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润湿型化学抑尘剂的试验研究 被引量:72
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作者 金龙哲 杨继星 欧盛南 《安全与环境学报》 CAS CSCD 2007年第6期109-112,共4页
利用润湿型化学抑尘剂除尘作为粉尘治理的手段之一,有很好的应用前景和发展空间。在分折了抑尘剂抑尘机理的基础上,对润湿型化学抑尘剂进行了系统研究,对比研究了多种吸湿材料的吸湿保湿能力和几种表面活性剂的润湿能力,优选了氯化钙、... 利用润湿型化学抑尘剂除尘作为粉尘治理的手段之一,有很好的应用前景和发展空间。在分折了抑尘剂抑尘机理的基础上,对润湿型化学抑尘剂进行了系统研究,对比研究了多种吸湿材料的吸湿保湿能力和几种表面活性剂的润湿能力,优选了氯化钙、氯化镁和曲拉通X-100作为抑尘剂的基料和辅料,进行抑尘剂配方研究并对抑尘剂配方进行了优化。在现场试验中,喷洒添加了抑尘剂配方溶液的粉尘含水率明显高于只喷洒清水的粉尘含水率且保湿时间长;在公路碾压试验中喷洒了抑尘剂溶液的公路的粉尘抑制期达到4d以上,取得了很好的抑尘效果。 展开更多
关键词 安全技术 粉尘控制 润湿化学抑尘剂 抑尘机理 配方优化 现场试验
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Ni-Ti/SiC系统的润湿及界面反应产物研究 被引量:3
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作者 张利 孙卫忠 +1 位作者 李树杰 段辉平 《武汉理工大学学报》 EI CAS CSCD 北大核心 2006年第11期32-34,40,共4页
采用座滴法研究了Ni-Ti粉末在SiC陶瓷界面的润湿行为,结果显示,Ti含量增加、温度升高、保温时间延长,Ni-Ti/SiC陶瓷系统润湿性均得到改善。界面区域的SEM、EDS、XRD分析表明,活性元素Ti在界面富集形成富Ti化合物区域,可能生成的产物相有... 采用座滴法研究了Ni-Ti粉末在SiC陶瓷界面的润湿行为,结果显示,Ti含量增加、温度升高、保温时间延长,Ni-Ti/SiC陶瓷系统润湿性均得到改善。界面区域的SEM、EDS、XRD分析表明,活性元素Ti在界面富集形成富Ti化合物区域,可能生成的产物相有TiSi2、Ti5Si3、TiC、Ti2Ni和Ni3C,产物类型与金属粉料原始组分及润湿条件有关。当Ti含量为Ni-Ti粉末焊料的50%(质量分数)时,其产物为以TiC、Ti2Ni为主含少量Ni3C的混合物,借助于Ti2Ni的液相传质和TiC与SiC陶瓷良好的晶格匹配关系可以实现界面的良好润湿。 展开更多
关键词 金属/陶瓷 界面反应 化学润湿 SIC陶瓷
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活性粉末Ni-Al与SiC陶瓷的界面润湿特性和润湿机理研究 被引量:2
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作者 张利 李树杰 张坤 《粉末冶金技术》 EI CAS CSCD 北大核心 2006年第3期163-165,共3页
采用座滴法研究了不同Al含量、不同温度和保温时间对Ni-Al/SiC体系界面润湿性的影响,通过SEM、XRD分析了Ni-Al/SiC体系的润湿机理。结果表明,Ni-Al系焊料与SiC陶瓷的润湿过程属化学润湿,在本研究的试验范围之内,随着Al含量增加、温度升... 采用座滴法研究了不同Al含量、不同温度和保温时间对Ni-Al/SiC体系界面润湿性的影响,通过SEM、XRD分析了Ni-Al/SiC体系的润湿机理。结果表明,Ni-Al系焊料与SiC陶瓷的润湿过程属化学润湿,在本研究的试验范围之内,随着Al含量增加、温度升高、保温时间延长,润湿角下降。由于界面反应产物Al4C3的生成导致的扩散层体积增大是Ni-Al/SiC体系润湿性得到改善的关键。 展开更多
关键词 化学润湿 接触角 动力学
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Ni-Nb粉末与SiC陶瓷界面润湿特性研究 被引量:2
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作者 张利 李树杰 《武汉理工大学学报》 EI CAS CSCD 北大核心 2006年第5期11-13,共3页
研究了Ni-Nb金属粉末与SiC陶瓷的界面润湿特性,结果表明,增加Nb含量、升高温度或延长保温时间,系统润湿性均得到改善。对润湿系统界面区域微观结构的SEM、EDS分析表明,由于活性元素Nb的加入,在一定的温度、时间和气氛等条件下,焊料与陶... 研究了Ni-Nb金属粉末与SiC陶瓷的界面润湿特性,结果表明,增加Nb含量、升高温度或延长保温时间,系统润湿性均得到改善。对润湿系统界面区域微观结构的SEM、EDS分析表明,由于活性元素Nb的加入,在一定的温度、时间和气氛等条件下,焊料与陶瓷发生相互间的溶解、扩散和反应,其接触界面发生改变,此时测得的润湿角已不是Ni-Nb液滴/SiC陶瓷衬底的接触角,而是新生成的固液界面间的接触角。界面区域具有连续结构的Ni-Si化合物的生成对于Ni-Nb/SiC陶瓷体系的润湿起重要作用。 展开更多
关键词 化学润湿 接触角 动力学 SIC陶瓷
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Preparation and Characterization of ZnO-CuO-Bi_(2)O_(3)-B_(2)O_(3)-SiO_(2)System Low Melting Sealing Glasses
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作者 HE Yifeng LI Xiuying +5 位作者 LI Chaoyuan GUO Huiming XIAO Zhuohao ZHU Shengbin DONG Hongbo FU Zhen 《陶瓷学报》 CAS 北大核心 2024年第5期931-940,共10页
Lead-free low melting glasses,ZnO-CuO-Bi_(2)O_(3)-B_(2)O_(3)-SiO_(2)system,with fixed contents of 15 mol%CuO and 20 mol%Bi_(2)O_(3),were prepared by using melt cooling method.Structure and thermal properties of the gl... Lead-free low melting glasses,ZnO-CuO-Bi_(2)O_(3)-B_(2)O_(3)-SiO_(2)system,with fixed contents of 15 mol%CuO and 20 mol%Bi_(2)O_(3),were prepared by using melt cooling method.Structure and thermal properties of the glasses were studied by using X-ray diffractometer(XRD),infrared spectrometer(FIT-IR),thermal dilatometer and differential thermal analyzer(DTA).Chemical durability of the glasses was studied by using dissolution rate method.Wettability of glasses on substrate was tested by using button sintering experiment.It is found that alkaline resistance of the glass solders is lower than that of plate glass and the water resistance is comparable with that of plate glass.The sealing temperatures are Ts=445-490℃,while the average thermal expansion coefficient from room temperature to 300℃is in the range of(65-82)×10^(−7)℃^(−1).At sealing temperature,the glass solders have good wettability on plate glass or alumina substrate.They are not crystallized even sintered at the sealing temperature for 30 min.The solder glasses are suitable for sealing plate glass,alumina and other inorganic non-metallic materials. 展开更多
