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Ti-6Al-4V剪切带内部的应变、温度分布及演变研究
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TG146.23

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辽宁省教育厅A类项目(2004F052)


Distribution and Evolution of Strain and Temperature in Adiabatic Shear Band for Ti-6Al-4V
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    摘要:

    采用梯度塑性理论,考虑了峰值剪切应力之后的材料承载能力缓慢降低的过程及承载能力快速降低的过程,推导了剪切带内部的剪切变形、应变及温度分布的公式。计算了Ti-6Al-4V剪切带内部塑性剪切应变,温度的分布及演变。在剪切带内部,塑性剪切应变及温度分布是高度不均匀的,这种不均匀性随着施加的塑性剪切应变的增加而增加。随着流动剪切应力的降低,剪切带内部的最大塑性剪切应变线性增加,最高温度非线性增加。由于微结构效应,基于梯度塑性理论的剪切带内部的最大塑性剪切应变及最高温度的预测值高于经典理论的预测值。将Ti-6Al-4V剪切带内部的剪切变形及应变的理论结果与根据前人高速摄影实验图片的计算结果进行了对比,理论与实验结果的趋势非常吻合,在数值上,剪切带内部的最大剪切应变的理论值仍低于实测值。

    Abstract:

    Based on gradient-dependent plasticity where an internal length parameter is included to consider the microstructural effect, the distributions of shear deformation, shear strain and temperature in adiabatic shear band were derived considering the slow and sharp decrease of load-carrying capacity beyond the peak shear stress. For Ti-6Al-4V, the distributions and evolutions of shear deformation, shear strain and temperature in shear band were calculated. In the band, the local plastic shear strain and temperature are highly nonuniform due to interactions and interplay among microstructures. The nonuniformity increases with the increase of imposed plastic shear strain. As flow shear stress decreases, the maximum plastic shear strain in the band linearly increases and the maximum temperature nonlineady increases. The prediction values of shear strain and temperature in shear band based on gradient-dependent plasticity are higher than those by use of classical elastoplastic theory. The present theoretical results on shear deformation and strain in shear band for Ti-6Al-4V are compared with the calculations according to previous high-speed photographs and the same tendencies are found. However, the theoretical prediction value of the maximum shear strain in the band is still lower than experimental measurement value.

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王学滨. Ti-6Al-4V剪切带内部的应变、温度分布及演变研究[J].稀有金属材料与工程,2006,35(12):1854~1858.[Wang Xuebin. Distribution and Evolution of Strain and Temperature in Adiabatic Shear Band for Ti-6Al-4V[J]. Rare Metal Materials and Engineering,2006,35(12):1854~1858.]
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  • 收稿日期:2005-10-30
  • 最后修改日期:2005-10-30
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