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Ballistic design and testing of a composite armour reinforced by CNTs suitable for armoured vehicles
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作者 Evangelos Ch.Tsirogiannis Evangelos Daskalakis +2 位作者 Mohamed H.Hassan Abdalla M.Omar Paulo Bartolo 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期173-195,共23页
This paper is investigating the use of composite armour reinforced by nanomaterials, for the protection of light armoured(LAV) and medium armoured military vehicles(MAV), and the interaction between the composite mate... This paper is investigating the use of composite armour reinforced by nanomaterials, for the protection of light armoured(LAV) and medium armoured military vehicles(MAV), and the interaction between the composite materials and high-performance ballistic projectiles. Four armour materials, consisted of front hybrid fibre reinforced polymer cover layer, ceramic strike-face, fibre reinforced polymer intermediate layer and the metal matrix composite reinforced backplate, were manufactured and assembled by adhesive technology. The proposed laminated protection system is suitable for armoured ground vehicles;however, it could be used as armour on ground, air and naval platforms. The design of the protection system, including material selection and thickness, was elaborated depending on the performance requirements of Level 4 + STANAG 4569 military standard(projectile 14.5 mm × 114 mm API B32) and especially on a design philosophy which is analysed with the specifications. The backplate of this new composite is a hybrid material of Metal Matrix Composite(MMC) reinforced with carbon nanotubes(CNTs), manufactured with the use of powder metallurgy technique. The composite backplate material was morphologically, mechanically and chemically analysed. Results show that all plates are presenting high mechanical properties and ballistic characteristics, compared to commonly used armour plates. Real military ballistic tests according to AEP-STANAG 4569 were carried out for the total composite armour systems. After the ballistic tests, AA2024-CNT3 showed the best protection results, compared with the other plates(AA2024-CNT1 and AA2024-CNT2), with the projectile being unable to fully penetrate the composite plate. 展开更多
关键词 Passive armour protection Protective armour Ballistic performance Hybrid composites Vehicle protection
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锂硫电池中CNTs-CNFs夹层对多硫化物的捕获和加速转化机理
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作者 陈磊 袁业辉 +1 位作者 宋瑞 张超 《天津工业大学学报》 CAS 北大核心 2024年第4期44-49,共6页
为有效抑制多硫化锂(LiPSs)的穿梭效应,通过静电纺丝、电化学沉积和化学气相生长技术在碳纳米纤维(CNFs)上垂直生长碳纳米管(CNTs),开发了一种超薄、轻质的多功能三维多层交联碳纳米纤维-碳纳米管(CNTs-CNFs)夹层,并研究CNTs-CNFs对锂... 为有效抑制多硫化锂(LiPSs)的穿梭效应,通过静电纺丝、电化学沉积和化学气相生长技术在碳纳米纤维(CNFs)上垂直生长碳纳米管(CNTs),开发了一种超薄、轻质的多功能三维多层交联碳纳米纤维-碳纳米管(CNTs-CNFs)夹层,并研究CNTs-CNFs对锂硫电池(LSBs)电化学性能的影响。研究结果表明:CNTs-CNFs薄膜优异的导电性和丰富的孔隙结构为LSBs提供了均匀的导电网络和LiPSs的吸附过滤屏障,与无夹层相比,含有CNTs-CNFs夹层的电池具有更优异的容量保持率和循环稳定性,在0.2 C电流密度下具有1296.7 mA·h/g的初始放电比容量,在100次循环后仍能提供了864.7 mA·h/g的放电比容量,容量保持率为66.68%。 展开更多
关键词 多硫化锂(LiPSs) 碳纳米纤维-碳纳米管(cnts-CNFs) 夹层 三维多层交联 锂硫电池(LSBs)
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CNTs对多道次低温轧制Mg-2Zn合金板材动态再结晶及力学性能的影响
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作者 李浩 刘轲 +3 位作者 杜文博 李淑波 杜宪 刘辉 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第10期3294-3307,共14页
