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变形量对铸锻复合成形AZ81材料组织与性能的影响 被引量:3

Effect of Deforming Degree on Mechanical Properties and Microstructure of AZ81 Magnesium Alloy in Casting-Forging Compound Forming Process
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摘要 通过对AZ81镁合金挤压铸坯进行等温模锻实验,研究在铸锻复合成形工艺中,不同变形量下锻压过程中材料组织和性能的演变规律。结果表明:在不同变形量下锻压后,材料宏观组织均出现明显的流线型分布,不同变形区在微观上呈现出不同的变形组织;随着变形量的增大,流线型组织增多,大变形区的组织更加细化,动态再结晶过程更加充分,合金综合力学性能大幅提高;当变形量为60%时,材料抗拉强度达到278.06MPa,屈服强度达到161.24MPa,伸长率达到11.36%。通过扫描电镜分析,试样的断口均表现为准解理断裂特征;随着变形量的增加,合金由脆性断裂特征为主发展为韧性断裂的特征为主。 The microstructure and property evolution of squeeze-cast magnesium alloy AZ81 after die-forging with different compression was investigated. The results show that after forging under different deformation degree, the obvious streamline distribution exists in the macrostructure of all forging samples, and different deforming microstructure exists in different deforming zone; with the increase of deformation, the streamlined structure increases, the organization in large deformation zones even more refines, the dynamic recrystallization process gets more fully and the mechanical properties of AZ81 alloy rises notably; when the deforming degree reaches 60%, the tensile strength is 278.6 MPa, the yield strength is 161.24 MPa and the elongation can be 11.36%. Analyzed by SEM, the fracture presents quasi-cleavage feature; with the increase of deforming degree, the characteristic of fracture changes from brittleness to ductility.
出处 《热加工工艺》 CSCD 北大核心 2009年第21期1-4,共4页 Hot Working Technology
基金 重庆市科技攻关项目(CSTC 2008AB4111)
关键词 变形量 AZ81镁合金 铸锻复合成形 deforming degree AZ81 magnesium alloy casting-forging compound forming
作者简介 作者简介:原帅(1984-),男,内蒙古呼和浩特人,硕士研究生,从事镁合金金属材料研究;电话:15808060632;E—mail:cqushuai@yahoo.com.cn
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  • 1曾荣昌,韩恩厚,柯伟,刘路,徐永波.挤压镁合金AM60的腐蚀疲劳[J].材料研究学报,2005,19(1):1-7. 被引量:14
  • 2翟秋亚,袁森,蒋百灵.AZ91镁合金的SIMA法半固态组织特征[J].中国有色金属学报,2005,15(1):123-128. 被引量:23
  • 3于宝义,包春玲,宋鸿武,乔日金,刘正,于海朋.AZ91D镁合金挤压成形管材的组织性能研究[J].热加工工艺,2005,34(8):30-32. 被引量:10
  • 4金军兵,王智祥,刘雪峰,谢建新.均匀化处理对AZ91镁合金组织和力学性能的影响[J].金属学报,2006,42(10):1014-1018. 被引量:51
  • 5齐丕骧.挤压铸造[M].北京:国防工业出版社,1982.95-96.
  • 6Aghion E, Brontin B. Magnesium Alloys evelopment towards the 21st century [J]. Materials Science Forum.2000,350: 19-28.
  • 7Andreas Dworog at al. Semisolid injection of magnesium alloys, International congress ' magnesium alloys and their application', September 2000 in Munich 577-583.
  • 8Kamado S, Ikerya N, Rudi R S, Araki T, et al.application of semi-solid forming to Mg-Al-Zn-Ca alloys [J]. Materials Science Forum, 2000, 350-351; 205-214.
  • 9W. Lapkowski. Some studies regarding thixoforming of metal alloys [J]. Journal of Materials Processing Technology 111(2001) ;463-468.
  • 10Kirkwood D. H. Semisolid Metal Forming. International Materials Reviews. 1994, 39(5) :173-189.

共引文献40

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  • 1蒋凯雁.双向挤压铸造及其铸造缺陷防范[J].特种铸造及有色合金,2003,23(z1):195-197. 被引量:5
  • 2侯立群,马欣宇,李素梅,王进华.挤压铸造铝合金轮毂应用研究[J].特种铸造及有色合金,2003,23(z1):218-221. 被引量:10
  • 3刘楚明,刘子娟,朱秀荣,周海涛.镁及镁合金动态再结晶研究进展[J].中国有色金属学报,2006,16(1):1-12. 被引量:117
  • 4刘静安,盛春磊.镁及镁合金的应用及市场发展前景[J].有色金属加工,2007,36(2):1-6. 被引量:27
  • 5龙思远,曹凤红,廖惠敏.镁合金复合成形方法:中国,200810069225.7[P].2008-01-10.
  • 6MORDIKE B L. EBERT T. Magnesium properties-applica- tions polenfial[J]. Malerials Science Engineering A, 2001 .302 (1):37-45.
  • 7杨王明.强文江.材料力学行为[M].北京:化学工业出版社,2009:219-221.
  • 8ION S E, HUNPHREYS F .I, WHITE S H. Dynamic recryslal- lization and lhe developmenl of mttcrostructure during the high temperalure defornmlion of magnesiuna[J].Acla Mater, 1982. 30:1909-1919.
  • 9Araghi B T,Manco G,Bambach M,et al.Investigation into a new hybrid forming process:Incremental sheet forming combined with stretch forming[J].CIRP Annals-Manufact Teehn,2009,58(1):225.
  • 10Meng Z H,Huang S Y,Hu J H,et al.Effects of process parameters on warm and electromagnetic hybrid forming of magnesium alloy sheets[J].J Mater Process Techn,2011,211(5):863.

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