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Shell Thinning Phenomena Affected by Heat Transfer, Nozzle Design and Flux Chemistry in Billets Moulds

机译:坯料模具传热,喷嘴设计和助焊剂化学作用对壳薄化现象的影响

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摘要

Shell thinning affected by nozzle design, flux chemistry, heat transfer and steel flow was simulated through a mathematical model. Two nozzles were studied, the first, S60 with outer and inner diameters of 60 mm and 36 mm and the second, S73, with outer and inner diameters of 73 mm and 36 mm, respectively. Casting conditions include a casting speed of 1.3 m/min, use of a basic flux and a superheat of 36 K. Simulations included hypothetical isothermal casting conditions compared with casting conditions under thermal gradients. Simulation results indicated that the buoyancy forces, generated by thermal fields, exert a braking effect on the discharging jet whose magnitude was approximately 1/4 of the inertial forces. Shell growth along the curved mould walls suffers considerably thinning effects through the transport of sensible heat by convective mechanisms. Both nozzles induce shell thinning although, predictions of this mathematical model, using nozzle S73, indicate severe shell thinning effects in a region located in the inner radius side, down the second half of the mould length. This final shell thickness is very small making possible the existence of a strand breakout. Steel solidification along the flat mould walls leads to thick and uniform shells using either of these nozzles. The present numerical results indicate that in the field of flux design steel chemistry must be taken into account together with nozzle design.
机译:通过数学模型模拟了受喷嘴设计,助焊剂化学作用,传热和钢流影响的壳体变薄。研究了两个喷嘴,第一个喷嘴S60的外径和内径分别为60毫米和36毫米,第二个喷嘴S73的外径和内径分别为73毫米和36毫米。铸造条件包括1.3 m / min的铸造速度,使用基本通量和36 K的过热度。模拟包括假设的等温铸造条件与热梯度下的铸造条件。仿真结果表明,由热场产生的浮力对放电射流产生制动作用,其大小约为惯性力的1/4。壳沿弯曲模具壁的生长由于对流机制的显热传递而显着变薄。尽管使用喷嘴S73对该数学模型进行了预测,但两个喷嘴都导致壳变薄,但是在模内长度的后半部分,位于内径侧的区域中,严重的壳变薄效果非常明显。该最终的壳厚度非常小,使得可能存在股线断裂。使用这些喷嘴中的任何一个,沿着扁平模具壁进行的钢固化都会导致厚而均匀的壳体。目前的数值结果表明,在助熔剂设计领域中,必须与喷嘴设计一起考虑钢的化学性质。

著录项

  • 来源
    《ISIJ international》 |2010年第6期|P.830-838|共9页
  • 作者单位

    Graduate Students, Department of Metallurgy and Materials Engineering, National Polytechnic Institute-ESIQIE, Apdo. Postal 75-874, Mexico;

    Department of Metallurgy and Materials Engineering, National Polytechnic Institute-ESIQIE, Apdo, Postal 75-874, Mexico;

    rnGraduate Students, Department of Metallurgy and Materials Engineering, National Polytechnic Institute-ESIQIE, Apdo. Postal 75-874, Mexico;

    rnGraduate Students, Department of Metallurgy and Materials Engineering, National Polytechnic Institute-ESIQIE, Apdo. Postal 75-874, Mexico;

    rnGraduate Students, Department of Metallurgy and Materials Engineering, National Polytechnic Institute-ESIQIE, Apdo. Postal 75-874, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    billet; flux infiltration; shell growth; shell thinning; fluid flow; heat transfer;

    机译:钢坯通量渗透壳生长;壳变薄流体流量传播热量;
  • 入库时间 2022-08-18 00:03:39

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