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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effects of temperature and hold time on creep-fatigue crack-growth behavior of HAYNES~® 230~® alloy
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Effects of temperature and hold time on creep-fatigue crack-growth behavior of HAYNES~® 230~® alloy

机译:温度和保温时间对HAYNES〜®230〜®合金蠕变疲劳裂纹扩展行为的影响

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摘要

The creep-fatigue crack-growth behavior of a HAYNES 230 superalloy was investigated at the temperatures of 649, 816 and 927℃ in laboratory air. The crack-growth experiments were conducted under the stress-intensity-factor-range or load-range control. Hold times in the range of 3 s to 5 h were imposed at the maximum load to study the influence of hold time on the crack-growth behavior. The fatigue and creep crack-propagation experiments were also performed as zero and infinite hold-time experiments, respectively. The crack-growth rate increased continuously with increasing the test temperature and/or hold time. The fracture surfaces and cross-sections through the fracture surfaces were examined. As the hold time increased, the fracture appearance changed from the transgranular to intergranular mode. At higher temperatures, this transgranular-intergranular transition occurred at a shorter hold time.
机译:在实验室空气中,在649、816和927℃的温度下研究了HAYNES 230高温合金的蠕变疲劳裂纹扩展行为。在应力强度因子范围或载荷范围控制下进行裂纹扩展实验。在最大载荷下施加3 s至5 h的保持时间,以研究保持时间对裂纹扩展行为的影响。疲劳和蠕变裂纹扩展实验也分别作为零和无限保持时间实验进行。裂纹扩展速率随着测试温度和/或保持时间的增加而连续增加。检查断裂面和穿过断裂面的横截面。随着保持时间的增加,断口的形态从沿晶模式转变为沿晶模式。在较高的温度下,这种跨晶-晶间转变发生在较短的保持时间内。

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