首页> 外文会议>International Conference on Porous Metals and Metal Foaming Technology >Fabrication of Lotus--type Porous Carbon--steel by Continuous Casting Technique in Nitrogen Atmosphere
【24h】

Fabrication of Lotus--type Porous Carbon--steel by Continuous Casting Technique in Nitrogen Atmosphere

机译:氮气氛中连续铸造技术制造莲式多孔碳钢

获取原文

摘要

Lotus-type porous carbon steel (AISI1018) with long cylindrical pores aligned in one direction was fabricated by continuous casting technique at various transference velocities in pressurized nitrogen atmosphere. The molten carbon steel dissolving nitrogen in a crucible was solidified continuously through a cooled mold as being pulled down at a given velocity. Intermittent transference was applied in order to prevent the blockage of melt during solidification in the mold. Long lotus-type porous rod can be fabricated by this technique.The size and the morphology of pores were significantly affected by the transference velocity, which changes the cooling condition during solidification. At a low transference velocity the solid-liquid interface was kept perpendicular to the transference direction, which is necessary for formation of pores aligned in one direction. With increase of the transference velocity, the pores became coarse and irregular in the center part of the porous carbon steel. At a high velocity the solid-liquid interface was deep concave and the pores grew in the radial direction toward the center. Collision and merging of the pores at the center part caused the coarsening. This is typical for metals with low heat conductivity such as carbon steel at a high velocity, because the center part is cooled down much slower than the surface.
机译:莲花型多孔碳钢(AISI1018)具有在一个方向上排列的长圆柱形孔,在加压氮气氛中的各种转移速度下通过连续铸造技术制造。将坩埚中的熔融碳钢溶解溶解碳溶解通过冷却的模具连续凝固,因为在给定的速度下被拉下来。应用间歇转移以防止在模具中的凝固过程中堵塞熔体。长莲型多孔杆可以通过该技术制造。孔的尺寸和形态受转移速度的显着影响,其在凝固过程中改变了冷却状态。在低转移速度下,固体液体界面保持垂直于转移方向,这对于在一个方向上形成孔是必要的。随着转移速度的增加,孔隙在多孔碳钢的中心部分中变得粗糙和不规则。在高速速度下,固液界面深凹,孔沿径向朝向中心增长。碰撞和孔隙在中心部分的合并导致粗化。这对于具有低速度的低导热率的金属的金属是典型的,因为中心部分冷却比表面慢得多。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号