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Antimicrobial and wear performance of Cu-Zr-Al metallic glass composites

机译:Cu-Zr-Al金属玻璃复合材料的抗菌和耐磨性能

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摘要

The antimicrobial and wear behaviour of metallic glass composites corresponding to the Cu(ZrAl) system with x = (0, 3 and 6) has been studied. The three compositions consist of crystalline phases embedded in an amorphous matrix and they exhibit crystallinity increase with increasing Cu content, i.e., decrease of the glass-forming ability. The wear resistance also increases with the addition of Cu as indirectly assessed from H/E and H/E parameters obtained from nanoindentation tests. These results are in agreement with scratch tests since for the alloy with highest Cu content, i.e., CuZrAl, reveals a crack increase, lower pile-up, prone adhesion wear in dry sliding and higher scratch groove volume to pile-up volume. Samples with higher Cu content revealed higher hydrophilicity. Time-kill studies revealed higher reduction in colony-forming units for E. coli (gram-negative) and B. subtilis (gram-positive) after 60 min of contact time for the CuZrAl alloy and all the samples achieved a complete elimination of bacteria in 250 min.
机译:研究了与x =(0、3和6)的Cu(ZrAl)体系相对应的金属玻璃复合材料的抗菌和磨损行为。这三种成分由嵌入无定形基体中的结晶相组成,并且随着Cu含量的增加,即玻璃形成能力的降低,其结晶度增加。从H / E和从纳米压痕测试获得的H / E参数间接评估,添加Cu也会增加耐磨性。这些结果与划痕试验一致,因为对于具有最高Cu含量的合金,即CuZrAl,显示出裂纹增加,堆积减少,在干式滑动中易于发生粘着磨损以及较高的划痕槽体积对堆积体积。 Cu含量较高的样品显示较高的亲水性。时间杀灭研究显示,CuZrAl合金接触60分钟后,大肠杆菌(革兰氏阴性)和枯草芽孢杆菌(革兰氏阳性)的菌落形成单位减少更多,所有样品均实现了细菌的完全消除在250分钟内

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