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评述了2007年第七届亚太镀锌大会的50篇参会论文,分析归纳了当前研究的热点问题,包括含硅活性钢热镀锌、热镀锌层的耐腐蚀性、热镀锌的节能减排环境友好、批量热镀锌工艺和设备以及世界各地区批量热镀锌的发展现状.

参考文献

[1] Sandelin R W .GMvanizing Characteristics of Different Types of Steel[J].Wire and Wire Products,1941,16:28-35.
[2] Tang N Y.Control of Silicon Reacfivity General Galvanizing[A].北京,2007:105-111.
[3] 彭碧草,王建华,肖斌,苏旭平,尹付成.钢中Si对热镀锌镀层组织的影响[C].第七届亚太镀锌大会论文汇编,2007:113-117.
[4] 车淳山;卢绵堂;孔钢.钢中硅在热镀锌层中的作用[A].北京,2007:95-100.
[5] 许乔瑜,桂艳,卢锦堂,孔纲,车淳山.热浸Zn-Ti合金镀层的组织与性能[C].第七届亚太镀锌大会论文汇编,2007:66-71.
[6] Manuel B F;Pedro T R.Reduction of Coating Thickness Improving Corrosion Resistance of Hot Dip Zn-Ni-V(ECOZINC) Versus Convention Hot Dip Galvanzing Coatings[A].北京,2007:58-63.
[7] Pedro T R;Manuel B F.Comparative Study Between the Adherence of Hot Dip Galvanizing[A].Bering,2007:64-70.
[8] Emmanuel P.The Performance of Galvanized Steel in Coastal Environments[A].北京,2007:48-56.
[9] Yao T H;Yao J M;Peng J s.A Study of Analysis of Lifecycle Cost on Hot-Dip Galvanized Steel Bridges[A].北京,2007:18-24.
[10] Rob W;Franke D.Galvanized Reinforcement for Conerete:Research Update[A].北京,2007:34-39.
[11] Cheng J R;Horng W B.Corrosion Evaluation of Hot Dip Galvanized Insulator Prins with Image Proceessing Techniques[A].北京,2007:218-225.
[12] 王岩;徐娟;陈琳.Si对铝基合金微观组织及在锌液中耐蚀性的影响[A].北京,2007:198-203.
[13] 陈琳,徐娟,王岩.Cr元素对熔炼Fe-B合金中Fe2B相性能的影响[C].第七届亚太镀锌大会论文汇编,2007:215-219.
[14] 孔纲;刘灿楼;Rob W.中国热镀锌工业的清洁生产[A].北京,2007:4-13.
[15] Tsai F T.Comparison Between High Velocity Combustion System and Flat Flame Combustion System of Hot Dip Galvanizing Furnace[A].北京,2007:189-192.
[16] 巩养宁;江社明;岳元广.国内钢结构热浸锌钢加热技术的新进展[A].北京,2007:37-40.
[17] 张珠.热浸镀锌废水处理及综合利用[C].第七届亚太镀锌大会论文汇编,2007:228-230.
[18] 袁训华,何明奕,张启富.热镀锌渣制备锌粉的试验研究[C].第七届亚太镀锌大会论文汇编,2007:243-246.
[19] 董安平,疏达,王俊,蔡西川,孙宝德,崔健,沈建国,任玉森,尹小东.高频交变磁场作用下热镀锌中Fe-Al-Zn相的连续分离研究[C].第七届亚太镀锌大会论文汇编,2007:159-164.
[20] 卢锦堂,孔纲,吴海江,陈锦虹,车淳山.用于取代铬酸盐钝化的镀锌钢硅烷和铈盐后处理研究[C].第七届亚太镀锌大会论文汇编,2007:170-174.
[21] 于武刚,岳远广,张启富.热浸镀锌钝化液中铬元素(Cr<'6+>)替代研究[C].第七届亚太镀锌大会论文汇编,2007:179-183.
[22] 彭碧草;王建华;何猛.镀锌温度对热浸镀锌层的影响[A].北京,2007:189-192.
[23] Toshiharu S;Hata S.A Study to Form the Significant Surface of Hot Dip Galvanized Coating[A].北京,2007:76-80.
[24] 杨穗;苏妲平;何猛.2%(原子分数)Al在液锌中扩散系数的实验测定和分子动力学模拟计算[A].北京,2007:118-121.
[25] 刘亚;苏妲平;尹付成.第三组元在FeZn中的择优代位及溶解度的原子级模拟[A].北京,2007:122-128.
[26] Cheng J R;Tsia M T.Investigation of the Influence of Cooling Rates on Mierostrncture of 5%Zinc-Aluminum Coating[A].北京,2007:168-172.
[27] 王新华,卢锦堂,车淳山,孔纲.批量热浸Zn-0.1AL-0.1Pb合金镀层锌花上Pb的表面偏析[C].第七届亚太镀锌大会论文汇编,2007:146-151.
[28] Brgan C;Michael H.Continuous Fastener Galvanizing Technology--A Customer's Perspective[A].北京,2007:140-149.
[29] Jen C K;Ubialet M.The K.I.D.:A New way to Perform Low Cost Ultrasonicdiagnostics on Hot-Dip Galvanizing Kehies[A].北京,2007:193-198.
[30] 陈厚载.结构件用的热镀锌螺栓螺母[C].第七届亚太镀锌大会论文汇编,2007:209-211.
[31] 陈冬.中国大陆批量热镀锌概况、技术现状和展望[C].第七届亚太镀锌大会论文汇编,2007:251-258.
[32] White R T.Renew of the General Galvanizing Industry and the IZA Support Activities[A].北京,2007:25-33.
[33] Shingo T;Shuzo T.Market Development Activity of Hot Dip Galvanized Steel Products in Japan[A].北京,2007:1-4.
[34] Klaus N.Market Development-Trend of Hot-Dip Galvanizing in Europe with a Special View on New Technologies[A].北京,2007:250-266.
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