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Modification of Nano-α-Al2O3 and Its Influence on the Surface Properties of Waterborne Polyurethane Resin Composite Passivation Films
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作者 Jiankang Fu Changshuai Ma +2 位作者 Yameng Zhu Jing Yuan Qianfeng Zhang 《Journal of Materials Science and Chemical Engineering》 2024年第5期29-48,共20页
Silane coupling agent KH560 was used to modify the surface of nano-α-Al<sub>2</sub>O<sub>3</sub> in ethanol-aqueous solution with different proportions. The particle size of nano-α-Al<sub&... Silane coupling agent KH560 was used to modify the surface of nano-α-Al<sub>2</sub>O<sub>3</sub> in ethanol-aqueous solution with different proportions. The particle size of nano-α-Al<sub>2</sub>O<sub>3</sub> was determined by nano-particle size analyzer, and the effects of nano-α-Al<sub>2</sub>O<sub>3</sub> content, ethanol-aqueous solution ratio and KH560 dosage on the dispersion and particle size of nano-α-Al<sub>2</sub>O<sub>3</sub> were investigated. The material structure before and after modification was determined by Fourier transform infrared spectroscopy (FTIR). Aqueous polyurethane resin and inorganic components are combined with modified nano-α-Al<sub>2</sub>O<sub>3</sub> dispersion to form chromium-free passivation solution. The solution is coated on the galvanized sheet, the adhesion and surface hardness are tested, the bonding strength of the coating and the surface hardness of the substrate are discussed. The corrosion resistance and surface morphology of the matrix were investigated by electrochemical test, neutral salt spray test and scanning electron microscope test. The chromium-free passivation film formed after the modification of nano-α-Al<sub>2</sub>O<sub>3</sub> increases the surface hardness of galvanized sheet by about 85%. The corrosion resistance of the film is better than that of a single polyurethane film. The results show that the surface hardness and corrosion resistance of polyurethane resin composite passivation film are significantly improved by the introduction of nano-α-Al<sub>2</sub>O<sub>3</sub>. 展开更多
关键词 Micro-Nano α-al2o3 Waterborne Polyurethane Resin Particle Size Surface Hardness Corrosion Resistance
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Self-repairing Al_(2)O_(3)-TiO_(2)coatings fabricated through plasma electrolytic oxidation with various cathodic pulse parameters
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作者 Mehri HASHEMZADEH Keyvan RAEISSI +4 位作者 Fakhreddin ASHRAFIZADEH Frank SIMCHEN Amin HAKIMIZAD Monica SANTAMARIA Thomas LAMPKE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第10期3326-3343,共18页
The influence of cathodic pulse parameters was evaluated on plasma electrolytic oxidation(PEO)coatings grown on 7075 aluminum alloy in a silicate-based electrolyte containing potassium titanyl oxalate(PTO)using pulsed... The influence of cathodic pulse parameters was evaluated on plasma electrolytic oxidation(PEO)coatings grown on 7075 aluminum alloy in a silicate-based electrolyte containing potassium titanyl oxalate(PTO)using pulsed bipolar waveforms with various cathodic duty cycles and cathodic current densities.The