Effect of Tio 2 particles on the mechanical, bonding properties and microstructural evolution of AA1060/Tio 2 composites fabricated by WARB

IF 1.9 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
M. H. Vini, S. Daneshmand
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引用次数: 3

Abstract

Reinforced aluminum alloy base composites have become increasingly popular for engineering applications, since they usually possess several desirable properties. Recently, Warm Accumulative Roll Bonding (WARB) process has been used as a new novel process to fabricate particle reinforced metal matrix composites. In the present study, Tio2 particles are used as reinforcement in aluminum metal matrix composites fabricated through warm accumulative roll bonding process. Firstly, the raw aluminum alloy 1060 strips with Tio2 as reinforcement particle were roll bonded to four accumulative rolling cycles by preheating for 5 min at 300°C before each cycle. The mechanical and bonding properties of composites have been studied versus different volume contents of Tio2 particles by tensile test, peeling test and vickers micro-hardness test. Moreover, the fracture surface and peeling surface of samples after the tensile test and peeling test have been studied versus different amount of Tio2 volume contents by scanning electron microscopy. The results indicated that the strength and the average vickers micro-hardness of composites improved by increasing the volume content of Tio2 particles and the amount of their elongation and bonding strength decreased significantly.
tio2颗粒对wab法制备AA1060/ tio2复合材料力学性能、键合性能及微观组织演变的影响
增强铝合金基复合材料在工程应用中越来越受欢迎,因为它们通常具有几种理想的性能。近年来,温累积滚焊(WARB)工艺被用作制备颗粒增强金属基复合材料的一种新工艺。在本研究中,Tio2颗粒被用作铝金属基复合材料的补强材料,该复合材料是通过温累积滚焊工艺制备的。首先,将以Tio2为增强颗粒的原铝合金1060带材在每个循环前在300°C下预热5分钟,进行四个累积轧制循环的辊结合。通过拉伸试验、剥离试验和维氏显微硬度试验,研究了不同体积Tio2颗粒含量对复合材料力学性能和结合性能的影响。此外,通过扫描电子显微镜研究了样品在拉伸试验和剥离试验后的断裂表面和剥离表面与不同Tio2体积含量的关系。结果表明,随着Tio2颗粒体积含量的增加,复合材料的强度和平均维氏显微硬度有所提高,伸长率和结合强度显著降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Materials Research-An International Journal
Advances in Materials Research-An International Journal MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
27.30%
发文量
0
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