Parameter study of an Al–Cr–Mo–Sc–Zr alloy processed by laser powder bed fusion reaching high build rates

合金 融合 材料科学 激光器 冶金 光学 物理 语言学 哲学
作者
Barbara Agricola,Claas Bierwisch,Frank Palm,Eric A. Jägle,Annegret Kerschenlohr
出处
期刊:Progress in additive manufacturing [Springer Nature]
卷期号:10 (1): 349-360 被引量:2
标识
DOI:10.1007/s40964-024-00627-8
摘要

Abstract Market availability of aluminum alloys for laser powder bed fusion (L-PBF) is still highly limited in comparison to conventional manufacturing processes. The demand for high-strength but inexpensive alloys specifically designed for L-PBF is high. This demand has led to research on a variety of adapted conventional alloys which are still limited to utilize the full potential of L-PBF. Scalmalloy ® (Al–Mg–Sc–Zr) satisfies the demand for high-strength L-PBF-alloys but needs a high energy input and has troubles with evaporation of Mg. Scancromal ® (Al–Cr–Sc–Zr) is a novel alloying system for L-PBF and was first introduced in 2019 with the possibility of higher build rates and comparable strengths to Scalmalloy ® . In this paper, a more economic low Sc-containing version of Scancromal ® is presented. A parameter study was performed for $${100}\,\upmu \hbox {m}$$ 100 μ m layer thickness reaching high build rates of about $${47}\,\hbox {cm}^{3}\,\hbox {h}^{-1}$$ 47 cm 3 h - 1 . Hardness tests for different parameters were carried out and showed a stable process window with a hardness comparable to AlSi10Mg. Additionally, two-dimensional multilayer process simulations showed a potential for increasing the layer thickness to $${150}\,\upmu \hbox {m}$$ 150 μ m and therefore a significant increase in build rate of up to $${70}\,\hbox {cm}^{3}\,\hbox {h}^{-1}$$ 70 cm 3 h - 1 highlighting the high productivity potential of Al–Cr alloys for L-PBF.

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