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油泵齒輪軸精鍛成形工藝研究及缺陷分析

Forming process study and defect analysis of precision forging for the gear shafts of oil pumps

  • 摘要: 針對油泵齒輪軸特殊形狀設計了齒輪軸精鍛模具.通過有限元仿真和精鍛實驗研究了齒輪軸成形過程和金屬流動規律.分析了對油泵齒輪軸精鍛工藝中產生齒形角隅填充不滿缺陷的原因:角隅填充是成形終了時成形載荷陡增的主要原因之一,由于齒輪軸精鍛模具結構的特殊性,其強度無法滿足齒形角隅填充所需高成形載荷的需要.基于角隅填充狀況,提出了齒形端面斜面分流和環形槽分流,并對傳統精鍛工藝和兩種分流鍛造工藝進行了有限元仿真.分析結果表明兩種分流方法均能有效減小齒形角隅填充時金屬流動阻力,保證齒形良好填充,降低成形載荷,并且斜面分流優于環形槽分流.鍛造實驗驗證了有限元仿真的準確性.

     

    Abstract: A special die of precision forging was designed for gear shafts. Metal forming and flow in the forging process were studied by finite element method and forging trials. The cause of tooth filling defects in the precision forging was analyzed:filling of the tooth corner is one of the key influence factor of a sharp rise of forming load. The forging die cannot bear the high load of fully corner filling due to its special structure. Based on the analysis of corner filling,chamfered relief and annulus relief were proposed for the precision forging. Finite element method was used for simulating the two relief processes and the conventional precision forging of gear shafts. It is shown that the two relief processes can both reduce the resistance of metal flow into the tooth corner,ensure well filling of the tooth corner and low forming load. Moreover,chamfered relief is better than annulus relief in the precision forging. Forging trials proved the validity of finite element simulation.

     

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