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首页> 外文期刊>Journal of Materials Research and Technology >Multiple, comparative heat treatment and aging schedules for controlling the microstructures and mechanical properties of laser powder bed fusion fabricated AlSi10Mg alloy
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Multiple, comparative heat treatment and aging schedules for controlling the microstructures and mechanical properties of laser powder bed fusion fabricated AlSi10Mg alloy

机译:用于控制激光粉床融合的微观结构和机械性能的多重,比较热处理和老化调度制造的Alsi10mg合金

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In this investigation, the optimization of mechanical properties with thermal post-processing treatments was analyzed across a wide range of variants. A major aspect of additive manufacturing is the correlation between heat treatments and the effects on the mechanical properties and microstructure of the printed materials. Therefore, the present paper describes a comprehensive overview of post-process heat treatments for Laser Powder Bed Fusion fabricated AlSi10Mg alloy consisting of stress relief anneals at 190 C and 285 C for 2 h, hot isostatic pressing at 515 C for 3 h, hot isostatic pressing + T6 treatment for 6 h, and final aging of each of these conditions at 177 C for up to 1000 h. This has resulted in 40 experimental variants: 20 in the vertical and 20 in the horizontal tensile direction. After tensile testing, the resulting mechanical properties (ultimate tensile strength, yield strength, and elongation) and stressestrain curves are analyzed for comparison between all variants. Ultra-fine cellular, micro dendritic structures (0.6-1.2 mm) along with meltband structures dominated the asbuilt and stress relief anneal conditions. In contrast, hot isostatic pressing and hot isostatic pressing t T6 conditions were dominated by ~10 mm, equiaxed, recrystallized grain structures and pseudo-eutectic silicon particles with varying sizes and size distributions. Microhardness and fractography results also corresponded to their specific heat treatment and microstructure. The comparison and correlation of the heat treatments are presented to help advance the selection of design strategies for high performance applications.
机译:在该研究中,在各种变体上分析了具有热后处理处理的机械性能的优化。添加剂制造的主要方面是热处理与对印刷材料的机械性能和微观结构之间的相关性的相关性。因此,本文介绍了激光粉床融合后工艺热处理的全面概述,制造了由190℃和285℃的应力消除退火组成的Alsi10mg合金2小时,在515℃下热等静压3小时,热等静压按+ T6治疗6小时,并在177℃下最终老化最高可达1000小时。这导致了40个实验变体:20在垂直和20中的水平拉伸方向。在拉伸测试之后,分析所得的机械性能(最终拉伸强度,屈服强度和伸长率)以进行所有变体之间的比较。超细蜂窝,微树枝状结构(0.6-1.2毫米)以及熔融带结构的结构占主导地位和应力释放退火条件。相比之下,热等静压和热等静压迫使T T6条件以〜10mm,等态,重结晶的晶粒结构和具有不同尺寸和尺寸分布的伪共晶硅颗粒。微硬度和裂缝结果也与其特定的热处理和微观结构相对应。提出了热处理的比较和相关性,帮助推进了高性能应用的设计策略的选择。

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