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軋輥交叉對中間坯鐮刀彎生成過程的影響

徐冬 代振洋 劉洋 楊荃 王曉晨 孫友昭 劉克東

徐冬, 代振洋, 劉洋, 楊荃, 王曉晨, 孫友昭, 劉克東. 軋輥交叉對中間坯鐮刀彎生成過程的影響[J]. 工程科學學報, 2018, 40(8): 954-960. doi: 10.13374/j.issn2095-9389.2018.08.009
引用本文: 徐冬, 代振洋, 劉洋, 楊荃, 王曉晨, 孫友昭, 劉克東. 軋輥交叉對中間坯鐮刀彎生成過程的影響[J]. 工程科學學報, 2018, 40(8): 954-960. doi: 10.13374/j.issn2095-9389.2018.08.009
XU Dong, DAI Zhen-yang, LIU Yang, YANG Quan, WANG Xiao-chen, SUN You-zhao, LIU Ke-dong. Influence of crossed roller on generating camber in hot rough rolling[J]. Chinese Journal of Engineering, 2018, 40(8): 954-960. doi: 10.13374/j.issn2095-9389.2018.08.009
Citation: XU Dong, DAI Zhen-yang, LIU Yang, YANG Quan, WANG Xiao-chen, SUN You-zhao, LIU Ke-dong. Influence of crossed roller on generating camber in hot rough rolling[J]. Chinese Journal of Engineering, 2018, 40(8): 954-960. doi: 10.13374/j.issn2095-9389.2018.08.009

軋輥交叉對中間坯鐮刀彎生成過程的影響

doi: 10.13374/j.issn2095-9389.2018.08.009
基金項目: 

國家自然科學基金資助項目(51604024);清華大學摩擦學國家重點實驗室開放基金資助項目(SKLTKF16B11);中央高校基本科研業務費專項資金資助項目(FRF-TP-17-002A2);北京市自然科學基金資助項目(3182026)

詳細信息
  • 中圖分類號: TG335.5

Influence of crossed roller on generating camber in hot rough rolling

  • 摘要: 粗軋過程中出現的軋輥兩側軸承間隙差異較大的情況,會造成軋輥交叉,導致板帶兩側軋制力失衡,進而引起或加劇中間坯的鐮刀彎缺陷,影響最終產品質量精度和后續精軋的軋制穩定性.為研究軋輥交叉對中間坯鐮刀彎生成過程的影響,建立了軋輥交叉、偏移的軋件-輥系耦合動態有限元模型,利用模型分析了不同工況條件下,軋輥交叉位置、交叉角度對中間坯楔形、彎曲量及兩側軋制力差的影響,進而總結了由軸承間隙引起的軋輥非對稱交叉對中間坯鐮刀彎彎曲量的影響規律.結果表明:鐮刀彎彎曲量與交叉角、交叉位置比分別呈線性關系,與輥系間隙比呈二次曲線關系.

     

  • [1] Kang Y, Jang Y J, Choi Y J, et al. An improved model for camber generation during rough rolling process. ISIJ Int, 2015, 55(9):1980
    [8] Hol C W J, de Roo J, Kampmeijer L, et al.Model predictive controller for strip-tracking during tail-out of the finishing mill//16th IFAC Symposium on Control, Optimization and Automation in Mining, Minerals and Metal Processing. San Diego, 2013:397
    [11] Kainz A, Pumhoessel T, Kurz M, et al. Prediction of camber formation, suppression and control of wedge-shaped hot rolled slabs by analytical concepts and finite elements. IFAC-PapersOnLine, 2016, 49(20):238
    [12] Schausberger F, Steinboeck A, Kugi A. Optimization-based reduction of contour errors of heavy plates in hot rolling. J Process Control, 2016, 47:150
    [13] Schausberger F, Steinboeck A, Kugi A. Mathematical modeling of the contour evolution of heavy plates in hot rolling. Appl Math Modell, 2015, 39(15):4534
    [18] Toshikazu S, Haruhiro I, Atsuo M, et al. Relation between camber and wedge in flat rolling under restrictions of lateral movement. ISIJ Int, 1991, 31(6):583
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出版歷程
  • 收稿日期:  2017-12-01

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