DMREF: Collaborative Research:Elastomers Filled with Electro- and Magneto-Active Fluid Inclusions: A New Paradigm for Soft Active Materials
DMREF: Collaborative Research:Elastomers Filled with Electro- and Magneto-Active Fluid Inclusions: A New Paradigm for Soft Active Materials
批准号:
1922371
负责人:
Oscar Lopez-Pamies
金额:
$112.31万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2019
资助国家:
美国
项目状态:
未结题
起止时间:
2019-09-01 至 2025-08-31
中文摘要
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英文摘要
Over the last two decades, increasing research efforts have been devoted to the mathematics, mechanics, and physics of soft organic solids with the ultimate objective of capitalizing on the potential that these materials hold to enable a broad spectrum of new technologies. Among these efforts, recent advances in mathematical modeling and polymer processing have just revealed elastomers filled with electro- and magneto-sensitive fluid (as opposed to the conventional solid) inclusions as a potentially revolutionary class of advanced soft organic solids that may enable a plethora of next generation sensors and actuators capable of exhibiting extreme and unprecedented electro- and magneto-mechanical properties. In this context, this Designing Materials to Revolutionize and Engineer our Future (DMREF) award supports a research collaboration on the mathematical and computational bottom-up analysis and design and the experimental synthesis and characterization of the coupled electro- and magneto-mechanical properties of elastomers filled with three broad types of fluid inclusions - namely, electrically charged gas-filled pores, liquid-metal inclusions, and ferrofluid inclusions - with the objective of accelerating the pace of fundamental understanding and technological deployment of this promising class of materials. This project will train three graduate students for careers in academia or industry and will integrate research results in the undergraduate and graduate curricula at the University of Illinois Urbana-Champaign and the Pennsylvania State University. The investigators will also carry out activities to promote interest in high school students to pursue higher education and careers in STEM programs, and especially in the fields of mathematics and materials science, through the creation of lesson modules and laboratory demonstrations. The overarching objective of this project is three-fold: 1) derive and numerically implement the homogenized equations describing the macroscopic electro- and magneto-mechanical response of elastomers filled with compressible and incompressible fluid inclusions directly accounting for the mechanical, electric, and magnetic interfacial forces at the elastomer/fluid-inclusion interfaces; 2) deploy the derived homogenized equations to guide the design of fluid inclusions that lead to porous electrets and elastomers filled with liquid-metal and ferrofluid inclusions with exceptional macroscopic electro- and magneto-mechanical properties; and 3) fabricate and characterize the microscopic and macroscopic properties of representative classes of electrets with electrically charged gas-filled pores, elastomers filled with liquid-metal inclusions, and elastomers filled with ferrofluid inclusions. The theoretical component involves new mathematical results and their associated numerical implementation that directly account for the rapid spatial variation (at the microscopic scale of the fluid inclusions) of space electrical charges and interfacial forces in the homogenization of the governing equations, namely, balance of momenta and Maxwell's equations. The experimental component, on the other hand, entails the synthesis of these new classes of multifunctional material systems and the development of new experiments that leverage in-situ X-ray tomography and thermally stimulated depolarization current measurements to extract the interfacial forces and space charge content and behavior at the elastomer/fluid-inclusion interfaces.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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A simple explicit model constructed from a homogenization solution for the large-strain mechanical response of elastomeric syntactic foams
由均质化解决方案构建的简单显式模型,用于弹性体复合泡沫的大应变机械响应
DOI:
10.1016/j.ijnonlinmec.2020.103548
发表时间:
2020
期刊:
International Journal of Non-Linear Mechanics
影响因子:
3.2
作者:
[Shrimali, Bhavesh, Parnell, William J., Lopez-Pamies, Oscar]
通讯作者:
Lopez-Pamies, Oscar
The nonlinear viscoelastic response of suspensions of rigid inclusions in rubber: I—Gaussian rubber with constant viscosity
橡胶中刚性夹杂物悬浮液的非线性粘弹性响应:恒粘度I-高斯橡胶
DOI:
10.1016/j.jmps.2021.104544
发表时间:
2021
