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模锻方法对铝合金轴叉锻造成形的影响
英文标题:Influence of die forging method on forging forming for aluminum alloy shaft fork
作者:李兵1 邓云飞1 张鹏1 王敏1 赵放军2 
单位:1.湖北汽车工业学院 材料科学与工程学院 2.湖北尔泰科技实业有限公司 
关键词:6061铝合金 模锻方法 金相组织 轴叉 力学性能 
分类号:TG316.3
出版年,卷(期):页码:2023,48(7):29-34
摘要:

通过模拟和实验相结合的方法研究了一步成形和两步成形的模锻方法对6061铝合金轴叉锻造成形的影响。模拟结果表明:两步成形锻件的叉耳盲孔附近的等效应变值和等效应力值比一步成形锻件小;实验结果表明:一步成形和两步成形的锻件均表现为轴叉杆部的力学性能最好,抗拉强度达到362 MPa,屈服强度达到329 MPa,伸长率达到15.2%。两步成形的锻件在叉耳盲孔附近的抗拉强度、屈服强度、伸长率均大于一步成形的锻件,但其他部位的力学性能差异较小。两步成形的锻件在叉耳盲孔附近的晶粒尺寸较小且析出相分布均匀,一步成形的锻件在此处的晶粒较大,析出相分布不均匀且晶粒粗大。综合比较,两步模锻成形方法优于一步成形方法。

 The influences of die forging methods of one-step forming and two-step forming on the forging of 6061 aluminum alloy shaft forks were analyzed by simulation and experiment. The simulation results show that the equivalent strain and equivalent stress values near the blind hole of fork ear for forgings in the two-step forming are smaller than that in the one-step forming. The experiment results show that the forgings obtained by one-step forming and two-step forming both show that the mechanical properties of  shaft fork rod are the best, with the tensile strength of 362 MPa, the yield strength of 329 MPa and the elongation of 15.2%. The tensile strength, yield strength and elongation of the forgings by two-step forming near the blind hole of fork ear are larger than that by the one-step forming, and the mechanical properties of other parts are not significantly different. The two-step forming forgings have smaller grain size near the blind hole of fork ear, and the distribution of precipitated phase is uniform. However, the one-step forming forgings have larger grain size at this location, uneven distribution of precipitated phases which have coarse grains. Thus, by comprehensive comparison, the two-step forming method of die forging is better than the one-step forming method.

基金项目:
国家自然科学基金资助项目(51205116);湖北省重点研发计划项目(2021BAB019)
作者简介:
作者简介:李兵(1981-),男,硕士,副教授 E-mail:libing42158823@163.com
参考文献:

[1]刘贞山,李英东,赵经纬,等.汽车轻量化用铝合金材料及应用技术的研究[J].中国材料进展,2022,41(10):786-795,807.


Liu Z S,Li Y D,Zhao J W,et al.Research on aluminum alloy materials and application technology for automobile lightweight[J].Materials China,2022,41(10): 786-795,807.

[2]李国俊,白雪智,李碧聪,等.大型6061铝合金锥筒形件成形及组织与性能研究[J].锻压技术,2021,46(9):216-223.

Li G J,Bai X Z,Li B C,et al.Research on forming microstructure and properties of largescale conecylinder part for 6061 aluminum alloy [J].Forging & Stamping Technology,2021,46(9):216-223.

[3]白雪智,李国俊,李碧聪,等.T6热处理对6061铝合金大型锥筒形件的力学性能及组织的影响[J].锻压技术,2022,47(4):227-234, 241.

Bai X Z,Li G J,Li B C,et al. Influence of T6 heat treatment on mechanical properties and microstructure for 6061 aluminum alloy large conecylinder part [J].Forging & Stamping Technology,2022,47(4):227-234, 241.

[4]许周礼. 6082铝合金控制臂锻造变形行为及组织性能演变规律[D].武汉:武汉理工大学,2020.

Xu Z L.Forging Deformation Behavior and Evolution of Microstructure and Properties on 6082 Aluminum Alloy Control Arm[D]. Wuhan:Wuhan University of Technology,2020.

[5]高冲,刘淑梅,霍文军.基于响应面法的铝合金连杆锻造工艺优化[J].热加工工艺,2020,49(11):97-100.

Gao C,Liu S M,Huo W J.Optimization of forging process for aluminum alloy connecting rods based on response surface method[J]. Hot Working Process,2020,49(11):97-100.

[6]杨兴,冯强,孙赞朋,等. 6061铝合金在多向锻造过程中显微组织与拉伸性能的演变[J]. 机械工程材料,2018,42(7):73-77.

Yang X,Feng Q,Sun Z P,et al. Evolution of microstructure and tensile properties of 6061 aluminum alloy during multidirection forging [J]. Materials for Mechanical Engineering,2018,42(7):73-77.

[7]卢利平,罗道宝. 复合锻造提高6061铝合金汽车转向节耐磨和耐蚀性能[J]. 轻合金加工技术,2017,45(11):41-44.

Lu L P,Luo D B.Effect of composite forging on wear resistance and corrosion resistance of 6061 aluminum alloy used for automobile steering knuckles [J]. Light Alloy Processing Technology,2017,45(11):41-44.

[8]韩子川. 铝-镁传动轴接头磁脉冲压接-胶接复合连接工艺与性能研究[D].长沙:湖南大学,2021.

Han Z C. Research on Magnetic Pulse Crimp Bonding Technology and Performance of Aluminum and Magnesium Drive Shaft Joint [D]. Changsha: Hunan University,2021.

[9]王宏斌,曾宪波,黄勤,等.某商用轻卡铝合金传动轴轻量化分析[J].汽车实用技术,2022,47(8):131-134.

Wang H B,Zeng X B,Huang Q,et al.Research on lightweight of the aluminum alloy transmission shaft of a light truck[J]. Automotive Application Technology,2022,47(8):131-134.

[10]张伟. 6061铝合金热变形行为及连杆闭塞锻造研究[D]. 哈尔滨:哈尔滨理工大学,2019.

Zhang W.Study on Hot Deformation Behavior of 6061 Aluminum Alloy and Closeddie Forging of Connecting Rod [D]. Harbin: Harbin University of Science and Technology,2019.

[11]黄世鹏. 6061铝合金多向锻造过程和微观组织演变的研究[D].南宁:广西大学,2017.

Huan S P. Study on Multidirection Forging Process and Microstructure Evolution of 6061 Aluminum Alloy [D]. Nanning: Guangxi University,2017.

[12]陈力. 多向锻造对6082铝合金组织与性能的影响[D].合肥:合肥工业大学,2018.

Chen L. Effect of Multidirectional Forging Process on Microstructures and Mechanical Properties of 6082 Aluminum Alloy [D]. Hefei: Hefei University of Technology,2018.

 
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