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Effect of HIP process and subsequent heat treatment on microstructure and mechanical properties of direct metal laser sintered AlSi10Mg alloy

机译:髋部工艺及随后热处理对直接金属激光烧结Alsi10mg合金的微观结构和力学性能的影响

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Purpose The purpose of this paper is to evaluate the effect of post process combinations, e.g. hot isostatic pressing (HIP) only, HIP + T6 heat treatments, and T6 only, with different aging time, on surface properties, microstructure and mechanical properties of stress-relieved AlSi10Mg parts produced by direct laser metal sintering. Design/methodology/approach HIP process and HIP + T6 heat treatments were applied to as stress-relieved direct laser metal sintered (DMLS) AlSi10Mg parts. Aging times of 4 and 12 h are selected to examine the optimum duration. To analyze the advantages of HIP process, a T6 heat treatment with 4 h of aging was also applied. Densities, open porosities and roughness values of as stress-relieved, HIPed, HIP + T6, and T6-only samples were measured. The samples were characterized by OM and SEM together with EDX analysis. An image analysis study was made to evaluate the inner pore structure, thereby to understand the mechanical behavior. Findings HIP process does not cause a significant change in surface porosity; yet it has a positive influence on inner porosity. HIP process results in a microstructure of the aluminum matrix surrounded by a network of micron and nano size Si particles. Additional heat treatment results in larger particles and precipitation. After HIPing, ductility increases but strength decreases. Samples aged 4 h present improved yield and tensile strength but decreased elongation, yet samples aged for 12 h reach a combination of optimum strength and ductility. The lower level of tensile strength and ductility in T6-only condition indicates that HIP process plays a crucial role in elimination of the porosity thus improves the effectiveness of subsequent heat treatment. Originality/value The study investigates the effect of post-process conditions and optimizes the aging time of the T6 heat treatment after HIP process in order to obtain improved mechanical properties. The stress-relieved state was chosen as the reference to prevent distortion during HIPing or heat treatment.
机译:目的本文的目的是评估后工艺组合的效果,例如。仅热等静压(臀部),髋+ T6热处理,以及T6,具有不同的老化时间,在表面性质,微观结构和通过直接激光金属烧结产生的应力缓解Alsi10mg部件的微观结构和机械性能。设计/方法/方法髋关节工艺和髋+ T6热处理以应力消除的直接激光金属烧结(DMLS)Alsi10mg零件。选择4和12小时的老化时间来检查最佳持续时间。为了分析髋关节过程的优点,还施加了具有4小时的T6热处理。测量密度,打开孔隙率和粗糙度值的压力缓解,臀部,臀部+ T6和仅用于T6样品。通过OM和SEM表征样品以及EDX分析。采取图像分析研究来评估内孔结构,从而了解机械行为。调查结果髋关节过程不会导致表面孔隙度的显着变化;然而,它对内部孔隙度具有积极的影响。髋关节过程导致由微米和纳米尺寸Si颗粒网络包围的铝基矩阵的微观结构。额外的热处理导致较大的颗粒和沉淀。臀部后,延展性增加,但强度降低。等4小时的样品提高了产率和拉伸强度,但伸长率降低,但12小时的样品达到最佳强度和延展性的组合。 T6条件下的拉伸强度和延展性的较低水平表明,在消除孔隙率方面发挥着至关重要的作用,从而提高了随后的热处理的有效性。原创性/值该研究研究了后工艺条件的效果,并优化了髋关节过程后T6热处理的老化时间,以获得改善的机械性能。选择应力缓解状态作为参考,以防止在臀部或热处理期间失真。

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