Abstract Surface texturing is one of the most effective methods to augment material performance and characteristics pertaining to its ability to control exterior properties in specific applications. Attributing to the rise in the need for materials in varied applications, surface texturing has garnered much attention in recent decades. The purpose of this research was to investigate the friction and wear behavior of biomimetic shark-skin (placoid) S1P, trout-skin (cycloid)S2C textures on AISI316L stainless steel surface and untextured surfaceS3S against commercial AISI52100 steel ballsunder dry sliding conditions. YAG Laser texturing system was used to create micro-grooves similar to the bionic placoid and cycloid fish scales on AISI316L stainless steel surfaces. To determine their characteristics, the samples were examined using a 3D profilometer with AFM, FESEM, EDS, and XRD. Reciprocating ball on disc tribometer (Rtec-MFT-5000) was used to evaluate the samples' friction and wear performance. Tribotests were performed at two different loads and constant sliding speeds to observe the effect of texturing on the tribological properties of 316L stainless steel. Laser surface texturing (LST) was found to be effective in controlling the coefficient of friction and wear volume loss of materials. Sample S2C showed a relatively lower coefficient of friction and wear rate under dry sliding conditions. This paper used the analytical method to compare the tribological behavior of Biomimetic Placoid and Cycloid Textures on AISI316L Stainless Steel, and the results revealed that laser surface texture can be an effective technique to enhance the tribological properties of friction material.
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