首页> 外文会议>International conference on environmental degradation of materials in nuclear power systems water reactors >MECHANISTIC STUDIES OF STRESS CORROSION CRACKING OF NICKEL-BASE ALLOYS IN HIGH TEMPERATURE HIGH PRESSURE PWR ENVIRONMENT
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MECHANISTIC STUDIES OF STRESS CORROSION CRACKING OF NICKEL-BASE ALLOYS IN HIGH TEMPERATURE HIGH PRESSURE PWR ENVIRONMENT

机译:高温高压压水堆环境下镍基合金应力腐蚀开裂的机理研究

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This study investigates the effect of the strain path on the stress corrosion cracking (SCC) behaviour of two Ni base alloy materials. Specimens with different strain paths have been produced from two plant components (forged CDRM nozzle and rolled divider plate) and tested in high temperature (360 °C) high pressure primary water environment under constant load for 5000 hours or until failure. Results show the susceptibility to stress corrosion cracking of the forged material and the high resistance to initiation of the rolled material (even cold worked at 21 %). The SCC susceptibility results were consistent with the carbide distribution, intergranular for the rolled material and intragranular for the forged material. The effect of the strain path on SCC of the CDRM nozzle was significant as the maximum crack depth increased by a factor three between the axial (0°) and 45° orientation for the same applied stress. Nevertheless, the stress does not appear to be the pertinent parameter to compare the different orientations and the stress to yield strength ratio seems to be more relevant.
机译:这项研究调查了应变路径对两种镍基合金材料的应力腐蚀开裂(SCC)行为的影响。由两个工厂组件(锻造的CDRM喷嘴和轧制的分隔板)制成了具有不同应变路径的标本,并在恒定负载下在高温(360°C)高压一次水环境中测试了5000小时,直到失效。结果表明,锻造材料易受应力腐蚀开裂的影响,并且对轧制材料具有很高的耐起爆性(即使在21%的冷作条件下)。 SCC敏感性结果与碳化物分布一致,轧制材料为晶间,锻造材料为晶内。应变路径对CDRM喷嘴的SCC的影响是显着的,因为对于相同的施加应力,最大裂纹深度在轴向(0°)和45°方向之间增加了三倍。然而,应力似乎并不是比较不同方向的相关参数,应力与屈服强度之比似乎更相关。

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