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Microstructure and properties of high strength weld metals

Microstructure and properties of high strength weld metals. Lars-Erik Svensson Volvo Powertrain. Background Review Discussion. Background Review Discussion. Applications of high strength steels. Background Review Discussion.

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Microstructure and properties of high strength weld metals

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  1. Microstructureand properties of high strength weld metals Lars-Erik Svensson Volvo Powertrain Lars-Erik Svensson Sheet & Screw Joint Technologies

  2. Background ReviewDiscussion Lars-Erik Svensson Sheet & Screw Joint Technologies

  3. Background ReviewDiscussion Applications of high strength steels Lars-Erik Svensson Sheet & Screw Joint Technologies

  4. Background Review Discussion Lars-Erik Svensson Sheet & Screw Joint Technologies

  5. Background Review Discussion Lars-Erik Svensson Sheet & Screw Joint Technologies

  6. Background Review Discussion Lars-Erik Svensson Sheet & Screw Joint Technologies

  7. Background Review Discussion Lars-Erik Svensson Sheet & Screw Joint Technologies

  8. Background Review Discussion Lars-Erik Svensson Sheet & Screw Joint Technologies

  9. Background Review Discussion Complications Keehan: Manual Metal Arc, ISO-procedure, cooling time 10 s Banguru et al: MIG/MAG, girth weld procedure, cooling time 5 s Lars-Erik Svensson Sheet & Screw Joint Technologies

  10. Background ReviewDiscussion Yield and tensile strength vs Pcm - parameter Lars-Erik Svensson Sheet & Screw Joint Technologies

  11. Background Review Discussion Pcm = C + Si/30 + (Mn + Cu + Cr)/20 + Ni/60 + Mo/15 + V/10 + 5B Hardenability Lars-Erik Svensson Sheet & Screw Joint Technologies

  12. Background ReviewDiscussion Yield and tensile strength vs Pcm – parameter (Fairchild, Banguru et al) Lars-Erik Svensson Sheet & Screw Joint Technologies

  13. Background ReviewDiscussion Impact toughness vs Pcm – parameter Lars-Erik Svensson Sheet & Screw Joint Technologies

  14. Background Review Discussion Microstructure Esab OK 75.78: bainite Low Mn, low Ni: allotriomorphic ferrite High Mn, medium Ni: acicular ferrite + martensite (+ bainite) Low Mn, high Ni: acicular ferrite, martensite, ferrite side plates (?)/bainite High Mn, high Ni: bainite + martensite Lars-Erik Svensson Sheet & Screw Joint Technologies

  15. Background Review Discussion Microstructure Lars-Erik Svensson Sheet & Screw Joint Technologies

  16. Background Review Discussion Banguru et al Lars-Erik Svensson Sheet & Screw Joint Technologies

  17. OK75.78 0.5 Mn – 7 Ni 2 Mn – 7 Ni Background Review Discussion Keehan Lars-Erik Svensson Sheet & Screw Joint Technologies

  18. Background Review Discussion • Tensile strength: • based on Pcm comparison – good correlation • based on microstructure: weld metals containing ”softer” constituents (AF) give higher strength ?? • Impact toughness: • AF-containing weld metals generally higher impact toughness • more difficult property to compare Lars-Erik Svensson Sheet & Screw Joint Technologies

  19. Background Review Discussion • Lower yield strength at higher Pcm • Need to understand plastic deformation of bainitic/martensitic microstructures Lars-Erik Svensson Sheet & Screw Joint Technologies

  20. Keehan: role of coalesced bainite Banguru et al: ”active” particles (Ti, Zr) Background Review Discussion Development of microstructure: Significant differences Lars-Erik Svensson Sheet & Screw Joint Technologies

  21. Background Review Discussion Lars-Erik Svensson Sheet & Screw Joint Technologies

  22. Background Review Discussion Successful development of high strength weld metals Lars-Erik Svensson Sheet & Screw Joint Technologies

  23. Background Review Discussion Successful development of high strength weld metals Lars-Erik Svensson Sheet & Screw Joint Technologies

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