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鈦合金絕熱剪切帶寬度的演變規(guī)律研究
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遼寧省博士啟動基金(20081102)


Study on Evolution of Adiabatic Shear Band Width of Titanium Alloy
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    摘要:

    根據(jù)梯度增強(qiáng)的Johnson-Cook模型,對Ti-6Al-4V絕熱剪切帶中心區(qū)域的寬度(絕熱剪切帶寬度w5%)隨平均塑性剪切應(yīng)變的演變規(guī)律進(jìn)行了預(yù)測。結(jié)果表明,隨著平均塑性剪切應(yīng)變的增加,w5%先是快速減小,然后趨于穩(wěn)定。當(dāng)絕熱剪切帶總寬度為0.3235 mm時,w5%的穩(wěn)定值接近Ti-6Al-4V絕熱剪切帶寬度的上限(55 μm);當(dāng)絕熱剪切帶總寬度為0.0705 mm時,w5%的穩(wěn)定值接近Ti-6Al-4V絕熱剪切帶寬度的下限(12 μm)。絕熱剪切帶寬度受多種因素影響,例如,材料特性、加載速度、環(huán)境溫度、應(yīng)力及應(yīng)變狀態(tài)。本文的分析是在絕熱條件下進(jìn)行的,不存在塑性功率與熱傳導(dǎo)達(dá)到平衡(穩(wěn)態(tài))的假定

    Abstract:

    According to the gradient-enhanced Johnson-Cook model to investigate the evolution of the ASB width (w5%) with the average plastic shear strain for Ti-6Al-4V alloy. Results show that w5% decreases rapidly and then approaches a constant with the increasing of average plastic shear strain. When the total width of the ASB is 0.3235 mm, the critical value of w5% approaches the upper bound (55 μm) measured for Ti-6Al-4V, while when the total width of the ASB is 0.0705 mm, the critical value of w5% approaches the lower bound (12 μm). It is found that the ASB width is influenced by many factors such as material properties, loading rate, ambient temperature, stress and strain states. In the paper, the key assumption of the balance of heat diffusion and plastic work is not adopted and the present analysis is in adiabatic condition

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王學(xué)濱.鈦合金絕熱剪切帶寬度的演變規(guī)律研究[J].稀有金屬材料與工程,2010,39(4):593~597.[Wang Xuebin. Study on Evolution of Adiabatic Shear Band Width of Titanium Alloy[J]. Rare Metal Materials and Engineering,2010,39(4):593~597.]
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  • 收稿日期:2009-04-27
  • 最后修改日期:2010-01-05
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