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1)  electrochemical micromaching
掺粉抛光
1.
In view of the tiny electrolysis polishing request,processing workpiece with electrolyze processing or Electrolysis polishing in use of electrochemical micromaching equipment of three-dimensional micro workpiece designed by our own.
针对微细电解抛光的要求,应用所开发的三维微细零件电解掺粉抛光装备对工件进行电解或电解抛光。
2)  polishing powder
抛光粉
1.
The influence of the parameters during the polishing process such as the types of polishing powder, the polishing speed, the characters of the polishing glass, on the properties of the polished components has been studied, and the detailed analysis has been made based on the polishing theory.
研究了抛光粉的种类、抛光速度的大小以及抛光玻璃的性质等抛光参量对光学元件亚表层特征的影响,并结合抛光机理进行了分析。
2.
Dispersion and stability of polishing powder in water were studied under different pH values,different dispersing agent type and contents by the method of ξ potential,absorbencyand viscosity.
通过测定高铈抛光粉(以下简称抛光粉)悬浮液的ξ电位、吸光度和粘度,探讨了不同pH值、分散剂种类及浓度对抛光粉水相体系分散稳定性的影响。
3.
This thesis mainly introduces the key technologies and transformed method of classical polishing technologies from manufacturing of polishing pad, supplying of polishing powder, forcing pressure and the finally rinsing.
对抛光模的制作、抛光粉的添加、加压的方式以及抛光后的清洗这一整套生产流程中所涉及的核心技术进行了部分改进和详细介绍,并最终给出了古典法抛光后的玻璃表面利用AFM检测后的表面形貌图,表面的粗糙度、划痕等微观缺陷明显改善。
3)  dust of burnishing
抛光粉尘
4)  polishing powder
抛光砖粉
1.
An innovative approach of reusing ceramic polishing powder generated in ceramic industries to develop high performance inorganic binders was studied.
将陶瓷工业废弃物抛光砖粉用作一种公路工程新型的无机结合料,并将其与粉煤灰进行对比,测试了两种结合料的强度和水稳定性,采用XRD、SEM、IR等手段分析了其水化产物及微观形貌,通过化学结合水量以及化学未溶量等试验研究了抛光砖粉的火山灰活性及水化程度。
2.
Using industrial waste ceramical polishing powder as a new kind of inorganic binder for road engineering,effect of it on road performance and mechanism analysis were presented according to compare to fly ash.
以工业废弃物陶瓷抛光砖粉作为一种新型公路工程无机结合料,将之与粉煤灰进行对比,测试了2种结合料的强度和水稳定性,采用XRD、SEM等手段分析其水化产物及微观形貌。
5)  ceramic polishing powder
抛光砖粉
1.
Effect of ceramic polishing powder as admixture on performance of concrete;
陶瓷抛光砖粉对混凝土性能的影响
2.
Autoclaved silicate products were fabricated with ceramic polishing powders as the raw material.
利用陶瓷抛光砖粉制备蒸压硅酸盐制品,并与采用粉煤灰的制品进行对比。
6)  polishing rouge
抛光红粉
补充资料:二氧化铈(抛光粉)
CAS:1306-38-3
分子式:CeO2
分子质量:172.11
熔点:2600℃
中文名称:氧化高铈;二氧化铈;氧化铈;二氧化铈(抛光粉);铈土,氧化铈;发乳白色的,玻璃白
英文名称:Ceric oxide;Ceria;Cerium dioxide;Cerium oxide;ceric dioxide;cerium oxide;cerium oxide;molycomp 5310;needlal;needlal u15;needlal w10-01;needlal w15;nidoral;opaline
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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