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Effects of Thermal Variables of Solidification on the Microstructure Hardness and Microhardness of Cu-Al-Ni-Fe Alloys

机译:凝固热变量对Cu-Al-Ni-Fe合金显微组织硬度和显微硬度的影响

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摘要

Aluminum bronze is a complex group of copper-based alloys that may include up to 14% aluminum, but lower amounts of nickel and iron are also added, as they differently affect alloy characteristics such as strength, ductility, and corrosion resistance. The phase transformations of nickel aluminum–bronze alloys have been the subject of many studies due to the formations of intermetallics promoted by slow cooling. In the present investigation, quaternary systems of aluminum bronze alloys, specifically Cu–10wt%Al–5wt%Ni–5wt%Fe (hypoeutectoid bronze) and Cu–14wt%Al–5wt%Ni–5wi%Fe (hypereutectoid bronze), were directionally solidified upward under transient heat flow conditions. The experimental parameters measured included solidification thermal parameters such as the tip growth rate (VL) and cooling rate (TR), optical microscopy, scanning electron microscopy (SEM) analysis, hardness, and microhardness. We observed that the hardness and microhardness values vary according to the thermal parameters and solidification. We also observed that the Cu–14wt%Al–5wt%Ni–5wi%Fe alloy presented higher hardness values and a more refined structure than the Cu–10wt%Al–5wt%Ni–5wt%Fe alloy. SEM analysis proved the presence of specific intermetallics for each alloy.
机译:铝青铜是一组复杂的铜基合金,可能包含多达14%的铝,但同时添加的镍和铁含量也较低,因为它们会不同程度地影响合金特性,例如强度,延展性和耐蚀性。镍铝青铜合金的相变是由于缓慢冷却促进金属间化合物的形成而成为许多研究的主题。在本研究中,铝青铜合金的四元体系为Cu–10wt%Al–5wt%Ni–5wt%Fe(亚共析铜)和Cu–14wt%Al–5wt%Ni-5wi%Fe(亚共析铜)。在瞬态热流条件下向上定向凝固。测得的实验参数包括凝固热参数,例如尖端生长速率(VL)和冷却速率(TR),光学显微镜,扫描电子显微镜(SEM)分析,硬度和显微硬度。我们观察到,硬度和显微硬度值根据热参数和固化而变化。我们还观察到,与Cu-10wt%Al-5wt%Ni-5wt%Fe合金相比,Cu-14wt%Al-5wt%Ni-5wi%Fe合金具有更高的硬度值和更精细的组织。 SEM分析证明每种合金都存在特定的金属间化合物。

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