4.7 Article

Microstructure and mechanical behavior of similar butt-joints of ZK60 and ZK60-1.5RE magnesium alloys produced by linear friction stir welding

期刊

JOURNAL OF MAGNESIUM AND ALLOYS
卷 9, 期 5, 页码 1782-1796

出版社

KEAI PUBLISHING LTD
DOI: 10.1016/j.jma.2021.04.012

关键词

ZK60; Mischmetal; FSW; Recrystallization; Microstructure; Thermomechanical

资金

  1. FAPESP [2010/11391-2, 2011/09324-8, 2011/19218-0]
  2. CNPQ
  3. CAPES [88881.143948/2017-01]
  4. Christian Doppler Forschungsgesellschaft
  5. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) [10/11391-2] Funding Source: FAPESP

向作者/读者索取更多资源

The microstructure and mechanical properties of butt-joints produced by linear friction stir welding of similar plates of as-cast ZK60 and modified ZK60 with 1.5 wt.% RE (ZK60-1.5RE) were investigated. It was found that there were notable differences in the size of the thermomechanical affected zone between ZK60 and ZK60-1.5RE, with the latter showing a more refined microstructure in the stirred zone. The thermomechanical affected zone exhibited a gradient microstructure with deformed grains progressively more recrystallised towards the stirred zone, indicating the role of twinning, recovery, static, and dynamic recrystallisation during friction stir welding.
The microstructure and mechanical properties of butt-joints produced by linear friction stir welding of similar plates of as-cast ZK60 and modified ZK60 with 1.5 wt.% RE (ZK60-1.5RE) are investigated. The thermomechanical affected zone is investigated in both advancing and retrieving sides, and the microstructure is compared to the base metal and the stirred zone. Electron backscattered diffraction measurements provide the average microstructural features of the transformed microstructure. The mechanical properties are assessed using hardness, tensile testing, and surface residual stress measured using X-ray diffraction. Higher torque and heat input are obtained for the ZK60-1.5RE compared to the ZK60. The thermomechanical affected zone is notably larger for the ZK60 compared to the ZK60-1.5RE. A gradient microstructure is formed in thermomechanical affected zones where deformed grains are progressively more recrystallised towards the stirred zone. There is no visible interface between the thermomechanical affected zone and the stirred zone. A fine and partially recrystallised microstructure is formed in the stirred zone. The retrieving side of the ZK60-1.5RE has a slightly more refined microstructure compared to the other investigated zones. Anisotropy measured with increment in the maximum intensity of the (0001) increases towards to stirred zone. The formed microstructure is correlated with the role of twinning, recovery, static, and dynamic recrystallisation that can occur during friction stir welding. Twinning and grains with large misorientation spread are more pronounced in the thermomechanical affected zone and regions towards the base metal. Sharp low angle grain boundaries are observed towards the stirred zone. From refined recrystallised grains decorating the grain in the thermomechanical affected zone, a mosaic-like of low and high angle grain boundaries are observed in the stirred zone. The joints have comparable surface residual stresses. The friction stir welding improved the ductility and strength of the as-cast ZK60-1.5RE alloy since the tensile samples fractured in the BM. (C) 2021 Chongqing University. Publishing services provided by Elsevier B.V. on behalf of KeAi Communications Co. Ltd.

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