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    高温模拟压水堆一回路水中枝晶取向对Inconel 182镍基合金焊接金属应力腐蚀开裂的影响

    Effect of Dendrite Orientation on SCC of Weld Metal of Nickel-Based Alloy Inconel 182 in PWR Primary Water

    • 摘要: 在模拟压水堆(PWR)一回路高温水中对Inconel182镍基合金焊接金属进行了应力腐蚀开裂(SCC)试验,研究了枝晶取向对其SCC行为的影响。结果表明:在320 ℃下模拟压水堆一回路水中,182合金LT取向试样断口上出现全面沿晶应力腐蚀裂纹扩展带,其平均裂纹扩展速率以及最大裂纹扩展速率均大于290 ℃下相同试样,表明在模拟压水堆一回路水中升高温度对182合金焊接金属应力腐蚀裂纹扩展有促进作用;290 ℃下182合金LT取向试样的平均裂纹扩展速率、最大裂纹扩展速率以及裂纹扩展区宽度占比均大于TL取向试样,表明裂纹沿LT枝晶取向更容易扩展。

       

      Abstract: The effect of dendrite orientation on stress corrosion cracking (SCC) behavior of weld metal of nickel-based alloy Inconel 182 in simulated pressurized water reactor (PWR) high-temperature primary water was investigated by SCC test. The result show that an extensive interdendritic stress corrosion crack growth zone appeared on the fracture surface of the LT-oriented 182 alloy specimen in the simulated PWR primary water at 320 ℃. Both the average crack growth rate and the maximum crack growth rate of the LT-oriented 182 alloy specimen at 320 ℃ were higher than those of the same sample at 290 ℃, indicating that the stress corrosion crack growth of 182 alloy weld metal was promoted by increasing temperature in the simulated PWR primary water. At 290 ℃, the average crack growth rate, maximum crack growth rate and crack growth zone width ratio of the LT-oriented specimen were greater than those of the TL-oriented specimen, which indicated that cracks were easier to expand along the LT dendrite orientation.

       

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