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The Influence of Cooling Rate and Equivalent Carbon on the Chill Tendency and Cooling Curves Parameters in Uninoculated and Inoculated Grey Cast Iron

机译:冷却速度和当量碳对未接种和接种灰铸铁的冷态倾向和冷却曲线参数的影响

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The main objectiv of this experimental research is a comparative analysis of the changes caused by varying cooling rate and carbon equivalent content on chill tendency and cooling curves parameters in grey cast iron. Two irons with different carbon equivalent content were developed in this experiment. Cylindrical samples having a slight conicity were poured in furan resin sand moulds in which metallic cylindrical shells with different wall thicknesses (δ=0mm, δ=2mm, δ=5mm, δ=8mm, δ=11mm, δ=14mm) were incorporated (K type thermocouples incorporated) with the purpose of varying the cooling rate (Fig. 1). Both uninoculated and 0.3wt.% FeSiCaBa inoculated irons were poured into sand moulds. The variation of cooling curves parameters under the influence of the two factors (cooling rate and equivalent carbon) were studied for a better understanding of the cast iron solidification mechanism. Two experimental programs were developed in this reason. The experimental results show significant variations both of the conventional cooling curves parameters and grey irons chill tendency under the influence both of the cooling rate, carbon equivalent and inoculation state.
机译:本实验研究的主要目的是比较分析冷却速度和碳当量含量变化对灰口铸铁的冷轧趋势和冷却曲线参数的影响。本实验开发了两种碳当量含量不同的铁。将具有轻微锥度的圆柱样品倒入呋喃树脂砂模中,在其中装入壁厚不同(δ= 0mm,δ= 2mm,δ= 5mm,δ= 8mm,δ= 11mm,δ= 14mm)的金属圆柱壳(内置K型热电偶),目的是改变冷却速度(图1)。将未接种的FeSiCaBa和0.3wt。%的FeSiCaBa接种铁都倒入砂模中。为了更好地了解铸铁的凝固机理,研究了冷却曲线参数在两个因素(冷却速率和当量碳)的影响下的变化。因此开发了两个实验程序。实验结果表明,在冷却速率,碳当量和接种状态的影响下,常规冷却曲线参数和灰口铁冷态都有明显变化。

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