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板带热轧中间坯厚度分布规律研究 被引量:2
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作者 彭文 万子龙 +3 位作者 孙佳楠 武文腾 孙杰 张殿华 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第4期1290-1299,共10页
在热连轧生产过程中,受测量环境和测量手段的限制,尚未实现对中间坯厚度的实时在线精确测量,对产品最终的厚度精度和精轧区穿带过程稳定性造成影响。为解决此问题,采用轧制特性法分析中间坯厚度产生偏差的原因;为进一步研究各因素对厚... 在热连轧生产过程中,受测量环境和测量手段的限制,尚未实现对中间坯厚度的实时在线精确测量,对产品最终的厚度精度和精轧区穿带过程稳定性造成影响。为解决此问题,采用轧制特性法分析中间坯厚度产生偏差的原因;为进一步研究各因素对厚度偏差影响的规律,通过影响系数法计算中间坯长度方向上温度和厚度分布,建立热力耦合有限元模型,并将有限元结果与计算结果进行比较。研究结果表明:随着轧制过程的进行,在轧制方向上,中间坯温度逐渐降低,头、尾温度的平均偏差约为22℃,头、尾最大温度偏差达到32℃;由于温度偏差导致中间坯厚度呈变大趋势,中间坯头尾厚度偏差为0.20 mm,长度方向最大厚度偏差达0.53 mm;本文得到的中间坯厚度和温度的分布能够为后续精轧过程提供前提条件,为高精度控制成品轧件的厚度以及维持穿带稳定性提供依据。 展开更多
关键词 热连轧 轧制特性分析 有限元法 厚度分布
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Finite element analysis of deformation characteristics in cold helical rolling of bearing steel-balls 被引量:2
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作者 曹强 华林 钱东升 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1175-1183,共9页
Due to the complexity of investigating deformation mechanisms in helical rolling(HR) process with traditional analytical method, it is significant to develop a 3D finite element(FE) model of HR process. The key formin... Due to the complexity of investigating deformation mechanisms in helical rolling(HR) process with traditional analytical method, it is significant to develop a 3D finite element(FE) model of HR process. The key forming conditions of cold HR of bearing steel-balls were detailedly described. Then, by taking steel-ball rolling elements of the B7008 C angular contact ball bearing as an example, a completed 3D elastic-plastic FE model of cold HR forming process was established under SIMUFACT software environment. Furthermore, the deformation characteristics in HR process were discovered, including the forming process, evolution and distribution laws of strain, stress and damage based on Lemaitre relative damage model. The results reveal that the central loosening and cavity defects in HR process may have a combined effect of large negative hydrostatic pressure(positive mean stress)caused by multi-dimensional tensile stresses, high level transverse tensile stress, and circular-alternating shear stress in cross section. 展开更多
关键词 cold helical rolling finite element(FE) simulation rotary forming bearing steel-balls
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