Wear‐activated surface engineering of TPU/GNP nanocomposites through improved filler dispersion and interfacial anchoring of functionalized graphene nanoplatelets, leading to finer post‐abrasion textures and enhanced ice traction. ABSTRACT Graphene‐reinforced thermoplastic polyurethane (TPU) composites offer a promising route for developing ...
Sara Zahmatkesh +2 more
wiley +1 more source
Surface Integrity of Pure AW-1370 and TiC-Reinforced Aluminum WAAM Wires Under Unidirectional Sliding Contact. [PDF]
Cuadrado N +7 more
europepmc +1 more source
Adhesively bonded ASA/PA12 FFF sandwich structures reveal that interfacial compliance governs mechanical performance. Cyanoacrylate enhances strength but induces brittle failure, while polyurethane improves ductility and impact resistance, demonstrating that adhesive properties and stacking sequence are critical design parameters for optimizing multi ...
Berkay Ergene +3 more
wiley +1 more source
Optimization of Fillers in Resin-Based Friction Materials and Analysis of Wear Mechanism Through Orthogonal Design. [PDF]
Huang L +6 more
europepmc +1 more source
Enhancement of Tribological and Mechanical Properties via Soda-Lime Silica Glass Reinforced Al-Mg-Zn Matrix Composite. [PDF]
Chandra Kar B, Kumar Mohapatra S, Jha P.
europepmc +1 more source
Friction and wear behavior of TiN/Ti6Al4V composite material synthesized in-situ using laser directed energy deposition. [PDF]
Tai Z, Wei Y, Trofimov V, Wang D, Bi G.
europepmc +1 more source
Bio-Based Gum Arabic-Reinforced Epoxy Overlay System: Mechanical, Thermal, and Tribological Performance with Wear Mechanism Analysis. [PDF]
Alavanthar A +5 more
europepmc +1 more source
Fabrication and Wear Performance of Al Matrix Composites Reinforced with Metallic and Oxidized WMoNb Medium-Entropy Alloy Powders. [PDF]
Albayrak MG.
europepmc +1 more source
Modelling and Simulation of Soft Tissue Loading Reduction at the Posterior Heel by a Moisture-Responsive Prophylactic Dressing. [PDF]
Orlova D, Gefen A.
europepmc +1 more source
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Dry sliding wear mechanisms of the Ti6Al4V alloy
Wear, 1997Abstract The dry sliding behaviour of the Ti6Al4V alloy was studied in order to highlight the mechanisms responsible for the poor wear resistance in different load and sliding speed conditions. By increasing the sliding speed, a transition from oxidative wear to delamination occurs with a corresponding minimum in the wear rate.
B Tesi, T Bacci, G Straffelini
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