细胞学 发表于 2025-3-28 15:48:39
Nanohydrodynamics and Coherent Structures,velopment of MEMS devices such as sensors and motors on the micron lengthscale and more recently with advances in nanolithography (.), the question arises as to what types of new flow phenomena may appear at these scales. Flows in microchannels, microcavities, and nanotubes at periodic, structured, and rough surfaces all need to be studied.largesse 发表于 2025-3-28 22:40:05
Challenges for Lubrication in High Speed MEMS,ead to a relatively unusual design space for high-speed lubrication systems. The overall architecture for the microengine lubrication system is described using both experimental and computational data to illustrate the effects of geometric and manufacturing variations on the overall system performance.Forsake 发表于 2025-3-29 01:37:05
http://reply.papertrans.cn/67/6612/661160/661160_43.pngACME 发表于 2025-3-29 03:41:50
Dependence of Frictional Properties of Hydrocarbon Chains on Tip Contact Area,tact areas are utilized to study the effects of chain length on mechanical and frictional properties. The probes are a nanotube, which penetrates into the monolayers (Figure 1, left), and a countersurface, which compresses the monolayers (Figure 1, right).chlorosis 发表于 2025-3-29 08:44:53
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Tribological Issues in the Implementation of a MEMS-Based Torpedo Safety and Arming Device,al exposure). Another issue will be the long term effects of transportation and storage on the these structures, such as how they might suffer from vibration-induced fretting corrosion or surface wear, and how these tribological phenomena might degrade performance when the time comes for the device to be put to use.Ischemia 发表于 2025-3-29 18:39:13
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The Use of Surface Tension for the Design of MEMS Actuators, frictional resistances, the role of inertia becomes negligible in nanometer scale by all practical means. Instead, surface forces come under the limelight when analyzing and, more importantly, designing nano- and micro-mechanical elements for MEMS or microsystems.蔓藤图饰 发表于 2025-3-30 06:23:11
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