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Mechanical strength and tribological behavior of ion-beam deposited boron nitride films on non-metallic substrates

机译:非金属基体上离子束沉积氮化硼薄膜的机械强度和摩擦学行为

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摘要

An investigation was conducted to examine the mechanical strength and tribological properties of boron nitride (BN) films ion-beam deposited on silicon (Si), fused silica (SiO2), gallium arsenide (GaAs), and indium phosphide (InP) substrates in sliding contact with a diamond pin under a load. The results of the investigation indicate that BN films on nonmetallic substrates, like metal films on metallic substrates, deform elastically and plastically in the interfacial region when in contact with a diamond pin. However, unlike metal films and substrates, BN films on nonmetallic substrates can fracture when they are critically loaded. Not only does the yield pressure (hardness) of Si and SiO2 substrates increase by a factor of 2 in the presence of a BN film, but the critical load needed to fracture increases as well. The presence of films on the brittle substrates can arrest crack formation. The BN film reduces adhesion and friction in the sliding contact. BN adheres to Si and SiO2 and forms a good quality film, while it adheres poorly to GaAs and InP. The interfacial adhesive strengths were 1 GPa for a BN film on Si and appreciably higher than 1 GPa for a BN film on SiO2.
机译:进行了调查,以研究在滑动状态下沉积在硅(Si),熔融二氧化硅(SiO2),砷化镓(GaAs)和磷化铟(InP)衬底上的氮化硼(BN)离子束的机械强度和摩擦学性能。在负载下与金刚石销接触。研究结果表明,非金属基体上的BN膜,如金属基体上的金属膜,在与金刚石销接触时会在界面区域发生弹性和塑性变形。但是,与金属膜和基底不同,非金属基底上的BN膜在受到临界载荷时会破裂。在存在BN膜的情况下,不仅Si和SiO2基板的屈服压力(硬度)增加了2倍,而且断裂所需的临界载荷也增加了。脆性基材上薄膜的存在可以阻止裂纹的形成。 BN膜减少了滑动接触中的粘附和摩擦。 BN附着在Si和SiO2上并形成高质量的薄膜,而BN附着在GaAs和InP上的附着力较差。对于Si上的BN膜,界面粘合强度为1 GPa,并且对于SiO2上的BN膜,界面粘合强度明显高于1 GPa。

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