coatings were characterized by SEM,EDS,and XRD.EIS was applied to investigate the electrochemical properties.It was observed that the increase of cathodic duty cycle and cathodic current density from 20%and 6 A/dm^(2) to 40%and 12 A/dm^(2) enhances the growth rate of the inner layer from 0.22 to 0.75μm/min.Adding PTO into the bath showed a fortifying effect on influence of the cathodic pulse and the mentioned change of cathodic pulse parameters,resulting in an increase of the inner layer growth rate from 0.25 to 1.10μm/min.Based on EDS analysis,Si and Ti were incorporated dominantly in the upper parts of the coatings.XRD technique merely detectedγ-Al_(2)O_(3),and there were no detectable peaks related to Ti and Si compounds.However,the EIS results confirmed that the incorporation of Ti^(4+)into alumina changed the electronic properties of the coating.The coatings obtained from the bath containing PTO using the bipolar waveforms with a cathodic duty cycle of 40%and current density values higher than 6 A/dm^(2) showed highly appropriate electrochemical behavior during 240 d of immersion due to an efficient repairing mechanism.Regarding the effects of studied parameters on the coating properties,the roles of cathodic pulse parameters and PTO in the PEO process were highlighted. 展开更多
关键词 al2o3−Tio2 coating plasma electrolytic oxidation potassium titanyl oxalate electrochemical impedance spectroscopy
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Al_(2)O_(3)在储能材料中的应用研究进展
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作者 王妍 魏诗诗 +2 位作者 赵昊雯 李健 王甲泰 《电源技术》 CAS 北大核心 2024年第8期1533-1540,共8页
Al_(2)O_(3)作为陶瓷材料、催化剂、催化剂载体及研磨磨料等有广泛的应用。因氧化铝具有优良的抗酸碱腐蚀性和力学等性能且热稳定性好、来源丰富,所以近年来逐渐开始应用在储能材料领域,进一步拓展了氧化铝的应用范围。主要针对氧化铝... Al_(2)O_(3)作为陶瓷材料、催化剂、催化剂载体及研磨磨料等有广泛的应用。因氧化铝具有优良的抗酸碱腐蚀性和力学等性能且热稳定性好、来源丰富,所以近年来逐渐开始应用在储能材料领域,进一步拓展了氧化铝的应用范围。主要针对氧化铝包覆后的二次储能电池正极材料、负极材料,以及改进隔膜的力学性能等方面进行研究。报道了近年来氧化铝在锂离子电池、钠离子电池、锂硫电池、电解液、隔膜方面的应用研究进展。 展开更多
关键词 储能材料 电极材料 al2o3 改性 电化学性能
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电铸nano-Al_2O_3/Cu复合材料的组织与性能 被引量:8
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作者 朱建华 刘磊 +2 位作者 赵海军 沈彬 胡文彬 《复合材料学报》 EI CAS CSCD 北大核心 2006年第4期65-71,共7页
采用复合电铸工艺,在硫酸铜镀液中加入纳米氧化铝颗粒制备了纳米颗粒弥散增强铜基复合材料,利用扫描电镜、电子透镜对复合材料的表面、拉伸断面和摩擦磨损表面的形貌以及微观组织进行了观察,并对显微硬度、拉伸性能、磨损性能及电阻率... 采用复合电铸工艺,在硫酸铜镀液中加入纳米氧化铝颗粒制备了纳米颗粒弥散增强铜基复合材料,利用扫描电镜、电子透镜对复合材料的表面、拉伸断面和摩擦磨损表面的形貌以及微观组织进行了观察,并对显微硬度、拉伸性能、磨损性能及电阻率进行了研究。结果显示,氧化铝颗粒及其团聚体以纳米级尺寸弥散分布在铜基体中,且与铜基体结合良好。复合材料的硬度最大增幅达42%。氧化铝颗粒含量在1.26%时,复合材料的拉伸强度和延伸率分别高达385 MPa、26%。相对电铸纯铜,复合材料的耐磨性能明显提高,而复合材料的电阻率最大增幅小于6%。 展开更多
关键词 复合电铸 纳米氧化铝颗粒 铜基复合材料 微观组织 性能
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电沉积nano-Al_2O_3/Ni+Co梯度复合镀层 被引量:4
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作者 刘燕 于思荣 +1 位作者 任露泉 韩志武 《吉林大学学报(工学版)》 EI CAS CSCD 北大核心 2009年第S1期154-158,共5页
采用电沉积方法以灰铸铁为基体制备了金属与纳米陶瓷复合镀层,基质金属为镍钴,第二相纳米陶瓷颗粒选用Al2O3。通过表面形态观察可知,由于纳米颗粒的高活性表面为沉积过程提供了大量的核心,使得复合镀层较金属镍钴镀层组织致密,晶粒细小... 采用电沉积方法以灰铸铁为基体制备了金属与纳米陶瓷复合镀层,基质金属为镍钴,第二相纳米陶瓷颗粒选用Al2O3。通过表面形态观察可知,由于纳米颗粒的高活性表面为沉积过程提供了大量的核心,使得复合镀层较金属镍钴镀层组织致密,晶粒细小。线扫描成分分析表明:镀层中纳米颗粒含量呈梯度分布。对其显微硬度进行测量,结果显示:复合镀层显微硬度由表层到里层呈梯度分布。耐磨性试验表明:复合镀层中Al2O3纳米颗粒产生的弥散强化效应和晶粒细化效应使复合镀层耐磨性显著优于纯镍钴镀层。对复合镀层和纯镍钴镀层磨损形貌的观察分析表明:复合镀层磨损表面出现沿摩擦副运动方向的犁沟,而纯镍钴镀层磨损表面呈现大片剥落,磨损机制为黏着磨损。 展开更多
