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Atomistic study of the strengthening mechanisms of graphene coated aluminum

机译:石墨烯涂铝强化机制的原子研究

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We have investigated the nano-indentation responses of graphene/aluminum systems via computational nano-indentation processes by using molecular dynamics simulations. The effects of system temperature, grain-orientation and bilayer graphene are also investigated. We demonstrate that, the graphene coating enlarges the load-carrying area by about 5.36 times and changes the deformation behaviors of aluminum substrate during nano-indentation processes. The load bearing capacity of graphene/Al system is significantly improved by about 4.7 times compared with that of bare Al system. It is revealed that higher system temperature weakens the ultimate indentation depth and corresponding load. The grain orientation of aluminum substrate hardly affect the indentation mechanical properties of graphene/Al system. The strengthening effect of bilayer graphene is about 1.5 times that of monolayer graphene.
机译:通过使用分子动力学模拟,我们研究了石墨烯/铝系统的纳米压痕反应。 还研究了系统温度,晶粒定向和双层石墨烯的影响。 我们证明,石墨烯涂层将承载面积扩大约5.36倍,并在纳米压痕过程中改变铝基衬底的变形行为。 与裸铝系统相比,石墨烯/ Al系统的承载能力明显提高了约4.7倍。 据透露,较高的系统温度削弱了最终压痕深度和相应的负载。 铝基衬底的晶粒取向几乎不会影响石墨烯/ Al系统的凹槽机械性能。 双层石墨烯的强化效果约为单层石墨烯的1.5倍。

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