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首页> 外文期刊>Ironmaking & Steelmaking >Optimisation of narrow face water slot design for Siderar slab casting mould
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Optimisation of narrow face water slot design for Siderar slab casting mould

机译:Siderar板坯铸型窄工作面槽形设计优化。

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摘要

A study of a mould narrow plate was carried out at Instituto Argentino de Siderurgia (IAS), to assess the plate condition after its life, in this case 2227 heats. A finite element model of steady heat conduction in the mould narrow face was developed, using ANSYS software, with eight node rectangular elements. Attention was focused on the hot face temperature distribution, including the corner temperature and the difference between the maximum and minimum temperatures across the hot face. Temperature distribution in the narrow face of the Siderar slab casting mould was calculated, and alternatives to optimise the water slot design by altering the geometry to minimise both corner temperature and temperature variation across the hot face were analysed. According to the results, the existing narrow face design does not produce excessive temperatures anywhere in the mould. However, a gradient exists across the hot face. In addition, an accurate equation was developed to predict corner temperature as a function of hot face heat flux and water slot geometry. Several other water slot geometry redesigns were investigated, which further improved potential hot face temperature uniformity at the expense of increasing complexity of the water slot design. The predictions of the model are in agreement with observations made in a previous post-mortem study carried out at IAS on a narrow plate.
机译:在阿根廷国家研究所(IAS)进行了一个狭窄的模具板的研究,以评估其使用寿命(在此情况下为2227加热)后的板状况。使用ANSYS软件,使用八个节点矩形单元,开发了在模具窄面上稳定传热的有限元模型。注意集中在热面温度分布上,包括拐角温度以及整个热面之间的最高和最低温度之差。计算了Siderar板坯铸模狭窄表面的温度分布,并分析了通过改变几何形状以最小化拐角温度和整个热面温度变化来优化水槽设计的方法。根据结果​​,现有的窄面设计不会在模具的任何地方产生过高的温度。但是,在热表面上存在梯度。此外,还开发了一个精确的方程式来预测拐角温度与热面热通量和水槽几何形状的关系。研究了其他几种水槽几何形状的重新设计,以增加水槽设计的复杂性为代价,进一步改善了潜在的热面温度均匀性。该模型的预测与之前在IAS上进行的事后研究在狭窄板上进行的观察一致。

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