关键词 材料表面与界面 复合电沉积 梯度复合镀层 纳米氧化铝 组织 耐磨性
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影响喷雾造粒Al_2O_3/nano-TiO_2复合陶瓷粉体流动特性的流变学因素研究 被引量:11
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作者 翟长生 王俊 +2 位作者 李飞 陈海 孙宝德 《材料科学与工程学报》 CAS CSCD 北大核心 2004年第3期318-322,共5页
本文研究了分散剂、粘结剂及固相含量等流变学因素对喷雾造粒粉体流动性的影响。结果表明 ,Al2 O3 3wt.%nano TiO2 浆料具有剪切变稀的特性 ,有利于复合陶瓷粉体的喷雾造粒。当固相含量为浆料总质量的6 0 % ,分散剂和粘结剂分别为固相... 本文研究了分散剂、粘结剂及固相含量等流变学因素对喷雾造粒粉体流动性的影响。结果表明 ,Al2 O3 3wt.%nano TiO2 浆料具有剪切变稀的特性 ,有利于复合陶瓷粉体的喷雾造粒。当固相含量为浆料总质量的6 0 % ,分散剂和粘结剂分别为固相质量的 0 3%和 1 0 %时 ,浆料具有合适的粘度和最佳的分散稳定性 ,喷雾造粒所得到的粉体形状为球形或近球形 ,具有较高的松装密度和良好的流动性 ,满足用于热喷涂的需要。 展开更多
关键词 陶瓷粉体 流变学 喷雾造粒 流动性 al2o3 氧化铝 纳米氧化钛 nano-TIo2
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纯铜组元对Al_(2)O_(3)弥散强化铜变形性能的影响
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作者 肖振朋 李韶林 +4 位作者 贾淑果 宋克兴 国秀花 王旭 刘嵩 《材料热处理学报》 CAS CSCD 北大核心 2023年第5期112-122,共11页
为改善Al_(2)O_(3)弥散强化铜的变形性能,通过向弥散强化铜中加入软质相纯铜组元,研究纯铜组元对弥散强化铜烧结坯变形性能的影响。对弥散铜烧结坯进行热压缩变形实验,获得了其不同热变形条件下的真应力应变曲线,建立了基于双曲正弦本... 为改善Al_(2)O_(3)弥散强化铜的变形性能,通过向弥散强化铜中加入软质相纯铜组元,研究纯铜组元对弥散强化铜烧结坯变形性能的影响。对弥散铜烧结坯进行热压缩变形实验,获得了其不同热变形条件下的真应力应变曲线,建立了基于双曲正弦本构关系Arrhenius流变应力模型的本构方程,并计算获得热激活能值Q与应变速率敏感系数值m;对热挤压试样,进行室温性能检测和微观组织表征。结果表明:加入纯铜组元后,弥散铜烧结坯应力应变曲线峰值应力下降,曲线走势波动减弱,变形试样缺陷减少,热激活能Q降低,变形难度下降。应变速率较低时,纯铜组元的加入使得m值增加,弥散强化铜的塑性变好;应变速率较高时,纯铜组元的加入加剧基体软硬相不协调变形,m值降低,塑性变差。纯铜组元的加入使热挤压弥散铜的强化相浓度降低,硬度下降,导电率提升,晶粒变大。 展开更多
关键词 al2o3弥散强化铜 热激活能 变形性能 烧结 热挤压
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微波辐射KF/nano-γ-Al_2O_3催化的Gewald反应研究 被引量:1
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作者 洪志 李旭瑶 +3 位作者 陈灿丽 陈光 汪汉卿 路辰辰 《化学试剂》 CAS 北大核心 2015年第11期1031-1033,1038,共4页
以KF/nano-γ-Al2O3为碱性催化剂,在微波辐射作用下发生三组分Gewald反应,合成了一类2-氨基噻吩类化合物,并探索了不同反应条件对收率的影响。实验结果表明,该方法具有催化剂廉价高效、反应时间短、产品收率高、后处理简便等优点。
关键词 微波辐射 KF/nano-γ-al2o3 Gewald反应 2-氨基噻吩类
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Preparation of Al_2O_3/Au nano-laminated composite coatings and their oxidation resistance on stainless steel 被引量:1
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作者 高俊国 陆峰 +2 位作者 汤智慧 王长亮 何业东 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第10期2491-2497,共7页
Al2O3/Au nano-laminated composite coatings were prepared by means of magnetron sputtering. The coating was compact and comprised of nano-laminated Al2O3 and Au layers. High temperature cyclic oxidation test was employ... Al2O3/Au nano-laminated composite coatings were prepared by means of magnetron sputtering. The coating was compact and comprised of nano-laminated Al2O3 and Au layers. High temperature cyclic oxidation test was employed to investigate the oxidation resistance of the composite coatings. The results revealed that the applied Al2O3/Au nano-laminated composite coatings improved the oxidation and spallation resistance of the stainless steel substrate significantly. The mechanism accounting for oxidation resistance was related with the suppression of inward oxygen diffusion and selective oxidation of Cr in the substrate. The mechanism accounting for spallation resistance was attributed to the relaxation of thermal stress by the nano-laminated structure. 展开更多
关键词 al2o3/Au composite coatings magnetron sputtering oxidation resistance spallation resistance
