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1)  ultra-fine energetic materials
超细含能材料
1.
First,the paper expatiates the intention and significance of preparation core-Shellcomposite materials which contain Ultra-fine AP and has constrastive researched preparationactuals of both ultra-fine energetic materials and ultra-fine energetic core-shell compositematerials.
本文首先阐述了制备含超细高氯酸铵核-壳型复合材料的目的和意义,并对国内外超细含能材料和超细含能复合材料的制备的研究现状进行了对比研究;其次介绍了超临界 CO_2 的特点、超临界流体沉积技术的分类以及超临界反溶剂法(supercriticalanti-solvent, SAS )的原理和特点;然后,以 NEPE(Nitrate Ester Plasticized Polyether)推进剂的能量为依据,采用 Excel 中的规划求解进行了固体推进剂中氧化剂配方的设计(HMX:CL-20:AP:Al:FPM2602=60:10:19:8:3),并对该配方的比冲、爆容进行了验证。
2)  energetic materials
含能材料
1.
Progresses of characterization techniques of ultrafine energetic materials;
超细含能材料表征技术研究进展
2.
Molecular design and property prediction of energetic materials;
含能材料分子设计与性能预估研究
3.
Investigation on oxygen-equilibrium effects of laser ignition of energetic materials;
含能材料激光点火的氧平衡问题研究
3)  energetic material
含能材料
1.
Theoretical studies on heat of formation and stability for energetic materials of LLM-105 and its analogues;
含能材料LLM-105及其类似物生成热和稳定性研究
2.
Review on the disposal techniques of energetic material wastes(Ⅰ)——safety destruction techniques;
含能材料废料处理技术研究述评(Ⅰ)——安全销毁技术
3.
Advances and prospects of energetic material technol- ogies;
含能材料技术的进展与展望
4)  ultrafine material
超细材料
1.
The main categories,preparation method and current research status of ultrafine iron oxide,which is a new type ultrafine material,are reviewed.
综述了新型超细材料—氧化铁的主要类别、现有的制备方法以及研究现状,并分析了不同方法制备超细氧化铁的优缺点。
5)  micro-size materials
超细材料
1.
Experiment on treating municipal sewage by mixing the micro-size materials(SiO_2 and natural zeolite) with inorganic flocculants was carried out.
把超细材料(二氧化硅、天然沸石)添加到无机絮凝剂当中,进行了城市污水处理的试验研究和猪场粪污水深度处理的初步研究。
2.
Polymeric micro-size materials were formed by precipitation with a compressedfluid antisolvent, carbon dioxide.
压缩态流体抗溶沉淀(简称PCA)过程采用二氧化碳为抗溶剂可以制备固体聚合物超细材料。
6)  ultra-fine grained material
超细晶材料
1.
The research development of ultra-fine grained material process by ECAP is summarized, and the technical principle and process character of ECAP are introduced, as well as the effect on microstructure of ECAP fine grained material caused by ECAP die is mainly analyzed, and ECAP die structure is optimized.
论述了等径角挤压(ECAP)制备超细晶材料工艺的研究进展,介绍了ECAP的技术原理和工艺特点,着重分析了ECAP模具对ECAP细晶材料的显微组织的影响,优化ECAP模具结构。
补充资料:染料细粉及超细粉
分子式:
CAS号:

性质:非水溶性染料或不易溶染料常采用的剂型。如分散染料、还原染料等对粒度及粒度分布均有一定要求,要求相对集中,过细、过粗,均对使用有不良影响。染料生产企业对本企业的产品均作了规定。这些染料产品一般多在2μm到上到4μm范围内,如对某些分散染料要求控制在1μm左右,分散性能4~5级,还原染料也与分散染料近似,故有超细粉之称。为使染料产品达到上述细度,常采用万能粉碎机或砂磨、球磨等进行粉碎。

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