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Microstructures and Mechanical Properties of Nano-Structured Aluminum Fabricated by Accumulative Roll-Bonding Using Different Rolling Methods

机译:累积轧制结合不同轧制方法制备的纳米结构铝的组织和力学性能

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Nano-structured aluminum was fabricated by accumulative roll-bonding (ARB) process using different rolling methods. One is the ARB using conventional rolling (CR) in which the speed of two rolls (3.0m/min) was equal to each other. The other is the ARB using differential speed rolling (DSR) in which the speed of two rolls is different to each other. The roll peripheral speed of one roll was 2.0m/min and that of another roll was 3.6m/min. The roll speed ratio was kept at 1.8. The ARB was conducted up to 6 cycles at ambient temperature without lubrication. In both cases, the ultrafine grains were developed in the samples. The grains formed by the DSR-ARB were more equiaxed and finer than those produced by the CR-ARB. Tensile strength of the DSR-ARB processed sample was superior to that of the CR-ARB processed one. The elongation was not affected significantly by the number of ARB cycles in both cases. Texture analysis demonstrated that the shear strain, in the case of DSR-ARB, was introduced into the center of thickness. It was concluded that the DSR-ARB process was more effective for grain refinement and strengthening than the CR-ARB process.
机译:使用不同的轧制方法,通过累积轧制(ARB)工艺制造了纳米结构的铝。一种是使用常规轧制(CR)的ARB,其中两个轧辊的速度(3.0m / min)彼此相等。另一个是使用差速轧制(DSR)的ARB,其中两个轧辊的速度互不相同。一个辊的辊圆周速度为2.0m / min,另一辊的辊圆周速度为3.6m / min。辊速比保持在1.8。 ARB在不润滑的情况下于环境温度下进行了多达6个循环。在这两种情况下,样品中都会形成超细晶粒。由DSR-ARB形成的晶粒比由CR-ARB产生的晶粒更均等且更细。 DSR-ARB处理过的样品的拉伸强度优于CR-ARB处理过的样品。在两种情况下,伸长率均不受ARB循环数的显着影响。纹理分析表明,在DSR-ARB的情况下,剪切应变被引入了厚度中心。结论是,DSR-ARB工艺比CR-ARB工艺更有效地细化和强化了晶粒。

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