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Fracture patterns and the energy release rate of phosphorene

机译:断裂模式和能量释放率phosphorene

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摘要

Phosphorene, also known as monolayer black phosphorus, has been enjoying popularity in electronic devices due to its superior electrical properties. However, it's relatively low Young's modulus, low fracture strength and susceptibility to structural failure have limited its application in mechanical devices. Therefore, in order to design more mechanically reliable devices that utilize phosphorene, it is necessary to explore the fracture patterns and energy release rate of phosphorene. In this study, molecular dynamics simulations are performed to investigate phosphorene's fracture mechanism. The results indicate that fracture under uniaxial tension along the armchair direction is attributed to a break in the interlayer bond angles, while failure in the zigzag direction is triggered by the break in both intra-layer angles and bonds. Furthermore, we developed a modified Griffith criterion to analyze the energy release rate of phosphorene and its dependence on the strain rates and orientations of cracks. Simulation results indicate that phosphorene's energy release rate remains almost unchanged in the armchair direction while it fluctuates intensively in the zigzag direction. Additionally, the strain rate was found to play a negligible role in the energy release rate. The geometrical factor a in the Griffith's criterion is almost constant when the crack orientation is smaller than 45 degree, regardless of the crack orientation and loading direction. Overall, these findings provide helpful insights into the mechanical properties and failure behavior of phosphorene.
机译:Phosphorene,也称为单层黑色磷,一直在享受流行由于其优越的电气电子设备属性。低模量、断裂强度和易感性结构破坏其有限在机械设备中的应用。以机械设计更可靠利用phosphorene的装置,它是必要的探讨断裂模式和能量phosphorene释放率。分子动力学模拟执行调查phosphorene的断裂机制。结果表明,在单轴断裂张力沿扶手椅方向归因于休息在夹层债券锯齿形方向角,而失败打破在intra-layer引发的角度和债券。格里菲斯准则来分析能量释放phosphorene率及其依赖应变率和裂缝的方向。仿真结果表明,phosphorene能量释放率仍然几乎不变扶手椅的方向波动密集交错的方向。此外,应变速率被发现发挥在能量释放率可以忽略不计的作用。格里菲斯准则的几何因子几乎是常数时,裂纹方向是什么小于45度,无论裂缝定位和加载方向。研究结果提供有用的见解机械性能和失败的行为phosphorene。

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