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Nano-Al_2O_3掺杂酮酐型聚酰亚胺的微观结构及耐热性能研究 被引量:1
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作者 陈宇飞 王立平 边宗真 《绝缘材料》 CAS 北大核心 2014年第3期22-25,29,共5页
以酮酐型聚酰亚胺为基体,环氧树脂为改性剂,Al2O3为填料,采用Sol-Gel法制备了经过偶联剂KH550改性和未改性氧化铝的Al2O3/PI-EP杂化材料,利用红外光谱、扫描电镜、原子力显微镜等对杂化材料的微观结构进行了分析,并测试了材料的耐热性... 以酮酐型聚酰亚胺为基体,环氧树脂为改性剂,Al2O3为填料,采用Sol-Gel法制备了经过偶联剂KH550改性和未改性氧化铝的Al2O3/PI-EP杂化材料,利用红外光谱、扫描电镜、原子力显微镜等对杂化材料的微观结构进行了分析,并测试了材料的耐热性能和力学性能。结果表明:经过偶联剂KH550改性的Al2O3能更好地均匀分散在聚合物基体中,不易团聚,粒径尺寸较小,偶联剂起到了"架桥"的作用;6%Al2O3/PI-EP杂化材料的玻璃化温度为275℃,50~225℃时的储能模量下降较少,但225℃后会急速下降,与tanδ峰值区域的温度范围基本相对应,说明该材料可以在200℃的环境中长期使用保持其力学性能。 展开更多
关键词 聚酰亚胺 环氧树脂 纳米氧化铝 微观结构 耐热性能
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氮掺杂碳改性Ni/Al2O3催化剂的甲烷干重整反应性能研究 被引量:1
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作者 任永旺 王一泽 +2 位作者 常飞祥 俞择修 魏勤洪 《低碳化学与化工》 CAS 北大核心 2023年第3期49-55,共7页
在甲烷干重整反应(DRM)中,常规浸渍法制备的Ni/Al2O3催化剂常因过多积炭导致催化剂失活,因此研究如何提高Ni/Al2O3催化剂的抗积炭能力具有重要意义。通过浸渍法和高温碳化法制备的氮掺杂碳表面修饰的Ni/Al2O3催化剂Ni/Al2O3@NC-3和Ni/Al... 在甲烷干重整反应(DRM)中,常规浸渍法制备的Ni/Al2O3催化剂常因过多积炭导致催化剂失活,因此研究如何提高Ni/Al2O3催化剂的抗积炭能力具有重要意义。通过浸渍法和高温碳化法制备的氮掺杂碳表面修饰的Ni/Al2O3催化剂Ni/Al2O3@NC-3和Ni/Al2O3@NC-5(3和5分别代表多巴胺聚合时间为3 h和5 h)在DRM中表现出了较强的抗积炭性能。使用X射线衍射(XRD)、拉曼(Raman)光谱、X射线光电子能谱(XPS)、热重(TG)和扫描电镜(SEM)等表征手段对催化剂的结构和电性质进行了分析,并探讨了氮掺杂碳的引入对催化剂稳定性和抗积炭性能的影响。XPS结果表明,Ni/Al2O3@NC-3和Ni/Al2O3@NC-5催化剂中金属Ni与氮掺杂碳发生了电子相互作用,形成了催化惰性的Ni+物种,由此减缓了CH_(4)的裂解速率,进而有效地减少了积炭的产生。在经8 h活性测试后,Ni/Al2O3@NC-3催化剂的CH_(4)转化率和CO_(2)转化率分别维持在52.2%和62.3%,且反应后Ni/Al2O3@NC-3催化剂的积炭量仅为7%(质量分数,下同),远远低于Ni/Al2O3催化剂的积炭量(25%)。 展开更多
关键词 甲烷重整 NI/al2o3催化剂 氮掺杂碳 抗积炭性能
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直流辉光放电质谱法测定高纯α-Al 2 O 3颗粒中16种杂质元素 被引量:2
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作者 谭秀珍 李江霖 +2 位作者 李瑶 邓育宁 朱刘 《中国无机分析化学》 CAS 北大核心 2023年第7期755-760,共6页
采用高纯Ga作为辅助电极,通过考察取样量、放电参数对基体信号强度、信号稳定性、基体和Ga的信号比值的影响,建立了直流辉光放电质谱法(dc-GDMS)测定高纯α-Al_(2)O_(3)颗粒中的Li、Be、Na、Mg等16种杂质元素含量的分析方法。当选取3颗2... 采用高纯Ga作为辅助电极,通过考察取样量、放电参数对基体信号强度、信号稳定性、基体和Ga的信号比值的影响,建立了直流辉光放电质谱法(dc-GDMS)测定高纯α-Al_(2)O_(3)颗粒中的Li、Be、Na、Mg等16种杂质元素含量的分析方法。当选取3颗2 mm左右大小的α-Al_(2)O_(3)颗粒用Ga包裹,在1.6 mA/950 V的放电参数下,基体27 Al信号稳定,强度为3.2×10^(8) cps,Al、Ga的信号比约为1∶270。采用实验方法对α-Al_(2)O_(3)颗粒独立测定5次,相对标准偏差均在30%以内。为了验证Ga对α-Al_(2)O_(3)颗粒测定结果的影响,分别采用电感耦合等离子体发射光谱法(ICP-OES)和dc-GDMS法对易于消解的γ-Al_(2)O_(3)粉进行测定。对于dc-GDMS法,选择压在Ga上的γ-Al_(2)O_(3)粉直径约为4~5 mm,在同样的放电参数下,27 Al的信号强度为3.0×10^(9) cps,Al、Ga的信号比约为1∶29。γ-Al_(2)O_(3)粉的GDMS测定结果和ICP-OES基本一致。采用Ga作辅助电极测定α-Al_(2)O_(3)颗粒和γ-Al_(2)O_(3)粉的检出限均可达ng/g。 展开更多
关键词 直流辉光放电质谱仪(dc-GDMS) 高纯Ga 高纯α-al 2 o 3颗粒 杂质元素
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时效温度对Ni-P-Nano-Al_2O_3复合镀层性能的影响
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作者 蒋大伟 杨育玲 +1 位作者 吴建华 丁红燕 《淮阴工学院学报》 CAS 2003年第3期59-61,共3页
研究了时效温度对Ni-P -Nano -Al2 O3 的复合镀层的组织、显微硬度和耐磨性能的影响。结果表明Ni-P -Nano -Al2 O3 复合镀可有效地提高镀层的硬度 ,并显著减缓镀层在较高温度下的软化趋势而使镀层保持较高的硬度 ;经4 0 0℃时效处理后 ... 研究了时效温度对Ni-P -Nano -Al2 O3 的复合镀层的组织、显微硬度和耐磨性能的影响。结果表明Ni-P -Nano -Al2 O3 复合镀可有效地提高镀层的硬度 ,并显著减缓镀层在较高温度下的软化趋势而使镀层保持较高的硬度 ;经4 0 0℃时效处理后 ,复合镀层相对于Ni-P镀层的相对耐磨性能提高了 2倍。 展开更多
关键词 复合镀 纳米al2o3 力学性能
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Effect of Nano-ZrO_2 on Microstructure and Thermal Shock Behaviour of Al_2O_3/SiC Composite Ceramics Used in Solar Thermal Power 被引量:2
