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Stress and Temperature Dependence of Creep in Alloy 600 in Primary Water

机译:初生水中600合金蠕变的应力和温度依赖性

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The stress and temperature dependence of creep of commercial nickel-base Alloy 600 was investigated through constant load, step-load, and step-temperature creep tests in deaerated primary water containing 40 to 60 cc/kg hydrogen. To analyze creep rates for Alloy 600 in the mill-annealed (MA) condition, effective stresses were estimated using applied stresses and instantaneous strains. The apparent activation area was determined to be 7b~2 by the multiple regression analysis of creep rates. The apparent activation energy for creep has a weak stress dependence and was determined to lie between 188 and 281 kJ/mole for the effective stress range of 117 to 232 MPa. Creep rates were better correlated with effective stress than applied stress and the stress exponent of Alloy 600 MA was determined to be 2.2 at 337 deg C and 5.1 at 360 deg C. The magnitudes of the stress exponent, activation energy, and activation area can be interpreted to support a creep mechanism controlled by dislocation-climb and nonconservative motion of jogs in commercial Alloy 600 MA. The activation area agreed with that determined from carbon in solution, implying thermally activated dislocation glide as another possible creep mechanism.
机译:通过在包含40至60 cc / kg氢气的脱气一次水中进行恒定载荷,阶跃载荷和阶跃温度蠕变试验,研究了商用镍基合金600蠕变的应力和温度依赖性。为了在铣削退火(MA)条件下分析600合金的蠕变速率,使用外加应力和瞬时应变估算了有效应力。通过蠕变速率的多元回归分析,确定了表观活化面积为7b〜2。蠕变的表观活化能具有弱的应力依赖性,对于117至232 MPa的有效应力范围,确定为188至281 kJ / mole。与施加的应力相比,蠕变速率与有效应力的相关性更好,合金600 MA的应力指数在337℃和2.2时确定为2.2。应力指数,激活能和激活面积的大小可以是可以解释为支持由合金600 MA的点动和非保守运动控制的蠕变机理。活化区与由溶液中碳确定的活化区一致,这意味着热活化位错滑动是另一种可能的蠕变机理。

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