Forming process using austempered ductile iron (ADI) in an automotive Pitman arm

被引:8
|
作者
Huerta Larumbe, Lizbeth [1 ]
Hurtado Delgado, Eduardo [1 ]
Alvarez-Vera, M. [1 ]
Perez Villanueva, Pedro [1 ]
机构
[1] Corp Mexicana Invest Mat SA CV, Calle Ciencia & Tecnol 790, Saltillo 400, Coahuila, Mexico
来源
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY | 2017年 / 91卷 / 1-4期
关键词
Austempered ductile cast iron (ADI); Forming; Finite element method; Deformation; MECHANICAL-PROPERTIES; CAST-IRON; MICROSTRUCTURE; AUSTENITE; STRENGTH; TOUGHNESS;
D O I
10.1007/s00170-016-9771-1
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper describes the machining and forming process of a Pitman arm, proposed to be used in the automotive industry, from austempered ductile cast iron ( ADI) as an alternative to the commonly used material, AISI 1045 steel. Samples were austenitized at 900 degrees C for 180 min and subsequently austempered in a salt bath over a range of temperatures, from 340 to 360 degrees C, for 60 min, to obtain favorable mechanical properties. The results of metallographic testing show that the pieces formed with ADI have an average nodularity of 92.5%, and the average nodule count is 159 nodules/mm(2). Mechanical tests results of strength, elongation, hardness, and impact energy are comparable to that of ASTM standard A897-15 grade 1. A finite element simulation and an experimental analysis were performed to determine the forming force and the material strength. The deformation limits for ADI were identified. These limits and the simulation results show that ADI is an attractive alternative high-strength material for the Pitman arm application.
引用
收藏
页码:569 / 575
页数:7
相关论文
共 50 条
  • [1] Forming process using austempered ductile iron (ADI) in an automotive Pitman arm
    Lizbeth Huerta Larumbe
    Eduardo Hurtado Delgado
    M. Alvarez-Vera
    Pedro Pérez Villanueva
    The International Journal of Advanced Manufacturing Technology, 2017, 91 : 569 - 575
  • [2] Laser Surface Hardening of Austempered Ductile Iron (ADI)
    Zahon, Ladislav
    Kuchar, Jiri
    Hornik, Jakub
    Krcil, Jan
    Kudlacek, Jan
    COATINGS, 2024, 14 (08)
  • [3] Microstructural Study for Optimization of Ce Content of Austempered Ductile Iron (ADI) Weld Metal
    Sarkar, Tapan
    Kumar Pal, Tapan
    ISIJ INTERNATIONAL, 2019, 59 (11) : 2077 - 2089
  • [4] Relationship among process parameters, microstructure, and mechanical properties of austempered ductile iron (ADI)
    Wang, Xin
    Du, Yuzhou
    Liu, Chen
    Hu, Zhitao
    Li, Pengchun
    Gao, Zhijie
    Guo, Hui
    Jiang, Bailing
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2022, 857
  • [5] Development of high strength austempered ductile iron (ADI) from conventional pig iron
    Inam, Aqil
    Ahmad, Rafiq
    Raza, Mohsin Ali
    Hassan, Ahmad
    Hafeez, Muhammad Arslan
    MATERIALS RESEARCH EXPRESS, 2019, 6 (10)
  • [6] Microalloying in Austempered Ductile Iron (ADI)
    Padan, D. S.
    TRANSACTIONS OF THE AMERICAN FOUNDRY SOCIETY, VOL 120, 2012, 120 : 277 - 288
  • [7] Mechanical and Tribological Behavior of Austempered Ductile Iron (ADI) under Dry Sliding Conditions
    Hu, Zhitao
    Du, Yuzhou
    LUBRICANTS, 2023, 11 (04)
  • [8] Effect of alloying elements on austempered ductile iron (ADI) properties and its process: Review
    Benam, Amir Sadighzadeh
    CHINA FOUNDRY, 2015, 12 (01) : 54 - 70
  • [9] Strain Induced Martensitic Transformation in Austempered Ductile Iron (ADI)
    Li, X. H.
    Saal, P.
    Gan, W. M.
    Landesberger, M.
    Hoelzel, M.
    Hofmann, M.
    VI EUROPEAN CONFERENCE ON NEUTRON SCATTERING (ECNS2015), 2016, 746
  • [10] Drilling performance of green austempered ductile iron (ADI) grade produced by novel manufacturing technology
    Meena, Anil
    El Mansori, M.
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2012, 59 (1-4): : 9 - 19