熔丝成型4340钢SLM粉末的固相和超固相液相烧结

IF 0.2 Q4 ENGINEERING, MULTIDISCIPLINARY
Andres-Fernando Gil-Plazas, Julián-David Rubiano-Buitrago, Luis-Alejandro Boyacá-Mendivelso, L. Herrera-Quintero
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引用次数: 0

摘要

采用FFF(熔融长丝制造)技术对4340钢粉末进行增材制造。研制了一种复合长丝用于打印样品,并研究了床层温度和喷嘴温度对其物理和微观结构性能的影响。通过1300℃的固相烧结(SS)或1420℃的超固相烧结(SLPS)对打印样品进行脱脂和烧结。金相和扫描电镜(SEM)鉴定了显微组织和物相。用维氏法测定了烧结试样的硬度。SLPS工艺有助于更好的致密化和体积收缩;然而,与SS样品相比,它促进了样品的几何畸变。烧结试样的显微组织由位于原始奥氏体晶粒中的铁素体和贝氏体组成。烧结机制对试样的硬度有显著影响。最后对零件进行了设计、打印、脱脂、烧结,研究了零件的最大倾斜角、最小纵孔和最小横孔以及最小纵层厚度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solid-State and Super Solidus Liquid Phase Sintering of 4340 Steel SLM Powders Shaped by Fused Filament Fabrication
4340 steel powders were processed with an additive manufacturing process using the FFF (Fused Filament Fabrication) technique. A composite filament was developed to print samples and study the effect of the bed and nozzle temperatures on its physical and microstructural properties. The printed samples were debinded and sintered by: Solid State (SS) at 1300 °C or SLPS (Supersolidus Liquid Phase Sintering) at 1420 °C. Metallography and scanning electron microscopy (SEM) identified the microstructure and phases. The hardness of the sintered samples was measured with the Vickers method. The SLPS process contributes to better densification and volume contraction; however, it promotes geometrical distortion of the samples compared to the SS samples. The microstructure of the sintered samples consists of ferrite situated in the original austenite grain and bainite. The sintering mechanism significantly influenced the hardness of the samples. Finally, a part was designed, printed, debinded, and sintered with the aim of studying the maximum inclination angle, the minimum vertical and horizontal holes, and the minimum vertical layer thickness, which can be obtained through the whole process.
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