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国家自然科学基金(51204059)

作品数:5 被引量:25H指数:3
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Mechanism and Improvement of Straight Edge Seam Defect on Hot-rolled Plate Surfaces through Use of Chamfered Slabs被引量:3
2016年
To improve the straight edge seam defect on hot-rolled steel plates,the deformation and temperature distribution of rectangular slabs and chamfered slabs during rolling in a pilot rolling experiment were analyzed in detail using the finite element method.The results showed that the crease formed on the lateral side near the edge of the plate as a result of uneven stress during broadside rolling.The creases rose to the surface with unrestricted spread and evolved into a straight edge seam during the subsequent straight rolling.To eliminate the straight edge seam defect,chamfered slabs were developed and investigated for rolling.The use of the chamfered slabs provided two advantages for rolling:the distribution of the temperature near the edge was ameliorated,and the deformation shape was improved by the chamfered shape.As a result,the risk of forming a straight edge seam defect was reduced by the use of a chamfered slab.
Hui ZHANGPeng HUMing-lin WANG
关键词:焊缝缺陷热轧钢板
Technology Development for Controlling Slab Transverse Corner Crack of Typical Micro-alloyed Steels被引量:1
2015年
A mathematical model for simulating the fluid flow,heat transfer and solidification in the conventional mold and the chamfer mold,together with a finite element stress-strain model in the straightening process of both molds,were established for the typical niobium,vanadium,and titanium micro-alloyed steels.On the basis of both numerical analysis,the mold copper plate with an optimum chamfered shape was designed and applied in industrial tests.The predicted results from numerical simulation of fluid flow,heat transfer and solidification in the conventional mold and the chamfer mold show that the increased chamfered angle leads to an approximately linear increase of the slab surface temperature,but it also causes strong flow near the slab corner.Very small chamfered length can lead to a significant increase of the temperature near the slab corner.However,with further increasing the chamfered length,the temperature of the slab corner increased slightly.The calculated results from the finite element analysis of stress-strain during the straightening process show that at the same slope width,the tangential strain on the slab edges and corners is minimum when the chamfered angle is 30°and 45°,which is only 40% to 46% of rectangular slabs with the same cross-section area.At the same chamfered angle of 30°,when the chamfered length is controlled between 65-85 mm,the tangential strain on the part of the slab edges and corners is relatively smaller.Industrial test results show that the slab corner temperature at straightening segment increases about 100 ℃ by using chamfer mold compared to the conventional molds.The slab transverse corner cracks have been reduced more than 95% in comparison with those in the conventional mold.
Hui ZHANGChun-zheng YANGMing-lin WANGHong-biao TAOHe-ping LIUXue-bing WANG
关键词:角部横裂纹微合金钢板坯铸坯表面温度
连铸矫直区不同角部形状板坯表面温度的数值模拟被引量:1
2017年
倒角结晶器是避免连铸坯角部横裂纹的产生、改善角部质量的新技术。通过ANSYS数值模拟,计算了不同角部形状的板坯在连铸矫直区的温度分布情况,分析了倒角角度、倒角面长度对板坯角部温度及其热塑性的影响。结果表明,倒角铸坯在提高角部温度和温度均匀性方面效果明显,铸坯角部热塑性随着温度的升高而改善。具有较高角部温度的倒角铸坯基本避开了钢的脆性区间,从而防止了角部横裂纹的产生。倒角结晶器技术在工业化生产应用中取得了良好效果。
孟德弟王明林张慧袁守谦
关键词:角横裂数值模拟
倒角结晶器的倾角优化设计被引量:6
2015年
针对钢铁研究总院开发的三孔一槽倒角结晶器,采用数值模拟的方法,计算了不同类型倒角结晶器铜板温度场的分布,比较分析了倒角角度对倒角结晶器铜板温度场、倒角面冷却强度及倒角结晶器寿命的影响。结果表明,随倒角角度的增大,倒角面的最高温度也随之增大,并且两者基本呈线性关系,倒角角度由22°增大到45°时,倒角面的最高温度由280℃升高到342℃,升高了62℃,倒角角度每增大1°,倒角面的最高温度约升高2.7℃;研究表明,倒角结晶器的寿命随倒角角度的增大而降低;倒角角度一般取20°~40°为宜;开发大倒角结晶器时,倒角角度不能超过45°;实践证明上述理论与实际情况相符。
任飞飞张慧王明林
关键词:数值仿真
倒角结晶器在涟钢板坯连铸生产中的应用被引量:18
2013年
为了消除微合金化钢连铸板坯的角部裂纹缺陷,使得板坯在不进行离线切角的条件下满足轧制要求,采用倒角结晶器技术进行了大量的工业试验,分析并解决了倒角型板坯存在的角纵裂及结疤问题,实现了该技术的规模化连续生产。工业应用结果表明,倒角结晶器技术不仅能够控制板坯的角横裂缺陷,而且能够大幅度降低超低碳钢热轧板卷边直裂的发生率,因此可为钢铁企业带来巨大的经济效益。
曹建新陶红标张慧周明伟张亮洲彭明耀
关键词:角横裂微合金化钢
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