نتایج جستجو برای: flexural buckling behavior

تعداد نتایج: 634011  

Journal: :Journal of the Acoustical Society of America 2021

Acoustic signals in the megahertz to gigahertz regimes enable applications phononic, electric and photonic circuitry. Hence, advancement these multi-physics circuitries requires studying transmission of elastic waves micro/nano-electromechanical systems. Therefore, our work investigated flexural unidirectional phononic waveguides coupled nano-electromechanical drumhead resonators. In particular...

2010
Farzad Ebrahimi Erfan Salari Sai Sudha Ramesh Laxmi Behera Mehran Karimi Zeverdejani Yuanwen Gao

A nonlocal anisotropic elastic shell model of a microtubule (MT) has been established in this paper. The proposed model exactly expresses the persistence length, the growth rate for buckling and the buckling load which include the small scale effects in a closed form. The predicted results of our model indicate that the length-dependence of the persistence length is sensitive to the small scale...

2016
Kuijian Yang Yuli Chen Fei Pan Shengtao Wang Yong Ma Qijun Liu

The buckling of graphene sheets on substrates can significantly degrade their performance in materials and devices. Therefore, a systematic investigation on the buckling behavior of monolayer graphene sheet/substrate systems is carried out in this paper by both molecular mechanics simulations and theoretical analysis. From 70 simulation cases of simple-supported graphene sheets with different s...

Journal: :ACS applied materials & interfaces 2010
F Yavari M A Rafiee J Rafiee Z-Z Yu N Koratkar

We report the synthesis and fatigue characterization of fiberglass/epoxy composites with various weight fractions of graphene platelets infiltrated into the epoxy resin as well as directly spray-coated on to the glass microfibers. Remarkably only ∼0.2% (with respect to the epoxy resin weight and ∼0.02% with respect to the entire laminate weight) of graphene additives enhanced the fatigue life o...

Journal: :Soft matter 2013
Yihui Zhang Sheng Xu Haoran Fu Juhwan Lee Jessica Su Keh-Chih Hwang John A Rogers Yonggang Huang

Lithographically defined electrical interconnects with thin, filamentary serpentine layouts have been widely explored for use in stretchable electronics supported by elastomeric substrates. We present a systematic and thorough study of buckling physics in such stretchable serpentine microstructures, and a strategic design of serpentine layout for ultra-stretchable electrode, via analytical mode...

2014
Xin Ning Sergio Pellegrino

Buckling analyses of heavily corrugated cylindrical shells based on detailed full finite element models are usually computationally expensive. To address this issue, we have proposed an efficient computational method of predicting the onset of buckling for corrugated cylindrical shells which builds on the Bloch wave method for infinitely periodic structures. We modified the traditional Bloch wa...

2003
Kwang-Jin Choi Hyeong-Seok Ko

Introduction The material behavior that most distinguishes textile fabrics from other sheet materials is the easy-buckling phenomenon. The technique presented here simulates the fabric buckling phenomenon in a realistic, yet also stable way. Significant improvements in both the stability and realism were made possible by overcoming the buckling instability as well as the numerical instability. ...

Seyyed Mohammad Saeed Sobhan Seyyed Rasoul Mirghaderi

Thin-walled hollow steel columns, either circular or box shaped, are commonly used as piers in bridges. Recent earthquakes, e.g. Hyogoken-Nanbu or Kobe 1995, on the other hand have shown that these columns are vulnerable to damage when subjected to earthquake loading. This paper presents a new innovative thin-walled hollow steel column fabricated of corrugated plates, “thin-walled steel columns...

2014
Y. Abebe

There are several types of metal-based devices conceived as dampers for the seismic energy absorber whereby damages to the major structural components could be minimized for both new and existing structures. This paper aimed to develop and evaluate structural performance of slit circular shear panel damper for passive seismic energy protection by inelastic deformation. Structural evaluation was...

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