采用多道次轧制技术制备了不同碳纳米管(CNTs)含量的Mg-2Zn基复合材料板材,利用EBSD、TEM等技术研究了板材的微观组织演变规律,结合拉伸实验分析了板材的强化机理。结果表明:在轧制过程中晶界处的CNTs能够阻碍位错运动,使位错在晶界处堆... 采用多道次轧制技术制备了不同碳纳米管(CNTs)含量的Mg-2Zn基复合材料板材,利用EBSD、TEM等技术研究了板材的微观组织演变规律,结合拉伸实验分析了板材的强化机理。结果表明:在轧制过程中晶界处的CNTs能够阻碍位错运动,使位错在晶界处堆积,导致局部应力集中,促进变形孪晶的产生。变形孪晶诱发动态再结晶(DRX)发生,在孪晶内和孪晶界区域发剧烈的动态再结晶(DRX),导致终态高CNTs含量(CNTs含量为0.6%)的板材的基面织构强度趋弱。CNTs主要影响了板材的织构状态,随着CNTs含量的增加,板材的(0001)基面强度逐渐降低,从轧向(RD)向横向(TD)劈裂,降低了基面织构的强度。在CNTs、细晶和织构强化下,0.4%CNTs/Mg-2Zn复合材料的抗拉强度为283 MPa、屈服强度为260 MPa、伸长率为4%。 展开更多
关键词 MG基复合材料 cnts 轧制变形 动态再结晶 力学性能
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藤蔓结构NiCo-MOF@CNTs复合电极材料制备及性能 被引量:1
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作者 任国行 顾波 +5 位作者 杨小芹 彭晓雪 魏金雨 贾嘉 林喆 秦志宏 《洁净煤技术》 CAS CSCD 北大核心 2024年第1期76-86,共11页
超级电容器是一种高性能电化学储能装置,具有功率密度高、循环稳定性强、充放电速率快等特点,在可再生能源存储中发挥重要作用。为提高超级电容器性能,满足日益增长的能源储存需求,利用水热法制备NiCo-MOF@CNTs复合电极材料,通过改变碳... 超级电容器是一种高性能电化学储能装置,具有功率密度高、循环稳定性强、充放电速率快等特点,在可再生能源存储中发挥重要作用。为提高超级电容器性能,满足日益增长的能源储存需求,利用水热法制备NiCo-MOF@CNTs复合电极材料,通过改变碳纳米管(CNTs)添加量,使复合材料储能特性达到最优。CNTs不仅增加了材料的比表面积和导电性,还与NiCo-MOF形成独特的藤蔓结构,其中NiCo-MOF构成藤蔓的叶片,为电荷存储提供活性位点,而CNTs构成与叶片相连接的茎蔓,将电子源源不断传递至活性中心,改善电化学性能。与未添加CNTs相比,效果最好的NiCo-MOF@CNTs5的比表面积由25.65 m^(2)/g增至44.27 m^(2)/g,平均孔径由37.86 nm降至18.99 nm,孔径分布更有利于电解质离子的扩散与传输;在1 A/g电流密度下,比电容高达1569 F/g,电流密度增至20 A/g时,倍率性能高达74%,高于未加入CNTs的NiCo-MOF电极材料(42.6%)。组装成非对称超级电容器后,在1 A/g电流密度下比电容为194 F/g,电流密度增至20 A/g时比电容仍有147 F/g;在5 A/g电流密度下经5000次充放电循环后,比电容保有率91.2%;在759 W/kg功率密度下的能量密度高达50.63 Wh/kg,功率密度提至17.3 kW/kg仍能实现41.94 Wh/kg高能量密度。 展开更多
关键词 超级电容器 金属有机骨架 水热法 碳纳米管 藤蔓结构
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球磨方式对CNTs/Al复合材料显微组织与力学性能的影响
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作者 游远琪 李才巨 +3 位作者 杨超 邢辕 彭言之 易健宏 《粉末冶金技术》 CAS CSCD 北大核心 2024年第4期331-337,345,共8页
采用湿法球磨和干法球磨两种方式制备碳纳米管(carbon nanotubes,CNTs)和铝的复合粉体,再使用放电等离子烧结结合热挤压的工艺制备碳纳米管增强铝基(CNTs/Al)复合材料,系统研究了制备工艺-组织结构-材料性能之间的关系。结果表明,相较... 采用湿法球磨和干法球磨两种方式制备碳纳米管(carbon nanotubes,CNTs)和铝的复合粉体,再使用放电等离子烧结结合热挤压的工艺制备碳纳米管增强铝基(CNTs/Al)复合材料,系统研究了制备工艺-组织结构-材料性能之间的关系。结果表明,相较于干法球磨,湿法球磨可以更好地分散碳纳米管,且显著减少对其结构的破坏;乙醇球磨介质具有冷却作用,在减少粉体冷焊的同时有助于细化Al基体晶粒,从而使复合材料获得出色的力学性能。乙醇湿法球磨6 h后烧结并热挤压的2%CNTs/Al复合材料抗拉强度达到207 MPa。 展开更多
关键词 cnts增强铝基复合材料 球磨工艺 湿法球磨 显微组织 力学性能
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AuNPs/CNTs/PDMS复合薄膜的制备及其导电性能研究
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作者 赵冬 王浩宇 +4 位作者 程宏烈 姚鹏龙 白金锁 吴思彤 桑胜波 《化工新型材料》 CAS CSCD 北大核心 2024年第11期62-66,共5页
通过物理混合和原位还原的方法制备了纳米金/碳纳米管/聚二甲基硅氧烷(AuNPs/CNTs/PDMS)复合薄膜。扫描电子显微镜分析表明碳纳米管(CNTs)在PDMS中均匀分布。当CNTs含量为4%(wt,质量分数,下同)时,其与纳米金(AuNPs)形成相互连接的网络,... 通过物理混合和原位还原的方法制备了纳米金/碳纳米管/聚二甲基硅氧烷(AuNPs/CNTs/PDMS)复合薄膜。扫描电子显微镜分析表明碳纳米管(CNTs)在PDMS中均匀分布。当CNTs含量为4%(wt,质量分数,下同)时,其与纳米金(AuNPs)形成相互连接的网络,复合薄膜具有导电性;CNTs含量为3%,AuNPs还原时间为8h时,复合薄膜灵敏度最高,应变系数为5.71。AuNPs/CNTs/PDMS复合薄膜具有良好的柔韧性和导电性,可广泛应用于柔性可穿戴设备。 展开更多
关键词 AuNPs/cnts/PDMS 柔性 应变传感器 协同导电
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原位生长的CNTs@MoS_(2)杂化物增强水性膨胀型防火涂料的耐火和隔热性能
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作者 王晓明 朱耿增 +7 位作者 金义杰 贾丹 段海涛 詹胜鹏 杨田 凃杰松 章武林 马利欣 《表面技术》 EI CAS CSCD 北大核心 2024年第4期200-210,共11页
