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The anomalous mechanical behavior in stationary small crack tips about EAC for Nickel-base Alloy
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Affiliation:

School of Mechanical Engineering, Xi’an University of Science and Technology,School of Mechanical Engineering, Xi’an University of Science and Technology

Clc Number:

TG174.3

Fund Project:

The Ph. D. Fund Project of Lanzhou University of Technology (BS01200904); Open Foundation of Key Laboratory of the Ministry of Education of Non-ferrous Metal Alloys and Processes (EKL09002)

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    Abstract:

    The crack tip mechanical characteristic and crack propagation rates are influenced by crack length, but current research of environmentally assisted cracking (EAC) focuses on long crack and small crack is usually ignored. The mechanical characteristic nearby small crack tip for single-edge crack panel specimens during the EAC in high temperature water was studied, the specimens was made of nickel-base alloy and the finite element method was adopted. The results show that the stress and strain is much higher for small crack than that of long crack, and this lead to the higher crack propagation tendency of small crack. A corrected method is introduced to calculate the plastic zone size of small crack. The Irwin correction method can improve the accuracy of J integral of long crack, but errors still exists for small crack. So the numerical method with elastic plastic fracture method is recommended to calculated J integral for small crack under larger load condition considering the lack of mature theoretical guidance about the small crack. The crack propagation process of the EAC of structure materials serviced in nuclear power plants is suggested to divide into two small crack propagation and long crack propagation considering to the anomalous mechanical behavior of the small crack.

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[fangxiurong, xue he. The anomalous mechanical behavior in stationary small crack tips about EAC for Nickel-base Alloy[J]. Rare Metal Materials and Engineering,2016,45(2):321~325.]
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History
  • Received:January 26,2015
  • Revised:April 01,2015
  • Adopted:August 11,2015
  • Online: July 19,2016
  • Published: