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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Hardness anomaly, plastic deformation work and fretting wear properties of polycrystalline TiN/CrN multilayers
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Hardness anomaly, plastic deformation work and fretting wear properties of polycrystalline TiN/CrN multilayers

机译:TiN / CrN多晶多层膜的硬度异常,塑性变形功和微动磨损特性

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摘要

Nanoindentation test and fretting wear experiments were conducted to investigate the connection between the hardness anomalies, elastic modulus, plastic deformation work and fretting wear behavior of TiN/CrN multilayers with different modulation period A deposited on WC/Co cemented substrate by reactive magnetron sputtering. The area formed by loading and unloading curves from nanoindentation load-displacement test was defined as plastic deformation work and used to assess the resistance to plastic deformation of multilayers. TiN/CrN multilayers showed the hardness anomaly atΛ = 15-21 nm. The coefficient of friction of TiN/CrN multilayers against bearing ball ranged from 0.15 to 0.25, and CrN and TiN is 0.12 and 0.30, respectively. The wear volume of multilayers indicated an inverse relation with the hardness anomaly and plastic deformation resistance. The measured Hertz contact diameter also correlates to the equivalent elastic modulus of bearing ball and TiN/CrN multilayers, however, the measured contact diameters were smaller than the calculated values because of the transformation of the wear regime from mixed stick-slip to gross slip for the TiN/CrN multilayers.
机译:进行了纳米压痕试验和微动磨损实验,研究了反应磁控溅射沉积在WC / Co胶结基体上的不同调制周期A的TiN / CrN多层膜的硬度异常,弹性模量,塑性变形功和微动磨损行为之间的关系。由纳米压痕载荷-位移试验的加载和卸载曲线形成的面积被定义为塑性变形功,并用于评估多层的抗塑性变形。 TiN / CrN多层膜在Λ= 15-21 nm处显示出硬度异常。 TiN / CrN多层膜对轴承球的摩擦系数为0.15至0.25,而CrN和TiN分别为0.12和0.30。多层的磨损量与硬度异常和抗塑性变形成反比。测得的赫兹接触直径还与轴承球和TiN / CrN多层膜的等效弹性模量相关,但是,由于磨损状态从混合粘滑转变为总滑移,因此测得的接触直径小于计算值TiN / CrN多层。

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