نتایج جستجو برای: stretchable pendulum

تعداد نتایج: 7870  

2016
Klas Tybrandt Flurin Stauffer Janos Vörös

Stretchable electronics can bridge the gap between hard planar electronic circuits and the curved, soft and elastic objects of nature. This has led to applications like conformal displays, electronic skin and soft neuroprosthetics. A remaining challenge, however, is to match the dimensions of the interfaced systems, as all require feature sizes well below 100 μm. Intrinsically stretchable nanoc...

2012
M. Jablonski

VOLUME 37 • MARCH 2012 • www.mrs.org/bulletin © 2012 Materials Research Society Introduction The fi rst developments on stretchable circuits were reported in the early 2000s in a number of U.S.-based research institutes, including Lawrence Livermore National Laboratory, 1 Princeton University, 2 and Johns Hopkins University. 3 All of these technologies used thin-fi lm metallization (evaporation...

Journal: :Advanced materials 2012
Feng Xu Yong Zhu

IO N Materials that are both conductive and stretchable could enable a spectrum of applications such as stretchable displays, [ 1 ] stretchable radiofrequency antennas, [ 2 ] artifi cial muscles [ 3 ] and conformal skin sensors. [ 4–7 ] A variety of such materials have been recently developed, such as wavy thin metals, [ 8 , 9 ] metal-coated net-shaped plastic fi lm, [ 10 ] graphene fi lms [ 11...

Journal: :Journal of applied mechanics 2016
J H Yuan M Pharr X Feng John A Rogers Yonggang Huang

Stretchable electronics offer soft, biocompatible mechanical properties; these same properties make them susceptible to device failure associated with physical impact. This paper studies designs for stretchable electronics that resist failure from impacts due to incorporation of a viscoelastic encapsulation layer. Results indicate that the impact resistance depends on the thickness and viscoela...

2017
Wenjun Zhu Yang Zhang Xiaoshuang Zhou Jiang Xu Zunfeng Liu Ningyi Yuan Jianning Ding

Linear stretchable supercapacitors have attracted much attention because they are well suited to applications in the rapidly expanding field of wearable electronics. However, poor conductivity of the electrode material, which limits the transfer of electrons in the axial direction of the linear supercapacitors, leads to a serious loss of capacity at high rates. To solve this problem, we use gol...

2016
Klas Tybrandt Janos Vörös

Intrinsically stretchable multilayer circuit boards are fabricated with a fast and material efficient method based on filtration. Silver nanowire conductor patterns of outstanding performance are defined by filtration through wax printed membranes and the circuit board is assembled by subsequent transfers of the nanowires onto the elastomer substrate. The method is used to fabricate a bright st...

2017
Eun-Hye Ko Hyo-Joong Kim Sang-Mok Lee Tae-Woong Kim Han-Ki Kim

We report on semi-transparent stretchable Ag films coated on a wavy-patterned polydimethylsiloxane (PDMS) substrate for use as stretchable electrodes for stretchable and transparent electronics. To improve the mechanical stretchability of the Ag films, we optimized the wavy-pattern of the PDMS substrate as a function of UV-ozone treatment time and pre-strain of the PDMS substrate. In addition, ...

2017
Yue Wang Chenxin Zhu Raphael Pfattner Hongping Yan Lihua Jin Shucheng Chen Francisco Molina-Lopez Franziska Lissel Jia Liu Noelle I Rabiah Zheng Chen Jong Won Chung Christian Linder Michael F Toney Boris Murmann Zhenan Bao

Previous breakthroughs in stretchable electronics stem from strain engineering and nanocomposite approaches. Routes toward intrinsically stretchable molecular materials remain scarce but, if successful, will enable simpler fabrication processes, such as direct printing and coating, mechanically robust devices, and more intimate contact with objects. We report a highly stretchable conducting pol...

Journal: :Lab on a chip 2010
Shi Cheng Zhigang Wu

Stretchable electronics is a revolutionary technology that will potentially create a world of radically different electronic devices and systems that open up an entirely new spectrum of possibilities. This article proposes a microfluidic based solution for stretchable radio frequency (RF) electronics, using hybrid integration of active circuits assembled on flex foils and liquid alloy passive s...

2018
Steven Nagels Wim Deferme

Stretchable electronics promise to naturalize the way that we are surrounded by and interact with our devices. Sensors that can stretch and bend furthermore have become increasingly relevant as the technology behind them matures rapidly from lab-based workflows to industrially applicable production principles. Regardless of the specific materials used, creating stretchable conductors involves e...

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