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1.
纳米孔材料在催化、吸附脱附、器件模板等方面有重要的应用.利用扫描隧道显微镜研究了苯三氧乙酸在石墨表面组装的多孔结构,孔径约1.4nm且孔排列有序、规则.  相似文献   

2.
本文用无水AlCl_3和(Ph_3P)_2PdCl_2二种催化剂催化苯乙炔聚合,得到共轭聚合物聚苯乙炔(PPA)。对PPA 的微结构分析表明:用无水AlCl_3催化苯乙炔,得到顺-反式PPA;用(Ph_3P)_2PdCl_2催化苯乙炔得到反-顺式PPA.因此,作者认为用无水AlCl_3催化苯乙炔聚合时可能按络合催化机理反应;用(Ph_3P)_2PdCl_2催化苯乙炔聚合时可能按易位催化机理反应。  相似文献   

3.
气相苯加氢低Ni/改性Al2O3催化剂性能评价   总被引:1,自引:0,他引:1       下载免费PDF全文
通过对γ-Al2O3载体进行化学改性处理,把Ni的含量降低(在5%以内)制得气相苯加氢低Ni/改性Al2O3催化剂。考察反应条件对其催化活性影响,并对催化剂的活性稳定性、耐热性、抗毒物能力进行评价。结果表明:该催化剂的性能良好  相似文献   

4.
金属/SiO2复合气凝胶催化剂对一氧化碳氧化的催化   总被引:3,自引:0,他引:3  
采用溶胶-凝胶法和超临界干燥法制备了Cu/SiO2 和Co/SiO2 气凝胶催化剂, 对其结构和形貌进行了XRD、TEM 和比表面分析, 并考察了其对CO氧化的催化性能。实验结果表明, 制得的Cu/SiO2 和Co/SiO2 气凝胶催化剂均保留了气凝胶的纳米网络和高比表面积, 活性组份均匀地分散在纳米级二氧化硅气凝胶载体中, 对CO的氧化均表现出高的催化活性。  相似文献   

5.
甲醇气相氧化羰基化合成碳酸二甲酯的研究   总被引:2,自引:0,他引:2  
采用固体离子交换法制备Cu^I/分子筛催化剂和沉淀法制备碱式氯化铜催化剂,利用微反-色谱装置进行活性评价。通过实验发现,当固体离子交换法制备的Cu^I/分子筛催化剂表面生成Cu2(OH)3Cl化合物时,催化剂的转化率、选择性的定量数据得到很大提高;而单纯以沉淀法制备的碱式氯化铜催化剂基本上没有什么活性。  相似文献   

6.
综述了微乳液法制备纳米催化剂的基本原理和主要方法以及近年来在催化剂制备中的一些应用.对微乳液法制备纳米催化剂的一些影响因素:如水的含量及表面活性剂的结构和种类对微乳液"水池"尺寸的影响以及对最终形成的纳米粒子粒径的影响,反应物浓度对形成的纳米催化剂粒子的粒度大小和分布的影响,负载粒子对催化剂粒子烧结温度及稳定性等多方面的影响进行了探讨与分析,并对该领域的研究发展作了展望.  相似文献   

7.
使用负载型催化剂清除潜艇中有害气体CO和H_2是一碳化学研究成果的重要应用。本文用固定床流动法评价了负载型Rh—Nb_2O_/SiO_2催化剂对CO和H_2混合气转化的催化性能,并运用XPS测试了催化剂中各组分以不同方式组合的一系列样品的表面物种价态及结合能谱峰的化学位移,揭示了催化剂中金属与载体强相互作用的实质。另外还测出了经混合气处理的催化剂表面存在Rh~0、Rh~Ⅰ、Nb~Ⅴ、Nb~Ⅳ和两种不同的沉积碳,并对催化剂活性中心的价态及由于金属和载体的强相互作用促进混合气转化、改善催化剂的性能进行了探讨。  相似文献   

8.
对于Cerenkov型器件,由高频结构温升引发的热脱附会造成的射频击穿,进而导致输出功率降低和脉冲缩短。基于此,研究了电磁脉冲对高频结构的加热温升效应,推导了高频结构的温升公式,指出了理论公式的适用范围,并给出了数值求解试件温升的方法。以二周期1 MV·cm-1的高频结构为例,进行了温升的数值计算和仿真研究。结果表明,脉宽100 ns的单脉冲对不锈钢试件的温升效应明显高于其他材料。当系统工作在高重频时,电磁脉冲的温升作用可能使金属材料达到气体脱附的阈值从而引发气体脱附形成局部高压。该研究可为高功率微波源中的气体脱附以及射频击穿等研究提供参考。  相似文献   

