原始 发表于 2025-3-25 03:57:40

The development of nanotechnologyution and shell solidification in continuous casting mold are investigated. The turbulent flow in the mold is enhanced due to the fast moving of strip and the fluid nearby is cooled down which redistributes the melt superheat inside slab.

Myosin 发表于 2025-3-25 07:50:52

Nanotechnology and product designs in the solidifying ingot. It addresses the influence of various process parameters and mold design aspects on solidification behavior, such as: mold system, pouring rate, superheat, hence, resulted cooling rates, thermal gradients and chemical composition variations. The numerical and experimental results were compared and discussed.

透明 发表于 2025-3-25 12:49:45

The development of nanotechnologyhe argon gas flow in a Renishaw AM250 machine validated using hotwire anemometry testing. This model is then coupled with a spatter expulsion discrete phase model supported by high speed imaging analysis and a tertiary phase model for a representative expulsion of particulate condensates is developed.

gait-cycle 发表于 2025-3-25 16:43:13

Nanotechnology and product design the welds. Third, the CFD-based predictions on the temperature and the material flow are validated by experimental measurements. Finally, the current concepts and approaches in the simulation of FSW could be applied in CFD-based studies on other similar thermal-mechanical processes.

orient 发表于 2025-3-25 23:32:58

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Arrhythmia 发表于 2025-3-26 00:13:15

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政府 发表于 2025-3-26 07:38:24

Effect of Hook Formation During Initial Solidification on Distribution of Subsurface Inclusions in Ud steel. Most of the inclusions were captured near the meniscus which might lead to the highest inclusion amount near the surface of slab. Additionally, the number of inclusions captured by hooks would be reduced with increasing the casting speed.

小淡水鱼 发表于 2025-3-26 09:17:26

Numerical Investigation on the Effect of Steel Strip Feeding on Solidification in Continuous Castingution and shell solidification in continuous casting mold are investigated. The turbulent flow in the mold is enhanced due to the fast moving of strip and the fluid nearby is cooled down which redistributes the melt superheat inside slab.

Mere仅仅 发表于 2025-3-26 13:22:25

Numerical Modeling and Experimental Verification of Macrosegregation and CET Predictions in Large Sts in the solidifying ingot. It addresses the influence of various process parameters and mold design aspects on solidification behavior, such as: mold system, pouring rate, superheat, hence, resulted cooling rates, thermal gradients and chemical composition variations. The numerical and experimental results were compared and discussed.

有节制 发表于 2025-3-26 19:29:17

A Multiphase CFD Model for the Prediction of Particulate Accumulation in a Laser Powder Bed Fusion Phe argon gas flow in a Renishaw AM250 machine validated using hotwire anemometry testing. This model is then coupled with a spatter expulsion discrete phase model supported by high speed imaging analysis and a tertiary phase model for a representative expulsion of particulate condensates is developed.
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查看完整版本: Titlebook: CFD Modeling and Simulation in Materials Processing 2018; Laurentiu Nastac,Koulis Pericleous,Brian G. Thomas Conference proceedings 2018 T