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EFFECTS OF MICROSTRVCTURE ON FATIGUE CRACK GROWTH BEHMIOR IN Ni-BASE SUPERALLOY GH586 被引量:6
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作者 S.S. Xie x.f. pan +2 位作者 T.L. Wang Z.X. Wang H.C. Yang and Q. Wang ( School of Materials and Metallurgy, Northeastern Universityl Shenyang 110006, China)( School of Materials and Metallurgy, Northeastern Universityl Shenyang 110006, China)( School of Materia 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1999年第3期267-272,共6页
Threshold stress values, muging from ~8 to 16MPa·m1/2 can be obtained in a Ni-base alloy GH586 by varying the microstructure through heat treatments. The threshold and low crack growth rate behaviors at room tem... Threshold stress values, muging from ~8 to 16MPa·m1/2 can be obtained in a Ni-base alloy GH586 by varying the microstructure through heat treatments. The threshold and low crack growth rate behaviors at room temperature, with varying groin size and γ'-distribution, have been investigated. The results indicate that grain size is an important microstructurol parameter that affects fatigue crack growth threshold and propagation behaviors, as the values of △Kth increase with increasing grain size, but the γ' -distribution also has important effect. Analyses show that the effects of groin size on threshold and low crack-growth rate behavior result from heterogeneous deformation and roughness-induced crack closure due to crystallographic slipping and cracking in coarse microstructure. The higher △Kth and lower fatigue crack growth rate with increasing amounts of fine γ' phases are closely related to less damage accumulation level in deformation zone of crack-tip resulted from heterogeneous deformation due to dislocations' shearing γ' precipitates. 展开更多
关键词 superalloy GH586 fatigue crack growth THRESHOLD grain size γ'-distribution
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