目的设计并研制一种耐火和隔热性能突出的水性膨胀型防火涂料。方法以碳纳米管(CNTs)、四水合钼酸铵、十六烷基溴化铵(CTAB)、硫脲为原料,通过简单的一步水热法原位生长出一种新型的CNTs@MoS_(2)杂化物,并采用FT-IR、XRD、拉曼光谱、SE... 目的设计并研制一种耐火和隔热性能突出的水性膨胀型防火涂料。方法以碳纳米管(CNTs)、四水合钼酸铵、十六烷基溴化铵(CTAB)、硫脲为原料,通过简单的一步水热法原位生长出一种新型的CNTs@MoS_(2)杂化物,并采用FT-IR、XRD、拉曼光谱、SEM等手段对复合杂化物进行表征。再将CNTs@MoS_(2)杂化物作为增效剂分散在水性膨胀型防火涂料(CNTs@MoS_(2)/WES)中,通过大板实验和涂层、炭焦层表面分析评价了涂层的耐火和隔热性能。结果与WES(膨胀倍率为3.90)、CNTs/WES涂层(膨胀倍率为6.04)、MoS_(2)/WES涂层(膨胀倍率为4.59)相比,CNTs@MoS_(2)/WES涂层具有最高的膨胀倍率(8.88)。CNTs@MoS_(2)/WES涂层所涂覆的钢板在燃烧40min后背面温度最低(133.3℃),这充分表明该涂层具有优异的隔热性能。结论制备的CNTs@MoS_(2)杂化物表现出稳定的网络交织结构,有效提高了它在涂料中的分散性能。此外,CNTs@MoS_(2)/WES涂层优异的耐火和隔热性能主要归因于:1)CNTs@MoS_(2)/WES涂层及其炭焦层具有更致密和完整的表面,阻隔了热量的传递;2)CNTs的添加增强了炭焦层的致密性,抑制了膨胀过程中产生的气体泄漏,提升了涂层膨胀倍率;3)MoS_(2)提高了膨胀层强度且促进了炭焦层的形成,减少了裂纹和孔隙的产生。 展开更多
关键词 碳纳米管(cnts) 二硫化钼(MoS_(2)) 协同效应 耐火性能 阻燃机理
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复合纳米材料MoS_(2)@CNTs光电催化降解盐酸四环素的研究
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作者 袁盛力 何德勇 +2 位作者 方洁 欧千慧 熊艳 《现代化工》 CAS CSCD 北大核心 2024年第9期97-102,共6页
通过水热法成功合成了不同MoS_(2)与CNTs质量比的复合纳米光催化材料MoS_(2)@CNTs-x%,并通过滴涂法制备具有光电响应的M@C-x%/FTO光电极。利用SEM、XRD、UV-Vis DRS、I-t、EIS和M-S曲线等表征方法分析了复合纳米催化剂的微观形貌、晶体... 通过水热法成功合成了不同MoS_(2)与CNTs质量比的复合纳米光催化材料MoS_(2)@CNTs-x%,并通过滴涂法制备具有光电响应的M@C-x%/FTO光电极。利用SEM、XRD、UV-Vis DRS、I-t、EIS和M-S曲线等表征方法分析了复合纳米催化剂的微观形貌、晶体结构、光电化学性能。将M@C-x%/FTO光电极用于光电催化降解盐酸四环素,考察了四环素(TC)初始质量浓度、初始pH对光电催化降解盐酸四环素的影响。运用自由基捕获实验鉴定了光电催化降解过程中的主要反应活性物种;并结合光催化剂能带分析光电催化降解机理。结果表明,电极M@C-5%/FTO具有最佳的光电催化性能。 展开更多
关键词 光电催化 盐酸四环素 降解率 MoS_(2) cnts
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CIPs@Mn_(0.8)Zn_(0.2)Fe_(2)O_(4)-CNTs复合材料低频吸波性能研究
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作者 陈海燕 唐志鹏 +2 位作者 尹良君 张林博 徐鑫 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第1期71-80,I0003,I0004,共12页
随着5G无线通信与低频雷达侦察技术的飞速发展,低频电磁波辐射已成为当代的严重问题。目前,中高频段吸波材料的研究已趋于成熟,而设计低频段吸波材料仍面临巨大的挑战,亟待研究者们解决。基于四分之一波长相消机制,本研究设计了0.5~3 GH... 随着5G无线通信与低频雷达侦察技术的飞速发展,低频电磁波辐射已成为当代的严重问题。目前,中高频段吸波材料的研究已趋于成熟,而设计低频段吸波材料仍面临巨大的挑战,亟待研究者们解决。基于四分之一波长相消机制,本研究设计了0.5~3 GHz低频段复合吸波材料。采用简单的一步水热法,诱导铁氧体在羰基铁粉与碳纳米管表面生长,制备出CIPs@Mn_(0.8)Zn_(0.2)Fe_(2)O_(4)-CNTs三元复合材料,对比研究了碳纳米管含量对材料吸收峰频率的影响。实验结果表明,引入碳纳米管,一方面为材料带来了界面极化、偶极极化等额外的损耗机制,增加了材料的衰减系数;另一方面基于四分之一波长相消机制,高介电与高磁导率的耦合,使材料在低频段获得良好的阻抗匹配。最终,在4 mm厚度下,样品分别在2.11与1.75 GHz处,获得了–40.8与–32.1 dB的反射损耗,–10 dB带宽分别为1.70~2.70 GHz和1.40~2.20 GHz。该复合材料制备工艺简单,低频吸收性能良好,具有很大的应用潜力,为开发更有效的低频吸波材料提供了新的思路和方法。 展开更多
关键词 碳纳米管 复合材料 羰基铁粉 波长相消 低频吸波
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烧结温度对CNTs/Cu复合材料组织和力学性能的影响
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作者 杜航 杨柳 +2 位作者 江永涛 陈枳匀 邓丽萍 《机械工程材料》 CAS CSCD 北大核心 2024年第6期62-66,共5页
采用电泳沉积法在铜箔上沉积碳纳米管,层层堆叠后在不同烧结温度(550,650,750,850,950℃)下热压烧结制备碳纳米管增强铜基(CNTs/Cu)复合材料,研究了烧结温度对复合材料显微组织和力学性能的影响。结果表明:随着烧结温度升高,复合材料中... 采用电泳沉积法在铜箔上沉积碳纳米管,层层堆叠后在不同烧结温度(550,650,750,850,950℃)下热压烧结制备碳纳米管增强铜基(CNTs/Cu)复合材料,研究了烧结温度对复合材料显微组织和力学性能的影响。结果表明:随着烧结温度升高,复合材料中孔隙的数量减少,尺寸减小,碳纳米管分布均匀性增大,铜晶粒尺寸增大,退火孪晶晶粒尺寸增大但数量减少;随着烧结温度升高,复合材料的抗拉强度和显微硬度均呈先减小后增大的趋势,断后伸长率变化呈非单调性变化;当烧结温度为650℃时,复合材料的抗拉强度和显微硬度适中,断后伸长率最大,综合力学性能最好。 展开更多
关键词 cnts/Cu复合材料 烧结温度 显微组织 力学性能
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CNTs/Cu层状复合材料的制备及其组织和性能研究
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作者 徐雪霞 王勇 +4 位作者 李文彬 董国振 李国维 刘洹钰 丁海民 《热加工工艺》 北大核心 2024年第14期69-72,共4页
采用扩散结合法将分散后的碳纳米管附着在铜箔表面,经裁剪、堆叠和预压后使用真空热压烧结炉进行烧结,制备出具有优良导电性的CNTs/Cu层状复合材料。使用SEM、EDS和XRD等对样品的微观形貌和成分进行表征,使用显微硬度计和导电率检测仪... 采用扩散结合法将分散后的碳纳米管附着在铜箔表面,经裁剪、堆叠和预压后使用真空热压烧结炉进行烧结,制备出具有优良导电性的CNTs/Cu层状复合材料。使用SEM、EDS和XRD等对样品的微观形貌和成分进行表征,使用显微硬度计和导电率检测仪等对样品性能进行测试。结果表明:在热压烧结过程中,一定量铜扩散到CNTs层中,有效改善了碳纳米管层和铜层的结合能力。相比于纯铜,CNTs/Cu层状复合材料在硬度提高45%的同时,在平行于碳纳米管层方向导电率达到91%IACS,而垂直于碳纳米管层方向也仍具有80.6%IACS的导电率。 展开更多
关键词 碳纳米管 扩散结合法 cnts/Cu复合材料 导电性
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原位生长CNTs对于铜基复合材料性能的影响
