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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Relationship between cooling rate, microstructure features and wear behavior in end-chill cast Zn-27%Al alloys containing more than 2% Cu
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Relationship between cooling rate, microstructure features and wear behavior in end-chill cast Zn-27%Al alloys containing more than 2% Cu

机译:含铜量超过2%的端冷铸造Zn-27%Al合金的冷却速率,组织特征与磨损行为之间的关系

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摘要

An end-chill cast was conducted on Zn-27%Al-2%Cu and Zn-27%Al-4%Cu alloys to produce a variety of microstructural features. In order to study the relationship between microstructure features and wear behavior of these alloys, microstructural characteristics of three sections at distances of 1, 10 and 90 mm from the chill were investigated by optical and scanning electron microscopy and their wear behaviors were examined using a pin-on disk machine. It was found that the grain size, secondary dendrite arm spacing, density of ε precipitates and amount of eutectoid α + η increased with decreasing cooling rates. In addition, it was observed that the morphology of ε precipitates varied from semi-plate-like precipitates to fairly spherical precipitates along the height of the casting, i.e. with decreasing cooling rate. Microscope observations showed that the wear process proceeded by subsurface deformation, crack nucleation and crack growth, i.e. principle mode of wear was delamination. Also, wear tests showed that microstructures which solidified in the highest cooling rate displayed the maximum wear loss and rate in both alloys and also, the wear rate increased with increasing copper content. As a result of these investigations, the differences in wear behaviors of microstructures of as-cast Zn-27%Al-(more than 2%)Cu alloys were explained based on the relative contribution of each microstructural characteristic on fracture properties, crack nucleation mechanism and crack growth rate.
机译:在Zn-27%Al-2%Cu和Zn-27%Al-4%Cu合金上进行了冷硬铸造,以产生各种微结构特征。为了研究这些合金的微观结构特征与磨损行为之间的关系,通过光学和扫描电子显微镜研究了距冷风1、1、10和90 mm处的三个断面的显微组织特征,并使用销钉检查了它们的磨损行为。 -在磁盘机上。结果发现,随着冷却速率的降低,晶粒尺寸,二次枝晶臂间距,ε析出物的密度和共析物α+η的含量增加。另外,观察到,沿着铸件的高度,即随着冷却速率的降低,ε沉淀物的形态从半板状沉淀物变为相当球形的沉淀物。显微镜观察表明,磨损过程是通过地下变形,裂纹成核和裂纹扩展而进行的,即磨损的主要方式是分层。另外,磨损试验表明,在最高冷却速率下凝固的微结构在两种合金中均显示出最大的磨损损失和速率,并且磨损速率随着铜含量的增加而增加。这些研究的结果,根据每种微观组织特征对断裂性能,裂纹成核机理的相对贡献,解释了铸态Zn-27%Al-(大于2%)Cu合金的微观组织在磨损行为上的差异。和裂纹增长率。

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