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An elastic-plastic hybrid adhesion model for contacting rough surfaces in the presence of molecularly thin lubricant

机译:用于在分子稀薄的润滑剂存在下接触粗糙表面的弹塑性混合粘附模型

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The study of adhesion has received considerable attention in recent years, partly due to advances in the design and fabrication of microano devices. Many adhesion investigations are centered on single-spherical-contact models, which include the classic Johnson-Kendall-Roberts (JKR), improved Derjaguin-Muller-Toporov (IDMT), and Maugis-Dugdale (MD) models. Based on the IDMT single-asperity model, adhesive rough surface contact models have also been developed, which are valid for elastic and elastic-plastic contact conditions. A limitation of the IDMT-based models is that they are only valid for application cases with low adhesion parameter values. In this research, a contacting rough surface adhesion model was developed by combining an extended Maugis-Dugdale (EMD) model (which is only valid for elastic contacts) with an IDMT-based elastic-plastic adhesion model. The proposed model, termed the elastic-plastic hybrid adhesion model, is valid for the entire adhesion parameter range and also for elastic-plastic contacts. The proposed model gives results similar to the EMD rough surface model when the contact is primarily elastic. Moreover, the proposed model was compared to an IDMT-based model (ISBL model) and both gave similar results for contacts with low adhesion parameter values. With high adhesion parameter values, the ISBL model fails, whereas the proposed model correctly predicts higher adhesion. Last, based on the stiffness of the external force, the instability for adhesive rough surfaces in contact was also discussed, and it was postulated that a high peak value of the external force stiffness directly relates to the unstable contact process. (c) 2005 Elsevier Inc. All rights reserved.
机译:近年来,对粘附性的研究引起了相当大的关注,部分原因是由于微/纳米器件的设计和制造方面的进步。许多附着力研究都集中在单球接触模型上,包括经典的Johnson-Kendall-Roberts(JKR),改进的Derjaguin-Muller-Toporov(IDMT)和Maugis-Dugdale(MD)模型。基于IDMT单孔模型,还开发了适用于弹性和弹塑性接触条件的粘性粗糙表面接触模型。基于IDMT的模型的局限性在于它们仅对具有低附着力参数值的应用案例有效。在这项研究中,通过将扩展的Maugis-Dugdale(EMD)模型(仅对弹性接触有效)与基于IDMT的弹塑性粘附模型相结合,开发了接触粗糙表面粘附模型。所提出的模型称为弹塑性混合粘附模型,适用于整个粘附参数范围,也适用于弹塑性接触。当接触主要是弹性的时,提出的模型给出的结果类似于EMD粗糙表面模型。此外,将提出的模型与基于IDMT的模型(ISBL模型)进行了比较,并且对于具有低附着力参数值的接触,两者都给出了相似的结果。具有高粘附力参数值,ISBL模型将失败,而所提出的模型可以正确预测更高的粘附力。最后,基于外力刚度,还讨论了粘性粗糙表面接触的不稳定性,并推测外力刚度的高峰值直接与不稳定的接触过程有关。 (c)2005 Elsevier Inc.保留所有权利。

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