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作者 周金佳 陈小红 +1 位作者 周洪雷 付少利 《有色金属材料与工程》 CAS 2024年第3期92-98,共7页
通过化学气相沉积(chemical vapor deposition,CVD)法成功制备了CNTs/Cu-Al_(2)O_(3)复合材料。采用内氧化法制备Cu-Al_(2)O_(3)粉末,利用CVD技术改善碳纳米管(carbon nanotubes,CNTs)在铜基体中的分散性和界面结合,提高复合材料的性能... 通过化学气相沉积(chemical vapor deposition,CVD)法成功制备了CNTs/Cu-Al_(2)O_(3)复合材料。采用内氧化法制备Cu-Al_(2)O_(3)粉末,利用CVD技术改善碳纳米管(carbon nanotubes,CNTs)在铜基体中的分散性和界面结合,提高复合材料的性能。在制备的铜基复合材料中,Al_(2)O_(3)和CNTs双增强相的加入能够提高复合材料的力学性能,且CNTs独特的纤维结构有助于阻止熔融铜脱离基体表面,保持液态熔池稳定,避免复合材料导电率降低。双增强相的添加提高了复合材料的耐磨性、抑制了腐蚀坑的形成。Al的质量分数为0.35%的CNTs/Cu-Al_(2)O_(3)复合材料能够保证导电率较高的情况下得到较高的维氏硬度与致密度。为制备高性能铜基电接触材料提供了新思路。 展开更多
关键词 原位生长 铜基复合材料 cnts 摩擦磨损 粉末冶金
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Ti_(3)C_(2)T_(x) MXene/carbon composites for advanced supercapacitors:Synthesis,progress,and perspectives 被引量:1
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作者 Yanqing Cai Xinggang Chen +4 位作者 Ying Xu Yalin Zhang Huijun Liu Hongjuan Zhang Jing Tang 《Carbon Energy》 SCIE EI CAS CSCD 2024年第2期113-142,共30页
MXenes are a family of two-dimensional(2D)layered transition metal carbides/nitrides that show promising potential for energy storage applications due to their high-specific surface areas,excellent electron conductivi... MXenes are a family of two-dimensional(2D)layered transition metal carbides/nitrides that show promising potential for energy storage applications due to their high-specific surface areas,excellent electron conductivity,good hydrophilicity,and tunable terminations.Among various types of MXenes,Ti_(3)C_(2)T_(x) is the most widely studied for use in capacitive energy storage applications,especially in supercapacitors(SCs).However,the stacking and oxidation of MXene sheets inevitably lead to a significant loss of electrochemically active sites.To overcome such challenges,carbon materials are frequently incorporated into MXenes to enhance their electrochemical properties.This review introduces the common strategies used for synthesizing Ti_(3)C_(2)T_(x),followed by a comprehensive overview of recent developments in Ti_(3)C_(2)T_(x)/carbon composites as electrode materials for SCs.Ti_(3)C_(2)T_(x)/carbon composites are categorized based on the dimensions of carbons,including 0D carbon dots,1D carbon nanotubes and fibers,2D graphene,and 3D carbon materials(activated carbon,polymer-derived carbon,etc.).Finally,this review also provides a perspective on developing novel MXenes/carbon composites as electrodes for application in SCs. 展开更多
关键词 electrochemical performance MXene/carbon composites SUPERCAPACITORS
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Strength and elastic modulus enhancement in Mg-Li-Al matrix composites reinforced by ex situ TiB2 particles via stir casting 被引量:1
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作者 Jiawei Sun Dehua Ding +4 位作者 Wencai Liu Guohua Wu Hongjie Liu Guangling Wei Hezhou Liu 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第9期3574-3588,共15页
