首页> 外文会议>International Conference on Metallurgy and Materials >MICROSTRUCTURAL STUDY OF AZ91C MAGNESIUM ALLOY CASTINGS PRODUCED BY INVESTMENT CASTING IN AS-CAST STATE AND AFTER HEAT TREATMENT
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MICROSTRUCTURAL STUDY OF AZ91C MAGNESIUM ALLOY CASTINGS PRODUCED BY INVESTMENT CASTING IN AS-CAST STATE AND AFTER HEAT TREATMENT

机译:铸造铸造铸造和热处理后铸造铸造生产的AZ91C镁合金铸件的微观结构研究

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In this article, the microstructure of AZ91C magnesium alloy castings produced by investment casting was investigated. Castings were studied in as-cast state and after T4 and T6 heat treatment. The identification of all phases in microstructure was carried out using a scanning electron microscope (SEM) with energy dispersive X-ray spectroscopy (EDS) analysis. The influence of cooling rate after casting, temperature of solution annealing, temperature of artificial aging and cooling rate after heat treatment on the microstructural characteristics such as secondary dendrite arm spacing (SDAS) or grain size was studied. The SDAS analyses were carried out using a light microscopy with the subsequent image analysis. Except of Mg-AI solid solution and Mg_(17)Al_(12) precipitates, the microstructure contains other phases based on Mg-Si and (AI.Si)-Mn in globular or needle morphology. The SDAS in as-cast state was measured and was of tens of micrometers, but after T4 heat treatment, the gran size exceeded 100 urn and the Mg_(17)Al_(12)phase was still undissolved along the grain boundaries in samples with thicker wall dimension. After T6 heat treatment, continuous and discontinuous precipitates of Mg_(17)Al_(12)phase were formed, most of them were nearby the grain boundaries proving the inhomogeneous distribution of Al atoms in solid solution after T4 heat treatment.
机译:在本文中,研究了通过投资铸造生产的AZ91C镁合金铸件的微观结构。在T4和T6热处理后,在铸造状态和后浇注铸件。使用具有能量分散X射线光谱(EDS)分析的扫描电子显微镜(SEM)进行微观结构中所有相的鉴定。研究了冷却速率,溶液退火温度的影响,在热处理诸如次级树枝状臂间距(SDAS)或晶粒尺寸的微观结构特征之后的人工老化温度和冷却速率。使用具有随后图像分析的光学显微镜进行SDA分析。除了Mg-AI固溶溶液和Mg_(17)Al_(12)沉淀物中,微结构含有基于Mg-Si和(Ai.Si)-mn的其他相 - 在球状或针形态中。以铸造状态的SDA测量并具有数十微米,但在T4热处理之后,大尺寸超过100瓮,Mg_(17)Al_(12)相沿着样品中的样品中的晶界仍未溶解,较厚墙尺寸。在T6热处理之后,形成Mg_(17)Al_(12)相的连续和不连续的沉淀物,其中大多数在T4热处理后在固体溶液中证明Al原子的不均匀分布附近。

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