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作者 徐晓虹 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2011年第2期285-289,共5页
The Al2O3-ZrO2(3Y)-SiC composite ceramics used in solar thermal power were prepared by micrometric Al2O3,nano-ZrO2 and SiC powders under the condition of pressureless sintering.The bulk density and bending strength ... The Al2O3-ZrO2(3Y)-SiC composite ceramics used in solar thermal power were prepared by micrometric Al2O3,nano-ZrO2 and SiC powders under the condition of pressureless sintering.The bulk density and bending strength of samples with 10vol% nano-ZrO2 sintered at 1480℃ were 3.222 g/cm3 and 160.4MPa,respectively.The bending strength of samples after 7 times thermal shock tests (quenching from 1000℃ to 25℃ in air medium) is 132.0MPa,loss rate of bending strength is only 17%.The effect of nano-ZrO2 content on the microstructure and performance of Al2O3-ZrO2(3Y)-SiC composite ceramic was investigated.The experimental results show that the bending strength of samples with above 10vol% nano-ZrO2 content has decreased,because the volume expansion resulting from t-ZrO2 to m-ZrO2 phase transformation is excessive;Adding proper nano-ZrO2 would be contributed to improve the thermal shock resistance of the composite ceramics.The Al2O3-ZrO2(3Y)-SiC composite ceramic has promising potential application in solar thermal power. 展开更多
关键词 al2o3 nano-ZRo2 transformation toughening thermal shock resistance composite ceramics solar thermal power
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Fabrication and Characterization of Ni-Al_2O_3 Nano-Composite Coatings by Sediment Co-Deposition 被引量:2
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作者 Feng Qiuyuan Zhang Jian +6 位作者 Li Tingju Qi Kai Zhang Xiaoli Teng Haitao Zhang Yu Liu Changsheng Jin Junze 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2009年第A03期68-72,共5页
Ni-Al2O3 nano-composite coatings were fabricated by sediment co-deposition (SCD) from Watt’s type electrolyte containing nano-Al2O3 particles without any additives. For comparison, Ni-Al2O3 nano-composite coatings we... Ni-Al2O3 nano-composite coatings were fabricated by sediment co-deposition (SCD) from Watt’s type electrolyte containing nano-Al2O3 particles without any additives. For comparison, Ni-Al2O3 nano-composite coatings were prepared by conventional electro-plating (CEP) under experimental conditions. Effects of process parameters, such as nano-Al2O3 concentration in plating solution, current density, stirring rate, and bath temperature, on nano-Al2O3 content in composite coatings were investigated. The distribution of elements in deposit, and the bonding strength between coating and substrate was analyzed by electron probe microanalyzer (EPMA) and auto-scratch apparatus, respectively. It is found that the nano-Al2O3 concentration in plating solution, current density and stirring rate are three main factors affecting the particles content in deposit, and played a key role in the formation of composite coatings. The nano-Al2O3 content in composite coatings increased with increasing of nano-Al2O3 concentration in plating solution, current density and stirring rate to reach a maximum value, and then reduced slightly. The contents of nano-Al2O3 particles in composite coatings by the SCD technique were higher than that by the CEP technique. The co-deposited nano-Al2O3 particles embedded uniformly in the Ni matrix. The coating was well adhesion with substrate. It is demonstrated that the SCD technique is an efficient approach for improving the nano-Al2O3 content in Ni-Al2O3 composite coatings. 展开更多
