Fatigue Lifetime and Crack Growth Behavior of WC-Co Cemented Carbide

2014 ◽  
Vol 891-892 ◽  
pp. 955-960 ◽  
Author(s):  
Hiroko Mikado ◽  
Sotomi Ishihara ◽  
Noriyasu Oguma ◽  
Kenichi Masuda ◽  
Shingo Kawamura

It is well known that WC-Co cemented carbides have excellent wear resistance. However, information about their fatigue crack growth behavior and fatigue properties is limited. In the present study, rotating bending fatigue tests were carried out on a fine grained WC-Co cemented carbide to evaluate its fatigue lifetime and crack growth behavior. From observations of the micro-notched specimen surface during the fatigue process, it was revealed that most of the fatigue lifetime of the tested WC-Co cemented carbide is comprised of crack growth cycles. Using the basic equation of fracture mechanics, the relation between the rate of fatigue crack growth da/dN and the maximum stress intensity factor Kmax of the WC-Co cemented carbide was derived. From this relation, both the threshold intensity factor Kth and the fatigue fracture toughness Kfc of the material were determined. Fatigue lifetime of the WC-Co cemented carbide was estimated based on the fatigue crack growth law.

Author(s):  
Duangporn Ounpanich ◽  
Yoshiharu Mutoh ◽  
Kenji Yoshii

This paper deals with the fatigue performance of fabricated component. The plain fatigue and fatigue crack growth tests were performed. The rectangular bar specimens sectioned from the fabricated components after rolling, forming and cold spinning processes were prepared. Four-point bend fatigue tests of the specimens with as-fabricated surfaces were carried out at a stress ratio of 0.1 and a frequency of 20 Hz with a sinusoidal waveform. The crack growth behavior of specimens at various stages of fabricating process was also investigated. The fatigue test results indicated that surface morphology and surface defect induced by each stage of fabricating process strongly degraded the fatigue strength. The limited influence of fabricating process on crack growth behavior was noticed only in the threshold region. Fatigue strength and fatigue life were estimated based on fracture mechanics approach using the fatigue crack growth curve obtained and the surface defect depth observed on the fabricated surface. The estimated fatigue strength and the experimental results were in good agreement.


2013 ◽  
Vol 2013 (0) ◽  
pp. _OS1537-1_-_OS1537-3_
Author(s):  
Hiroko MIKADO ◽  
Sotomi ISHIHARA ◽  
Noriyasu OGUMA ◽  
Kenichi MASUDA ◽  
Shingo KAWAMURA

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