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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Mechanical properties and rolling-sliding wear performance of dual phase austempered ductile iron as potential metro wheel material
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Mechanical properties and rolling-sliding wear performance of dual phase austempered ductile iron as potential metro wheel material

机译:双相奥氏体型球墨铸铁的机械性能和滚动滑动磨损性能作为潜在的地铁轮材料

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摘要

Dual phase austempered ductile iron (dual phase ADI) was produced through intercritical austempering with various partially austenitizing temperatures. Partial austenitization within the intercritical interval has a profound influence on the amount and morphology of microstructure in dual phase ADI. The influence of partially austenitizing temperatures on the mechanical properties and rolling-sliding wear performance of dual phase ADI were also investigated. The results show steady increases in the tensile strength and yield strength with increasing partially austenitizing temperature, while the opposite behavior is observed for elongation. The optimum combination including ultimate tensile strength of 746 MPa, impact toughness of 125 J and elongation of 14% is obtained in the dual phase ADI partially austenitized at 810 degrees C, which is composed of 20% proeutectoid ferrite and 80% ausferrite constituent. Wear behavior could be understood from the manner the hardened layer fragmented and detached. The main wear mechanism under air cooling condition is delamination due to subsurface deformation. Wear rate decreases as matrix hardness increases. According to the results of mechanical and wear tests, dual phase ADI partially austenitized at 810 degrees C demonstrates superior wear performance as well as relatively reasonable mechanical properties, suggesting the potential of this material for application in metro wheels.
机译:通过具有各种部分奥氏体温度的跨临界奥斯特术生产双相稳定性延展性铁(双相ADI)。临界间隔内的部分奥氏体化对双相ADI中微观结构的量和形态具有深远的影响。还研究了部分奥氏体化温度对双相ADI的机械性能和轧制滑动磨损性能的影响。结果表明,抗拉强度的稳定增加,屈服强度随着部分奥氏体化温度而增加,而伸长率观察相反的行为。在810℃的双相ADI中,在810℃下奥氏体的双相Adi,最佳组合包括746MPa的最终拉伸强度为746MPa的抗拉强度和14%的伸长率。从硬化层碎片和分离的方式可以理解磨损行为。由于地下变形,空气冷却条件下的主要磨损机制是分层。随着矩阵硬度的增加,磨损率降低。根据机械和磨损试验的结果,在810℃下部分奥氏体化的双相ADI证明了卓越的磨损性能以及相对合理的机械性能,表明该材料在地铁车轮中应用的潜力。

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