单词nano-的英汉翻译


nano-

[nænәu]
    表示极小[十亿分之一]之义(用于元音之前)







单词nano-的英汉对照例句


以液力气蚀作用调控无机材料之宏观、微观及纳米特性。
Hydrodynamic cavitation as a tool to control macro- micro- and nano-properties of inorganic materials.
用纳米复合电镀技术制备了tio_2掺杂的pbo_2电极,并利用该电极电解中性电解液制备臭氧。
Pbo_2-matrix composites containing nano-grade tio_2as dispersed phase have been obtained on ti substrate using nano-composite plating technique and were applied to eop.
由于其独特的性质,主要应用在陶瓷增韧、双金属粉末和非线性光学性质等方面。
The applications of coating nano-metal materials include tough ceramic bimetallic powder and non-linear optics property etc.
由于一维纳米材料特有的长径比具有优异的场致发射和离化特性,可以极大的降低工作电压,提高场致电子器件的可靠性和安全性,对实现器件微型化和实用化有着革命性的意义。
Our research works relate to the various methods of growth purification and coating for carbon nanotubes combination of fabrication technology of nano-material and micro structure behaviors of field emission and ionization and possibility of application under nano-microscale structure and so on.
在综合国内外近年来公开发表的相关文献基础上,对无机纳米粒子的填充对聚合物材料在击穿强度、体积电阻率、介电性能以及耐电晕等方面的研究进展进行了评述,并指出今后研究的方向。
On the basis of relative literatures published in recent years the effects of nano-fillers on the corona-resistance breakdown strength volume resistivity and dielectric properties of polymer nanocomposites are reviewed the future research direction is also pointed out.
摘要将原子间相互作用势的非谐项作为微扰,运用声子数表象中的晶格原子振动位移和晶格振动哈密顿公式,推导了纳米晶体线的热膨胀系数公式,并进行了数值计算。
Treating the anharmonic terms of potential energy as perturbations and employing the formulas for atomic displacements and hamiltonian in phonon occupation number representation the formulas for thermal expansion coefficients of crystal nano-wires are derived and the numerical calculations are carried out in this paper.
摘要研究纳米二氧化矽的加入对刚玉浇注料性能与结构的影响。
The influence of nano-silica on the properties and microstructure of corundum castable is studied.
摘要乙醇中采用银盐和碘化物制备碘化银纳米微粉。用拉丁方格实验法确定合成过程中的适宜条件。
Silver iodide nano-powder has been produced by salt of silver and iodide in an alcohol solvent.the optimal conditions of the process has been studied by latin square experiments.
sio_2纳米粒子改性acr抗冲改性剂的性能
Property of acr impact modifier modified by nano-sio_2
比较系统地分析了传统的布氏、洛氏、维氏、玻氏等七种常用压痕硬度试验法之间及它们与纳米压痕硬度试验法之间的异同,概括地分析了压痕硬度试验法研究的主要内容、现状及应用,讨论了压痕硬度试验法的研究重点---纳米压痕硬度试验法。
The features of nano-indentation hardness test were compared with those of traditional indentation hardness test such as brinell rockwell vickers barcol and so on.the main contents status quo and application of hardness experiments were discussed.as a focus of these methods nano-indentation hardness method was discussed emphatically.
采用sem、tem、xrd、ir、eds等分析方法对超声化学制备纳米铁颗粒以及制备包覆型纳米复合磁粉和超声化学包覆机理进行了研究。
The preparation of nano-iron and coated nanocomposite magnetic powder by sonochemistry and the mechanism of coating were systematically studied by means of sem tem ir xrd and eds.
而纳米氧化铁黑因其粒径小于100nm,除具有普通氧化铁黑颜料的化学稳定性外,还具有一些特殊的性质,如透光性、强烈的吸收紫外线的能力,可保护对紫外线敏感的物质,可应用于高档汽车面漆、木器及透明塑料的着色上。
Nano-sized black iron oxide has some special nature like diaphaneity the intense absorption ultraviolet ray ability besides chemical stability of ordinary black iron oxide because its particle size is smaller than100nm.thus nano-sized black iron oxide can be applied to protect ultraviolet ray sensitive matter such as upscale automobile upper lacquer wooden product and transparent plastic.
同时,由于纳米tio_2具有强极性,使得tio_2不易在非极性介质中分散,在极性介质中易于团聚,直接影响二氧化钛本身优异性能的发挥。
Because ultrafine tio_2is strong polarity material the nano-scale tio_2can not be dispersed in non-polarity solvent well and is easy to agglomerate in the polarity solvent.
以煤矸石、粉煤灰、工业废渣为原料的新型水泥和新型墙体材料、钕铁硼材料、纳米材料、耐火材料、高岭土材料、高性能陶瓷和纤维材料、磁性材料、硅锰合金等有色金属新材料,以及绿色环保、清洁材料的生产技术等。
It mainly includes new-type cement and wall-building material with coal gangue industrial waste and fly ash as the raw material; neody mi um-iron-boron material nano-material fire-resistance material kaolin earth material high-performance ceramic and fiber material magnetic material silicon-manganese alloy and other nonferrous metal materials along with production technologies of green environmental clean materials and so on.
这类自组装体系在微电子、材料及生物医药等领域展现出了巨大的应用前景,已受到广泛关注。
Resultant nano-materials will be potentially used in microelectronic new material and biotechnology areas.

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