Effect of ball milling processing on mechanical properties of extruded aluminum-graphene-composites with commercial and self-synthesized graphene sources

M. Negendank
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引用次数: 0

Abstract

Abstract. In this study the effect of ball milling processing on the mechanical properties of extruded aluminum-graphene-composites was investigated. A commercial and a self-synthesized graphene source was applied respectively. It was found that rods of extruded high speed ball milled (HSBM) materials showed bad surface quality with massive cracks. The extrusion loads in indirect extrusion were 100% higher for HSBM material compared to material that was ball milled at lower rotation speed (LSBM). Investigations of mechanical properties revealed that for HSBM material TYS was increased 92% and UTS 118% compared to LSBM. Microhardness was also found to increase by up to 210% for HSBM material containing 1% graphene. However, since pure aluminum processed under same conditions also featured a drastic increase in hardness of 167%, it can be concluded that work hardening of the pure aluminum matrix seems to be the main strengthening mechanism. Furthermore, graphene agglomerates could be found locally in all extruded samples.
球磨加工对商用和自合成石墨烯源挤压铝石墨烯复合材料机械性能的影响
摘要本研究探讨了球磨加工对挤压铝石墨烯复合材料力学性能的影响。分别使用了商用石墨烯源和自合成石墨烯源。结果发现,高速球磨挤压(HSBM)材料的棒材表面质量很差,出现大量裂纹。与低转速球磨材料(LSBM)相比,HSBM 材料在间接挤压过程中的挤压负荷高出 100%。机械性能调查显示,与 LSBM 相比,HSBM 材料的 TYS 增加了 92%,UTS 增加了 118%。含有 1%石墨烯的 HSBM 材料的显微硬度也提高了 210%。然而,由于在相同条件下加工的纯铝的硬度也大幅提高了 167%,因此可以得出结论:纯铝基体的加工硬化似乎是主要的强化机制。此外,在所有挤压样品的局部都能发现石墨烯团块。
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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