9.
LaB_6阴极与其他类型阴极相比具有电子发射电流密度大等优点,已广泛用于电推进、高发射密度电子枪等产品。为了研究LaB_6空心阴极中毒特性、识别LaB_6空心阴极主要失效模式,分别对LaB_6空心阴极暴露大气后性能变化特征和引起性能变化的原因进行了研究。结果表明:LaB_6空心阴极在暴露大气后表面吸附大量中毒气体,出现了发射体表面逸出功增加、发射体短期中毒现象。此时空心阴极的放电电压和阴极顶温度均有所上升,经过短期工作后放电电压和阴极顶温度均恢复初始状态。但LaB_6空心阴极严重中毒后,并不能通过加热和离子轰击方式去除表面生成的氧化物。因此,可以在实验过程中通过监测空心阴极的阴极顶温度和阳极电压变化间接表征空心阴极发射体状态。  相似文献   

10.
采用磁控溅射法结合结晶化热处理工艺在碳化硅(Silicon Carbide, SiC)颗粒表面成功制备了金属钼(Molybdenum, Mo)涂层,分析了Mo涂层的成分和形貌;然后采用热压烧结工艺制备了SiCp/Cu复合材料,重点对比分析了Mo界面阻挡层厚度对复合材料导热性能的影响。结果表明:磁控溅射法能够在SiC颗粒表面沉积得到Mo 涂层,随溅射时间的延长Mo涂层的厚度增加、粗糙度增大,且磁控溅射后SiC颗粒表面直接得到的Mo涂层为非晶态,结晶化热处理后,变为致密平整的晶态Mo涂层。磁控溅射时间即Mo涂层厚度对复合材料导热性能影响明显,随磁控溅射时间的增加,复合材料的热导率呈现先增后减趋势,采用磁控溅射9h镀Mo改性并经过800℃结晶化热处理的SiC复合粉体在850℃下热压烧结制备的SiCp/Cu复合材料(VSiC=50%),其热导率达到了最高值274.056W/(m·K)。  相似文献   

11.
本文通过热压的方法分别制得以Y2O3-Al2O3和Y2O3-La2O3为烧结助剂的SiCw/Si3N4陶瓷基复合材料,对比了采用不同种类及含量的烧结助剂的SiCw/Si3N4复合材料的性能结果,发现烧结助剂的种类及含量对SiCw/Si3N4复合材料的弯曲强度和断裂韧性有明显的影响,对高温弯曲强度的影响尤为显著。  相似文献   

12.
以基于N2O/C7H8的燃烧驱动混合型气动CO2激光器点火试验为研究背景,设计了液态N2O供应系统及N2O/C7H8单喷嘴燃气发生器.对液态N2O供应系统、N2O/C7H8的点火及燃烧性能进行了研究.试验结果表明:设计的N2O供应系统能够实现液态N2O的稳定供应;在设定的时序下,两个设计工况(余氧系数分别为0.3和0....  相似文献   

13.
超音速等离子制备Al/Ni涂层的性能特点   总被引:3,自引:0,他引:3  
以超音速等离子喷涂系统(HEPJet)为平台,采用铝包镍(Al/Ni)自粘结粉末,借助Spray Watch2i在线监测系统、扫描电子显微镜(SEM)、X射线衍射仪(XRD)和WE-10A万能拉伸试验机,研究了超音速等离子喷涂Al/Ni粒子的速度、温度及涂层的组织性能。研究结果表明:超音速等离子喷涂Al/Ni自粘结粉末时,与普通火焰喷涂不同,射流中无明显的放热反应特征,涂层中也未发现Al-Ni化合物;超音速等离子的喷涂功率、喷涂距离等参数对Al/Ni喷涂粒子的状态和涂层组织性能影响显著,当功率为54.6kW、喷涂距离为150mm时,Al/Ni涂层组织致密,与基体的结合强度高达56MPa。  相似文献   

14.
以浸渍法制备的10%V/Al2O3为催化剂,研究对GB染毒空气的脱除效果,考察接触时间、温度、温度和浓度等因素对GB染毒空气脱除效果的影响,用GC-MS和LC-MS对尾气组分进行了检测分析.  相似文献   

15.
《防务技术》2022,18(10):1810-1821
In this paper, various core-shell structured Al–Ni@ECs composites have been prepared by a spray-drying technique. The involved ECs refer to the energetic composites (ECs) of ammonium perchlorate/nitrocellulose (AP/NC, NA) and polyvinylidene fluoride/hexanitrohexaazaisowurtzitane (PVDF/CL-20, PC). Two Al–Ni mixtures were prepared at atomic ratios of 1:1 and 1:3 and named as Al/Ni and Al/3Ni, respectively. The thermal reactivity and combustion behaviors of Al–Ni@ECs composites have been comprehensively investigated. Results showed that the reactivity and combustion performance of Al–Ni could be enhanced by introducing both NA and PC energetic composites. Among which the Al/Ni@NA composite exhibited higher reactivity and improved combustion performance. The measured flame propagation rate (v = 20.6 mm/s), average combustion wave temperature (Tmax = 1567.0 °C) and maximum temperature rise rate (γt = 1633.6 °C/s) of Al/Ni@NA are higher than that of the Al/Ni (v = 15.8 mm/s, Tmax = 858.0 °C, and γt = 143.5 °C/s). The enhancement in combustion properties could be due to presence of the acidic gaseous products from ECs, which could etch the Al2O3 shell on the surface of Al particles, and make the inner active Al to be easier transported, so that an intimate and faster intermetallic reaction between Al and Ni would be realized. Furthermore, the morphologies and chemical compositions of the condensed combustion products (CCPs) of Al–Ni@ECs composites were found to be different depending on the types of ECs. The compositions of CCPs are dominated with the Al–Ni intermetallics, combining with a trace amount of Al5O6N and Al2O3.  相似文献   

