Fatigue behavior of powder metallurgy superalloy FGH97
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摘要: 測定不同晶粒尺寸、γ'相以及不同Hf含量的粉末高溫合金FGH97在650℃高溫條件下的疲勞裂紋擴展速率,并將其與FGH95和FGH96兩代粉末合金的疲勞裂紋擴展速率進行對比.用定量分析的方法對FGH97合金在疲勞斷裂各個階段的行為特征進行分析.較大晶粒尺寸的FGH97合金具有較低的裂紋擴展速率,合理的二次和三次γ'相匹配析出,可以獲得較高的疲勞壽命;Hf元素的添加使合金的整體疲勞壽命增大;FGH97合金與FGH95和FGH96相比,具有較高的疲勞裂紋萌生抗力,更低的高溫疲勞裂紋擴展速率.Abstract: The fatigue crack growth rates of powder metallurgy (P/M) superalloy FGH97 with different grain sizes, γ' phase sizes and Hf contents were measured at a 650℃ high temperature condition and compared with those of FGH95 and FGH96 alloys. The fatigue fracture behavior characteristic of FGH97 alloy in each stage was analyzed by the quantitative analysis method. It is found that FGH97 alloy with coarser grains has a lower fatigue crack growth rate. Reasonable match of secondary and tertiary γ' phases and Hf addition can get a higher fatigue life. Compared with FGH95 and FGH96 alloys, FGH97 alloy has the highest fatigue cack intiation resistance and exihibits the lowest fatigue crack propagation rate at high temperature.
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Key words:
- nickel base superalloys /
- powder metallurgy /
- fatigue crack growth rate /
- hafnium
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