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      겹치기 마찰교반접합 된 Al6061/HT590 합금의 기계적 특성 평가 = Evaluation of mechanical properties on friction stir lap jointed Al6061/HT590 alloys

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      https://www.riss.kr/link?id=A100886389

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      다국어 초록 (Multilingual Abstract)

      This study was carried out to evaluate mechanical properties of the jointed Al6061/HT590 alloys by friction stir welding (FSW). FSW was conducted under the conditions with tool rotating speed of 500 RPM and traveling speed of 300 mm/min., where Ar gas was introduced to prevent the materials from corrosion during the welding process. Electron back-scattering diffraction (EBSD) was used to characterize microstructures such as grain size, misorientation angle and crystal orientation. Evolution of intermetallic compounds in Al6061 during the process were examined in terms of morphology, size and aspect ratio at three distinct zones Al base material, heat affected zone and stir zone, where transmission electron microscope (TEM) was used. It was revealed that FSW gave rise to refinement of grains as well as growth of intermetallic compounds in Al6061. The morphological changes of intermetallic compounds exerted an influence on mechanical properties, resulting in occurrence of fracture in the part of the base material instead of the jointed parts (heat affected zone and stir zone). This study systematically evaluated the microstructural evolutions during the FSW for joining Al6061 with HT590 and their effect on mechanical properties.
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      This study was carried out to evaluate mechanical properties of the jointed Al6061/HT590 alloys by friction stir welding (FSW). FSW was conducted under the conditions with tool rotating speed of 500 RPM and traveling speed of 300 mm/min., where Ar gas...

      This study was carried out to evaluate mechanical properties of the jointed Al6061/HT590 alloys by friction stir welding (FSW). FSW was conducted under the conditions with tool rotating speed of 500 RPM and traveling speed of 300 mm/min., where Ar gas was introduced to prevent the materials from corrosion during the welding process. Electron back-scattering diffraction (EBSD) was used to characterize microstructures such as grain size, misorientation angle and crystal orientation. Evolution of intermetallic compounds in Al6061 during the process were examined in terms of morphology, size and aspect ratio at three distinct zones Al base material, heat affected zone and stir zone, where transmission electron microscope (TEM) was used. It was revealed that FSW gave rise to refinement of grains as well as growth of intermetallic compounds in Al6061. The morphological changes of intermetallic compounds exerted an influence on mechanical properties, resulting in occurrence of fracture in the part of the base material instead of the jointed parts (heat affected zone and stir zone). This study systematically evaluated the microstructural evolutions during the FSW for joining Al6061 with HT590 and their effect on mechanical properties.

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      참고문헌 (Reference)

      1 W.B. Lee, "echanical Properties Related to Microstructural Variation of 6061 Al Alloy Joints by Friction Stir Welding" ATERIALS TRANSACTIONS 45 : 1700 ~ 1705 , 2004

      2 T. Watanabe, "Joining of aluminum alloy to steel by friction stir welding" Journal of Materials Processing Technology 178 : 342 ~ 349 , 2006

      3 C. M. Chen, "Joining of Al 6061 alloy to AISI 1018 steel by combined effects of fusion and solid state welding" International Journal of Machine Tools and Manufacture 44 : 1205 ~ 1214 , 2004

      4 C. J. Dawes, "Introduction to friction stir welding and its development" Welding and Metal Fabrication 63 , 1995

      5 Y.S. Sato, "Hall-petch relationship in friction stir welds of equal channel angular-pressed aluminium alloys" Mater. Sci. Eng. A, l 354 (1) , 2003

      6 R. S. Mishra, "Friction stir welding and processing" ASM Int , 2007

      7 R. S. Mishra, "Friction stir welding and processing" Mater. Sci. Eng. R 50 , 2005

      8 P. M. G. P. Moreira, "Fatigue behaviour of FSW and MIG weldments for two aluminium alloys" Theoretical and Applied Fracture Mechanics 48 : 169 ~ 177 , 2007

      9 Y.S. Sato, "Constitutional Liquation during dissimilar friction stir welding of Al and Mg Alloys" Scripta Materm 50 , 2004

      10 방한서, "Al 6061 합금의 마찰교반접합시 접합부의 역학적 특성에 관한 연구" 대한용접접합학회지 20 (3) : 105 ~ 108 , 2002

      1 W.B. Lee, "echanical Properties Related to Microstructural Variation of 6061 Al Alloy Joints by Friction Stir Welding" ATERIALS TRANSACTIONS 45 : 1700 ~ 1705 , 2004

      2 T. Watanabe, "Joining of aluminum alloy to steel by friction stir welding" Journal of Materials Processing Technology 178 : 342 ~ 349 , 2006

      3 C. M. Chen, "Joining of Al 6061 alloy to AISI 1018 steel by combined effects of fusion and solid state welding" International Journal of Machine Tools and Manufacture 44 : 1205 ~ 1214 , 2004

      4 C. J. Dawes, "Introduction to friction stir welding and its development" Welding and Metal Fabrication 63 , 1995

      5 Y.S. Sato, "Hall-petch relationship in friction stir welds of equal channel angular-pressed aluminium alloys" Mater. Sci. Eng. A, l 354 (1) , 2003

      6 R. S. Mishra, "Friction stir welding and processing" ASM Int , 2007

      7 R. S. Mishra, "Friction stir welding and processing" Mater. Sci. Eng. R 50 , 2005

      8 P. M. G. P. Moreira, "Fatigue behaviour of FSW and MIG weldments for two aluminium alloys" Theoretical and Applied Fracture Mechanics 48 : 169 ~ 177 , 2007

      9 Y.S. Sato, "Constitutional Liquation during dissimilar friction stir welding of Al and Mg Alloys" Scripta Materm 50 , 2004

      10 방한서, "Al 6061 합금의 마찰교반접합시 접합부의 역학적 특성에 관한 연구" 대한용접접합학회지 20 (3) : 105 ~ 108 , 2002

      11 고영봉, "A5052-H112 합금의 겹치기 마찰교반접합 조직 특성" 대한용접접합학회지 27 (6) : 17 ~ 24 , 2009

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