16.
本文研究了溶胶-凝胶(Sol-gel)法制备碳纤维三维编织物增强氧化铝(Al2O3)基复合材料的成型工艺及其力学性能,研究了两种主要起始物Al(NO3)3、AlCl3配制的氧化铝溶胶对复合材料成型工艺和力学性能的影响。分别以Al(NO3)3和AlCl3为起始物,制备得到Ⅰ#、I#复合材料。研究表明,以Al(NO3)3为起始物配制的溶胶粘度较小,利于材料的致密化。经过溶胶浸渍、凝胶、裂解13个周期后,Ⅰ#材料的密度和室温三点弯曲强度分别为1.86g/cm3和145.2MPa,而II#材料的密度和室温三点弯曲强度分别为1.63g/cm3和104.1MPa,材料均呈典型的韧性断裂模式。用扫描电子显微镜(SEM)观察试样的断口形貌,发现断口表面有大量的纤维拔出,纤维表现了较好的增韧效果。  相似文献   

17.
铝合金表面涂覆隐身吸波涂层脱落原因分析   总被引:2,自引:0,他引:2  
通过对某装备车体外脱落隐身吸波涂层样品的表面形貌、截面形貌、元素组成及含量分析,发现吸波涂层和Al2O3钝化层之间没有化学结合键,只存在物理吸附和机械结合,在外部环境的作用下,很容易引起隐身吸波涂层的脱落。  相似文献   

18.
《防务技术》2014,10(1):22-27
Ni–Al alloy coatings with different Y additions are prepared on 45# medium steel by laser cladding. The influence of Y contents on the microstructure and properties of Ni–Al alloy coatings is investigated using X-ray diffraction, scanning electron microscopy, electron probe microanalyzer, Vickers hardness tester, friction wear testing machine, and thermal analyzer. The results show that the cladding layers are mainly composed of NiAl dendrites, and the dendrites are gradually refined with the increase in Y additions. The purification effect of Y can effectively prevent Al2O3 oxide from forming. However, when the atomic percent of Y addition exceeds 1.5%, the extra Y addition will react with O to form Y2O3 oxide, even to form Al5Y3O12 oxide, depending on the amount of Y added. The Y addition in a range of 1.5–3.5 at.% reduces the hardness and anti-attrition of cladding layer, but improves obviously its wear and oxidation resistances.  相似文献   

19.
Some ablation experiments of Ethylene-Propylene-Diene Monomer(EPDM)insulator were carried out in quasi-static low temperature gas environment,gas-phase environment,two-phase environment with Al2O3 grain and high concentration Al2O3 grain gas environments.Their charring ablation rate,thickness,surface morphology and main ingredient of the charring layer were analyzed.The experiment results show that the main influent factors for the charring ablation rate are the gas temperature,grain concentration and state of grain impact;the main influent factors for the charring layer thickness are the gas velocity and environment pressure;and the process of SiO2 migrating in the charring layer occur commonly in different gas environments.They provide a foundation for the ablation mechanism research and modeling of EPDM insulator.  相似文献   

20.
To study the thermal decomposition of Al/ZrH2/PTFE with different Al particle size as well as mechanical strength and impact sensitivity under medium and low strain rates, molding-vacuum sintering was adopted to prepare four groups of power materials and cylindrical specimens with different Al particle size. The active decomposition temperature of ZrH2 was obtained by TG-DSC, and the quasi-static me-chanics/reaction characteristics as well as the impact sensitivity of the specimen were studied respec-tively by quasi-static compression and drop-hammer test. The results show that the yield strength of the material decreased with the increase of the Al particle size, while the compressive strength, failure strain and toughness increased first and then decreased, which reached the maximum values of 116.61 MPa, 191%, and 119.9 MJ/m respectively when the Al particle size is 12—14μm because of particle size grading. The specimens with the highest strength and toughness formed circumferential open cracks and reacted partly when pressed. Those with developmental cracks formed inside did not react. It is considered that fracture of specimens first triggered initial reaction between Al and PTFE to release an amount of heat. Then ZrH2 was activated and decomposed, and participated in subsequent reaction to generate ZrC. The impact sensitivity of the specimens decreased with the increase of Al particle size.  相似文献   

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