Fabrication and Testing of Bioinspired Surface Designs for Friction Reduction at the Piston Ring and Liner Interface

Author:

Maddox Shelby R.1,Gangopadhyay Arup2,Ghaednia Hamed3,Cai Jiyu4,Han Xiaoxiao4,Meng Xiangbo4,Goss Josue A.4,Zou Min4

Affiliation:

1. Microelectronics-Photonics, University of Arkansas, Fayetteville, AR 72701

2. Powertrain Tribology, Ford Motor Company, Dearborn, MI 48124

3. Director of Advanced Technology and Manufacturing, Gehring L.P., Farmington Hills, MI 48335

4. Department of Mechanical Engineering, University of Arkansas, Fayetteville, AR 72701

Abstract

Abstract The piston ring and liner interface is a major source of friction loss in automotive combustion engines. This loss can be mitigated by learning from surfaces from nature that manipulate friction. In this study, novel fabrication and testing methods were developed and used to efficiently compare three-dimensional bioinspired surface designs to existing piston liner surface topographies. Surface designs inspired by frog toes were fabricated using two-photon lithography, and their frictional performance is compared to that of typical piston liner topography. These designs reduce surface friction by an average of 18%, and up to 39%, compared to a flat control. The developed fabrication and testing methods allow comparison with existing topographies without needing to transfer the designs to the original materials and provide an efficient approach for designing surfaces to meet the frictional challenges of the future.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

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