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FREQUENCY EFFECTS ON GIGACYCLE FATIGUE PROPERTIES OF HIGH-STRENGTH STEELS


This report will reveal a series of fatigue test results for high-strength steels at 100 Hz and 20 kHz and discuss frequency effects on gigacycle fatigue properties. The 20 kHz fatigue testing machine is an effective tool to conduct gigacycle fatigue tests in a reasonable term, while frequency effects have to be carefully investigated before applying the machine. The fatigue tests were conducted for two kinds of high-strength steels, that were a low-alloy steel and a spring steel. These fatigue test results showed that the frequency effects were negligible even at 20 kHz in case offish-eye fracture. The fatigue properties in the fish-eye fracture region showed a good agreement between the 100 Hz and 20 kHz tests. Besides, ODAs (Optically Dark Areas) were also observed on the fracture surface even in 20 kHz tests and no difference was found in the ODA sizes between the 100 Hz and 20 kHz tests. These results meant that the 20 kHz tests could provide us appropriate results at least in the fish-eye fracture region. Therefore, the 20 kHz tests were applicable on the evaluation of gigacycle fatigue properties in high-strength steels.......

【作者名称】: Yoshiyuki Furuya, Saburo Matsuoka, Takayuki Abe
【作者单位】: Materials Information Technology Station, National Institute for Materials Science (MITS/NIMS), 1-2-1 Sengen, Tsukuba-shi, Ibaraki 305-0047, Japan
【关 键 词】: FREQUENCY EFFECTS ON GIGACYCLE FATIGUE PROPERTIES OF HIGH-STRENGTH STEELS
【会议名称】: ASME(American Society of Mechanical Engineers)/JSME Pressure Vessels and Piping Conference: Elevated Temperature Design and Analysis, Nonlinear Analysis, and Plastic Components; 20040725-20040729; San Diego,CA; US
【期刊论文数据库】: [DBS_Articles_01]
【期刊论文编号】: 101,087,005
【摘要长度】: 1,145
【会议地点】: San Diego, CA(US)
【会议组织】: Materials Information Technology Station, National Institute for Materials Science (MITS/NIMS), 1-2-1 Sengen, Tsukuba-shi, Ibaraki 305-0047, Japan
【会议时间】: 2004
【上篇论文】: 外文会议 - Large ultralightweight optic fabrication: a manufacturing technology for advanced optical requirements
【下篇论文】: 外文会议 - CHARACTERIZATION OF DYNAMICAL INSTABILITY USING INSTANTANEOUS FREQUENCY

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