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首页> 外文期刊>Journal of Materials Science >Ultra-high local plasticity in high-strength nanocomposites
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Ultra-high local plasticity in high-strength nanocomposites

机译:高强度纳米复合材料中的超高局部可塑性

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We subjected an aged Cu-24wt%Ag ingot to cold drawing to create a high-strength nanostructured composite wire with both Cu-rich proeutectic and Ag-rich eutectic components. During the drawing, a fine lamellar structure (average spacing 20 +/- 6 nm) developed in the proeutectic component, which contained a high density of Ag fibers (average width below 5 nm) embedded in the matrix. In the eutectic component, a relatively coarse structure developed, with an average Ag grain size around 100 nm. The result of such a bimodal size of Ag fibers was ultra-high bending plasticity, i.e., the drawn wire tolerated 59% bending strain at the outermost edge, 15 times its tensile elongation (3.6%). During our bending test, dynamic recovery and partial recrystallization occurred more near the inner edge than near the outer edge and primarily in the eutectic component. High bending strain caused some of the thicker Ag fibers to become discontinuous and lose their original alignment. This structural evolution increased local plasticity, resulting in an unexpectedly high achievable bending strain, which is unusual in nano-sized, Ag-fiber-reinforced high-strength composites.
机译:我们将老铜24wt%Ag锭料理为冷绘图,以产生具有富含Cu的富共晶和富含Ag的共晶组分的高强度纳米结构复合丝。在图中,在基质中含有嵌入在基质中的高密度胶质组分中产生的细层状结构(平均间隔20 +/-6nm)含有高密度的Ag纤维(平均宽度低于5nm)。在共晶组分中,显影的相对粗糙的结构,平均Ag晶粒大约100nm。这种双峰尺寸的Ag纤维的结果是超高的弯曲塑性,即绘制的导线在最外边缘处具有59%的弯曲菌株,其拉伸伸长率15倍(3.6%)。在我们的弯曲试验期间,动态回收和部分重结晶在内边缘靠近外边缘靠近外边缘并且主要是在共晶组分中。高弯曲菌株引起一些较厚的Ag纤维变得不连续并失去原始对准。这种结构演变提高了局部可塑性,导致纳米型Ag-纤维增强的高强度复合材料中具有出乎意料的高可实现的弯曲菌株。

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