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Corrosion of Pure Copper Caused by Vortex

机译:涡旋引起的纯铜腐蚀

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A jet-in-slit testing apparatus is suitable for evaluating so-called erosion-corrosion resistance of pure copper. The followings are primary features. (1) Strong turbulence, caused by the rapid slowdown in flow velocity, occurs in the fluid flow over the specimen surface. (2) The location of maximum turbulence is different from the position where maximum shear stress occurs. Eventually, it was found that the inlet tube attack of copper alloys was caused not by shear stress, but rather by turbulence. In this study, the apparatus was modified to examine the effect of flow velocity difference on corrosion in the absence of turbulence. At a lower flow rate in a 1 percent CuCl_2 (II) solution, specimens showed the exactly expected morphology the damage depth was shallower in a higher velocity region, and deeper in a lower velocity region. At a higher flow rate, however, a deep pit was observed in the center of the specimen where the velocity is higher. Visualization of the flow conditions near the center of the specimen revealed the presence of a vortex at this location. Polarization curve measurements indicated that the deep pit under the fixed vortex occurred by the same mechanism as that of differential aeration cell corrosion. This proposed mechanism was confirmed by macro cell current measurements.
机译:狭缝喷射测试装置适合于评估所谓的纯铜的耐腐蚀性。以下是主要功能。 (1)在试样表面上流动的流体中,由于流速的迅速降低而引起的强烈湍流。 (2)最大湍流的位置与发生最大剪切应力的位置不同。最终,发现铜合金的进气管侵蚀不是由剪切应力引起的,而是由湍流引起的。在这项研究中,对设备进行了改进,以检查在没有湍流的情况下流速差对腐蚀的影响。在浓度为1%的CuCl_2(II)溶液中,流速较低时,标本显示出准确预期的形态,损伤深度在较高速度区域较浅,而在较低速度区域较深。然而,在较高的流速下,在速度较高的试样中心观察到了深坑。样品中心附近的流动条件的可视化表明在该位置存在涡旋。极化曲线测量表明,在固定涡旋下的深坑的发生机理与微分曝气池腐蚀的机理相同。宏电池电流测量结果证实了这一拟议的机制。

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