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The main factor influencing the tensile properties of surface nano-crystallized graded materials

机译:影响表面纳米结晶梯度材料拉伸性能的主要因素

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The improved mechanical properties of surface nano-crystallized graded materials produced by surface severe plastic deformation (S~2PD) are generally owing to the effects of the refined structure, work-hardened region and compressive residual stress. However, during the S~2PD process, residual stress is produced simultaneously with work-hardened region, the individual contribution of these two factors to the improved mechanical properties remains unclear. Numerical simulations are carried out in order to answer this question. It is found that work hardening predominates in improving the yield strength and the ultimate tensile strength of the surface nano-crystallized graded materials, while the influence of the residual stress mainly emerges at the initial stage of deformation and decreases the apparent elastic modulus of the surface nano-crystallized graded materials, which agrees well with the experimental results.
机译:通过表面严重塑性变形(S〜2PD)产生的表面纳米结晶梯度材料的机械性能的改善通常归因于精细结构,加工硬化区域和压缩残余应力的影响。然而,在S〜2PD过程中,残余应力与加工硬化区同时产生,尚不清楚这两个因素对改善机械性能的贡献。为了回答这个问题,进行了数值模拟。发现在提高表面纳米结晶梯度材料的屈服强度和极限抗拉强度方面,工作硬化起主要作用,而残余应力的影响主要出现在变形的初始阶段,并降低了表面的表观弹性模量。纳米结晶梯度材料,与实验结果吻合良好。

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