帮助 关于我们

返回检索结果

A1基纳米复合含能材料的自组装
Self-assembly of Aluminum-based Nanostructured Energetic Materials

查看参考文献41篇

文摘 从A1基纳米复合含能材料的能量方面着手分析比较了各种制备方法的优劣,凸显出了自组装法制备A1基纳米复合含能材料的优势。自组装制备方法能够有效控制A1基纳米复合含能材料中粒子的排布,增加粒子各自的分散性和组分粒子之间的接触,缩短了粒子之间的传质和传热距离,提高了 A1基纳米复合含能材料的燃烧速率、反应活性和能量利用率。将目前报道的A1基纳米复合含能材料的自组装制备方法分为两类(直接组装法和间接组装法)进行论述总结,最后提出了自组装法在含能材料制备中的发展方向。附参考文献41篇。
其他语种文摘 The advantages of self-assembly method are highlighted by analyzing and comparing the energy properties of the nanostructured energetic materials fabricated by different approaches. The self-assembly strategy can effectively control the arrangement of component nanoparticles,improve the dispersity of ingredients, and increase the intimacy between the reactants. Therefore, the burning rate and reactivity,as well as energy efficiency, of the assembled nanostructured energetic materials are enhanced, due to that the length of mass and heat transport during reaction are reduced. Recent advances reported in previous publications related to the self-assembly of aluminum-based nanostructured energetic materials are summarized and classified into two categories: direct and indirect methods. Accordingly, the development direction of the self-assembly to prepare nanostructured energetic materials is proposed,with 41 references.
来源 火炸药学报 ,2017,40(2):1-9 【核心库】
DOI 10.14077/j.issn.1007-7812.2017.02.001
关键词 材料科学 ; 纳米材料 ; 含能材料 ; 自组装 ; 纳米A1粉 ; 金属燃烧剂
地址

北京理工大学材料学院, 北京, 100081

语种 中文
文献类型 研究性论文
ISSN 1007-7812
学科 一般工业技术;武器工业
基金 国家973计划
文献收藏号 CSCD:5975055

参考文献 共 41 共3页

1.  Rossi C. Nanoenergetic materials for MEMS: a review. J Microelectromech S,2007,16(4):919-931 CSCD被引 36    
2.  王昕. 纳米含能材料研究进展. 火炸药学报,2006,29(2):29-32 CSCD被引 23    
3.  王军. 纳米铝热剂的研究进展. 火炸药学报,2014,37(4):1-8 CSCD被引 14    
4.  Rossi C. Al-Based Energetic Nanomaterials: Design, Manufacturing, Properties and Applications,2015 CSCD被引 1    
5.  Braeuer J. A novel technique for MEMS packaging: reactive bonding with integrated material systems. Sensors & Actuators A Physical,2012,188(12):212-219 CSCD被引 3    
6.  Morris C J. Rapid initiation of reactions in Al/Ni multilayers with nanoscale layering. Journal of Physics & Chemistry of Solids,2010,71(2):84-89 CSCD被引 19    
7.  Staley C S. Fast-impulse nanothermite solid-propellant miniaturized thrusters. Journal of Propulsion and Power,2013,29(6):1400-1409 CSCD被引 6    
8.  Korampally M. Transient pressure mediated intranuclear delivery of FITC-dextran into chicken cardiomyocytes by MEMS-based nanothermite reaction. Sensors and Actuators B: Chemical,2012,171/172:1292-1296 CSCD被引 4    
9.  Ramos A S. Production of intermetallic compounds from Ti/ Al and Ni/ Al multilayer thin films a comparative study. Journal of Alloys and Compounds,2009,484(1/2):335-340 CSCD被引 4    
10.  Sullivan K T. Synthesis and reactivity of Nano-Ag_2O as an oxidizer for energetic systems yielding antimicrobial products. Combustion and Flame,2013,160(2):438-446 CSCD被引 1    
11.  Monk I. Combustion characteristics of stoichiometric Al-CuO nanocomposite thermites prepared by different methods. Combustion Science and Technology,2016,188:555-574 CSCD被引 3    
12.  Zhou X. Nanostructured energetic composites: synthesis,ignition/combustion modeling, and applications. ACS Applied Materials & Interfaces,2014,6(5):3058-3074 CSCD被引 20    
13.  高坤. 制备方法对Al/Fe_2O_3纳米铝热剂性能的影响. 火炸药学报,2012,35(3):11-14 CSCD被引 7    
14.  周超. 球磨时间对Fe_2O_3/Al纳米复合材料性能的影响. 固体火箭技术,2010,33(4):445-448 CSCD被引 10    
15.  Tillotson T M. Nanostructured energetic materials using sol-gel methodologies. Journal of Non-crystalline Solids,2001,285(1/3):338-345 CSCD被引 54    
16.  Gash A E. Nanostructured energetic materials with sol-gel methods. Materials Research Society Fall 2003 Meeting,2003 CSCD被引 2    
17.  Shin M S. Reaction characteristics of Al/Fe2 03 nanocomposites. Journal of Industrial and Engineering Chemistry,2012,18(5):1768-1773 CSCD被引 3    
18.  Zhang T. Tuning the reactivity of Al/Fe_2O_3 nanoenergetic materials via an approach combining soft template self-assembly with sol-gel process process. Journal of Solid State Chemistry,2015,230(1):1-7 CSCD被引 6    
19.  Zhang T. Electrostatic interactions for directed assembly of high performance nanostructured energetic materials of Al/Fe2 03 /multi-walled carbon nanotube (MWCNT). Journal of Solid State Chemistry,2016,237:394-403 CSCD被引 4    
20.  Sui H. Thermo-chemical and energetic properties of layered nano-thermite composites. Thermochimica Acta,2016,642:17-24 CSCD被引 2    
引证文献 3

1 王润德 Al基复合含能材料的制备及燃烧性能研究 火炸药学报,2021,44(6):789-799
CSCD被引 3

2 张文珍 硝化壳聚糖/n-Al复合材料的共振制备和燃烧特性 含能材料,2022,30(6):535-541
CSCD被引 2

显示所有3篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号