a thermomechanical shape memory cycle. For example, the modulus typically changes by two to three orders of magnitude; viscosity can change by ten to fifteen orders of magnitude. The objective is to combine theoretical and experimental approaches to develop a new theory for the mechanics of buckling and wrinkling of thin films under consideration of large property changes during the and associated with the instability processes. This will allow one to consider buckling processes of thin films on shape memory polymers, with effects of time, temperature and changes of mechanical properties accounted for. Buckling of thin film ribbons on both 2D and 3D shape memory polymers will be studied The time evolution of buckling patterns coupled with the evolution of 3D shape memory polymer structures will be investigated, which will deliver 4D buckling systems of relevant to programmable devices. In addition, this research could provide practical strategies for fabricating complex 3D hybrid material systems.
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Collaborative Research: Computational Framework for Designing Conformal Stretchable Electronics
  • 批准号:
    1762324
  • 项目类别:
    Standard Grant
  • 资助金额:
    $21.3万
  • 财政年份:
    2018
  • 负责人:
    Jianliang Xiao
  • 依托单位:
Iron-Catalysed Oxygenation with O2
  • 批准号:
    EP/R009694/1
  • 项目类别:
    Research Grant
  • 资助金额:
    $44.52万
  • 财政年份:
    2017
  • 负责人:
    Jianliang Xiao
  • 依托单位:
Manufacture of chiral amines using catalytic and flow processing methods
  • 批准号:
    EP/K504166/1
  • 项目类别:
    Research Grant
  • 资助金额:
    $21.31万
  • 财政年份:
    2013
  • 负责人:
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  • 依托单位:
Metal-Bronsted Acid Cooperative Catalysis for Asymmetric Direct Reductive Amination
  • 批准号:
    EP/G031444/1
  • 项目类别:
    Research Grant
  • 资助金额:
    $57.83万
  • 财政年份:
    2009
  • 负责人:
    Jianliang Xiao
  • 依托单位:
海外基金