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Thermal Conductance of Bi-Material AFM Cantilevers
Volume 13: Nano-Manufacturing Technology; and Micro and Nano Systems, Parts A and B, 2008In this letter, based on the beam theory and the thermal analysis of a bi-material cantilever, we demonstrate that the effective thermal conductance of the cantilever and the temperature at the tip of the cantilever can be determined by measuring the bending of the cantilever in response to two different thermal inputs: power absorbed at the tip and ...
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Interval Element-Free Method for a Bi-Material Cantilever Beam
Applied Mechanics and Materials, 2013The interval element-free Galerkin method (IEFGM) is proposed to analyze a bi-material cantilever beam, which is an interfacial mechanics problem including uncertain parameters. Interval method could be applied to study the influences of the uncertain parameters on structural responses.
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Flame radiant heat flux measurement based on bi-material cantilever
International Journal of Thermal Sciences, 2014Abstract A novel method for flame radiant heat flux measurement based on bi-material micro-cantilever is developed. The theoretical analysis and optimization of the bi-material micro-cantilever, such as its shape, size and thickness ratio are discussed.
Bing Liu, Xishi Wang
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Investigation of dimensions effect on stress of bi-material cantilever beam
Proceedings of the 2011 34th International Spring Seminar on Electronics Technology (ISSE), 2011In this paper we investigate the dimension effect on stress of a set of cantilevers beams which are composed of two different material layers. We studied the induced stress obtained applying a force on the microstructures and its variation function of the residual stress due to fabrication processes.
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Terahertz addressed spatial light modulator based on bi-material cantilevers array
2015 Transducers - 2015 18th International Conference on Solid-State Sensors, Actuators and Microsystems (TRANSDUCERS), 2015This paper reports a novel spatial light modulator (SLM) with 256×256 pixels addressed by terahertz (THz) radiation. The SLM was realized by integrating metamaterial absorbers (MAs) into bi-material cantilever pixels and fabricated by a polyimide (PI) sacrificial layer process on a glass substrate.
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