期刊:
Journal of the Mechanics and Physics of Solids
影响因子:
5.3
作者:
[Ghosh, Kamalendu, Shrimali, Bhavesh, Kumar, Aditya, Lopez-Pamies, Oscar]
通讯作者:
Lopez-Pamies, Oscar
DOI:
10.1007/s11012-020-01179-1
发表时间:
2020-06-08
期刊:
MECCANICA
影响因子:
2.7
作者:
[Ghosh, Kamalendu, Lopez-Pamies, Oscar]
通讯作者:
Lopez-Pamies, Oscar
Elastomers filled with liquid inclusions: Theory, numerical implementation, and some basic results
充满液体包裹体的弹性体:理论、数值实现和一些基本结果
DOI:
10.1016/j.jmps.2022.104930
发表时间:
2022
期刊:
Journal of the Mechanics and Physics of Solids
影响因子:
5.3
作者:
[Ghosh, Kamalendu, Lopez-Pamies, Oscar]
通讯作者:
Lopez-Pamies, Oscar
The effective shear modulus of a random isotropic suspension of monodisperse liquid n -spheres: from the dilute limit to the percolation threshold
单分散液体 n 球的随机各向同性悬浮液的有效剪切模量:从稀释极限到渗滤阈值
DOI:
10.1039/d2sm01219g
发表时间:
2023
期刊:
Soft Matter
影响因子:
3.4
作者:
[Ghosh, Kamalendu, Lefèvre, Victor, Lopez-Pamies, Oscar]
通讯作者:
Lopez-Pamies, Oscar
共 7 条
Brittle Fracture of Dissipative Solids
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批准号:2308169
-
项目类别:Standard Grant
-
资助金额:$25.0万
-
财政年份:2023
-
负责人:Oscar Lopez-Pamies
-
依托单位:
Collaborative Research: A Unified Theory of Crack Nucleation and Growth for Materials Subjected to Repetitive Surface Acoustic Waves and Dynamic Impacts
-
批准号:2132528
-
项目类别:Standard Grant
-
资助金额:$35.38万
-
财政年份:2021
-
负责人:Oscar Lopez-Pamies
-
依托单位:
Collaborative Research: Fracture and Healing of Elastomers: An Experimental and Theoretical Investigation at High Spatiotemporal Resolution
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批准号:1901583
-
项目类别:Standard Grant
-
资助金额:$35.0万
-
财政年份:2019
-
负责人:Oscar Lopez-Pamies
-
依托单位:
Collaborative Research: Extreme Enhancement of the Electromechanical Properties of Soft Nano-Particulate Composites via Interphases
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批准号:1661853
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项目类别:Standard Grant
-
资助金额:$24.87万
-
财政年份:2017
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负责人:Oscar Lopez-Pamies
-
依托单位:
Collaborative Research: Fracture in Soft Organic Solids --- The Variational View
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批准号:1615661
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项目类别:Standard Grant
-
资助金额:$24.19万
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财政年份:2016
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负责人:Oscar Lopez-Pamies
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依托单位:
EAGER/Collaborative Research: Processing and Characterization of Soft Active Nanoparticulate Composites
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批准号:1349535
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项目类别:Standard Grant
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资助金额:$4.5万
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财政年份:2013
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负责人:Oscar Lopez-Pamies
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依托单位:
An Iterated Homogenization Method to Study Cavitation in Soft Solids
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批准号:1242089
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项目类别:Standard Grant
-
资助金额:$6.8万
-
财政年份:2012
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负责人:Oscar Lopez-Pamies
-
依托单位:
Collaborative Research: Damage in Soft Solids: Elasticity vs Fracture
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批准号:1235352
-
项目类别:Standard Grant
-
资助金额:$24.04万
-
财政年份:2012
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负责人:Oscar Lopez-Pamies
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依托单位:
CAREER: Novel Homogenization Approaches to Study the Electromechanical Behavior and Stability of Soft Electrostrictive Composites
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批准号:1055528
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项目类别:Standard Grant
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资助金额:$40.0万
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财政年份:2011
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负责人:Oscar Lopez-Pamies
-
依托单位:
CAREER: Novel Homogenization Approaches to Study the Electromechanical Behavior and Stability of Soft Electrostrictive Composites
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批准号:1219336
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项目类别:Standard Grant
-
资助金额:$36.77万
-
财政年份:2011
-
负责人:Oscar Lopez-Pamies
-
依托单位:
An Iterated Homogenization Method to Study Cavitation in Soft Solids
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批准号:1009503
-
项目类别:Standard Grant
-
资助金额:$9.61万
-
财政年份:2010
-
负责人:Oscar Lopez-Pamies
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依托单位:
海外基金