A Study on Material Degradation Evaluation of 9Cr1MoVNb Steel by Micromechanics Test Method

미소역학 시험기법에 의한 9Cr1MoVNb강의 열화도 평가

  • 백승세 (전북대학교 정밀기계공학과 대학원) ;
  • 나성훈 (전북대학교 정밀기계공학과 대학원) ;
  • 유현철 (전북대학교 재료공학과 대학원) ;
  • 이송인 (전북대학교 기계공학부, 자동차신기술연구소) ;
  • 안행근 (전북대학교 신소재공학부) ;
  • 유효선 (전북대학교 기계공학부, 자동차신기술연구소)
  • Published : 2000.11.02

Abstract

The Micromechanics test is new test method which uses comparatively smaller specimen than that required in conventional material tests. There are several methods, such as small-specimen creep test, the continuous indentation test, and small punch(SP) test. Among them, the small punch(SP) test method has been applied to many evaluation fields, such as a ductile-brittle transition temperature, stress corrosion cracking, hydrogen embrittlement, and fracture properties of advanced materials like FGM or MMC. In this study, the small punch(SP) test is performed to evaluate the mechanical properties at high/low temperature from $-196^{\circ}C$ to $650^{\circ}C$ and the material degradation for virgin and aged materials of 9Cr1MoVNb steel which has been recently developed. The ${\Delta}P/{\Delta}{\delta}$ parameter defined a slope in plastic membrane stretching region of SP load-displacement curve decreases according to the increase of specimen temperature, and that of aged materials is higher than the virgin material in all test temperatures. And the material degradation degrees of aged materials with $630^{\circ}C$ -500hrs and $630^{\circ}C$ -1000hrs are $36^{\circ}C$ and $38^{\circ}C$ respectively. These behaviors are good consistent with the results of hardness($H_v$) and maximum displacement(${\delta}_{max}$).

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