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Imperfection sensitivity of mechanical properties in soft network materials with horseshoe microstructures

查看全文 作  者:Jianxing [1]Liu;Xinyuan [1]Zhu;Zhangming [1]Shen;Yihui [1]Zhang 高影响力作者 机构地区:[1]AML,Department of Engineering Mechanics,Center for Flexible Electronics Technology,Tsinghua University,Beijing 100084,China高影响力机构 出  处:《Acta Mechanica Sinica》索引2021年第37卷第7期,共14页高影响力期刊 基  金:supported by a grant from the Institute for Guo Qiang.Tsinghua University(Grant No.2019GQG1012);Y.Z.acknowledges support from the National Natural Science Foundation of China(Grant Nos.11722217 and 11921002);the Tsinghua University Initiative Scientific Research Program(#2019Z08QCX10);the Henry Fok Education Foundation. 摘  要:Developments of soft network materials with rationally distributed wavy microstructures have enabled many promising applications in bio-integrated electronic devices,due to their abilities to reproduce precisely nonlinear mechanical properties of human tissues/organs.In practical applications,the soft network materials usually serve as the encapsulation layer and/or substrate of bio-integrated electronic devices,where deterministic holes can be utilized to accommodate hard chips,thereby increasing the filling ratio of the device system.Therefore,it is essential to understand how the hole-type imperfection affects the stretchability of soft network materialswith various geometric constructions.Thiswork presents a systematic investigation of the imperfection sensitivity of mechanical properties in soft network materials consisting of horseshoe microstructures,through combined computational and experimental studies.A factor of imperfection insensitivity of stretchability is introduced to quantify the influence of hole imperfections,as compared to the case of perfect soft network materials.Such factor is shown to have different dependences on the arc angle and normalized width of horseshoe microstructures for triangular network materials.The soft triangular and Kagome network materials,especially with the arc angle in the range of(30?,60?),are found to be much more imperfection insensitive than corresponding traditional lattice materials with straight microstructures.Differently,the soft honeycomb network materials are not as imperfection insensitive as traditional honeycomb lattice materials. 关 键 词:Imperfect network material Imperfection insensitivity Microstructure shape Lattice topology Stretchability
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