A novel Mg^(-1)0Li-3Al(wt.%,LA103)matrix composite reinforced by ex situ micron TiB_(2) particles was developed in the present study.The ball milling and cold pressing pretreatment of the reinforcements made it feasib... A novel Mg^(-1)0Li-3Al(wt.%,LA103)matrix composite reinforced by ex situ micron TiB_(2) particles was developed in the present study.The ball milling and cold pressing pretreatment of the reinforcements made it feasible to prepare this material under stir casting conditions with good dispersion.The microstructure and mechanical properties of the composites prepared by different pretreatment methods were analyzed in detail.The TiB_(2) particles in the Al-TiB_(2)/LA103 composite using the pretreatment process were uniformly distributed in the microstructure due to the formation of highly wettable core-shell units in the melt.Compared with the matrix alloys,the Al-TiB_(2)/LA103 composite exhibited effective strength and elastic modulus improvements while maintaining acceptable elongation.The strengthening effect in the composites was mainly attributed to the strong grain refining effect of TiB2.This work shows a balance of high specific modulus(36.1 GPa·cm^(3)·g^(-1))and elongation(8.4%)with the conventional stir casting path,which is of considerable application value. 展开更多
关键词 Mg-Li composite Stir casting Elastic modulus Microstructure Mechanical properties
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Mechanical behaviors of backfill-rock composites: Physical shear test and back-analysis 被引量:1
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作者 Jie Xin Quan Jiang +5 位作者 Fengqiang Gong Lang Liu Chang Liu Qiang Liu Yao Yang Pengfei Chen 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第3期807-827,共21页
The shear behavior of backfill-rock composites is crucial for mine safety and the management of surface subsidence.For exposing the shear failure mechanism of backfill-rock composites,we conducted shear tests on backf... The shear behavior of backfill-rock composites is crucial for mine safety and the management of surface subsidence.For exposing the shear failure mechanism of backfill-rock composites,we conducted shear tests on backfill-rock composites under three constant normal loads,compared with the unfilled rock.To investigate the macro-and meso-failure characteristics of the samples in the shear tests,the cracking behavior of samples was recorded by a high-speed camera and acoustic emission monitoring.In parallel with the experimental test,the numerical models of backfill-rock composites and unfilled rock were established using the discrete element method to analyze the continuous-discontinuous shearing process.Based on the damage mechanics and statistics,a novel shear constitutive model was proposed to describe mechanical behavior.The results show that backfill-rock composites had a special bimodal phenomenon of shearing load-deformation curve,i.e.the first shearing peak corresponded to rock break and the second shearing peak induced by the broken of aeolian sand-cement/fly ash paste backfill.Moreover,the shearing characteristic curves of the backfill-rock composites could be roughly divided into four stages,i.e.the shear failure of the specimens experienced:stage I:stress concentration;stage II:crack propagation;stage III:crack coalescence;stage IV:shearing friction.The numerical simulation shows that the existence of aeolian sand-cement/fly ash paste backfill inevitably altered the coalescence type and failure mode of the specimens and had a strengthening effect on the shear strength of backfillrock composites.Based on damage mechanics and statistics,a shear constitutive model was proposed to describe the shear fracture characteristics of specimens,especially the bimodal phenomenon.Finally,the micro-and meso-mechanisms of shear failure were discussed by combining the micro-test and numerical results.The research can advance the better understanding of the shear behavior of backfill-rock composites and contribute to the safety of mining engineering. 展开更多
