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  • Two sets of semi-metallic friction composites were formulated differing in the abrasive type present. The first set represents composites containing zircon (ZrSiO4), the second set represents composites with silicon carbide (SiC). In both sets, samples with moderately increasing abrasive content (0,3.4, 5.6,9 and 14.6 vol.%) were prepared and their friction coefficient was determined.Although the samples with SiC reach higher values of froction coefficient, the samples containing ZrSiO4 offer markedlly more stable at elevated temperatures.This fact is attributed to the different character of the friction layer (revealed by SEM) formed on the surface of the samples after the friction test.
  • Two sets of semi-metallic friction composites were formulated differing in the abrasive type present. The first set represents composites containing zircon (ZrSiO4), the second set represents composites with silicon carbide (SiC). In both sets, samples with moderately increasing abrasive content (0,3.4, 5.6,9 and 14.6 vol.%) were prepared and their friction coefficient was determined.Although the samples with SiC reach higher values of froction coefficient, the samples containing ZrSiO4 offer markedlly more stable at elevated temperatures.This fact is attributed to the different character of the friction layer (revealed by SEM) formed on the surface of the samples after the friction test. (en)
  • Byly připraveny dva typy frikčních kompozitů lišících se přítomným abrazivem. První typ obsahuje zirkon (ZrSiO4), druhý typ obsahuje karbid křemíku (SiC). U obou typů byl obsah abraziva postupně zvyšován (0, 3.4, 5.6, 9 a 14.6 obj.%). Připravené vzorky byly podrobeny frikčnímu testu při zvolených teplotách. Bylo zjištěno, že ačkoliv vzorky s obsahem SiC vykazují vyšší frikční koeficient, frikční koeficient u vzorků s obsahem ZrSiO4 je stabilnější. Toto zjištění je v souladu s lišícím se charakterem frikční vrstvy u obou typů kompozitů. (cs)
Title
  • The Effect of Silicon Carbide and Zircon on the Friction Coefficient of Semi-Metallic Friction Composites Designed for the Automotive Industry
  • The Effect of Silicon Carbide and Zircon on the Friction Coefficient of Semi-Metallic Friction Composites Designed for the Automotive Industry (en)
  • Vliv karbidu křemíku a zirkonu na frikční koeficient semimetalických frikčních kompositů pro automobilový průmysl (cs)
skos:prefLabel
  • The Effect of Silicon Carbide and Zircon on the Friction Coefficient of Semi-Metallic Friction Composites Designed for the Automotive Industry
  • The Effect of Silicon Carbide and Zircon on the Friction Coefficient of Semi-Metallic Friction Composites Designed for the Automotive Industry (en)
  • Vliv karbidu křemíku a zirkonu na frikční koeficient semimetalických frikčních kompositů pro automobilový průmysl (cs)
skos:notation
  • RIV/61989100:27640/07:00015370!RIV08-MSM-27640___
http://linked.open.../vavai/riv/strany
  • 79-85
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  • Z(MSM6198910016)
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  • 419095
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  • RIV/61989100:27640/07:00015370
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  • Brake lining; friction-wear properties; abrasives; SEM-EDX (en)
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  • [32D8E1CC6957]
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  • Ostrava
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  • Annual Proceeding of Science and Technology at VŠB-TUO
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  • Kratošová, Gabriela
  • Matějka, Vlastimil
  • Simha Martynková, Gražyna
  • Fan, Y.
  • Lu, Y.
  • Ma, Y.
http://linked.open...n/vavai/riv/zamer
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  • REPRONIS
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  • 978-80-248-1662-3
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  • 27640
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