Wang Dongze, Ghanbarzadeh Ali, Xu Nan, Liu Qingyang, de Boer Gregory
School of Mechanical Engineering, University of Leeds, Leeds, LS2 9JT UK.
Qatar Environment and Energy Research Institute, Doha, Qatar.
Tribol Lett. 2025;73(2):69. doi: 10.1007/s11249-025-01990-5. Epub 2025 May 3.
The ZDDP-derived tribofilm was recently reported to be viscoelastic based on a creep experiment, where a Burgers material model mathematically represents its creep compliance. This study develops a contact model for layered materials by extending a previously established viscoelastic half-space contact model. The approach involves converting analytical frequency response functions into influence coefficients, enabling the investigation of the viscoelastic behaviour of ZDDP-derived tribofilms. The results reveal that the tribofilm exhibits a highly fluid-like response when modelled as a half-space body being in contact with a carbon steel ball during indentation or sliding. When bonded to an elastic substrate in its typical thin-film form (on the nanometre scale), the contact behaviour can still exhibit time-dependent characteristics, depending on the operating conditions. Creep and stress relaxation are observed during indentation, particularly under low loads, while high loads result in a more pronounced viscoelastic response in extremely slow-speed contacts. However, under moderate sliding speeds ranging from millimetres to meters per second, time-dependent effects become negligible, regardless of the applied load. These findings indicate that although ZDDP-derived tribofilms exhibit significant viscoelasticity, their behaviour in practical applications generally resembles that of a soft elastic layer, as typical sliding speeds fall outside the range where pronounced time-dependent effects occur.
The online version contains supplementary material available at 10.1007/s11249-025-01990-5.
最近有报道称,基于蠕变实验,ZDDP衍生的摩擦膜具有粘弹性,其中伯格斯材料模型在数学上表示其蠕变柔量。本研究通过扩展先前建立的粘弹性半空间接触模型,开发了一种层状材料的接触模型。该方法涉及将解析频率响应函数转换为影响系数,从而能够研究ZDDP衍生的摩擦膜的粘弹性行为。结果表明,当将摩擦膜建模为在压痕或滑动过程中与碳钢球接触的半空间体时,它表现出高度类似流体的响应。当以其典型的薄膜形式(纳米尺度)粘结到弹性基板上时,接触行为仍可能表现出时间依赖性,具体取决于操作条件。在压痕过程中观察到蠕变和应力松弛,特别是在低载荷下,而高载荷在极低速接触中导致更明显的粘弹性响应。然而,在每秒几毫米到几米的中等滑动速度下,无论施加的载荷如何,时间依赖性效应都可以忽略不计。这些发现表明,尽管ZDDP衍生的摩擦膜表现出显著的粘弹性,但它们在实际应用中的行为通常类似于软弹性层,因为典型的滑动速度不在出现明显时间依赖性效应的范围内。
在线版本包含可在10.1007/s11249-025-01990-5获取的补充材料。