关键词 Physical simulation Backfill-rock composites Shear failure CRACKING Shear constitutive model
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Ultraviolet‑Irradiated All‑Organic Nanocomposites with Polymer Dots for High‑Temperature Capacitive Energy Storage 被引量:1
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作者 Jiale Ding Yao Zhou +5 位作者 Wenhan Xu Fan Yang Danying Zhao Yunhe Zhang Zhenhua Jiang Qing Wang 《Nano-Micro Letters》 SCIE EI CSCD 2024年第3期398-406,共9页
Polymer dielectrics capable of operating efficiently at high electric fields and elevated temperatures are urgently demanded by next-generation electronics and electrical power systems.While inorganic fillers have bee... Polymer dielectrics capable of operating efficiently at high electric fields and elevated temperatures are urgently demanded by next-generation electronics and electrical power systems.While inorganic fillers have been extensively utilized to improved high-temperature capacitive performance of dielectric polymers,the presence of thermodynamically incompatible organic and inorganic components may lead to concern about the long-term stability and also complicate film processing.Herein,zero-dimensional polymer dots with high electron affinity are introduced into photoactive allyl-containing poly(aryl ether sulfone)to form the all-organic polymer composites for hightemperature capacitive energy storage.Upon ultraviolet irradiation,the crosslinked polymer composites with polymer dots are efficient in suppressing electrical conduction at high electric fields and elevated temperatures,which significantly reduces the high-field energy loss of the composites at 200℃.Accordingly,the ultraviolet-irradiated composite film exhibits a discharged energy density of 4.2 J cm^(−3)at 200℃.Along with outstanding cyclic stability of capacitive performance at 200℃,this work provides a promising class of dielectric materials for robust high-performance all-organic dielectric nanocomposites. 展开更多
关键词 High-temperature energy storage Polymer dots Ultraviolet irradiation All-organic composite dielectrics
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Self‑Assembly of Binderless MXene Aerogel for Multiple‑Scenario and Responsive Phase Change Composites with Ultrahigh Thermal Energy Storage Density and Exceptional Electromagnetic Interference Shielding 被引量:1
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作者 Chuanbiao Zhu Yurong Hao +8 位作者 Hao Wu Mengni Chen Bingqing Quan Shuang Liu Xinpeng Hu Shilong Liu Qinghong Ji Xiang Lu Jinping Qu 《Nano-Micro Letters》 SCIE EI CSCD 2024年第3期367-382,共16页
The severe dependence of traditional phase change materials(PCMs)on the temperature-response and lattice deficiencies in versatility cannot satisfy demand for using such materials in complex application scenarios.Here... The severe dependence of traditional phase change materials(PCMs)on the temperature-response and lattice deficiencies in versatility cannot satisfy demand for using such materials in complex application scenarios.Here,we introduced metal ions to induce the self-assembly of MXene nanosheets and achieve their ordered arrangement by combining