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Effect of Sheath Structure on Molybdenum Billet Forging Process
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Effect of Sheath Structure on Molybdenum Billet Forging Process
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    摘要:

    運(yùn)用DEFORM-2D軟件對鉬坯料近等溫包套鐓粗成形過程進(jìn)行了數(shù)值模擬,研究了壁厚、包套底厚對成形效果的影響。結(jié)果顯示:相同變形量下,坯料的密度分布均勻性隨包套壁厚的增大得以改善,隨包套底厚的增加逐漸變差。包套壁厚不同時(shí),隨變形量的增加,密度分布均勻性都呈現(xiàn)先變差后變好的趨勢,變形量達(dá)到80%時(shí),坯料的密度分布最均勻。包套底厚不同時(shí),當(dāng)變形量小于62%,坯料的密度分布均勻性隨變形量的增加先變差后變好,變形量大于62%,坯料密度分布隨包套底厚的增加越來越均勻。

    Abstract:

    The numerical simulation was implemented using FEM software DEFORM-2D to study the influence on deforming quality caused by sheath wall thickness and sheath bottom thickness. The results show that when the deformation degree is the same, the density distribution uniformity of the billet becomes better along with the increase of sheath wall thickness, but poor with the increase of sheath bottom thickness. Under the conditions of different sheath wall thicknesses, the billet density distribution uniformity first gets worse and then gets improved with the increase of deformation degree, and the uniformity becomes the best when the deformation degree is 80%. Under the conditions of different sheath bottom thicknesses, when the deformation degree is less than 62%, the density distribution uniformity of the billet gets worse first, and then gets improved; when the deformation degree is over 62%, it becomes better as sheath wall thickness increases.

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王 寧,李 健. Effect of Sheath Structure on Molybdenum Billet Forging Process[J].稀有金屬材料與工程,2015,44(1):24~27.[Wang Ning, Li Jian. Effect of Sheath Structure on Molybdenum Billet Forging Process[J]. Rare Metal Materials and Engineering,2015,44(1):24~27.]
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  • 收稿日期:2014-03-25
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  • 在線發(fā)布日期: 2015-05-22
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