Experimental impact study of ultra‑fine metal powders on technical characteristics and physical properties of foundry sodium silicate sand cores

Y. Gutko, V. V. Voytenko
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Abstract

The results of the experimental impact study for the mass fractions of ultra‑fine metal powders added into compositions of core mixtures on technical characteristics and physical properties of the foundry sodium silicate sand cores under influence of high temperatures during production of metal castings are presented and discussed. The dependences for technical characteristics and physical properties of the cores on the mass fractions of ultra‑fine powders based on aluminum, steel, and bronze are established. The significant reserves for improving a knocking‑out ability of the cores based on promising compositions for cast iron by adding ultra‑fine powders of aluminum or bronze into core mixtures are revealed. It is established that the best knockingout ability of the cores in combination with a low outgassing rate and a high gas permeability can be achieved by combining 15.0 wt. % crushed seashell and 0.5–1.0 wt. % aluminum powder. The boundaries for reasonable use of a recycled mixture in preparation of a core mixture are determined.
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超细金属粉末对铸造硅酸钠砂芯技术特性和物理性质影响的实验研究
本文介绍并讨论了在金属铸件生产过程中,在砂芯混合物成分中加入超细金属粉末的质量分数对高温影响下铸造硅酸钠砂芯的技术特征和物理性能的影响实验研究结果。确定了砂芯的技术特性和物理性能与铝、钢和青铜超细粉质量分数的关系。通过在芯材混合物中添加铝或青铜超细粉末,揭示了基于有前途的铸铁成分的芯材在提高脱模能力方面的重要潜力。通过将 15.0 重量%的碎贝壳和 0.5-1.0 重量%的铝粉混合在一起,可以获得最佳的型芯击穿能力、低放气率和高气体渗透性。确定了在制备芯材混合物时合理使用回收混合物的界限。
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