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Greatly enhanced corrosion/wear resistances of epoxy coating for Mg alloy through a synergistic effect between functionalized graphene and insulated blocking layer 被引量:1
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作者 Z.Y.Xue x.j.li +3 位作者 J.H.Chu M.M.Li D.N.Zou L.B.Tong 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第1期332-344,共13页
The poor corrosion and wear resistances of Mg alloys seriously limit their potential applications in various industries.The conventional epoxy coating easily forms many intrinsic defects during the solidification proc... The poor corrosion and wear resistances of Mg alloys seriously limit their potential applications in various industries.The conventional epoxy coating easily forms many intrinsic defects during the solidification process,which cannot provide sufficient protection.In the current study,we design a double-layer epoxy composite coating on Mg alloy with enhanced anti-corrosion/wear properties,via the spin-assisted assembly technique.The outer layer is functionalized graphene(FG)in waterborne epoxy resin(WEP)and the inner layer is Ce-based conversion(Ce)film.The FG sheets can be homogeneously dispersed within the epoxy matrix to fill the intrinsic defects and improve the barrier capability.The Ce film connects the outer layer with the substrate,showing the transition effect.The corrosion rate of Ce/WEP/FG composite coating is 2131 times lower than that of bare Mg alloy,and the wear rate is decreased by~90%.The improved corrosion resistance is attributed to the labyrinth effect(hindering the penetration of corrosive medium)and the obstruction of galvanic coupling behavior.The synergistic effect derived from the FG sheet and blocking layer exhibits great potential in realizing the improvement of multi-functional integration,which will open up a new avenue for the development of novel composite protection coatings of Mg alloys. 展开更多
关键词 Mg alloy Functionalized graphene Epoxy coating Corrosion/wear resistance Blocking layer
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龙门山及其相邻区域的剪切波高频衰减特性 被引量:1
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作者 L.Fu x.j.li +1 位作者 傅磊(译) 李小军(校) 《世界地震译丛》 2017年第6期524-541,共18页
在地震动模拟的随机性方法中,高频衰减参数κ是控制傅里叶加速度谱高频形状的关键参数。本文采用2008年汶川地震和2013年芦山地震期间在震中距0~300km范围内的44个强震动台站记录到的500多个地震事件(3.3<MS<8.0)的1 597组加速度... 在地震动模拟的随机性方法中,高频衰减参数κ是控制傅里叶加速度谱高频形状的关键参数。本文采用2008年汶川地震和2013年芦山地震期间在震中距0~300km范围内的44个强震动台站记录到的500多个地震事件(3.3<MS<8.0)的1 597组加速度记录研究了κ的特性。结果表明κ与震级无关,但是与近地表地质条件、局部场地条件和震中距有明显相关性。计算得到松潘—甘孜造山带(SGO)和四川盆地西部(WSB)的κ与距离的相关性分别为0.000 142 7s/km和0.000 103 1s/km,水平分量的平均κ0(κ_0~h)范围分别为0.0144~0.046 9s和0.032 1~0.053 9s。松潘—甘孜造山带和四川盆地西部的κ_0~h与局部场地条件的相关性表现出相反的变化趋势。松潘—甘孜造山带的结果表明,V S30不能完全描述近地表地质条件的特征,同时κ_0~h的大小主要由近地表地质条件控制。另外,本文观测到水平分量和竖向分量κ0的空间分布分别与地形高程和地下0~10km深度的剪切波速度结构具有较强的相关性。最后,研究发现龙门山地区、阿尔卑斯东南部和迪纳里德山脉北部地区和美国南加利福尼亚州ANZA地震台网的κ_0~h与地形高程之间具有较好的相关性。以上结果表明,地形高程可作为κ_0~h—V_(S30)相关性模型的一个补充参数,来建立区域的模型。 展开更多
关键词 剪切波速度结构 龙门山地区 衰减特性 高频 四川盆地西部 邻区 地形高程 加利福尼亚州
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