关键词 共沉积 电解质 电镀 纳米氧化铝
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Effect of nano-sized Al2O3 reinforcing particles on uniaxial and high cycle fatigue behaviors of hot-forged AZ31B magnesium alloy 被引量:5
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作者 M.DAREINI A.H.JABBARI M.SEDIGHI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第5期1249-1266,共18页
The effect of hot-forging process was investigated on microstructural and mechanical properties of AZ31 B alloy and AZ31 B/1.5 vol.%Al2 O3 nanocomposite under static and cycling loading. The as-cast alloy and composit... The effect of hot-forging process was investigated on microstructural and mechanical properties of AZ31 B alloy and AZ31 B/1.5 vol.%Al2 O3 nanocomposite under static and cycling loading. The as-cast alloy and composite were firstly subjected to a homogenization heat treatment at 450 ℃ and then an open-die forging at 450 ℃. The results indicated that the presence of reinforcing particles led to grain refinement and improvement of dynamic recrystallization. The forging process was more effective to eliminate the porosity in the cast alloy workpiece. Microhardness of the forged composite was increased by up to 80% and 16%, in comparison with those of the cast and forged alloy samples, respectively. Ultimate tensile strength and maximum tensile strain of the composite were improved by up to 45% and 23%, compared with those of the forged alloy in similar regions. These enhancements were respectively 50% and 37% in the compression test. The composite exhibited a fatigue life improvement in the region with low applied strain;however, a degradation was observed in the high applied strain region. Unlike AZ31 B samples, tensile, compressive and high cycle fatigue behaviors of the composite showed less sensitivity to the applied strain, which can be attributed to the amount of porosity in the samples before and after the hot-forging. 展开更多
关键词 magnesium matrix nanocomposite AZ31B alloy nano-sized al2o3 open-die hot-forging high cycle fatigue mechanical properties microstructural evolution
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Influence of current density on nano-Al_2O_3/Ni+Co bionic gradient composite coatings by electrodeposition 被引量:1
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作者 Yan Liu Luquan Ren +1 位作者 Sirong Yu Zhuwu Han 《Journal of University of Science and Technology Beijing》 CSCD 2008年第5期633-637,共5页