关键词 bismuth borate glass solder glasses WETTABILITY chemical durability thermal properties
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Laser surface functionalization to achieve extreme surface wetting conditions and resultant surface functionalities 被引量:3
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作者 WANG Qing-hua WANG Hui-xin 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3217-3247,共31页
Wetting condition of micro/nanostructured surface has received tremendous attention due to the potential applications in commercial,industrial,and military areas.Surfaces with extreme wetting properties,e.g.,superhydr... Wetting condition of micro/nanostructured surface has received tremendous attention due to the potential applications in commercial,industrial,and military areas.Surfaces with extreme wetting properties,e.g.,superhydrophobic or superhydrophilic,are extensively employed due to their superior anti-icing,drag reduction,enhanced boiling heat transfer,self-cleaning,and anti-bacterial properties depending on solid-liquid interfacial interactions.Laser-based techniques have gained popularity in recent years to create micro/nano-structured surface owing to their high flexibility,system precision,and ease for automation.These techniques create laser induced periodic surface structures(LIPSS)or hierarchical structures on substrate material.However,micro/nanostructures alone cannot attain the desired wettability.Subsequent modification of surface chemistry is essentially needed to achieve target extreme wettability.This review paper aims to provide a comprehensive review for both laser texturing techniques and the following chemistry modification methods.Recent research progress and fundamental mechanisms of surface structure generation via different types of lasers and various chemistry modification methods are discussed.The complex combination between the laser texturing and surface chemistry modification methods to decide the final wetting condition is presented.More importantly,surface functionalities of these surfaces with extreme wetting properties are discussed.Lastly,prospects for future research are proposed and discussed. 展开更多
关键词 laser surface modification extreme wettability chemistry modification surface functionality
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Water wettability in nanoconfined environment 被引量:2
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作者 ZHOU YaHong GUO Wei JIANG Lei 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第5期836-843,共8页
Water confined in nanoscale space behaves quite differently from that in the bulk.For example,in biological aquaporins and in carbon nanotubes,the traversing water molecules form a single file configuration.Water woul... Water confined in nanoscale space behaves quite differently from that in the bulk.For example,in biological aquaporins and in carbon nanotubes,the traversing water molecules form a single file configuration.Water would stay in vapor state in extremely hydrophobic narrow nanopores owing to the physicochemical interactions between the water molecules and the surface of the nanopore.A spontaneous wet-dry transition has been identified in both biological and artificial nanopores.The nanopore is either fulfilled with liquid water or completely empty.Based on this mechanism,the wetting and dewetting processes inside nanopores have been further developed into highly efficient nanofluidic gates that can be switched by external stimuli,such as light irradiation,electric potential,temperature,and mechanical pressure.This review briefly covers the recent progress in the special wettability in nanoconfined environment,water transportation through biological or artificial nanochannels,as well as the smart nanofluidic gating system controlled by the water wettability. 展开更多
关键词 WETTABILITY NANOPORE hydrophobic interaction ion channels GATING
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