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1)  liquid medium cure
液体介质硫化法
2)  vulcanization medium
硫化介质
1.
The features and applications of vulcanization medium such as superheat water,high pressure steam and steam/nitrogen about tire were analysed respectively and the difference of various vulcanization media was compared.
通过查阅国内外有关轮胎硫化方面的文献 ,就过热水硫化、蒸汽硫化和蒸汽 /氮气硫化介质的现状及其在实际应用中的情况进行了分析 ,并比较了各种硫化介质的优劣之
3)  liquid medium
液体介质
1.
Influence of liquid medium on ultrafine grinding of pyrite;
液体介质对黄铁矿超细粉碎的影响
2.
Experimental investigations on stimulated Brillouin scattering for different liquid mediums;
不同液体介质的受激布里渊散射的实验研究
3.
Using two kinds of liquid medium and two dispersants, we investigated the dispersed characteristic of Ti(C,N)-based cermet hard phase powders TiC, TiN and WC.
探讨了不同液体介质和不同表面活性剂对硬质相粉末分散的影响,结果表明:以蒸馏水作液体介质优于以无水乙醇作液体介质;对TiC,TiN粉末,选用聚氧乙烯十二烷基醚作为分散剂具有较好分散效果,而对WC粉末,聚乙二醇是较好的分散剂。
4)  liquid dielectrics
液体介质
1.
Under the same environment,atomization process for the three different liquid dielectrics of kerosene,emulsifier and alcohol are studied in high voltage electrostatic field.
自行设计、组装高压静电雾化试验装置,研究同一环境下煤油、乳化剂和酒精3种不同液体介质在高压静电场中的雾化过程。
5)  liquid dielectric
液体介质
1.
The breakdown properties of liquid dielectric are easily influenced by experimental conditions,so that to this day no one theory can explain all experimental observations.
介绍了目前液体介质击穿研究的实验内容(电压极性、电压波形、外界静态压力等)、实验方法(电学与光学结合)、研究成果(经验公式、击穿机理);指出单次ns脉冲击穿的电压脉宽窄(ns级)、击穿电压幅值高,重频ns脉冲电压击穿下液体介质的电场累积效应(极化效应)显著,这些ns级液体介质击穿的特点有助于揭示液体介质击穿的本质特性。
6)  liquid milling medium
液体介质
1.
The W-TiC nano-composite powder was prepared by high-energy ball milling, and the liquid milling medium (C2H6O, CCl4, C7H8) and liquid to-ball-and-powder ratio were varied in order to investigate their influence on the nano-composite powder.
采用高能球磨法制备了W-TiC纳米复合粉体,分别采用无水乙醇、四氯化碳和甲苯作为球磨液体介质,并改变液体介质比,研究其对复合粉体球磨过程的影响,并对球磨后粉体的晶粒尺寸、晶格畸变、颗粒形貌以及比表面积进行测定和分析讨论。
2.
The W-TiC nanocomposite powders was prepared by high-energy ball milling,the liquid milling medium(C_2H_5OH,CCl_4, C_7H_8)and liquid-to-balls-and-powders ratio were varied in order to investigate their influence on the nanocomposite powers.
运用高能球磨手段,制备了 W-TiC 纳米复合粉体,分别采用无水乙醇、四氯化碳和甲苯作为球磨液体介质,并改变液体介质比,研究其对复合粉体球磨过程的影响,并对球磨后的粉体晶粒尺寸、晶格畸变、粉体形貌以及比表面做了测定和分析讨论。
补充资料:液体介质硫化法
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性质:一种连续硫化的方法。此法使用熔融合金(如含锡42%、钠58%的共熔合金,熔点150℃)或熔盐(含硝酸钾53%、亚硝酸钠40%、硝酸钠7%的共熔盐,熔点142℃)作加热介质。硫化时先将介质加热至200-260℃,然后将半成品迅速通过,便可进行硫化。常用于胶管、电缆等制品的硫化。

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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