corrosion potential中文,corrosion potential的意思,corrosion potential翻译及用法

2025-10-08 10:13 浏览次数 7

corrosion potential

英[kəˈrəʊʒən pəˈtenʃəl]美[kəˈroʒən pəˈtɛnʃəl]

[物化] 腐蚀电位

corrosion potential 片语

片语

corrosion potential imaging腐蚀电位图象

natural corrosion potential自然腐蚀电位

self corrosion potential自腐蚀电位

Pitting corrosion potential点蚀电位

free corrosion potential[物化]

corrosion electric potential锈蚀电势

free corrosion potential signal自腐蚀电位信号

MONK corrosion potential腐蚀电势

corrosion potential series腐蚀电位序

corrosion potential 例句

英汉例句

  • Because the chemical properties of magnesium lively, the corrosion potential of magnesium and its alloys very low (-2.36v), it is very easy prone to severe corrosion.

    由于镁元素的化学性质活泼,使镁及其合金的腐蚀电位极低(- 2.36V),很容易发生严重的腐蚀。

  • Thus, corrosion resistance of stainless steels in seawater could be evaluated on the basis of corrosion potential measurements.

    稳态腐蚀电位较负,其耐蚀性较差。测定不锈钢海水稳态腐蚀电位能确定它们在海水中的相对耐蚀性。

  • The modified waterborne polyurethane zinc-rich coating was characterized by scanning electron microscopy (SEM), corrosion potential test and electrochemical impedance spectroscopy (EIS).

    通过扫描电镜(sem)、腐蚀电位和电化学阻抗谱(EIS)等方法对改性聚氨酯的富锌涂层进行了表征。

  • This article discusses the changes of corrosion potential and current for phosphating process of hard aluminium (LY12) in different conditions, namely, the growing process of phosphate coating.

    讨论了硬铝(LY12)在不同条件下磷化过程中腐蚀电位和电流的变化,即磷化膜的生长过程。

  • The pitting corrosion potential of 316 stainless steel increases along with the ammonia nitrogen density decrease.

    在模拟中水中,随着氨氮浓度的增加,316不锈钢的孔蚀电位减小。

  • The results have shown that the possibility of embrittlement of high strength steel can be predicted by corrosion potential and current in potentiodynamic polarization measurement.

    结果表明,根据动电位极化测试的腐蚀电位和腐蚀电流可以预测高强度钢发生腐蚀氢脆的倾向性。

  • The result shows that ferrite has lower corrosion potential than that of austenite.

    实验表明,铁素体相电位比奥氏体相电位低。

  • The results show, when pitting corrosion occurred on the brass surface, the polarization resistance of electrode was obviously decreased, and the corrosion potential being also obviously lowered.

    结果表明,黄铜表面出现点蚀时,电极的极化电阻明显下降,腐蚀电位也明显降低。

  • Objective to evaluate corrosion potential and corrosion tendency of dental restorative alloys in common use.

    目的评价口腔修复常用合金的稳态电位及其发生腐蚀的倾向。

  • After sealing treatment, the surface morphology of phosphate conversion coating was improved, the corrosion potential shift positively and the corrosion resistance was enhanced.

    经封闭后,膜层的表面形貌有所改善,并且自腐蚀电位正移,耐蚀性得到提高。

  • This paper puts forward oneself view for producing mechanism of differential aeration corrosion and talk about influence of metal corrosion potential due to the change of oxygen concentration.

    本文就差异充气腐蚀产生机理提出自己的看法,并且谈到氧气浓度变化对金属腐蚀电位的影响。

  • The results show that the corrosion potential improves by 1.339 V. The self-corrosion current density decreases to 1/10 of the AZ91D alloy.

    结果表明,复合涂层使基体镁合金的腐蚀电位提高了1.339V,自腐蚀电流密度降低为基体的1/10;

  • With the increase of immersion time, the corrosion potential shifted negatively, the polarization resistance reduced and the difference of corrosion potential became larger.

    铁丝的腐蚀不均匀,自腐蚀电位和极化电阻分布较分散,随时间增加、自腐蚀电位负移、极化电阻变小、丝束之间的电位差增大。

  • The results show that the corrosion potential of the Ti coating sprayed in vacuum is much higher than one of the Ti coatings sprayed in air and in argon, but a little lower than one of pure titanium.

    在真空中喷涂的钛涂层基本上没有氧化物和氮化物,其衍射图谱与纯钛十分接近;

  • They were also revealed by tafel curve test that the corrosion potential of the tinplate changes after its oxidation at high temperature.

    通过对氧化前后试片极化曲线的测定,发现经高温氧化后镀锡层的稳定电位发生了变化。

  • Increasing the corrosion potential of the matrix not only reduces the inter-phase corrosion speed but also raises the corrosion resistance of white cast iron.

    提高基体的腐蚀电位,不仅可以降低相间腐蚀速度,而且可以大幅度提高铬系白口铸铁的耐蚀性。

  • 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,铜发生缝隙腐蚀的过程中,金属腐蚀电位朝负移动,至一最低值并保持不变。

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