Metal and nano-ceramic nanocomposite coatings were prepared on the gray cast iron surface by the electrodeposition method. The Ni-Co was used as the metal matrix,and nano-Al2O3 was chosen as the second-phase particula... Metal and nano-ceramic nanocomposite coatings were prepared on the gray cast iron surface by the electrodeposition method. The Ni-Co was used as the metal matrix,and nano-Al2O3 was chosen as the second-phase particulates. To avoid poor inter-face bonding and stress distribution,the gradient structure of biology materials was found as the model and therefore the gradient composite coating was prepared. The morphology of the composite coatings was flatter and the microstructure was denser than that of pure Ni-Co coatings. The composite coatings were prepared by different current densities,and the 2-D and 3-D morphologies of the surface coatings were observed. The result indicated that the 2-D structure became rougher and the 3-D surface density of apices became less when the current density was increased. The content of nanoparticulates reached a maximum value at the current density of 40mA·cm^-2,at the same time the properties including microhardness and wear-resistance were analyzed. The microhardness reached a maximum value and the wear volume was also less at the current density of 40mA·cm^-2. The reason was that nano-Al2O3 particles caused dispersive strengthening and grain refining. 展开更多
关键词 ELECTRoDEPoSITIoN composite coating current density nano-al2o3 microstructure mechanical properties
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The Influence of Nano-Al_(2)O_(3)Additive on the Adhesion between Epoxy Resin and Steel Substrate 被引量:2
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作者 ZHAILan-lan LINGGuo-ping 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第05B期1263-1266,共4页
The influence of nano-A!2O3 additive on the adhesion between epoxy resin and steel substrate has been investigated. The results of tensile testing indicated that the adhesion strength was increased dramatically by add... The influence of nano-A!2O3 additive on the adhesion between epoxy resin and steel substrate has been investigated. The results of tensile testing indicated that the adhesion strength was increased dramatically by addition of Al2Os nanoparticles in epoxy resin compared with that of the unmodified resin. The highest adhesion strength was obtained with 1 wt% nano-A!2O3 added in epoxy adhesive, more than two times higher than that of the unmodified. Scanning electronic microscope (SEM) revealed that a boundary layer exists between epoxy and steel substrate, energy spectrum analysis indicates there is enrichment of the nano-A!2O3 particle. Those results confirmed that the nano-A12O3 additive was closely related to the change of interface morphology and the improvement of adhesion strength. The reason for adhesion improvement was also be discussed. 展开更多
关键词 纳米颗粒 al2o3 粘附应力 环氧树脂粘合剂
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Tribological behavior and energy dissipation characteristics of nano-Al_2O_3-reinforced PTFE-PPS composites in sliding system 被引量:1
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作者 曹文翰 龚俊 +4 位作者 杨东亚 高贵 王宏刚 任俊芳 陈生圣 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2001-2009,共9页
