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首页> 外文期刊>Materials Science and Engineering >The effect of dwell times on the thermomechanical fatigue life performance of grade P92 steel at intermediate and low strain amplitudes
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The effect of dwell times on the thermomechanical fatigue life performance of grade P92 steel at intermediate and low strain amplitudes

机译:停留时间对高株壮大级P92钢热机械疲劳性能的影响

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摘要

Results of an extended TMF test program on grade P92 steel in the temperature range of 620 °C-300 °C, comprising in-phase (IP) and out-of-phase (OP) tests, partly performed with symmetric dwells at T_(max)/T_(min), are presented. In contrast to previous studies, the low-strain regime is also illuminated, which approaches flexible operation in a power plant with start/stop cycles. At all strain amplitudes, the material performance is characterized by continuous cyclic softening, which is retarded in tests at lower strains but reaches similar magnitudes in the course of testing. In the investigated temperature range, the phase angle does not affect fatigue life in continuous experiments, whereas the IP condition is more detrimental in tests with dwells. Fractographic analyses indicate creep-dominated and fatigue-dominated damage for IP and OP, respectively. Analyses of the (micro)hardness distribution in the tested specimens suggest an enhanced microstructural softening in tests with dwell times for the low- but not for the high-strain regime. To rationalize the obtained fatigue data, the fracture-mechanics-based D_(tmp) concept, which was developed for TMF life assessment of ductile alloys, was applied. It is found that the D_(TMF) parameter correlates well with the measured fatigue lives, suggesting that subcritical growth of cracks (with sizes from a few microns to a few millimeters) governs failure in the investigated range of strain amplitudes.
机译:在620°C-300°C的温度范围内的P92钢级延长TMF测试程序的结果,包括以T_(最大)/ t_(min)呈现。与先前的研究相比,低应变制度也被照亮,其在具有开始/停止周期的发电厂中的灵活操作。在所有应变幅度,材料性能的特征在于连续循环软化,其在较低菌株的试验中延迟,但在测试过程中达到类似的大小。在调查温度范围内,相位角在连续实验中不会影响疲劳寿命,而IP条件在与住所的测试中更有害。 Fretography分析分别表明IP和OP的蠕变主导和疲劳占主导地位。测试标本中的(微)硬度分布的分析表明,对于低应变制度,具有持续时间的试验中的测试中的增强微观结构软化。为了合理化所获得的疲劳数据,应用了用于TMF寿命评估的基于抗裂纹力学的D_(TMP)概念,用于延展性合金的TMF寿命评估。发现D_(TMF)参数良好地与测量的疲劳生命相关,表明裂缝的亚临界生长(从几微米到几毫米的尺寸)治理在调查的应变幅度范围内的失效。

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  • 来源
    《Materials Science and Engineering》 |2021年第23期|140593.1-140593.17|共17页
  • 作者单位

    Bundesanstalt fuer Materialforschimg und -prilfung (BAM) Division 5.2: Experimental and Model Based Mechanical Behaviour of Materials 12205 Berlin Germany;

    Bundesanstalt fuer Materialforschimg und -prilfung (BAM) Division 5.2: Experimental and Model Based Mechanical Behaviour of Materials 12205 Berlin Germany;

    Bundesanstalt fuer Materialforschimg und -prilfung (BAM) Division 5.2: Experimental and Model Based Mechanical Behaviour of Materials 12205 Berlin Germany;

    Bundesanstalt fuer Materialforschimg und -prilfung (BAM) Division 5.2: Experimental and Model Based Mechanical Behaviour of Materials 12205 Berlin Germany;

    Bundesanstalt fuer Materialforschimg und -prilfung (BAM) Division 5.2: Experimental and Model Based Mechanical Behaviour of Materials 12205 Berlin Germany;

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

    9-12Cr steel; Thermomechanical fatigue; Symmetric dwell periods; Low strain; Parametric modeling;

    机译:9-12%Cr钢;热机械疲劳;对称停留期;低应变;参数模型;

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