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High impact resistance in graphyne

机译:石墨烯具有高抗冲击性

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Graphyne was recently facilely synthesized with superior mechanical and electrical performance. We investigate the ballistic protection properties of α-, β-, δ-, and γ-graphyne sheets using molecular dynamics simulations in conjunction with elastic theory. The velocities of the in-plane elastic wave and out-of-plane cone wave are obtained by both membrane theory and molecular dynamics simulations. The specific penetration energies are approximately 83% that of graphene, indicating high impact resistance. γ-Graphyne has high sound wave speeds comparable to those of graphene, and its Young's modulus is approximately 60% that of graphene. δ-Graphyne has the highest cone wave speed among the four structures, while α-graphyne possesses the highest penetration energy and impact resistance at most tested projectile speeds. Our results indicate that graphyne is a good protective structural material.
机译:Graphyne最近被轻松合成,具有出色的机械和电气性能。我们使用分子动力学模拟结合弹性理论来研究α-,β-,δ-和γ-石墨烯片的防弹性能。通过膜理论和分子动力学模拟获得了面内弹性波和面外锥波的速度。比穿透能约为石墨烯的比穿透能的83%,表明高抗冲击性。 γ-石墨烯具有与石墨烯相当的高声波速度,并且其杨氏模量约为石墨烯的杨氏模量的60%。 δ-石墨烯在这四个结构中具有最高的锥波速度,而α-石墨烯在大多数试验弹丸速度下具有最高的穿透能量和抗冲击性。我们的结果表明,石墨烯是一种良好的保护性结构材料。

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