Wall thickness uniformity of railway hollow shafts by cross-wedge rolling
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摘要: 在空心軸楔橫軋多楔軋制中,控制壁厚均勻性是衡量車軸成形質量的重要標準.本文先分析空心軸楔橫軋多楔軋制的穩定軋制條件,得到了確定空心車軸楔橫軋壓扁失穩的準則.在此基礎上,基于DEFORM-3D軟件,建立楔橫軋多楔同步軋制高鐵空心車軸的三維剛塑性有限元模型,分析展寬角、成形角等工藝參數對壁厚均勻性的影響,獲得了工藝參數影響軋制空心車軸壁厚變化的規律.結果表明:成形角越大,壁厚均勻性越好;展寬角越大,壁厚均勻性越好,但在展寬角大于10°時,壁厚均勻性反而下降.基于多楔軋制實驗,軋制1∶5縮比的空心車軸,測量了軋制力矩和軋制空心軸的壁厚,與仿真結果作比較,相對誤差均在10%以內,驗證了所建有限元模型的正確性.Abstract: Wall thickness uniformity is an important quality criterion of railway hollow shafts by multi-wedge synchrostep cross wedge rolling. The stable rolling condition of railway hollow shafts in this rolling process is analyzed,and a flattening instability criterion is presented. Based on this result,a rigid-plastic finite element model of hollow railway shafts by multi-wedge synchrostep rolling is established with DEFORM-3D software,the influence of processing parameters such as broadening angle and forming angle on the wall thickness uniformity is discussed,and the change law of wall thickness is obtained by changing these processing parameters. The bigger the forming angle,the more uniform the wall thickness is; the bigger the spreading angle,the more uniform the wall thickness is,but when the spreading angle is more than 10°,the wall thickness uniformity will decrease. A 1:5 ratio high-speed railway hollow shaft is rolled based on multi-wedge synchrostep cross wedge rolling experiment. Rolling torque measurements and wall thickness comparisons between experimental and simulated results show that the relative error is controlled within 10%,which verifies the validity of this finite element model.
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Key words:
- high-speed railway /
- hollow shafts /
- cross-wedge rolling /
- wall thickness /
- uniformity
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