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Low cycle fatigue properties of CLAM steel at 823 K

机译:CLAM钢在823 K下的低周疲劳性能

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摘要

China Low Activation Martensitic (CLAM) steel is considered to be the main candidate material for the first wall components of future fusion reactors in China. In this paper, the low cycle fatigue (LCF) behavior of CLAM steel is studied under fully reversed tension-compression loading at 823 K in air. Total strain amplitude was controlled from 0.14% to 1.8% with a constant strain rate of 2.4×10~(-3)s~(-1). The corresponding plastic strain amplitude ranged from 0.023% to 1.613%. The CLAM steel displayed continuous softening to failure at 823 K. The relationship between strain, stress and fatigue life was obtained using the parameters obtained from fatigue tests. The LCF properties of CLAM steel at 823 K followed Coffin-Manson relationship. Furthermore, irregular serration was observed on the stress-strain hysteresis loops of CLAM steel tested with the total strain amplitude of 0.45-1.8%, which was attributed to the dynamic strain aging (DSA) effect. During continuous cyclic deformation, the microstructure and precipitate distribution of CLAM steel changed gradually. Many tempered martensitic laths were decomposed into subgrains, and the size and number of M_(23)C_6 carbide and MX carbonitride precipitates decreased with the increase of total strain amplitude. The response cyclic stress promoted the recovery of martensitic lath, while the thermal activation mainly played an important role on the growth of precipitates in CLAM steel at 823 K. In order to have a better understanding of high-temperature LCF behavior, the potential mechanisms controlling stress-strain response, DSA phenomenon and micro-structure changes have also been evaluated.
机译:中国低活化马氏体(CLAM)钢被认为是未来中国聚变反应堆第一批壁组件的主要候选材料。本文研究了空气中823 K下完全反向拉伸压缩载荷下CLAM钢的低周疲劳(LCF)行为。总应变幅度控制在0.14%至1.8%之间,恒定应变率为2.4×10〜(-3)s〜(-1)。相应的塑性应变幅度在0.023%至1.613%的范围内。 CLAM钢在823 K时显示出持续的软化直至破坏。应变,应力和疲劳寿命之间的关系是使用疲劳试验获得的参数得出的。 CLAM钢在823 K时的LCF特性遵循Coffin-Manson关系。此外,在测试的CLAM钢的应力-应变磁滞回线上观察到不规则的锯齿,总应变幅度为0.45-1.8%,这归因于动态应变时效(DSA)效应。在连续循环变形过程中,CLAM钢的组织和析出物分布逐渐变化。许多回火马氏体板条被分解为亚晶粒,并且随着总应变幅度的增加,M_(23)C_6碳化物和MX碳氮化物的尺寸和数量减少。响应循环应力促进了马氏体板条的恢复,而热活化在823K CLAM钢中的析出物生长中起着重要作用。为了更好地了解高温LCF行为,可能的控制机制还评估了应力应变响应,DSA现象和微观结构变化。

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  • 来源
    《Materials Science and Engineering》 |2014年第8期|404-413|共10页
  • 作者单位

    Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China,University of Chinese Academy of Sciences, 19 Yuquan Road, Beijing 100049, China;

    Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China,State Key Laboratory of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao 066004, China;

    Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China;

    Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China;

    School of Planning, Architecture and Civil Engineering, Queen's University Belfast, Belfast BT9 5AG, UK;

    Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China;

    Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Steel; Fatigue; Aging; Precipitation; Electron microscopy; Mechanical characterization;

    机译:钢;疲劳;老化;沉淀;电子显微镜;机械特性;

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