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1)  composite plating solution
复合镀铜溶液
2)  copperizing liquid
镀铜溶液
3)  composite copper coating
复合镀铜层
1.
Influence of electrodepositing parameters on composite copper coating with liquid hydrophobic agent microcapsules
电沉积参数对含憎水剂微胶囊复合镀铜层的影响研究
2.
Properties of the composite copper coating with liquid microcapsule were studied.
研究了含有有机硅树脂为囊心的液体微胶囊复合镀铜层的性能。
3.
An electrodepositing composite copper coating had been obtained by adding the liquid microcapsule containing orhanosilicon resin in acidic copper bath.
讨论了用水相分离法制备含有液体微胶囊的技术,并将以有机硅树脂为囊心的液体微胶囊加入到酸性镀铜液中进行复合共沉积,得到了含有液体微胶囊的复合镀铜层。
4)  displacement copper plating solution
置换镀铜溶液
5)  complex solution
复合溶液
1.
Performance of CO_2 absorption of membrane-based amino acid salts and its complex solutions;
膜基-氨基酸盐及其复合溶液吸收CO_2的性能
2.
Prediction of chemical enhancement factor of complex solutions in membrane gas absorption process
膜气体吸收过程中复合溶液化学增强因子预测
3.
A model of differential equations for membrane-based ab sorption of CO_2 into complex solutions was presented and, interaction between methyldiethanolamine (MDEA) and 2-amino-2-methyl-1-propanol (AMP) in reacti ons with CO_2 and wetting of the solutions on membrane pores were taken into ac count in the model.
建立了膜基复合溶液吸收CO2传质微分方程模型,模型中考虑了MDEA-AMP复合溶剂吸收反应交互作用和溶剂对膜孔的湿润性两种因素,模拟了这两种因素、不同气液速及不同组件对传质过程的影响,通过SEM摄片考察了溶剂对膜结构形态的影响。
6)  composite solution
复合溶液
1.
By using the method for accelerated freezing-thawing,the freezing-thawing durability of carbonized fly ash concrete(FAC),concrete with high content mineral admixture(HCMC) and green high durable concrete(GHDC) subjected to water and the composite solution(5%MgCl2+5%Na2SO4) with and without loading are studied.
在未加载与加载条件下,采用快冻法研究了快速碳化28 d后的粉煤灰混凝土(FAC)、大掺量矿物掺合料混凝土(HCMC)和绿色高耐久性混凝土(GHDC)在水和5%MgCl2+5%Na2SO4复合溶液中的抗冻性。
2.
The durability of fly ash concrete(FAC),concrete with high content mineral admixture(HCMC) and green high durable concrete(GHDC) subjected to the composite solution(5%MgCl2 + 5%Na2SO4) under long-term attack and dry-wet circulation were studied.
研究了粉煤灰混凝土(Fly ash concrete,FAC)、大掺量矿物掺合料混凝土(Concrete with high content min-eral admixture,HCMC)和绿色高耐久性混凝土(Green high durable concrete,GHDC)在(5%MgCl2+5%Na2SO4)复合溶液中的长期侵蚀作用与干湿循环作用下的化学腐蚀行为。
补充资料:镀铜


镀铜
copper coating

  dUtong镀铜(eopper eoating)在酸洗后的盘条(线坯)表面镀覆一层铜,以作为拉丝时的润滑载体。以铜层作润滑载体主要用在拉拔轮胎钢丝与气体保护焊丝等特殊场合,这时铜层除用作润滑载体外,可提高轮胎钢丝同橡胶的结合力和焊丝的导电性。此外也用于弹妥钢丝等的生产中,以改善拉拔时的润滑性能及产品的表面质量。 镀铜操作时,把盘条浸入加有一定硫酸和骨胶的硫酸铜溶液中。根据电位序,铁能置换铜: Fe+CuZ+-今Cu+FeZ+并很快发生下列反应和完成镀铜过程 Fe+CuSO;一FeSO‘+Cu专硫酸铜是溶液的主要镀剂,提供铜离子的来源,浓度通常控制在60一7馆/L。浓度过低,将延长镀铜时间且不易获得所需厚度的镀层;浓度过高,则铜的沉积速度过快,导致铜结晶迅速长大,使镀层疏松、粗糙,影响与基体的结合。硫酸的主要作用是活化盘条表面,使铜层能与基体牢固结合。骨胶有促使铜与基体粘合的作用,并使铜层结晶细密。镀铜时溶液温度必须控制在簇25℃,温度较低时,镀层光亮致密,但生产率低。温度过高时,则镀层厚,且粗糙、疏松、附着力差。溶液中Fe2+离子过多会恶化镀层质量。镀铜过程约在1一2而n内完成。 (韩观昌)
  
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