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Role of TiN inclusion on fatigue crack growth behavior of alloy 690
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TL341

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    Abstract:

    Fatigue crack growth rates (FCGR) alloy 690 tubes have been obtained in air at room temperature (RT) and 325℃ by using pin-loading tension (PLT) specimen and direct current potential drop (DCPD) method. Testing data has been fitted with Priddle model, thus the threshold stress intensity factor amplitude △Kth and fracture strength Kc were predicted. at higher temperature, fatigue crack growth rates were much faster than that at RT, as a result, the △Kth and Kc decreased in higher temperature. Scanning electron microscopy (SEM) examination of the fatigue fracture surfaces revealed transgranular attack, and the fracture surface were covered with a lot of TiN inclusoins, it’s reasonable to believe that TiN inclusions could enhance fatigue crack initiation and propagation of alloy 690 tubes.

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[Chen Kai, Du Donghai, Zhang Lefu, Shi Xiuqiang, Xu Xuelian. Role of TiN inclusion on fatigue crack growth behavior of alloy 690[J]. Rare Metal Materials and Engineering,2018,47(4):1180~1184.]
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History
  • Received:April 14,2016
  • Revised:August 16,2016
  • Adopted:September 18,2016
  • Online: May 31,2018
  • Published: