期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
铝板材轧制过程中张力的实时控制
1
作者 党云云 《山西冶金》 CAS 2000年第4期37-39,共3页
介绍了冷轧机大型自动化生产过程中,对铝带的张力进行实时计算和控制,使之保持恒定。这种控制方式能够改善系统的动态性能,减少厚度公差,对提高产品质量具有重要意义。同时,它对类似的轧机系统具有较高的参考价值。
关键词 动态补偿 前滑量 压下量 铝板材轧制 冷轧机 张力控制 实时控制
下载PDF
镁/铝板材同速异径蛇形轧制复合弯曲曲率研究
2
作者 江连运 梁佳乐 +3 位作者 陈亚飞 杨若雯 杨树国 马琦琦 《塑性工程学报》 CAS CSCD 北大核心 2023年第8期115-121,共7页
针对镁/铝板材轧制复合过程中金属流动性差异大,轧后容易出现弯曲的问题,提出了同速异径蛇形轧制复合工艺,可以降低轧后弯曲曲率。采用ANSYS/LS-DYNA有限元软件模拟了AZ31B/5052的轧制复合过程,分析了蛇形轧制复合过程中轧制温度、辊径... 针对镁/铝板材轧制复合过程中金属流动性差异大,轧后容易出现弯曲的问题,提出了同速异径蛇形轧制复合工艺,可以降低轧后弯曲曲率。采用ANSYS/LS-DYNA有限元软件模拟了AZ31B/5052的轧制复合过程,分析了蛇形轧制复合过程中轧制温度、辊径比、压下量、错位量、层厚比及初始总板厚等参量与弯曲曲率的关系,并通过实验对模拟结果进行了验证。结果表明,相比于异步轧制,蛇形轧制能够降低复合板的弯曲曲率;相同轧制条件下,异步轧制弯曲曲率在一定范围内随层厚比的增大而减小,在1.01~1.20辊径比范围内,弯曲曲率随辊径比的增大而增大;在一定范围内,复合板的弯曲曲率随错位量的增大而减小,蛇形轧制有效抑制了轧后弯曲;当总板厚为8 mm、层厚比为0.25、压下量为3.6 mm、轧制温度为400℃、辊径比为1.01以及错位量为15 mm时进行轧制复合所得复合板接近平直。 展开更多
关键词 镁/铝板材轧制复合 蛇形轧制 弯曲曲率 有限元
下载PDF
Microstructure characteristics of Ti-43Al alloy during twin-roll strip casting and heat treatment 被引量:5
3
作者 Mang XU Guo-huai LIU +2 位作者 Tian-rui LI Bing-xing WANG Zhao-dong WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第5期1017-1025,共9页
To shorten the fabrication process of difficult-to-form TiAl sheets, twin-roll strip casting and microstructural control were investigated in Ti-43Al alloy. A crack-free sheet with dimensions of 1000 mm × 110 mm ... To shorten the fabrication process of difficult-to-form TiAl sheets, twin-roll strip casting and microstructural control were investigated in Ti-43Al alloy. A crack-free sheet with dimensions of 1000 mm × 110 mm × 2 mm was obtained. The microstructure of stip casting sheets and heat treatments was systematically studied. The macrostructure consisted of columnar crystals extending inward and centrally located equiaxed crystals with severe Al segregation were observed along the thickness direction, due to the symmetrical solidification process and decreasing cooling rates. The strip casting alloy was characterized by fine duplex microstructure with a grain spacing of 20-30 μm and a lamellar spacing of 10-20 nm. Furthermore, multiple microstructures of near gamma, nearly lamellar and fully lamellar were obtained through heat treatment process with significantly improved homogeneity of the microstructure. 展开更多
关键词 strip casting TiAl alloy sheet fabrication microstructure characterization heat treatment
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部