• This process was coincident with classic theory of crevice corrosion of metal.

    过程经典金属缝隙腐蚀机理相吻合

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  • The stainless steels exposed to tidal zone were attacked by pitting and crevice corrosion.

    在潮汐暴露不锈钢点蚀缝隙腐蚀破坏

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  • It was concluded that the corrosion of anti-rust aluminum plate was the result of crevice corrosion.

    各种分析结果证明,缝隙腐蚀导致防锈铝板表面发生失效主要原因。

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  • The results indicted that the failure of the stainless steel plates was mainly due to crevice corrosion induced by Cl -.

    结果表明不锈钢板片失效主要原因氯离子引起缝隙腐蚀所致

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  • Pitting corrosion and crevice corrosion in catalyst deposit zone and corrosion deposit zone can also induce stress corrosion cracking.

    催化剂沉积腐蚀产物沉积区产生的点缝隙腐蚀诱发应力腐蚀开裂的产生。

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  • Results showed that corrosion potential moved negatively till the lowest value was reached and kept stable during the procedure of copper crevice corrosion.

    结果表明发生缝隙腐蚀过程,金属腐蚀电位负移动,最低值保持不变

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  • The crevice corrosion behavior of X70 steel was studied in the Ku'erle simulated solution of various HCO3- concentrations by using a wedge-shaped crevice model.

    含有不同浓度HCO3-库尔勒模拟溶液X70楔形缝隙模拟构型进行缝隙腐蚀实验。

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  • The kinetics of crevice corrosion and water-line corrosion of these metals and the effects of inhibitors on crevice corrosion and water-line corrosion were studied.

    研究这些金属缝隙腐蚀水线腐蚀的机理,以及添加缓蚀剂缝隙腐蚀和水线腐蚀的影响

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  • Fig. 8 shows the relationship between crevice corrosion rate and nitrogen content for a low Mn steel, SUS316L, with diverse nitrogen content after forming crevices.

    8表明形成缝隙,不同含SUS316 L锰钢隙间腐蚀含氮量之间关系

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  • Using accelerated chemical and electrochemical corrosion testing methods, the resistance to pitting and crevice corrosion behavior for six stainless steels were evaluated.

    采用化学电化学加速腐蚀试验方法6种不锈钢点蚀缝隙腐蚀性能进行了评价。

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  • All sorts of materials are co-used in aerial structure and contact with each other, so Crevice Corrosion and Galvanic Corrosion are important failure forms of aerial structure.

    由于航空结构各种材料常常接触使用,因而使得电腐蚀缝隙腐蚀成为航空结构重要失效形式

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  • All sorts of materials are co-used in aerial structure and contact with each other, so Crevice Corrosion and Galvanic Corrosion are important failure forms of aerial structure.

    由于航空结构各种材料常常接触使用,因而使得电腐蚀缝隙腐蚀成为航空结构重要失效形式

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