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鈦合金空心風扇葉片成形三維有限元分析
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Three Dimensional FEM Simulation of Titanium Hollow Blade Forming Process
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    摘要:

    隨著高旁路渦扇發(fā)動機在軍用、民用飛機上的應用,采用超塑成形/擴散連接(SPF/DB)技術制造大尺寸鈦合金寬弦風扇葉片已經(jīng)成為渦扇發(fā)動機的一項關鍵制造技術。鈦合金空心風扇葉片的成形過程包括3個階段:扭轉成形、熱成形、超塑成形。在本研究中,為了分析空心風扇葉片的成形過程,建立了一個三維有限元模型,鈦合金的變形行為符合Backofen方程。通過三維有限元模型,分析扭轉速率、熱成形模具下落速度、超塑成形目標應變速率、板材與模具之間的摩擦系數(shù)、芯板和面板的厚度比等參數(shù)對成形力的影響規(guī)律。研究表明,隨著扭轉速度、熱成形模具的下落速度、目標應變速率、板材厚度比的提高,成形力將提高,而摩擦系數(shù)對成形力的影響很小

    Abstract:

    With the introduction of high by-pass turbofan engines into both commercial and military aircraft industries, the fabrication of large size fan blade through superplastic forming/diffusion bonding (SPF/DB) has become a pivotal technique of turbine fan engine. There are three key steps to form a hollow blade: twisting, hot forming and SPF. In this study, a three dimensional finite element method (FEM) model is established to simulate the forming process of titanium fan blade, in which the mechanical behavior of TC4 obeys Backofen’s equation. Based on the numerical modeling, the influences of key factors such as the twisting rate, descending velocity, frictional coefficient, strain rate, the sheet thickness ratio of core sheet to face sheet on the forming force were studied. The results show that with increasing of the twisting rate, descending velocity, strain rate, the sheet thickness ratio of core sheet to face sheet, the forming forces increase; however the frictional coefficient has little influence on the forming force

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趙 冰,李志強,侯紅亮,廖金華,白秉哲.鈦合金空心風扇葉片成形三維有限元分析[J].稀有金屬材料與工程,2010,39(6):963~968.[Zhao Bing, Li Zhiqiang, Hou Hongliang, Liao Jinhua, Bai Bingzhe. Three Dimensional FEM Simulation of Titanium Hollow Blade Forming Process[J]. Rare Metal Materials and Engineering,2010,39(6):963~968.]
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  • 收稿日期:2009-09-12
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