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The effect of isothermal heat treatment on hydrogen environment-assisted cracking susceptibility in Monel K-500

机译:等温热处理对Monel K-500氢环境辅助开裂敏感性的影响

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The effect of isothermal heat treatment on hydrogen environment-assisted cracking (HEAC) susceptibility in a single heat of Monel K-500 was evaluated via slow-rising stress intensity (K) testing while immersed in 0.6 M NaCl solution and exposed to applied potentials ranging from -1000 to -1200 mV(SCE) (vs. saturated calomel electrode). Four heat treatments, corresponding to the non-aged, under-aged, peak-aged, and over-aged conditions, conducted at a constant aging temperature of 923 K, were examined in this study. Crack growth kinetics and fractography demonstrate that alloys heat-treated to the under-aged and peak-aged conditions exhibit increased susceptibility to HEAC relative to alloys treated to the non-aged and over-aged conditions, respectively. Microstructural variables that are expected to vary under this isothermal heat treatment protocol are grain size, grain boundary character, grain boundary impurity concentration, yield strength, strain hardening, and precipitate morphology. A detailed assessment of grain size, grain boundary character, and grain boundary impurity concentration evolution with aging time suggests these variables do not explain the observed variation in HEAC susceptibility of Monel K-500. Differences in the crack tip hydrostatic stress field induced by differences in yield strength and strain hardening were directionally consistent with the observed HEAC susceptibility, but do not capture the enhanced susceptibility of the under-aged heat treatment relative to the peak-aged condition. However, transmission electron microscopy of each heat treatment revealed the presence of planar slip in the under-aged and peak-aged specimens, as compared to wavy slip in the non-aged and over-aged specimens, suggesting that the propensity for strain localization correlates well with HEAC susceptibility.
机译:通过缓慢上升的应力强度(K)测试(浸入0.6 M NaCl溶液中并暴露于施加的电位范围内),评估了Monel K-500单次加热中等温热处理对氢环境辅助裂解(HEAC)敏感性的影响-1000至-1200 mV(SCE)(相对于饱和甘汞电极)。在这项研究中,研究了四种热处理,分别对应于未老化,不足老化,峰值老化和过度老化的条件,并在923 K的恒定老化温度下进行。裂纹扩展动力学和断口图表明,与未时效和过时效处理的合金相比,热处理至时效不足和峰值时效条件的合金对HEAC的敏感性更高。在这种等温热处理方案下,预计会发生变化的微观结构变量是晶粒尺寸,晶界特征,晶界杂质浓度,屈服强度,应变硬化和沉淀形态。对晶粒尺寸,晶界特征和晶界杂质浓度随时效变化的详细评估表明,这些变量不能解释观察到的Monel K-500的HEAC磁化率变化。由屈服强度和应变硬化的差异引起的裂纹尖端静水应力场的差异与所观察到的HEAC磁化率在方向上一致,但是相对于峰值时效,未捕获到老化后热处理的增强磁化率。然而,每种热处理的透射电子显微镜显示,与未老化和过度老化的试样中的波状滑移相比,未老化和峰值老化的试样中存在滑移,这表明应变局部化倾向与对HEAC的敏感性很好。

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