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Research on the Tendency of Inner Crack during 3-Roll Skew Rolling Process of Round Billets

机译:圆坯三辊歪斜轧制过程中内部裂纹倾向的研究

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Concerning the 3-roll skew rolling process of round billets, a 3-D thermo-mechanical coupled simulation is performed with the aid of commercial FE code MSC.SuperForm. The influence of the feed angle and inlet cone angle of the roll on the strain and damage filed are investigated. It is found that the distribution pattern of the equivalent plastic strain in the longitudinal section of the billet presents U-shape, and that the feed angle and inlet cone angle of the roll make difference in the gradient of deformation intensity in radial direction of round billet. The ring-shaped distribution of the damage field in transverse cross section of the billet indicates a high tendency for the ring-shaped inner crack to occur, instead of the center crack appearing in 2-roll skew rolling of round billet. The results show that the critical parameters to control the ring-shaped crack during the 3-roll skew rolling process are the feed angle and inlet surface cone angle of the roll. It should be avoided to use too large feed angles so as to reduce the tendency of annular inner crack in the actual rolling of high-alloy steels with poor hot workability.
机译:关于圆坯的3辊歪斜轧制工艺,借助商业有限元代码MSC.SuperForm进行3D热力耦合模拟。研究了辊的进给角和入口锥角对应变和损伤的影响。结果表明,当量塑性应变在钢坯纵断面上呈U形分布,辊的进给角和进口锥角使圆坯径向变形强度的梯度不同。 。坯料的横截面中的损伤场的环状分布表明,在圆坯的两辊歪斜轧制中,环状的内部裂纹发生的可能性较高,而不是出现中心裂纹。结果表明,控制三辊斜轧过程中环形裂纹的关键参数是辊的进料角和入口表面锥角。应避免使用太大的进给角,以减少热加工性差的高合金钢在实际轧制中出现环形内部裂纹的趋势。

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