1)Zinc phosphating锌系磷化
1.Effect of pickling on the quality of middle or low temperature zinc phosphating film酸洗对中低温锌系磷化膜质量的影响
2.In this paper,the composition of zinc phosphating solution used at environmental temperature was researched.研究了配制锌系磷化液的配方:1 L溶液中加入磷酸100 mL,磷酸二氢钠20 g,氧化锌25 g,硫酸铜1 g,钼酸钠1 g,氟化钠1 g,酒石酸1 g。
英文短句/例句
1.Effect of pickling on the quality of middle or low temperature zinc phosphating film酸洗对中低温锌系磷化膜质量的影响
2.Failure Mechanism of Zinc Series Phosphating Coatings on Aluminum Alloy铝合金锌系磷化膜防护失效机理探讨
3.Effect of a Phosphating Multiple Promoter on Performance of Zinc-series Phosphating Solution at Normal Temperature一种复合磷化促进剂对常温锌系磷化液性能的影响
4.The Investigation of Fabrication and Performances of Zinc Phosphate Coatings on Magnesium Alloy;镁合金表面锌系磷化膜制备工艺及性能研究
5.Phosphate Process and Performance of Zinc Phosphate Coating on AZ31B Magnesium AlloyAZ31B镁合金表面锌系磷化膜制备工艺及性能研究
6.Corrosion Resistance of Black Phosphating Coating of Zn-Ca System at Medium Temperature中温锌-钙系黑色磷化膜的耐蚀性能
7.Investigation of the Zinc-Manganese Phosphating Solution and the Electrochemical Measurement of Phosphate Coatings with High Corrosion Resistance高耐蚀性锌锰系磷化液的研究及磷化膜电化学分析
8.Zinc-nickel-phosphorus alloy plating in simple chloride bath was studied.研究了简单氯化物体系中锌镍磷合金电镀工艺。
9.Studying of Steel Zn-Fe System Phosphating and Coverage Technology at Room Temperature;钢铁常温锌铁系磷化及表面覆盖技术的研究
10.Investigation on Film Formation Mechanism and Performances of Complex Zinc Phosphate Coatings on Magnesium Alloy镁合金锌系复合磷化膜的成膜机理及性能研究
11.Investigation on Film Formation Mechanism, Microstructure and Performances of Complex Zinc Phosphate Coatings of Magnesium Alloy;镁合金锌系复合磷化膜成膜机理、微观结构及性能的研究
12.Effect of varying combination of P and Zn in chelater-buffered solution on P-Zn interaction in wheat seedling螯合-缓冲营养液中不同磷锌配比对小麦苗期磷-锌关系的影响
13.The Effect of Phosphating Films on the Adhesive Force of Coatings on the Surface of Galvanized Iron Boards磷化膜对锌板表面涂层附着力的影响
14.Growth and Calculation of Zinc Germanium Phosphide Crystals;磷化锗锌晶体的生长研究及理论计算
15.The Solid-state Synthesis at Lower Heating Temperature and the Characteriations of Zincophosphate Compounds;磷酸锌化合物的低热固相合成与表征
16.Microstructure Analysis of the Effect of Phosphating Coating on Zn ion锌离子对磷化膜形成影响的显微分析
17.Propertites Comparison of Zinc Phosphate Coatings Synthesized by Organic Acid Catalyzing Process有机酸催化合成磷酸锌涂料性能对比
18.The coating can be white zine,color zine,nickel,phosphate processing or resin.磁体表面防氧化层可采用镀白锌、五彩锌、镀镍、磷化、或环氧树脂喷涂。
相关短句/例句
zinc-phosphating锌系磷化
1.Aimed at the quality index of weld-neck-connection during 77B coiled-wire-rod online drawing,a fea- sible zinc-phosphating process at high temperature(for short:HZP)was developed.结果表明,该锌系磷化液具有稳定性高、快速、少渣、使用寿命长和生产成本低等特点;经80℃×(10~15)min喷淋处理后,盘条焊接区可获得膜重>10g/m~2的优质磷化膜,其外观呈均匀黑色,结晶细致,附着牢固,抗蚀性好,能顺利拉拔,满足了当前高强度PC钢绞线原料——77B高碳盘条在线生产所提出的焊接头磷化质量及工艺操作要求。
3)calcium-zinc phosphating锌钙系磷化
1.The key factor in calcium-zinc phosphating process have been studied by testing small opening rate and weight of phosphate coating.通过对磷化膜孔隙率和膜重的测定,研究了锌钙系磷化的主要控制因素,结果表明,影响磷化膜的成膜速率及膜质因素主要有[Fe2+]、Zn2+/Ca2+、PO43-/NO3-、Ca(NO3)2、A液、磷化温度和磷化时间。
4)Zn-Mn system phosphating锌锰系磷化
1.A cleaning Zn-Mn system phosphating solution used in surface pretreatment of iron and steel at room temperature was developed in order to perform cleaning phosphating production at room temperature.为使磷化实现清洁生产,开发了一种用于钢铁表面涂装前处理的清洁型常温锌锰系磷化液,实现了磷化液的所有分子均能参加成膜反应,且产物为磷化膜、水、沉渣或在磷化膜干燥过程中挥发物的设计思想。
5)zinc-based phosphating bath锌系磷化液
1.A zinc-based phosphating bath was developed for the clean phosphating of iron and steel at room temperature,as a kind of pretreatment of the iron and steel before surface finishing.为使磷化实现清洁生产,开发了一种用于钢铁表面涂装前处理的清洁型常温锌系磷化液,实现了磷化液的所有分子均能参加成膜反应且产物为磷化膜、水、沉渣或在磷化膜干燥过程中挥发的设计思路。
6)zinc-manganese bonderizing锌-锰系磷化
1.Process,parameters and influence factors while applying ambient curing zinc-manganese bonderizing on bicycle surface are introduced.介绍了自行车应用常温锌-锰系磷化的工艺过程、工艺参数及影响因素。
延伸阅读
碘化二乙氧磷酰硫胆碱,碘化磷,碘磷定,碘化胆碱硫磷酯,依可碘酯药物名称:碘化磷酰硫胆碱英文名:Echothiopate Iodide别名:碘化二乙氧磷酰硫胆碱,碘化磷,碘磷定,碘化胆碱硫磷酯,依可碘酯适应症: 用于原发性青光眼、慢性单纯性(开角)青光眼、调节性内斜视。 用量用法: 滴眼:视病情选用0.03%~0.06%滴眼剂。必要时,可提高至0.125%~0.25%,每日1~2次,每眼1~2滴。 注意事项: 1.可有虹膜及结合膜血管扩张、充血。过量时,由于强烈的缩瞳和调节痉挛,可致前额头痛、眼睑抽搐。 2.长期应用可引起白内障,过量吸收可出现急性痉挛性腹痛,甚至支气管痉挛等。 规格: 滴眼剂浓度:0.03%、0.06%、0.0125%、0.25%。 类别:眼科用药\抗青光眼药