• Title of article

    Thermal Fatigue Behavior and Cracking Characteristics of High Si-Mo Nodular Cast Iron for Exhaust Manifolds Original Research Article

  • Author/Authors

    Yun-long YANG، نويسنده , , Zhanyi Cao، نويسنده , , Zhen-song LIAN، نويسنده , , Haixia Yu، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    6
  • From page
    52
  • To page
    57
  • Abstract
    The thermal fatigue cracking behavior of high Si-Mo nodular cast iron (NCI) is investigated by means of optical microscope (OM), scanning electron microscope (SEM) and energy dispersive spectroscope (EDS), in order to find a new material used in exhaust manifolds in First Automotive Works (FAW). Nodular cast irons with silicon content about 4.7%, in combination with up to 1.1% molybdenum, were produced by Jilin University and FAW. The repeated heating/cooling test was performed under cyclic heating at various maximum heating temperatures (Tmax) ranging from 800 to 900 °C. Experimental results indicate that the thermal fatigue cracking resistance of high Si-Mo NCI decreases with increasing the maximum heating temperature. The periods for crack initiation are 24—36, 40—50 and 70—90 times associated with heating temperature of 900, 850 and 800 °C, respectively, when the holding time is about 10 min at Tmsx. When thermal fatigue cracking occurs, the cracking always initiates at the bigger surface of specimen. The major positions of cracks propagation are generally at the eutectic oxide boundary region and the region of the graphite disappearance. At the same time, the oxidation may accelerate crack initiation and propagation. On the other hand, micro-crack number varied from large to little because of shielding effect. As exhaust manifolds, the reasonable working temperature of high Si-Mo NCI is no more than 840 °C by test and analysis.
  • Keywords
    Exhaust Manifold , thermal fatigue behavior , fatigue crack , high Si-Mo nodular cast iron
  • Journal title
    Journal of Iron and Steel Research
  • Serial Year
    2013
  • Journal title
    Journal of Iron and Steel Research
  • Record number

    1239599