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Effect of Grain Refinement and Dispersion of Particles and Reinforcements on Mechanical Properties of Metals and Metal Matrix Composites through High-Ratio Differential Speed Rolling

机译:通过高比差速轧制的晶粒细化和粒子分散对金属和金属基复合材料力学性能的影响

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摘要

A differential speed rolling (DSR) technique that provides capability of producing large-scale materials with fine grains and controlled texture in a continuous manner has attracted several researchers and industries. In this study, we tried to review the articles related to DSR and especially the high-ratio DSR (HRDSR) technique that is associated with a high speed ratio between the upper and lower rolls (≥2) and compare the change in microstructure and mechanical properties after HRDSR with the results obtained by using other severe plastic deformation (SPD) techniques to see the potential of the HRDSR technique in enhancing the mechanical properties of metals and metal matrix composites. The reviewed results show that HRDSR is an important technique that can effectively refine the grains to micro or nano sizes and uniformly disperse the particles or reinforcement throughout the matrix, which helps extensively in improving ambient and superplastic mechanical properties of various metals and alloys.
机译:一种差分轧制(DSR)技术,提供生产大型材料的能力,以较常态的方式吸引了几个研究人员和行业。在这项研究中,我们尝试审查与DSR相关的文章,特别是高比率DSR(HRDSR)技术,该技术与上辊(≥2)之间的高速比相关联,并比较微观结构和机械的变化HRDSR后的性质,通过使用其他严重的塑性变形(SPD)技术获得的结果,以便在提高金属和金属基质复合材料的机械性能方面来看能够看到HRDSR技术的电位。综述结果表明,HRDSR是一种重要的技术,可以有效地将谷物精炼到微型或纳米尺寸,并在整个基质中均匀地分散颗粒或增强,这有助于改善各种金属和合金的环境和超塑性机械性能。

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  • 作者

    Ahmad Bahmani; Woo-Jin Kim;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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