Wang Shibo, Niu Chengchao
School of Mechanical and Electronic Engineering, China University of Mining and Technology, Xuzhou, Jiangsu Province, 221116, China.
State Key Laboratory of Tribology, Tsinghua University, Beijing 100084, China.
PLoS One. 2016 Jan 22;11(1):e0147598. doi: 10.1371/journal.pone.0147598. eCollection 2016.
In this work, the plane-on-plane torsional fretting tribological behavior of polytetrafluoroethylene (PTFE) was studied. A model of a rigid, flat-ended punch acting on an elastic half-space was built according to the experimental conditions. The results indicate that the shape of T-θ curves was influenced by both the torsional angle and the normal load. The torsion friction torque and wear rate of PTFE exponentially decreased when the torsion angle rose. The torsional torque increased from 0.025 N·m under a normal load of 43 N to 0.082 N·m under a normal load of 123 N. With sequentially increasing normal load, the value of torque was maintained. With rising normal load, the wear mass loss of PTFE disks was increased and the wear rate was decreased. Good agreement was found with the calculated torque according to the model and the experimental torque except for that under a normal load of 163 N. The difference under a normal load of 163 N was caused by the coefficient of friction. Usually the coefficient of friction of a polymer decreases with increasing normal load, whereas a constant coefficient of friction was applied in the model.
在这项工作中,研究了聚四氟乙烯(PTFE)的平面-平面扭转微动摩擦学行为。根据实验条件建立了一个刚性平头冲头作用在弹性半空间上的模型。结果表明,T-θ曲线的形状受扭转角和法向载荷的影响。当扭转角增大时,PTFE的扭转摩擦扭矩和磨损率呈指数下降。扭转扭矩从43 N法向载荷下的0.025 N·m增加到123 N法向载荷下的0.082 N·m。随着法向载荷依次增加,扭矩值保持不变。随着法向载荷的增加,PTFE圆盘的磨损质量损失增加而磨损率降低。除了在163 N法向载荷下,根据模型计算的扭矩与实验扭矩之间具有良好的一致性。在163 N法向载荷下的差异是由摩擦系数引起的。通常,聚合物的摩擦系数会随着法向载荷的增加而降低,而在模型中应用的是恒定的摩擦系数。