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A Materials and Energy Balance of Bio-Mimic Tribology

EasyChair Preprint 9216

7 pagesDate: November 1, 2022

Abstract

Bio-inspired tribology is viable for the synchronization of materials-energy balance at TRIBO interface. Adhesion, lubrication, and wear control of the biomechanical domain carried scientific innovation for the promotion of sustainability. One-third share of high-grade fuel energy is lost at tribological contacts globally by mechanical machinery in the generation of mechanical work. Environmental loading of carbon created an academic inertia during SARS-CoV-2 pandemic outbreak or post-pandemic zone for re-searching at bio-inspired tribology. Academic content is a heterogeneous expression of adsorption, friction, and energy optimization over engineering surfaces.

Keyphrases: Adsorption, COF, Nanoparticles, Supramolecular interaction, Synovial lubrication, stick-slip friction

BibTeX entry
BibTeX does not have the right entry for preprints. This is a hack for producing the correct reference:
@booklet{EasyChair:9216,
  author    = {Pankaj Tomar},
  title     = {A Materials and Energy Balance of Bio-Mimic Tribology},
  howpublished = {EasyChair Preprint 9216},
  year      = {EasyChair, 2022}}
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