suction filtration and rapid freezing.Subsequently,a series of MXene/K^(+)/paraffin wax(PW)phase change composites(PCCs)were obtained via vacuum impregnation in molten PW.The prepared MXene-based PCCs showed versatile applications from macroscale technologies,successfully transforming solar,electric,and magnetic energy into thermal energy stored as latent heat in the PCCs.Moreover,due to the absence of binder in the MXene-based aerogel,MK3@PW exhibits a prime solar-thermal conversion efficiency(98.4%).Notably,MK3@PW can further convert the collected heat energy into electric energy through thermoelectric equipment and realize favorable solar-thermal-electric conversion(producing 206 mV of voltage with light radiation intensity of 200 mw cm^(−2)).An excellent Joule heat performance(reaching 105℃with an input voltage of 2.5 V)and responsive magnetic-thermal conversion behavior(a charging time of 11.8 s can achieve a thermal insulation effect of 285 s)for contactless thermotherapy were also demonstrated by the MK3@PW.Specifically,as a result of the ordered arrangement of MXene nanosheet self-assembly induced by potassium ions,MK3@PW PCC exhibits a higher electromagnetic shielding efficiency value(57.7 dB)than pure MXene aerogel/PW PCC(29.8 dB)with the same MXene mass.This work presents an opportunity for the multi-scene response and practical application of PCMs that satisfy demand of next-generation multifunctional PCCs. 展开更多
关键词 Self-assembly Multiple-scenario Phase change composites Thermal energy storage Electromagnetic interference shielding
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CeO_(2)/BiOBr/CNTs催化剂的制备及其降解抗生素性能研究
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作者 李友凤 方程 +3 位作者 陈林羽 唐彩霞 吕国玲 肖菡曦 《现代化工》 CAS CSCD 北大核心 2024年第5期122-127,134,共7页
采用水热法合成了CeO_(2)、CeO_(2)/BiOBr、CeO_(2)/CNTs和CeO_(2)/BiOBr/CNTs复合纳米材料催化剂,利用XRD、SEM、BET和UV-Vis等方法对材料的结构、形貌和织构特性进行表征。在长弧氙灯照射下模拟太阳可见光降解抗生素,研究复合纳米材... 采用水热法合成了CeO_(2)、CeO_(2)/BiOBr、CeO_(2)/CNTs和CeO_(2)/BiOBr/CNTs复合纳米材料催化剂,利用XRD、SEM、BET和UV-Vis等方法对材料的结构、形貌和织构特性进行表征。在长弧氙灯照射下模拟太阳可见光降解抗生素,研究复合纳米材料的光催化氧化性能。结果表明,CeO_(2)与BiOBr、CNTs间的协同作用导致其对土霉素降解效果优于CeO_(2);CeO_(2)/BiOBr/CNTs对抗生素和可见光具有更高的吸收性能,比CeO_(2)/BiOBr和CeO_(2)/CNTs有更高的降解效率。在弱碱性环境下生成活性基团·OH,复合材料催化效果较好。复合材料禁带宽度都在可见光范围内,CeO_(2)的复合提高了材料的光利用效率,增强了材料的吸附性和电子-空穴对的迁移效率,进而提高其光催化活性。回收脱附实验表明,CeO_(2)/BiOBr/CNTs复合材料具有较好的稳定性。 展开更多
关键词 CeO_(2)/BiOBr/cnts 复合纳米材料 光催化降解 抗生素 催化剂机理
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Highly Aligned Graphene Aerogels for Multifunctional Composites 被引量:1
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作者 Ying Wu Chao An +4 位作者 Yaru Guo Yangyang Zong Naisheng Jiang Qingbin Zheng Zhong‑Zhen Yu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第6期276-342,共67页
Stemming from the unique in-plane honeycomb lattice structure and the sp^(2)hybridized carbon atoms bonded by exceptionally strong carbon–carbon bonds,graphene exhibits remarkable anisotropic electrical,mechanical,an... Stemming from the unique in-plane honeycomb lattice structure and the sp^(2)hybridized carbon atoms bonded by exceptionally strong carbon–carbon bonds,graphene exhibits remarkable anisotropic electrical,mechanical,and thermal properties.To maximize the utilization of graphene’s in-plane properties,pre-constructed and aligned structures,such as oriented aerogels,films,and fibers,have been designed.The unique combination of aligned