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1)  anticorrosion with painting
喷涂防腐
2)  thermal spray coating anticorrosion
热喷涂防腐
3)  anticorrosion coating
防腐涂料
1.
This paper introduced the research advances of polyaniline anticorrosion coatings and different mechanisms of anticorrosion.
介绍了聚苯胺防腐涂料的研究进展及不同的防腐机理。
2.
This paper reviews the application of modified epoxy resin in anticorrosion coatings and the trend of high performance.
综述了改性环氧树脂在防腐涂料中的应用及高性能化的方向。
4)  anticorrosive coatings
防腐涂料
1.
This paper analyses the effect of the NM powder material in antisepsis coatings,and also summarizes the na- tional inside and outside development trends and tend of the NM anticorrosive coatings.
本文分析了纳米粉体材料在防腐涂料中的作用。
5)  anticorrosion coatings
防腐涂料
1.
Preparation and use study of epoxy modified acrylic self-cleaning anticorrosion coatings;
环氧改性丙烯酸自清洁防腐涂料制备与应用研究
2.
Situation of international competition and development trend of marine and heavy-duty anticorrosion coatings industry;
国际化竞争环境与船舶重防腐涂料行业的发展趋势
3.
Preparation of water-borne self-drying anticorrosion coatings;
水性自干防腐涂料的制备
6)  corrosion protective coatings
防腐涂料
1.
An epoxy resin used as waterborne corrosion protective coatings was synthesized by the copolymerization of crylic acid, methyl methacrylate, methyl butyacrylate with styrene in the presence of epoxy organosilicone, which had high hardness, abrasion resistance and adhesion possessed by both organic and inorganic coatings.
 利用丙烯酸、甲基丙烯酸甲酯、甲基丙烯酸丁酯与苯乙烯的共聚方法,合成一种新型水性防腐涂料。
2.
The preparation of higher chlorinated polyethylene(HCPE) for coatings in solid phase and its application in corrosion protective coatings has been described.
研究了固相法涂料用高氯化聚乙烯树脂的制备及其在防腐涂料中的应用。
3.
A heat and oil resistant corrosion protective coatings has been developed, which is formulated based on the modified raw lacquer as binder and mixed with various pigments and fillers, and used for the corrosion protection of heat exchanger with hot oil as media.
研制成耐热、耐油防腐涂料。
补充资料:爆炸喷涂层


爆炸喷涂层
detonation coating

嗽烧涂材爆炸喷涂层detonatio;1 eoati眼利用气体献爆炸能加热喷涂材料,并利用燃气高速冲击波将啧料喷向零件表面形成的涂层。 工艺和原理定量地‘将可燃气体(如乙炔、卜丙烷、氢气等,和氧气称空气输入枪膛内,再输入的涂料粉末,在火花塞点火的同时输入氮气,此时内发生爆炸,完成一个循环过程。爆炸循环的周2一8次/so氮气流的作用是在爆炸时保护阀门不响,并将枪膛内的残余燃气清理出去,为下一次爆准备。枪口与被涂零件之间的距离约为5一巧cm。 混合气体爆炸时形成高温和冲击波,由于枪膛闭状态,冲击波集中到非常小的面积上,使之进一强氧一乙炔的爆炸,冲击波的速度可达3000m/*从枪口喷出的气流速度实际上可达1200m/。。由流速度使粉末得到加速达800m/s。在爆炸的同时末被加热到很高温度,当动能转变为热能时,温度步提高,达到4000℃。这时粉末材料包括氧化铝(205了C)、碳化钨嘴卉2800℃)等高熔点化合物都于熔点以上的状态。在这种情况下,粉禾由原来的形变为扁平形,并以高速度喷涂在零艇,形成薄状结构嵌入零件表面。由于粉末材料i与基体产生显接作用、使之具有冶金及机械结合的特征,因此涂有很高的结合强度和低的孔隙率。 特性和应用爆炸喷涂工艺及涂层性能与其他涂相比有许多优点。以碳化钨涂层材料为例,与热喷较优良的等离子喷涂的工艺势数和涂层性能对比见 等离子喷涂与爆炸喷涂特性比较叙量膛为影作嗡越创戮煞料为封步加而气粉一点处圆层悍具 于笠容J一佑内版召石喷中。
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