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Effect of Zr addition on the mechanical characteristics and wear resistance of Al grain refined by Ti after extrusion

机译:Zr添加对挤压后Ti精制的铝颗粒机械特性和耐磨性的影响

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Aluminum and its alloys are normally grain refined by Ti or Ti+B to transfer their columnar structure during solidification into equiaxed one which improves their mechanical behavior and surface quality. In this paper, the effect of addition of Zr on the metallurgical, and mechanical aspects, hardness, ductility and wear resistance of commercially pure aluminum grain refined by Ti after extrusion is investigated. Zr was added at a level of 0.1% which corresponds to the peretectic limit at the Al-Zr phase diagram. The experimental work was carried out on the specimens after direct extrusion. It was found that addition of Ti resulted in decrease of Al grain size, whereas addition of Zr alone or in the presence of Ti, resulted in reduction of Al grain size. This led to increase of Al hardness. The effect of the addition of Ti or Zr alone resulted almost in the same enhancement of Al mechanical characteristics. As for the strain hardening index,n, increase was obtained when Zr was added alone or in the presence of Ti. Hence pronounced improvement of its formability. Regarding the effect of Zr addition on the wear resistance of aluminum; it was found that at small loads and speeds addition of Ti or Zr or both together resulted in deterioration of its wear resistance whereas at higher loads and speeds resulted in pronounced improvement of its wear resistance. Finally, the available Archard model and the other available models which consider only the mass loss failed to describe the wear mechanism of Al and its micro-alloys because they do not consider the mushrooming effect at the worn end.
机译:铝及其合金通常由Ti或Ti + B改进的晶粒,以在凝固过程中将它们的柱状结构转移到Equiadiaxed中,这改善了它们的机械性能和表面质量。本文研究了挤出后Ti在挤出后改进的商业纯铝晶粒的冶金和机械方面,机械方面,机械方面,硬度,延展性和耐磨性的影响。在0.1%的水平下加入Zr,其对应于Al-Zr相图的偏心极限。直接挤出后对试样进行实验工作。发现添加Ti导致Al晶粒尺寸的降低,而单独或在Ti存在下加入Zr,导致Al晶粒尺寸的降低。这导致了al硬度的增加。单独添加Ti或Zr的效果几乎在Al机械特性的同一增强中产生。对于菌株硬化指数,N,当Zr单独添加或在Ti存在下时获得增加。因此,发明的可成形性的提高。关于Zr添加对铝耐磨性的影响;发现,在较小的载荷和速度时,加入Ti或Zr或两者在一起,导致其耐磨性的劣化,而在较高的负载和速度下导致其耐磨性的改善。最后,可用的Archard模型和其他可用的模型认为只有质量损失未能描述Al及其微合金的磨损机制,因为它们不考虑磨损端的蘑菇效果。

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