Impact of heat transfer on spheroidization of titanium alloys

WA Seya, A. Kolesnikov, I. Van der Walt, H. Bissett
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引用次数: 1

Abstract

The industrial application of the spheroidization process using high-temperature plasma is regarded as a good method for the conversion of irregularly shaped particles into a spherica shape. High temperature and controlled plasma conditions are required to obtain satisfactory results. Given this, a 3D model was used to simulate heat transfer from a source term to titanium-alloy particles using ANSYS Fluent software. Such models consider the effects of particle treatment on thermodynamic and transport properties of the plasma. This present study aims to investigate the impact of heat transfer on the particles and the effect of radiation energy loss on the particles, using numerical analysis. The results showed that the operating condition such mass flow was inversely proportional to the rate of heat transfer between plasma particles and the characteristics of the plasma gas, which was due to significant variation in radiation energy losses.
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传热对钛合金球化的影响
高温等离子体球化工艺的工业应用被认为是将不规则形状的颗粒转化为球形的好方法。为了获得满意的结果,需要高温和受控的等离子体条件。基于此,利用ANSYS Fluent软件建立三维模型,模拟源项到钛合金颗粒的传热过程。这些模型考虑了粒子处理对等离子体热力学和输运性质的影响。本文采用数值分析的方法研究了热传导对颗粒的影响以及辐射能量损失对颗粒的影响。结果表明,该质量流的运行条件与等离子体粒子之间的换热速率和等离子体气体的特性成反比,这是由于辐射能量损失的显著变化所致。
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