Microstructural and Mechanical Evolution of a Low Carbon Steel by Friction Stir Processing

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作者
Dursun Murat Sekban
Semih Mahmut Aktarer
Hao Zhang
Peng Xue
Zongyi Ma
Gencaga Purcek
机构
[1] Karadeniz Technical University,Department of Naval Architecture and Marine Engineering
[2] Recep Tayyip Erdogan University,Department of Automotive Technology
[3] Chinese Academy of Sciences,Shenyang National Laboratory for Materials Science, Institute of Metal Research
[4] Karadeniz Technical University,Department of Mechanical Engineering
[5] Giresun University,Engineering Faculty
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摘要
A low carbon steel (Grade A) was subjected to friction stir processing (FSP), and the effect of FSP on the microstructure and mechanical properties was investigated systematically. It was found that two distinct zones called stir zone (SZ) and heat-effected zone (HAZ) were formed during FSP. The SZ and HAZ consist mainly of ferrite, widmanstatten ferrite, ferrite+cementite aggregates, and martensite. FSP considerably refined the microstructure of the steel by means of dynamic recrystallization mechanism and formed a volumetric defect-free basin-like processed region. The ferritic grain size of the steel decreased from 25 µm in the coarse-grained state to about 3 µm in the fine-grained state, and the grains formed were separated mostly by high angle of misorientation with low density of dislocations. This microstructural evolution brought about a considerable increase in both hardness and strength values without a considerable decrease in ductility. Ultrafine-grained microstructure formed around and just beneath the pin increased the hardness of the steel from 140 Hv0.3 to about 245 Hv0.3. However, no hardness uniformity was formed throughout the processed zone due to the changes in deformation- and temperature-induced microstructure. Both yield and tensile strength values of processed zone increased from 256 and 435 MPa to about 334 and 525 MPa, respectively.
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页码:3869 / 3879
页数:10
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