1)  microlayer
微米层
1.
Operating principles and processing conditions of microlayer/nanolayer coextrusion technology as well as the recent development in its application were summarized.
介绍了微米层 /纳米层共挤技术的工作原理、工艺控制及其应用领域的研究进展。
2)  Micrometer
微米
1.
Effects of micrometer compound rhizoma coptidis on nuclear factor-κB and inflammatory factors in rabbit fed with high lipid diet;
微米复方黄连制剂对高脂饮食喂养家兔核因子-κB及炎症因子表达的影响
2.
Mechanical properties of micrometer and sub-micrometer SiC_p reinforced Al matrix composites;
微米和亚微米SiC_p增强Al基复合材料的力学性能
3.
In this paper, by means of the analysis on power waste to the tradition process, utilized a series of analysis measure such as cytology, super precision work theory and fiber and so on to the micrometer wood fiber formation mechanism, and put forward the conception of wo.
对传统纤维加工的功耗进行分析,将细胞学、超精加工理论、纤维学等一系列现代分析手段运用到木纤维的形成过程中,提出微米长薄片木纤维切削的概念,从而将微米长薄片木纤维的研究上升到微观结构,并通过对纤维形状的产生和切削力变化的分析,解释传统木纤维加工消耗的能源高、产生纤维质量差的本质原因。
3)  micron
微米
1.
Inorganic separation membrane and its application in the liquid solid separation of micron and submicron particles;
无机分离膜及其在微米与亚微米级固液分离中的应用
2.
A New Separation Technology for Micron and Submicron of Liquid-Solid and Gas-Solid Mixtures;
微米与亚微米级的液固与气固混合物的一种新型分离技术
3.
Transformation on cell video of micron wood fibre;
微米木纤维细胞视频变换及重构方法分析
4)  Microsized
微米
1.
Study on the Effect of Nanosized and Microsized Titanium Dioxide for Spermatogenesis Function of Male Rats;
吸入纳米和微米二氧化钛颗粒对雄性大鼠精子及其功能的影响
2.
Comparative study of nanosized and microsized silicon dioxide on spermatogenesis function of male rats;
吸入二氧化硅纳米颗粒和微米颗粒对雄性大鼠精子及其功能的影响
3.
Comparing Study of Mouse Embryotoxicity between Nanosized and Microsized Silicon Dioxide;
纳米级与微米级二氧化硅粉体对小鼠胚胎毒性的比较研究
5)  sub-micron and micron level
亚微米和微米级
6)  micron
微米级
1.
The structure and the performance of micron spinel LiMn_2O_4 to the spinel synthesized by the normal solid-state method were compared.
对微米级和常规固相反应方法制备的锂离子电池正极材料尖晶石LiMn2O4的结构和性能进行了比较,并采用扫描电子显微镜(SEM),X 射线衍射(XRD)及慢扫描循环伏安(SSCV)、交流阻抗(EIS)的电化学测试方法对材料进行了表征。
参考词条
补充资料:层层加码
1.谓逐级增加任务和逐级提出各种要求等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。