首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials Pt.3; Jul 7-11, 2003; Leganes, Madrid, Spain >Developing Ultrafine-Grained Microstructures through the Use of Severe Plastic Deformation
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Developing Ultrafine-Grained Microstructures through the Use of Severe Plastic Deformation

机译:通过使用严重的塑性变形开发超细晶粒的微观结构

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Thermo-mechanical processing is often used to achieve grain refinement in bulk solids but the grains produced in this way generally have sizes no smaller than within the micrometer range. Additional refining, to the submicrometer or even the nanometer range, may be achieved in bulk solids through the application of severe plastic deformation (SPD). Procedures available for applying SPD include Equal-Channel Angular Pressing (ECAP) where a sample is pressed through a special die constrained within a channel which is bent through an abrupt angle and High-Pressure Torsion (HPT) where a sample is subjected to a very high pressure together with torsional straining. Both of these procedures are effective in introducing a high density of dislocations and these dislocations subsequently re-arrange to give an array of grain boundaries having reasonably high angles of misorientation. This paper examines these two SPD processes and compares the results when both processes are applied to the same materials.
机译:通常使用热机械加工来实现散装固体中晶粒的细化,但是以这种方式生产的晶粒的尺寸通常不小于微米范围内的尺寸。通过施加严重的塑性变形(SPD),可以在散装固体中实现亚微米或什至纳米范围的额外细化。适用于采用SPD的程序包括等通道角挤压(ECAP),其中样品通过一个特殊的模具被挤压,该模具被限制在弯曲成陡峭角度的通道内;高压扭曲(HPT),样品受到非常大的压力。高压加上扭转应变。这两种方法均有效地引入了高密度的位错,并且随后这些位错被重新排列以给出具有相当大的取向不良角的晶界阵列。本文研究了这两种SPD工艺,并比较了两种工艺应用于相同材料时的结果。

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