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Modelling of melt on spinning wheels

机译:纺车轮上熔体的建模

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摘要

Thermal Ceramics manufacture high-temperature thermal insulation, much of which is made in the form of fibre, for use in furnaces, aeroengines, domestic appliances, fire protection systems and other applications. In the manufacturing process, a melt stream emerges from a circular orifice and falls on to two successive spinning wheels, resulting in fiberisation. However, the process also results in a significant fraction of unfiberised material in the form of shot particles. The presence of shot tends to increase the thermal conductivity of the final product. Moreover, some areas of application, such as the automotive industry, require clean fibre with zero shot. Reducing the amount of shot that is produced in the fiberisation process would also reduce the costs of 'cleaning' the fibres for these markets. The Study Group was asked to look at how melt transfers on to the spinning wheels, what kind of melt layer exists on the wheels, and how this layer breaks up. By using a mathematical model to understand the relative importance of various parameters, it is hoped to guide experimental trials and then the scale-up to production levels.
机译:隔热陶瓷制造高温隔热材料,其中大部分以纤维形式制成,可用于熔炉,航空发动机,家用电器,消防系统和其他应用。在制造过程中,熔体流从圆形孔口流出并落在两个连续的纺丝轮上,从而导致纤维化。然而,该方法还导致很大一部分未纤维化的材料为散粒形式。喷丸的存在倾向于增加最终产品的热导率。而且,在某些应用领域,例如汽车工业,需要零散粒的清洁纤维。减少纤维化过程中产生的弹丸量,还将减少为这些市场“清洁”纤维的成本。研究小组被要求研究熔体如何转移到纺丝轮上,轮上存在哪种熔体层以及该层如何分解。通过使用数学模型来了解各种参数的相对重要性,希望可以指导实验性试验,然后扩大到生产水平。

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