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Ni3AI intermetallic particles as wear-resistant reinforcement for Al-base composites processed by powder metallurgy

机译:Ni3Al金属间化合物作为粉末冶金加工的Al基复合材料的耐磨增强材料

摘要

The suitability of Ni3Al intermetallics as reinforcement for Al-base materials for tribological applications has been investigated. For this purpose, an Al/Ni3Al (5 vol pet) composite was prepared by powder metallurgy and tested in air against steel counterfaces at the load range of 45 to 178 N. For comparison, unreinforced Al specimens were processed and tested under the same conditions. Tribological behavior was evaluated by microstructural examination of wear-affected zones and weight-loss measurements of specimens and counterfaces. It was found that a significant amount of Fe-rich oxide particles become incorporated into the Al matrix during wear, forming a cracked tribolayer. The wear behavior of Al/Ni3Al composite as a function of the applied load was not accurately reflected by the weight loss of worn specimens. Results highlight the role of Ni3Al particles as loadbearing elements due to their excellent bonding to the Al matrix, their interfaces withstanding the wear stresses even at the highest applied load. Moreover, Ni3Al particles limited the incorporation of wear debris to the Al matrix and reduced wear damage occasioned to the steel counterfaces compared to that of pure aluminum specimens.
机译:研究了Ni3Al金属间化合物作为摩擦学应用的Al基材料增强材料的适用性。为此,通过粉末冶金法制备了Al / Ni3Al(5体积)复合材料,并在空气中对钢对接面进行了45至178 N的载荷测试。为进行比较,在相同条件下对未增强的Al试样进行了处理和测试。 。通过对磨损区的微观结构检查以及对标本和对面的重量测量来评估摩擦学行​​为。发现在磨损过程中大量富铁氧化物颗粒掺入Al基体中,形成破裂的摩擦层。 Al / Ni3Al复合材料作为施加载荷的函数的磨损行为无法通过磨损试样的失重准确反映出来。结果突出表明了Ni3Al颗粒作为负载元素的作用,因为它们与Al基体具有出色的结合力,即使在最高施加负载下,它们的界面也能承受磨损应力。而且,与纯铝试样相比,Ni3Al颗粒限制了磨损碎屑进入Al基体的进入,并减少了钢对接面上的磨损。

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