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Abstract The visualization method is used to study the heat transfer performance of ultra-thin flat heat pipe (UTFHP) with a vapor chamber thickness of only 0.8 mm under different liquid filling rates, and observe the change of vapor–liquid interface in mesh wick and the flow characteristics of working fluid in vapor chamber, which has important ...
Qifei Jian, Zhe Huang
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Filling rates of long liquid-filled capillaries
Journal of Applied Physics, 1973Fused quartz capillaries 700 and 1200 m long and 100 μm in inside diameter have been filled under hydrostatic pressure. It is verified that the rate of filling is governed by Poiseuille's law, which predicts the filled length to be proportional to the square root of the filling time. At a pressure of 270 atm, 250 m was filled in 1 h, 800 m in 10 h, and
J. Stone, H. E. Earl
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Charging Rate Dependence of Ion Migration and Stagnation in Ionic-Liquid-Filled Carbon Nanopores
The Journal of Physical Chemistry C, 2016Over the past decade, interest in leveraging subnanometer pores for improved capacitance in electrochemical double layer capacitors (EDLCs) has readily grown. Correspondingly, many theoretical studies have endeavored to understand the mechanisms that dictate the capacitance enhancement once ions are confined within nanopores, typically within quasi ...
Alexander J. Pak, Gyeong S. Hwang
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The permeation of 1-ethyl-3-methylimidazolium ([EMIM]), 1-butyl-3-methylimidazolium ([BMIM]), and 1-butylimidazole through the bilayer membranes of nanoemulsion-like polymersomes was investigated by nuclear magnetic resonance spectroscopy (NMR) techniques. 1,2-Polybutadiene-b-poly(ethylene oxide) (PB–PEO) polymersomes in the ionic liquid (IL) 1-ethyl-3-
Soonyong So, Timothy P. Lodge
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