Formation of the structure of sheet blanks during roll casting of metals

A. Nuradinov, O. Nogovitsyn, V. Shkolyarenko, I. Nuradinov
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引用次数: 1

Abstract

The physical modeling method was used to study the processes of formation of the structure of sheet blanks during ingotless casting-rolling of metals. At the same time, on the basis of theoretical analysis, the main parameters are determined, with the help of which it is possible to effectively control the processes of crystallization and the formation of the structure of sheet blanks. The studies carried out made it possible to establish the regularities of the influence of hydrodynamic and thermophysical conditions of pouring metal (the speed and nature of metal movement in the inter-roll space, the overheating temperature of the melt and the intensity of heat removal from it) on the processes of its crystallization and structure formation. A transparent organic alloy camphene (C10H16) was used as a modeling medium, which makes it possible to visually study these processes during the ingotless rolling of metals. Due to the transparency of camphene, the transformation of the sheet blank structure at different stages of its formation was clearly studied: the rough primary structure of the crusts solidifying on the rolls, due to their partial deformation in the rolling zone, passes into a fine-grained structure upon exiting it. The dependence of the linear rate of metal pouring on the overheating temperature of the melt and the intensity of heat exchange processes in the roller mold is shown. At the same time, the optimal ranges of values of these parameters are determined, which ensure the stability of the process of roll casting of metals. The results obtained were the basis for the development of practical recommendations for roll casting of real metals, in particular aluminum alloys of various grades. Keywords: roll casting-rolling of metals, roll mold, melt hydrodynamics, overheating temperature, intensity of heat exchange processes, sheet blank, casting speed, structure transformation.
金属铸轧过程中板料组织的形成
采用物理建模方法研究了金属无锭铸轧过程中板坯组织的形成过程。同时,在理论分析的基础上,确定了主要参数,从而可以有效地控制结晶过程和板坯结构的形成。所进行的研究使建立浇注金属的流体力学和热物理条件(金属在辊间空间运动的速度和性质,熔体的过热温度和热量的释放强度)对其结晶和结构形成过程的影响规律成为可能。采用透明有机合金camphene (C10H16)作为建模介质,可以直观地研究金属无锭轧制过程。由于莰烯的透明性,我们清楚地研究了板坯在其形成的不同阶段的组织转变:在轧辊上凝固的结壳,由于其在轧制区内的部分变形,在离开轧制区时,由粗糙的初级组织转变为细晶组织。揭示了金属浇注线速度与熔体过热温度和辊型内热交换过程强度的关系。同时,确定了这些参数的最佳取值范围,保证了铸轧过程的稳定性。所获得的结果为实际金属,特别是各种等级的铝合金的轧辊铸造的实用建议的发展奠定了基础。关键词:轧辊铸轧金属,轧辊型,熔体流体力学,过热温度,换热过程强度,板坯,铸造速度,组织转变
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