Nanoparticles are increasingly being used to improve the friction and wear performance of polymers. In this study, we investigated the tribological behavior and energy dissipation characteristics of nano-Al_2O_3-reinf... Nanoparticles are increasingly being used to improve the friction and wear performance of polymers. In this study, we investigated the tribological behavior and energy dissipation characteristics of nano-Al_2O_3-reinforced polytetrafluoroethylenepolyphenylene sulfide(PTFE-PPS) composites in a sliding system. The tribological behaviors of the composites were evaluated under different normal loads(100–300 N) at a high linear velocity(2 m/s) using a block-on-ring tester. Addition of the nano-Al_2O_3 filler improved the antiwear performance of the PTFE-PPS composites, and the friction coefficient increased slightly. The lowest wear rate was obtained when the nano-Al_2O_3 content was 3%(volume fraction). Further, the results indicated a linear correlation between wear and the amount of energy dissipated, even though the wear mechanism changed with the nano-Al_2O_3 content, independent of the normal load applied. 展开更多
关键词 nano-al2o3 polytetrafluoroethylene-polyphenylene sulfide (PTFE-PPS) tribological behavior dissipated energy
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High Temperature Flow Stress Prediction of Nano-Al_2O_3/Cu Composite Using an Artificial Neural Network 被引量:1
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作者 GAO Jian-xin XU Xiao-feng +3 位作者 SONG Ke-xing LI Pei-quan GUO Xiu-hua LIU Rui-hua 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2006年第B12期36-40,共5页
Alumina dispersion strengthened copper composite (nano-Al2O3/Cu composite) was recently emerged as a kind of potentially viable and attractive engineering material for applications requiring high strength, high ther... Alumina dispersion strengthened copper composite (nano-Al2O3/Cu composite) was recently emerged as a kind of potentially viable and attractive engineering material for applications requiring high strength, high thermal and electrical conductivities and resistance to softening at elevated temperatures. The nano-Al2O3/Cu composite was produced by internal oxidation. The microstructures of the composite were analyzed by the TEM and its hot deformation behavior was investigated by means of continuous compression tests performed on a Gleeble 1500 thermo-simulator. Making use of the modified algorithm-Levenberg-Marquardt (L-M) algorithm BP neural network, a model for predicting the flow stresses during hot deformation was set up on the base of the experimental data. Results show that the microstructures of the composite are characterized by uniform distribution of nano-Al2O3 particles in Cu-matrix. The sliding of dislocations is the main deformation mechanism. The dynamic recovery is the main softening mode with the flow stress decreasing gently from 500℃ to 850 ~C. The recrystallization of Cu-matrix can be retarded late into as high as 850 ℃, when it happens only partially. The well-trained BP neural network model can accurately describe the influence of the temperature, strain rate, and true strain on the flow stresses, therefore, it can precisely predict the flow stresses of the composite under given deforming conditions and provide a new way to optimize hot deforming process parameters. 展开更多
关键词 al2o3/Cu composite flow stress neural network hot deformation
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