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자료유형
학술저널
저자정보
저널정보
Korean Society for Precision Engineering Journal of the Korean Society for Precision Engineering 한국정밀공학회지 제21권 제2호
발행연도
2004.2
수록면
168 - 176 (9page)

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Interrupted creep tests were carried out on the Mod.9Cr-1Mo steel in order to investigate the structural degradation during creep. The ranges of creep stress and temperature were from 71 to 167MPa and 873 to 923K, respectively. The change of hardness and tempered martensitic lath width were measured in the grip and gauge parts of interrupted specimens. The lath structure was thermally stable in static conditions, but was not stable during creep, and the structural evolution was enhanced by creep strain. The relation between the change in lath width and strain was described in the from, △W=a(W<SUB>s</SUB>-W<SUB>o</SUB>)ㆍε, where ε is the strain, W<SUB>o</SUB> is the initial lath width, W<SUB>s</SUB> is the final lath width depending solely on stress, and a is the constant of the magnitude of 0.67 ㎛ /strain. The change in Vickers hardness was expressed by a one-valued function of creep life consumption ratio. Based on the empirical relation between strain and lath width, a model was proposed to explain the relation between change in hardness and creep life consumption ratio. The model revealed that about 65% of dislocations in lath structures were eliminated by the migration of subboundaries.

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