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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructures and mechanical properties of aluminum-transition metal binary alloys (Al-Fe, Al-Mn, and Al-Cr) processed by laser powder bed fusion
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Microstructures and mechanical properties of aluminum-transition metal binary alloys (Al-Fe, Al-Mn, and Al-Cr) processed by laser powder bed fusion

机译:激光粉床融合加工铝 - 过渡金属二元合金(Al-Fe,Al-Mn和Al-Cr)的微观结构和力学性能

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摘要

Transition metals added as alloying elements to aluminum improve high-temperature strength. To design heat-resistant aluminum alloys for additive manufacturing, we have focused on the basic transition metals of iron (Fe), manganese (Mn), and chromium (Cr). The present study systematically examined the aging characteristics and the relationship between the microstructures and mechanical properties of aluminumtransition metal alloys, specifically Al-3mass%Fe, Al-3mass%Mn, and Al-3mass%Cr, fabricated by laser powder bed fusion (LPBF). All the LPBF samples were densified by optimizing laser scan parameters, achieving a relative density greater than 99.9%. The hardness values of the LPBF samples, especially Al-3mass%Fe, increased as a result of the aging heat treatment, leading to excellent high-temperature strength. From the extensive microstructural investigation, the peak aged Al-3mass%Fe and Al-3mass%Mn LPBF samples had microstructures with distinct network Al-Fe and granular/platy Al3Mn compounds with high-temperature stability, respectively. The improvement of mechanical properties in the Al-3mass%Fe and Al-3mass%Mn LPBF samples was thus attributed to the microstructural composite and dispersion hardening along with the grain boundary reinforcement. Meanwhile in the Al-3mass%Cr LPBF sample, chromium had a tendency to form a solid solution in the ?-Al matrix, leading to solid-solution hardening. These results indicate that the strengthening factors significantly differed depending on the added transition metals. ? 2021 Elsevier B.V. All rights reserved.
机译:过渡金属作为合金元素添加到铝中可以提高高温强度。为了设计用于添加剂制造的耐热铝合金,我们重点研究了基本过渡金属铁(Fe)、锰(Mn)和铬(Cr)。本研究系统地研究了通过激光粉末床熔合(LPBF)制备的铝过渡金属合金,特别是Al-3mass%Fe、Al-3mass%Mn和Al-3mass%Cr的时效特性以及微观结构与力学性能之间的关系。通过优化激光扫描参数,所有LPBF样品均致密化,相对密度大于99.9%。LPBF样品的硬度值,尤其是Al-3mass%Fe,随着时效热处理的增加而增加,从而获得了优异的高温强度。从广泛的微观结构研究来看,峰值时效Al-3mass%Fe和Al-3mass%Mn LPBF样品的微观结构分别具有明显的网状Al-Fe和具有高温稳定性的粒状/片状Al3Mn化合物。因此,Al-3mass%Fe和Al-3mass%Mn LPBF试样力学性能的改善归因于显微组织复合和弥散硬化以及晶界强化。同时,在Al-3mass%Cr LPBF样品中,铬有形成固溶体的趋势-铝基体,导致固溶硬化。这些结果表明,强化因子因添加的过渡金属而显著不同?2021爱思唯尔B.V.保留所有权利。

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