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Effect of heat treatment conditions on ballistic behaviour of various zones of friction stir welded magnesium alloy joints 被引量:7

热处理条件对搅拌摩擦镁合金接头各区域抗弹行为的影响
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摘要 Ballistic behaviour of different zones of post-weld heat-treated(PWHT)magnesium alloy(AZ31B)target against 7.62 mm×39 mm armour-piercing(AP)projectile with a striking velocity of(430±20)m/s was determined.Magnesium alloy(AZ31B)welded joints were prepared by using friction stir welding(FSW)process and subjected to different heat treatment conditions.The microhardness values of non-heat-treated and heat-treated FSW joints were investigated.The results indicated that PWHT process(250°C,1 h)has improved the microhardness of heat-treated FSW joints.Scanning electron microscope(SEM)microstructure showed that heat treatment has caused the formation of fineα-Mg grains and tiny precipitates and made the dissolution ofβ-Mg17Al12 phase into the Mg matrix.The ballistic behaviour of PWHT zones was estimated by measuring the depth of penetration(DOP)of the projectile.Lower DOP value was observed for the base metal zone(BMZ)of a heat-treated welded joint.Post ballistic SEM examinations on the cross-section of all three zones of crater region showed the formation of adiabatic shear band(ASB). 采用搅拌摩擦焊(FSW)工艺制备AZ31B镁合金焊接接头,并在不同条件下进行热处理。研究AZ31B镁合金焊后热处理(PWHT)不同区域的抗弹行为,使用7.62 mm×39 mm穿甲弹,冲击速度为(430±20)m/s。分析热处理前后搅拌摩擦焊接头的显微硬度。结果表明,PWHT工艺(250°C,1 h)能提高热处理后搅拌摩擦焊接头的显微硬度。扫描电镜(SEM)结果显示,热处理使α-Mg晶粒细化,形成细小的析出相,使β-Mg17Al12相溶解到Mg基体中。通过穿深(DOP)试验评估PWHT不同区域的抗弹行为。热处理后接头母材区(BMZ)的DOP值较小。抗弹试验后对弹坑周边3个区域的横截面进行SEM表征,观察到绝热剪切带(ASB)的形成。
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第1期156-166,共11页 中国有色金属学报(英文版)
关键词 AZ31B magnesium alloy post-weld heat treatment ballistic behaviour penetration depth adiabatic shear band AZ31B镁合金 焊后热处理 抗弹行为 穿深 绝热剪切带
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  • 1Feng AH, Chen DL, Ma ZY. Microstructure and cyclic deformation behaviour of a friction-stir-welded 7075 A1 alloy. Metall Mater Trans A 2010;41:957-71.
  • 2Madhusudhan Reddy G, Gokhale AA, Prasad Rao K. Weld microstruc- ture refinement in a 1441 grade aluminium-lithium alloy. J Mater Sci 1997;32:4117-26.
  • 3Genevois C, Deschamps A, Denquin A, Doisneau-coottignies B. Quan- titative investigation of precipitation and mechanical behaviour for AA2024 friction stir welds. Acta Mater 2005;53:2447-58.
  • 4Scialpi A, De Filippis LAC, Cavaliere R Influence of shoulder geometry on microstructure and mechanical properties of friction stir welded 6082 aluminium alloy. Mater Des 2007;28:1124-9.
  • 5Moreira PMGP, Santos T, Tavares SMO, Richter Trummer V, Vilaca R de Castro PMST. Mechanical and metallurgical characterization of friction stir welding joints of AA6061-T6 with AA6082-T6. Mater Des 2009;30:80-187.
  • 6Sutton MA, Reynolds AP, Wang DQ, Hubbard A. Study of residual stresses and microstructure in 2024-T3 aluminum friction stir butt welds. ASME J Eng Mater Technol 2002;124:215-22.
  • 7Sharma C, Dwivedi DK, Kumar P. Effect of post weld heat treatments on microstructure and mechanical properties of friction stir welded joints of A1-Zn-Mg alloy AA7039. Mater Des 2013;43:134-43.
  • 8Han NM, Zhang XM, Liu SD, He DG, Zhang R. Effect of solution treatment on the strength and fracture toughness of aluminium alloy 7050. J Alloys Compd 2011;509:4138-45.
  • 9Fuller CB, Mahoney MW, Calabrese M, Micona L. Evolution of microstructure and mechanical properties in naturally aged 7050 and 7075 A1 friction stir welds. Mater Sci Eng A 2010;527:2233-40.
  • 10Balasubramanian V, Ravisankar V, Madhusudhan Reddy G. Influences of pulsed current welding and post weld aging treatment on fatigue crack growth behaviour of AA7075 aluminium alloy joints. Int J Fatig 2008 ;30:405- 16.

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