首页> 外文会议>The Belton Memorial Symposium Proceedings, Jan 10-11, 2000, Sydney, Australia >Mechanisms of Initial Melt/Substrate Heat Transfer Pertinent to Strip Casting
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Mechanisms of Initial Melt/Substrate Heat Transfer Pertinent to Strip Casting

机译:与带钢铸造有关的初始熔体/基体传热机理

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An experimental study of initial solidification of 304 stainless steel melts in direct contact with copper substrates under conditions approximating the meniscus region of a strip caster has highlighted the importance of interfacial heat transfer during the first 30 milliseconds of contact. The mechanisms governing initial heat transfer are strongly influenced by dynamic wetting phenomena. This has been illustrated experimentally by the effects of the build up and melting of oxide films such as manganese silicates at the interface during successive immersions, by the role of surface active agents such as tellurium in the melt and by the use of specially designed substrate textures to control contact areas.
机译:在接近带钢连铸机弯液面区域的条件下,与铜基材直接接触的304不锈钢熔体初始凝固的实验研究突出了在接触的前30毫秒内界面传热的重要性。控制初始热传递的机制受动态润湿现象的强烈影响。通过在连续浸入过程中界面处氧化膜(如硅酸锰)的堆积和熔化,熔体中碲等表面活性剂的作用以及使用特殊设计的基材纹理的实验证明了这一点控制接触区域。

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