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1)  wet-dry alternated accelerated corrosion
干湿交替加速腐蚀
1.
A study on corrosion resistance of newly developed Q460qNH steel was carried out in laboratory by means of wet-dry alternated accelerated corrosion and electro-chemical tests,and the steel was compared with high strength bridge steel Q460q and SPA-H weathering steel with superior corrosion resistance.
采用实验室干湿交替加速腐蚀试验(CCT)和电化学方法对新研制的Q460qNH高强度桥梁钢的耐蚀性能进行了研究,并与普通高强度桥梁钢Q460q和耐蚀性能优良的SPA-H耐候钢进行了对比,对试验钢的耐蚀机理进行了分析。
2)  dry-wet alternate corrosion
干湿交替腐蚀
3)  wet-dry circles
浸渍干湿循环加速腐蚀
4)  Immersion-wet-dry cycle accelerated corrosion test
浸渍干湿循环加速腐蚀试验
5)  wetting-redrying
干湿交替
1.
Effect of continuous submerging and wetting-redrying on cadmium speciation and uptake by Sorghum hybrid Sudangrass in a Ferric-accumulic Stagnic Anthrosol and a Tipical Hapludult collected from the Taihu Lake region and the rolling downs of Yingtan,Jiangxi,China respectively,was studied by pot experiment with Cd spike in 2003.
采用盆栽试验的方法,研究了前期持续淹水和干湿交替预培养对2种水稻土———太湖地区黄泥土、江西鹰潭红壤性水稻土中外源Cd形态分配及高丹草吸收Cd的影响。
6)  dry-wet circulation
干湿交替
1.
Study on corrosion effects under sulfate attack of concrete at a dry-wet circulation environment;
干湿交替环境下混凝土硫酸盐侵蚀的试验研究
2.
Sulfate attack is a very important effect to the concrete durability,however,the environment of concrete is not only sulfate attack,in fact,the concrete sometimes gets two factors of external environment and sulfate attack,such as dry-wet circulation etc.
硫酸盐侵蚀对混凝土的耐久性有重要影响,但在实际工程中混凝土往往不是处于硫酸盐单一的作用环境中,混凝土往往受到外界环境条件和硫酸盐侵蚀双重因素的作用,如干湿交替等。
3.
Based on the situation of the concrete sulfate attack always exists in complex factors,the present research of the concrete sulfate attack is elaborated at a dry-wet circulation and carbonation environment,and experiments are used to prove that the dry-wet circulation and carbonation can accelerate the sulfate attack,some ideas for the future research are provided.
依据现实情况中混凝土硫酸盐侵蚀往往是在多因素的作用下,阐述了国内外对于环境因素中的干湿交替和碳化对混凝土硫酸盐侵蚀的研究现状,并通过试验证明了干湿循环和碳化对混凝土硫酸盐侵蚀的加速作用,为以后的研究提供一些参考。
补充资料:干湿交替试验
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性质:材料在大气中加速腐蚀试验的一种方法。将试样在淡水或食盐水中浸泡一定时间,再置于空气中一定时间,如此反复交替进行,以考察材料的变化情况。高分子材料,特别是用于盛装盐类的器具、容器或装置,在使用前应对其制造这些物件的原材料进行干湿交替试验,以确定其适用性。

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