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1)  micromolding in capillaries
毛细微模塑
1.
Micro-strip and micro-dot patterns of PVP/Ru(dpphen)_3Cl_2 was produced by micromolding in capillaries(MIMIC) and micro-transfer molding(μTM) separately.
毛细微模塑法和转移微模塑法分别制备了钌有机螯合物掺杂的PVP微条纹和点阵微图形。
2.
Micromolding in capillaries of a micro-square array was carried out for polystyrene solution in acetone by means of swollen polydimethylsiloxane (PDMS) elastomeric stamp.
用溶胀后的聚二甲基硅氧烷弹性印章进行毛细微模塑,得到了聚苯乙烯丙酮溶液的微四方点阵图案。
3.
They are microcontact printing, micro molding, microtransfer molding, micromolding in capillaries, solvent assisted micromolding and photolithography in the optical near field.
:“软刻蚀”是相对于微制造领域中占据主导地位的刻蚀而言的微图形转移和微制造的新方法 ,总的思路就是把用昂贵设备生成的微图形通过中间介质进行简便而又精确的复制 ,提高微制作的效率 ,包括微接触印刷 ,毛细微模塑 ,溶剂辅助的微模塑 ,转移微模塑 ,微模塑 ,近场光刻蚀等。
2)  plastic capillary
塑料毛细管
1.
A method of using plastic capillary Air Thermo-Cycler PCR to abtain human spleen Ro.
利用塑料毛细管通过空气热循环PCR获取了人脾Ro和La多肽基因片段。
3)  micro-capillary
微毛细管
1.
At last, the three-dimension micro-capillary and micro-valve is fabricated on the glass using soft lithography method.
本文着重涉及了软光刻的几项关键技术 :弹性印模、再铸模等 ,阐述了模板的制备方法和原理 ,并应用这种模板实现微阀和微毛细
4)  Micromolding
微模塑
1.
Microstructure of PMMA/SiO_2 Hybrid Material Fabricated by Micromolding;
微模塑法制备PMMA/SiO_2二氧化硅杂化材料微结构
2.
Making the Micro-patterns Directly on a Curved Surface of Polymer by Micromolding;
用微模塑直接在聚合物曲面上制备微图形(英文)
3.
A micromolding technique was studied,which was used for fabricating stators of micromotors with polymer substrate,and the technique increase the reliability of micromotors and reduce cost of manufacturing.
介绍了一种微模塑工艺,可用于制作以聚合物为基底的微电机定子,从而提高了电机的可靠性,降低了制造成本。
5)  Micro-molding
微热模塑
1.
Spherical Micro-lens Array of Polystyrene Made by Micro-molding Method;
微热模塑法制备聚苯乙烯球面微透镜阵列
6)  capillary microgrooves
毛细微槽群
1.
Theoretical analysis of axial dryout point height in vertical rectangular capillary microgrooves;
竖直矩形毛细微槽群轴向干涸高度的理论分析
2.
Dryout characteristics of evaporating liquid in vertical capillary microgrooves heat sink;
竖直毛细微槽群热沉中蒸发液体的干涸特性
3.
Using a wide field stereo-microscope,a high-speed camera and a CCD video camera,liquid dryout behaviors and axial wetting height in vertical rectangular capillary microgrooves were observed and measured under the conditions of pure evaporation and boiling heat transfer.
实验结果表明:竖直矩形毛细微槽群是一种高性能的相变换热强化表面,微槽中液体的蒸发与沸腾对干涸点高度的变化有着复杂的影响,热流密度和相变换热系数沿槽道方向的分布不均匀。
补充资料:压塑模塑
分子式:
分子量:
CAS号:

性质:见压塑法。

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