TY - JOUR
T1 - Importance of pore size and hardness on fatigue strength of a pre-alloyed powder metal with the density of ρ = 7.0g/cm3
AU - Matsuoka, Saburo
AU - Nanaeda, Kimihiro
AU - Miyata, Hajime
AU - Fukushima, Yoshihiro
N1 - Copyright:
Copyright 2018 Elsevier B.V., All rights reserved.
PY - 2009/2
Y1 - 2009/2
N2 - In order to investigate the importance of pore size and hardness on the fatigue strength of a prealloyed powder metal (Fe-3.0 Cr-0.5 Mo-0.5C mass%) with the density of ρ= 7 .Og/cm3, ultrasonic fatigue tests were conducted at a test frequency of 20 kHz in air at room temperature. The fatigue limit of the powder metal was the maximum critical stress under which fatigue cracks initiating from the pore stop propagating. Therefore, the fatigue limit was accurately predicted by the -√area parameter model, σw.= 1.43(HV + 120)/(√area)"6, for the surface defect. Here, as √[area was employed the effective maximum pore size, -√areae//, max, in the control volume of the ultrasonic fatigue specimen which was estimated from the statistics of extremes distribution of the pore sizes at the polished surface. As HV was employed Vickers hardness, HV98..1 N, of the microstructure which included both the matrix and pores. The usage of -√Jareaeff, max and HV98..1 N, in the √/area parameter model is practical use and useful for predicting the fatigue limit of the powder metal. In addition, the usage of √■
AB - In order to investigate the importance of pore size and hardness on the fatigue strength of a prealloyed powder metal (Fe-3.0 Cr-0.5 Mo-0.5C mass%) with the density of ρ= 7 .Og/cm3, ultrasonic fatigue tests were conducted at a test frequency of 20 kHz in air at room temperature. The fatigue limit of the powder metal was the maximum critical stress under which fatigue cracks initiating from the pore stop propagating. Therefore, the fatigue limit was accurately predicted by the -√area parameter model, σw.= 1.43(HV + 120)/(√area)"6, for the surface defect. Here, as √[area was employed the effective maximum pore size, -√areae//, max, in the control volume of the ultrasonic fatigue specimen which was estimated from the statistics of extremes distribution of the pore sizes at the polished surface. As HV was employed Vickers hardness, HV98..1 N, of the microstructure which included both the matrix and pores. The usage of -√Jareaeff, max and HV98..1 N, in the √/area parameter model is practical use and useful for predicting the fatigue limit of the powder metal. In addition, the usage of √■
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U2 - 10.1299/kikaia.75.191
DO - 10.1299/kikaia.75.191
M3 - Article
AN - SCOPUS:66149090400
SN - 0387-5008
VL - 75
SP - 191
EP - 200
JO - Nihon Kikai Gakkai Ronbunshu, A Hen/Transactions of the Japan Society of Mechanical Engineers, Part A
JF - Nihon Kikai Gakkai Ronbunshu, A Hen/Transactions of the Japan Society of Mechanical Engineers, Part A
IS - 750
ER -