structure,high surface area,excellent electrical conductivity,mechanical stability,thermal conductivity,and porous nature of highly aligned graphene aerogels allows for tailored and enhanced performance in specific directions,enabling advancements in diverse fields.This review provides a comprehensive overview of recent advances in highly aligned graphene aerogels and their composites.It highlights the fabrication methods of aligned graphene aerogels and the optimization of alignment which can be estimated both qualitatively and quantitatively.The oriented scaffolds endow graphene aerogels and their composites with anisotropic properties,showing enhanced electrical,mechanical,and thermal properties along the alignment at the sacrifice of the perpendicular direction.This review showcases remarkable properties and applications of aligned graphene aerogels and their composites,such as their suitability for electronics,environmental applications,thermal management,and energy storage.Challenges and potential opportunities are proposed to offer new insights into prospects of this material. 展开更多
关键词 Highly aligned graphene aerogels Quantitative characterization of alignment Multifunctional composites Anisotropic properties Multifunctional applications
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Effects of Sinusoidal Vibration of Crystallization Roller on Composite Microstructure of Ti/Al Laminated Composites by Twin-Roll Casting
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作者 李励 杜凤山 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第1期196-205,共10页
A new,innovative vibration cast-rolling technology of “electromagnetic stirring+dendrite breaking+asynchronous rolling” was proposed with the adoption of sinusoidal vibration of crystallization roller to prepare Ti/... A new,innovative vibration cast-rolling technology of “electromagnetic stirring+dendrite breaking+asynchronous rolling” was proposed with the adoption of sinusoidal vibration of crystallization roller to prepare Ti/Al laminated composites,and the effect of sinusoidal vibration of crystallization roller on composite microstructure was investigated in detail.The results show that the metallurgical bonding of titanium and aluminum is realized by mesh interweaving and mosaic meshing,instead of transition bonding by forming metal compound layer.The meshing depth between titanium and aluminum layers (6.6μm) of cast-rolling materials with strong vibration of crystallization roller (amplitude 0.87 mm,vibration frequency 25 Hz) is doubled compared with that of traditional cast-rolling materials (3.1μm),and the composite interfacial strength(27.0 N/mm) is twice as high as that of traditional cast-rolling materials (14.9 N/mm).This is because with the action of high-speed superposition of strong tension along the rolling direction,strong pressure along the width direction and rolling force,the composite linearity evolves from "straight line" with traditional casting-rolling to "curved line",and the depth and number of cracks in the interface increases greatly compared with those with traditional cast-rolling,which leads to the deep expansion of the meshing area between interfacial layers and promotes the stable enhancement of composite quality. 展开更多
关键词 laminated composites sinusoidal vibration composite microstructure
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