Creep-microcrack growth in alloy 800 HT at elevated temperatures

1997 
The aim of the presented investigation was to gain information about the behaviour of the initiation and growh of intercrystalline creep cracks during creep deformation from the evaluation of metallographic micrographs. The austenitic steel X10 NiCrAlTi 32 20 HT (Alloy 800 HT) was investigated by carrying out creep tests at 800 and 900°C with different nominal stresses until fracture. Additional tests are carried out on certain creep strains in the late tertiary creep stage. The creep tests are followed by a metallographic investigation of the crept specimens. The statistical distribution of the microcrack lengths was used to estimate the rate of crack initiation and crack growth. It is found that the rate of growth of the intercrystalline creep cracks in Alloy 800 HT is dependent on the applied stress and the creep strain reached. The rate of growth of long cracks was only slightly higher than that of short cracks and was lower than predictions based on fracture mechanics concepts.
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