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   无机纳米粉 的翻译结果: 查询用时:0.361秒
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无机纳米粉
相关语句
  inorganic nano-particles
     ACCUMULATION AND SURFACE MODIFICATION OF INORGANIC NANO-PARTICLES
     无机纳米粉体的团聚与表面改性
短句来源
     At the present, while more fields need EVA and the demand of the market is increasing, the reports about the EVA nanocomposites is few, and the study mainly focuses on the thermal degradation and flammability of EVA/montmorillonite. The reports of the systematical study of the inorganic nano-particles filled into EVA have not seen.
     目前EVA的用途正在扩大,市场需求量正在增加。 但是有关EVA纳米复合材料的报道较少,研究主要集中在蒙脱土对EVA的热稳定性和燃烧性能方面,系统地研究无机纳米粉体熔融共混改性EVA的文献未见报道。
短句来源
  “无机纳米粉”译为未确定词的双语例句
     When PEG 12000 is used as dispersion reagent,the mass of alkalinity is 1.0%,the temperature of calcinations is 350℃,and the electric conductivity of Lithium Fast Ionic Conductor synthesized at the room temperature is 2.59×10~(-3)S·cm~(-1).
     以聚乙二醇12000为分散剂、碱含量为总体系的1.0%,在350℃煅烧的工艺条件下,合成了室温电导率达2.59×10-3S. cm-1的Li快离子导体无机纳米粉
短句来源
     The Preparation of Lithium Fast Ionic Conductor by Sol-Gel-Hydrothermal Method
     Sol-gel-水热法合成Li快离子导体无机纳米粉
短句来源
     The solid fast ionic conductors are synthesized by sol-gel-hydrothermal method.
     利用sol-gel-水热法合成Li快离子导体无机纳米粉
短句来源
     Research on surface modification equipment and technique of abio-nano powder
     无机纳米粉体表面处理设备与工艺研究
短句来源
     Research of Inorganic Nano-powders Modified Architectural Latex Coating
     无机纳米粉体材料改性建筑乳胶漆的研究
短句来源
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  相似匹配句对
     Surface Treatment of Nano-powder
     无机纳米体的表面改性
     THE PRESENT STATUS AND PROSPECT OF INORGANIC NANO-SIZED POWDER PREPARATION AND SYNTHESIS TECHNOLOGIES.
     无机纳米体制造技术的现状及展望
短句来源
     Current Research Progress in Inorganic Nanosize Powder Surface Modification
     无机纳米体表面改性研究现状
短句来源
     Preparation of Cuprous Thiocyanate Nanoparticles by Inorganic Dispersant
     利用无机分散剂制备纳米硫氰酸亚铜
短句来源
     ACCUMULATION AND SURFACE MODIFICATION OF INORGANIC NANO-PARTICLES
     无机纳米体的团聚与表面改性
短句来源
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  inorganic nano-particles
Functional micro-concrete: The incorporation of zeolites and inorganic nano-particles into cement micro-structures
      
Bio-template methods for the synthesis of inorganic nano-particles are now attracting researchers' interest in the bionanotechnology field.
      


The progress of inorganic fast ionic conductors in nanometer size was reviewed. The preparation methods, restrain of agglomeration and application perspective are introduced. Preparation and application in future are briefly discussed.

综述了快离子导体无机纳米粉的进展 ,介绍了合成方法 抑制团聚措施及应用前景

The latest advancements in manufacturing technology for inorganic nano-sized powder are introduced in particular,the advancement and present status of high-gravity preparation process.The limitations of various inorganic powder preparation methods are discussed,and their applications and prospects are evaluated.

介绍了无机纳米粉体的制造技术和最新进展 ,着重介绍了超重力技术制备纳米粉体材料的进展和应用状况。讨论了目前无机纳米粉体制造技术中存在的问题 ,并总结了其应用和前景

Composite polymer membranes for lithium ion batteries were prepared by the dry/wet phase inversion method.The effects of the different additives on the pore sizes and structures of the polymer membranes were analyzed by SEM and the uptake test.The electrochemical characteristics of the batteries assembled with membranes prepared in different conditions were tested.It is confirmed that the porous structure parameters such as the pore size, the pore distribution and the porosity are affected by the additions...

Composite polymer membranes for lithium ion batteries were prepared by the dry/wet phase inversion method.The effects of the different additives on the pore sizes and structures of the polymer membranes were analyzed by SEM and the uptake test.The electrochemical characteristics of the batteries assembled with membranes prepared in different conditions were tested.It is confirmed that the porous structure parameters such as the pore size, the pore distribution and the porosity are affected by the additions of the inorganic nano fillers.The membranes filled with nano materials show good pore structures that result in better recharge discharge performances.

采用干 /湿相转化法制备了用于锂离子电池的复合型聚合物隔膜。通过扫描电镜和吸液实验研究了添加不同无机纳米粉料对由该法制得的聚合物隔膜孔径及结构的影响。用 8种隔膜组装了电池 ,测试了其电化学性质。结果证实无机纳米材料的加入导致了隔膜形成后在孔径大小、孔径分布和孔隙率等结构参数上的差异 ,添加无机纳米材料的隔膜具有适宜的孔结构和较好的充放电性能 ,具有实际应用价值

 
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