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pitting mechanism
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  “pitting mechanism”译为未确定词的双语例句
     The pitting mechanism of passive 304 stainless steel monocrystal in pH1.0, 0.25mol/l Na2 SO4 solutions containing chlorion has been investigated using a. c.
     采用交流阻抗技术,研究钝化304不锈钢单晶体在pH1.0,0.25mol/lNa_2SO_4含氯介质中的孔蚀行为。
短句来源
     Research on Pitting Mechanism of a Chilled Cast Iron Cam
     冷激铸铁凸轮点蚀机理的研究
短句来源
     Pitting Mechanism of Passive 304 Stainless Steel in Weakly Basic Media Containing Chlorion
     钝化304不锈钢在弱碱性含氯介质中的点蚀机理
短句来源
     Pitting Mechanism of Passive 304 Stainless Steel Mono- crystal in Sulphuric Media Containing Chlorion
     钝化304不锈钢单晶在硫酸含氯介质中的孔蚀
短句来源
     A pitting mechanism model and an equivalent circuit model in pit propagation stage have been propesen, it has no intrinsic difference with that for 304 ss polycrystal.
     并提出一个孔蚀的的反应机理模型,它与304不锈钢多晶体在硫酸含氯介质中的孔蚀机理没有本质的差别。
短句来源
  相似匹配句对
     Mechanism and Experiments of Pitting for Litchi Fruit
     荔枝去核机理及试验
     The Action Mechanism of Anion Cl - on Pitting Corrosion
     Cl~- 离子对孔蚀的作用机理
短句来源
     2.By the mechanism
     2.涤痰汤可能是通过抑制大鼠缺血侧脑组织INF一。 的表达及细胞凋亡的机制发挥神经保护作用。
短句来源
     compete for mechanism;
     以竞争为机制 ;
短句来源
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  pitting mechanism
The pitting mechanism of wear was observed on all eight retrieved TKR and covered an average of 12.6% of the surface area.
      


The systematic study on pitting mechanism of a chilled cast iron cam

本文结合上海牌轿车发动机系统地研究了冷激铸铁凸轮的点蚀机理问题。首先用线弹性的方法对凸轮接触表面下的应力场分布进行了计算,然后在表面层微观组织分析的基础上,根据力学条件及冷激铸铁的组织结构特征提出了两种点蚀形成的机制模型,最后探讨了硬度、韧性及接触表面温度等因素的影响。根据研究工作结果提出了为进一步提高冷激铸铁凸轮的点蚀抗力应采取的措施及研究方向的建议。

The passivity and pitting mechanisms of Fe-Cr alloys which contain 13%Cr, 17%Cr and 28%Cr in 3.5%NaCl solution have been presented by AES, EPMA technique and rotating disc-ring electrochemical measurement, especially, the behaviour of element Cr was investigated. By experiments and analysis, the following conclusions have been obtained: (a) The most important factor that control corrosion resistance of Fe-Cr alloys is the ratio Cr/Fe in passive film. (b) For diffenent Fe-Cr alloys, dissolution of Cr within...

The passivity and pitting mechanisms of Fe-Cr alloys which contain 13%Cr, 17%Cr and 28%Cr in 3.5%NaCl solution have been presented by AES, EPMA technique and rotating disc-ring electrochemical measurement, especially, the behaviour of element Cr was investigated. By experiments and analysis, the following conclusions have been obtained: (a) The most important factor that control corrosion resistance of Fe-Cr alloys is the ratio Cr/Fe in passive film. (b) For diffenent Fe-Cr alloys, dissolution of Cr within pit is different. For alloys of Fe-13Cr and Fe-17Cr, dissolution of Cr follow dissolution-deposition reaction but following adsorption-desorption reaction is occurred for Fe-28Cr alloy.(c) Based on the experimental results and analytical discussion,models of pitting propagation mechanism for Fe-13Cr, Fe-17Cr alloys and for Fe-28Cr alloy have bene proposed respectively.

本文采用AFS和FPMA以及旋转圆盘—圆环电极等方法,对三种Fe-Cr合金在3.5%NaCl溶液中的钝化和点蚀行为进行了研究,考察了铬的作用和溶解机理,并据此提出了两种点蚀发展模型。

The pitting mechanism of passive 304 stainless steel monocrystal in pH1.0, 0.25mol/l Na2 SO4 solutions containing chlorion has been investigated using a. c. impedance technique. The impedance characteristics in pit initiation and propagation stages have been analysed. It is proposed that an intermediate complex (MOHCI)comc will form in both the two stages. A pitting mechanism model and an equivalent circuit model in pit propagation stage have been propesen, it has no intrinsic difference with that...

The pitting mechanism of passive 304 stainless steel monocrystal in pH1.0, 0.25mol/l Na2 SO4 solutions containing chlorion has been investigated using a. c. impedance technique. The impedance characteristics in pit initiation and propagation stages have been analysed. It is proposed that an intermediate complex (MOHCI)comc will form in both the two stages. A pitting mechanism model and an equivalent circuit model in pit propagation stage have been propesen, it has no intrinsic difference with that for 304 ss polycrystal.

采用交流阻抗技术,研究钝化304不锈钢单晶体在pH1.0,0.25mol/lNa_2SO_4含氯介质中的孔蚀行为。对孔蚀过程中的阻抗频谱特征进行了分析,提出孔蚀的发生和发展过程中都有复合物(MOHC1)形成。复合物进一步吸附更多的氯离子,导致溶解反应发生。并提出一个孔蚀的的反应机理模型,它与304不锈钢多晶体在硫酸含氯介质中的孔蚀机理没有本质的差别。

 
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