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保持时间对FGH95粉末盘材料热/机械疲劳行为与寿命的影响

EFFECT OF HOLD TIME ON LIFE AND BEHAVIOR OF THERMAL-MECHANICAL FATIGUE IN PM SUPERALLOY FGH95

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【作者】 张国栋刘绍伦何玉怀汪武祥

【Author】 Zhang Guodong Liu ShaolunHe Yuhuai Wang Wuxiang( Beijing Institute of Aeronautical Materials,Beijing 100095)

【机构】 北京航空材料研究院北京航空材料研究院 北京 100095北京 100095北京 100095

【摘要】 对粉末冶金盘材料FGH95合金进行了应变比为-1.0的同相位三角波和同相位梯形波,350℃(?)600℃热/机械疲劳试验研究。试验结果表明:在相同应变幅下,同相位三角波载荷情况下的热/机械疲劳寿命比同相位梯形波载荷情况下的热/机械疲劳寿命长。研究了在两种载荷情况下材料的热/机械疲劳循环应力响应行为。试样断口的微观分析表明:在热/机械疲劳过程中,同时存在疲劳、蠕变和氧化损伤;在同相位三角波载荷下,穿晶+沿晶断裂为疲劳断裂的主要特征;在同相位梯形波载荷下,裂纹主要为沿晶萌生与扩展。这是导致在同相位梯形波载荷下疲劳寿命缩短的主要原因。

【Abstract】 The thermal-mechanical fatigue behavior of PM superalloy FGH95 is studied. A basic cycle is used without hold time and with hold time at high temperature to simulate only the transient behavior of critical part of a blade. Both triangular and trapezoidal wave shape signals with in-phase cycle and at maximum and minimum temperature of 350 ℃ and 600 ℃, respectively. Ratio Rε of minimum to maximum strain is-1.0. At the same strain amplitude, it is found from test that the TMF life of in-phase cycle with triangular wave shape is longer than that of in-phase cycle with trapezoidal wave shape. Also the effect of hold time on cyclic stress response under conditions of triangular and trapezoidal wave shape is studied. The thermal-mechanical fatigue mode is discussed. The results show that fatigue, creep and oxidation damage always developed during TMF. Fracture is mainly intergranular and transgranular under conditions of triangular wave shape. The path of crack initiation and growth is transgranular under conditions of trapezoidal wave shape.

【关键词】 热/机械疲劳蠕变氧化损伤
【Key words】 Thermomechanical Fatigue Creep Oxidation Damage
【基金】 航空科学基金资助项目(00B21008)
  • 【文献出处】 机械工程学报 ,Chinese Journal of Mechanical Engineering , 编辑部邮箱 ,2004年11期
  • 【分类号】O346.2
  • 【被引频次】3
  • 【下载频次】169
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