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A contribution to study of processes on the steel cast-sang mould contact surface during casting

机译:对铸造过程中铸钢-铸型模具接触面工艺研究的贡献

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摘要

The testings involved in this paper were part of a comprehensive research project conducted to find out what complex processes were taking place at metal-mould contact surface. These investigations are of particular importance for metal casting from relatively high melting temperature, such as that of steel (approximately 1600deg.C). Steel castings, in regard to their high manufactured temperature and other specifications in pouring, need a mould mixture of such good quality. The mould mixture, used for casting steel class DIN G-X 120 Mn 12, was based on the silica sand, and with water-glass as a binder and AlK(SO_4)_2 as an active component. This active component is, at pouring temperature of liquid steel, decomposed in the mould by thermal influence during pouring, crystallization and cooling the casting. In decomposition process of the active component, the gaseous products appear and the water-stream is generated from chemically bonded water. These processes are influencing the molten metal oxidation. The penetrated molten metal into the mould surface is oxidized, too. At the high melting temperature and in the presence of gaseous products, the silicates were formed in the contact zone Between metal and sand mould mixture. The objective of these tests was to find out to what extent the composition of the Mould mixture affects the formation process, shape, type and composition fo the silicates.
机译:本文所涉及的测试是一项全面研究项目的一部分,该项目旨在找出在金属模具接触表面发生了哪些复杂过程。这些研究对于从相对较高的熔融温度(例如钢(约1600℃))的金属铸造特别重要。考虑到钢铸件的高制造温度和浇铸时的其他规格,钢铸件需要如此优质的铸模混合物。用于铸造DIN G-X 120 Mn 12级钢的铸模混合物基于硅砂,并以水玻璃为粘合剂,以AlK(SO_4)_2为有效成分。该活性成分在钢水的浇注温度下,在浇注,结晶和冷却铸件过程中,由于热影响而在模具中分解。在活性成分的分解过程中,出现气态产物,水流由化学键合的水产生。这些过程影响着熔融金属的氧化。渗透到模具表面的熔融金属也被氧化。在高熔融温度和气态产物存在下,在金属和砂模混合物之间的接触区中形成了硅酸盐。这些测试的目的是找出铸模混合物的组成在多大程度上影响硅酸盐的形成过程,形状,类型和组成。

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