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3篇 您的检索式:作者名="Guo Shaoxin"
    题名 作者 年代 出处 被引量
1Numerical Study on Surface Wettability Gradient Enhanced Ultra-Thin Loop Heat Pipe显示文摘Loop heat pipes(LHPs),as high-efficiency heat dissipation components,are considered to be superior thermal conductors beyond any known materials.To apply LHPs to mobile electronics,a small,thin and compact system needs to be designed.However,with the trend of miniaturization,the heat transfer performance of LHPs degrades rapidly due to the significant increase of working fluid backflow resistance.This work aims to propose an effective solution to this problem.In this work,the surface wettability gradient(SWG)is introduced into the ultra-thin LHP,and the influence of SWG on mass and heat transfer performance is studied comprehensively by using a transient three-dimensional numerical model.It is observed that the SWG can significantly increase the vapor-liquid circulation efficiency and improve heat transfer performance.Numerical experiments have been performed to compare the two kinds of LHPs with and without SWG.At the heat load of 4–6 W,the start-up time for LHP with SWG is shortened by 11.5%and the thermal resistance is reduced by about 44.3%,compared with the LHP without SWG.This work provides a solution for the performance-degradation problem caused by miniaturization,as a numerical reference for experiments.GAO Xintian CHEN Anqi ZHU Yuan LYU You GUO Wei ZHOU Shaoxin 2021Journal of Thermal Science2021,30,4:1
2尼龙/氨纶经编针织面料环境友好染色及整理的可能性显示文摘尼龙/氨纶经编针织面料具有众多优点:如尼龙带来的高强、耐磨,氨纶带来的高弹回复性;并且该面料吸湿快干、手感柔软;用该面料缝制的服装能提供一种无压舒适感,有助于勾勒完美的体形。然而,合成纤维,尤其是氨纶织造时采用大量硅油,这给尼龙/氨纶经编针织面料加工带来困难。常规方法中,经编针织面料由传统的间歇法预整理,用高浴比溢流染色机染色,然后用高能耗拉幅机热定型。因此,大部分客户对面料的品质及高生产成本极不满意。介绍了广泛应用于尼龙/氨纶经编针织面料染色及后整理中生态友好的Sintensa去油水洗机组、Eco-88D双绳高速染色机,及用于预定型和热定型的Monfongs 828 ES TwinAir拉幅机组。Zhang Wangsun Guo Shaoxin N. Wickert 董晓雯(译) 罗艳(校) 2011国际纺织导报2011,,2:1
33-Aminopropyltriethoxysilane Complexation with Iron Ion Modified Anode in Marine Sediment Microbial Fuel Cells with Enhanced Electrochemical Performance显示文摘Anode modification plays a key role in higher power output in marine sediment microbial fuel cells(MSMFCs).A low-molecular organosilicon compound(3-aminopropyltriethoxysilane)was grafted onto the surface of carbon felt using chemical method and a composite modified anode was prepared through organic ligands coordination Fe^(3+)for better electro-chemical per-formance.Results show that the biofilm resistance of the composite modified anode(2707Ω)is 1.3 times greater than that of the unmodified anode(2100Ω),and its biofilm capacitance also increases by 2.2 times,indicating that the composite modification pro-motes the growth and attachment of electroactive bacteria on the anode.Its specific capacitance(887.8 Fm^(−2))is 3.7 times higher than that of unmodified anode,generating a maximum current density of 1.5Am^(−2).In their Tafel curves,the composite modified anodic exchange current density(5.25×10^(−6)Acm^(−2))is 5.8 times bigger than that of unmodified anode,which suggests that the electro-chemical activity of redox,anti-polarization ability and electron transfer kinetic activity are significantly enhanced.The marine sediment microbial fuel cell with the composite modified anode generates the higher power densities than the blank(203.8mWm^(−2) versus 45.07mWm^(−2)),and its current also increases by 4.4 times.The free amino groups on the anode surface expands a creative idea that the modified anode ligates the natural Fe(Ⅲ)ion in sea water in the MSMFCs for its higher power output.ZAI Xuerong GUO Man HAO Yaokang HOU Shaoxin YANG Zhiwei LI Jia LI Yang JI Hongwei FU Yubin 2021Journal of Ocean University of China2021,20,3:0
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