Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China.
ACS Nano. 2011 May 24;5(5):3858-66. doi: 10.1021/nn200201u. Epub 2011 Apr 18.
High-performance sealants using rubber composites containing multiwalled carbon nanotubes (MWNTs) were developed in order to probe and excavate oil in deeper wells. However, the stress-strain behavior and the reinforcing mechanism of highly concentrated MWNT/rubber composites subjected to large deformation remain largely unexplored. Here we report on the complete stress-strain relationships of MWNT/rubber composites under uniaxial tension before rupture, with a suggestion of a novel reinforcement effect of high concentration of MWNTs. A theoretical model is developed to understand the reinforcing mechanism and estimate the mechanical properties of MWNT/rubber composites under large deformation. We have demonstrated that persistence length and reorientation of MWNTs during stretch have a significant impact on mechanical properties, such as the modulus of the rubber composite. These results provide guidelines for developing MWNT-reinforced composites to achieve desired nonlinear and extreme mechanical performance for a wide range of applications.
为了探测和开采更深的油井,开发了使用含有多壁碳纳米管 (MWNTs) 的橡胶复合材料的高性能密封剂。然而,高浓度 MWNT/橡胶复合材料在大变形下的应力-应变行为和增强机制在很大程度上仍未得到探索。在这里,我们报告了在破裂前,MWNT/橡胶复合材料在单轴拉伸下的完整应力-应变关系,并提出了高浓度 MWNTs 的一种新的增强效果。我们开发了一个理论模型来理解增强机制,并估计在大变形下 MWNT/橡胶复合材料的力学性能。我们已经证明,MWNTs 在拉伸过程中的持久长度和重取向对机械性能有重大影响,例如橡胶复合材料的模量。这些结果为开发 MWNT 增强复合材料提供了指导,以实现广泛应用所需的期望的非线性和极端机械性能。