Fatigue crack growth behavior of the simulated HAZ of 800 MPa grade high-performance steel

  • Kim, Sanghoon
  • Kang, Donghwan
  • Kim, Tae-Won
  • Lee, Jongkwan
  • Lee, Changhee
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초록

The present study focuses on the fatigue properties in the weld heat-affected zone (HAZ) of 800 MPa grade high-performance steel, which is commonly used in bridges and buildings. Single- and multi-pass HAZs were simulated by the Gleeble system. Fatigue properties were estimated using a crack propagation test under a 0.3 stress ratio and 0.1 load frequencies. The microstructures and fracture surfaces were analyzed by optical microscopy, scanning electron microscopy, and transmission electron microscopy. The results of the crack propagation test showed that the fatigue crack growth rate of coarse-grained HAZ (CGHAZ) was faster than fine-grained HAZ (FGHAZ), although both regions have identical fully martensite microstructures, because FGHAZ has smaller prior austenite grain and martensite packet sizes, which can act as effective barriers to crack propagation. The fatigue crack growth rate of inter-critically reheated CGHAZ (ICCGHAZ) was the fastest among local zones in the HAZ, due to rapid crack initiation and propagation via the massive martensite-austenite (M-A) constituent.

키워드

Fatigue crackHigh performance steel for bridges and buildingsLocal brittle zoneM-A constituentCrack propagation testHEAT-AFFECTED ZONELOW-ALLOY STEELTHERMAL CYCLEMICROSTRUCTURETOUGHNESSPROPAGATIONWELDMENTS
제목
Fatigue crack growth behavior of the simulated HAZ of 800 MPa grade high-performance steel
저자
Kim, SanghoonKang, DonghwanKim, Tae-WonLee, JongkwanLee, Changhee
DOI
10.1016/j.msea.2010.11.089
발행일
2011-03
유형
Article
저널명
Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing
528
6
페이지
2331 ~ 2338