论文标题
温度对裂缝动力学和弹性特性的影响
Temperature Effects on the Fracture Dynamics and Elastic Properties of Popgraphene Membranes
论文作者
论文摘要
Popgraphene(POPG)是一种新的2D平面碳同质量,由$ 5-8-5 $碳环组成。 POPG本质上是金属的,具有出色的热和机械稳定性。在这项工作中,我们报告了使用完全原子反应性(Reaxff)分子动力学模拟对POPG膜机械性能的热影响的详细研究。我们的结果表明,POPG根据施加拉伸的温度和方向提出了非常不同的断裂机制。主要断裂动力学趋势是独立的,并且突然破裂,然后是快速裂纹传播。这种各向异性的原因是由于y方向拉伸导致环的形状变形,导致五角大楼 - 五角大楼和五角大楼 - 五角形环连接中的键断裂,这对于X领域没有观察到。 POPG不如石墨烯膜僵硬,但年轻的模量值仅小15%。
Popgraphene (PopG) is a new 2D planar carbon allotrope which is composed of $5-8-5$ carbon rings. PopG is intrinsically metallic and possesses excellent thermal and mechanical stability. In this work, we report a detailed study of the thermal effects on the mechanical properties of PopG membranes using fully-atomistic reactive (ReaxFF) molecular dynamics simulations. Our results showed that PopG presents very distinct fracture mechanisms depending on the temperature and direction of the applied stretching. The main fracture dynamics trends are temperature independent and exhibit an abrupt rupture followed by fast crack propagation. The reason for this anisotropy is due to the fact that y-direction stretching leads to a deformation in the shape of the rings that cause the breaking of bonds in the pentagon-octagon and pentagon-pentagon ring connections, which is not observed for the x-direction. PopG is less stiff than graphene membranes, but the Young's modulus value is only 15% smaller.