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                  form an anti-friction barrier that prevents direct contact between aggressive chloride

                  ions and the metal's active centers. Directions and practical recommendations have

                  been formulated regarding the application of the developed environmentally safe

                  composition  in  industrial  settings,  particularly  in  the  aircraft  and  mechanical

                  engineering industries. The scientific results obtained indicate the potential for the

                  effective application of the developed composition to protect structural materials

                  against corrosion-induced mechanical damage, thereby significantly extending the

                  service life of critical components and mechanisms.

                         Key  words:  aluminum  alloy,  corrosion  inhibitor,  chloride-containing

                  corrosive  environment,  sodium  alginate,  zinc  acetate,  structure,  adsorption,

                  inhibition  synergism,  barrier  layer,  anti-corrosion  efficiency,  corrosion  current

                  density,  corrosion  potential,  tribocorrosion,  mechanical  properties,  friction

                  coefficient.
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