Fatigue wear of polyamides with surface defects under different loading conditions

IF 1.9 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
A. Abdelbary, M. Nasr
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引用次数: 0

Abstract

. Compared to metal-to-metal tribology, polymer tribology presents further complexity as it is more prone to be influenced by operating conditions. Over the past two decades, progress in the field of wear of polymers has led to the establishment of more refined wear mechanisms. The current paper establishes the link between different load parameters and the wear rate of polymers, based on experimental investigations. A pin-on-plate reciprocating tribometer was used to examine the wear behaviour of polyamide sliding against a steel counterface, under constant and fluctuating loads, in dry conditions. In addition, the influence of controlled imperfections in the polymer surface upon its wear rate were examined, under cyclic and steady loading, in order to better understand surface fatigue wear of polymers. The imposed imperfections consisted of vertical artificial deep crack (slit) perpendicular or parallel to the direction of sliding. The study concludes with the followings findings; in general, wear of polymers shows a significant tendency to the type of applied load. Under cyclic loads, polymers show an increase in wear rate compared to those tested under static loads. Such increase was found to increase with the increase in cyclic load frequency. It is also demonstrated that surface cracks results in higher wear rates, particularly under cyclic loads.
表面缺陷聚酰胺在不同载荷条件下的疲劳磨损
。与金属对金属摩擦学相比,聚合物摩擦学更加复杂,因为它更容易受到操作条件的影响。在过去的二十年中,聚合物磨损领域的进展导致了更精细的磨损机制的建立。本文在实验研究的基础上建立了不同载荷参数与聚合物磨损率之间的联系。在恒定载荷和波动载荷作用下,在干燥条件下,用销板往复摩擦计检测聚酰胺对钢表面滑动的磨损行为。此外,为了更好地了解聚合物表面疲劳磨损,在循环和稳态载荷下,研究了聚合物表面可控缺陷对其磨损率的影响。施加的缺陷由垂直或平行于滑动方向的垂直人工深裂缝(狭缝)组成。研究得出以下结论:一般来说,聚合物的磨损与施加载荷的类型有显著的关系。在循环载荷下,聚合物的磨损率比静态载荷下的磨损率高。随着循环荷载频率的增加,这种增加也随之增加。研究还表明,表面裂纹会导致更高的磨损率,特别是在循环载荷下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Materials Research-An International Journal
Advances in Materials Research-An International Journal MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
27.30%
发文量
0
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