首页> 外文会议>International Joint Conference on Advanced Engineering and Technology >A review of low-cycle fatigue of Alloy 617 for use in VHTR components: Experimental outlook
【24h】

A review of low-cycle fatigue of Alloy 617 for use in VHTR components: Experimental outlook

机译:综述用于VHTR组件的合金617低循环疲劳的综述:实验前景

获取原文

摘要

The effect of strain range and temperature on the low-cycle fatigue behaviour and microstructure change during cyclic deformation of Alloy 617 for use in very high temperature gas-cooled reactor components were studied at elevated temperature starting from ambient condition. Increasing the strain range and the temperature was noticed to reduce the fatigue resistance of nickel-based Alloy 617 due to facilitating the transformation behavior of the carbides in the grain interior, precipitates along the grain boundary, and oxidation behavior inducing surface connected precipitates cracking. Initial hardening behavior was observed at room temperature condition during cyclic due to the pile-up dislocation of micro-precipitates. The grain size was also taking a role due to the formation of an obstacle in the matrix. In the high temperature regime, the alloy 617 was found to soften for its entire life due to the fast recovery deformation, proved by its higher plasticity compared with lower temperature. The deformation behavior also showing high environmentally assisted damage. Oxidation behavior was found to become the primary crack initiation, resulting in early intergranular surface cracking.
机译:在升高的温度从环境条件下,研究了应变范围和温度对低循环变形期间的低循环疲劳行为和微观结构变化的影响,从环境条件开始的升高。提高应变范围和温度被注意到降低镍基合金617的疲劳电阻,因为促进晶粒内部的碳化物的转化行为,沿晶界沉淀,诱导表面连接的氧化行为沉淀裂化。由于微沉淀物的堆叠脱位,在室温条件下在室温条件下观察初始硬化行为。由于在基质中形成障碍,粒度也在作用。在高温调节中,发现合金617由于快速恢复变形而被软化为其整个寿命,而其较高的可塑性与较低的温度相比证明。变形行为也显示出高的环境辅助损坏。发现氧化行为成为主要裂纹引发,导致早期的晶间表面裂化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号