关于在连续钢造过程中固体外生长的研究
Marek Velička1, René Pyszko1, Mario Machů1
1Department of Thermal Engineering, Faculty of Materials Science and Technology, VSB-Technical University of Ostrava, 17. listopadu 2172/15, 708 00 Ostrava, Czech Republic.
Materials (Basel, Switzerland)
|August 12, 2023
概括
在破裂后精确测量固化钢外厚度对于连续造至关重要. 这项研究开发了一种3D扫描方法来测量外厚度,验证了数值模型.
科学领域:
- 金工程 金工程 金工程
- 材料科学 材料科学 材料科学
背景情况:
- 连续造钢铁需要平衡生产,质量和安全,而突破会带来重大风险.
- 监测固化的外厚度对于过程控制和防止突破至关重要,但在造过程中直接测量是具有挑战性的.
- 突破提供了一个罕见的机会,可以直接测量突破后的外厚度.
研究的目的:
- 为了研究突破后在410毫米直径的圆钢块中固体外的生长和测量.
- 开发和验证用于直接测量外厚度的原始方法.
- 用现实数据验证现有的冷却和固化的数值模型.
主要方法:
- 使用3D激光扫描仪创建扫描部件的表面网状网的原始方法的开发.
- 在突破事件后直接测量固化的外厚度.
- 回归分析以确定平均外厚度作为时间的函数.
- 用实验数据验证数值冷却和凝固模型.
主要成果:
- 观察到外厚度的显著变化,在模具出口的最大值和最小值之间有高达6毫米的差异.
- 一个回归函数准确地描述了随着时间的推移平均外厚度的增长.
- 实验数据为验证数值模型的预测提供了基础.
结论:
- 开发的3D扫描方法使得可以准确地直接测量突破后固化的外厚度.
- 观察到的外厚度变化凸显了在连续造中需要精确的工艺控制.
- 该研究成功验证了数值模型,提高了预测钢增长的可靠性.
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