首页> 外文期刊>Transactions of the Institute of Metal Finishing: The International Journal for Surface Engineering and Coatings >Comparison of sliding wear behaviour of pulse electrodeposited Ni-Cu nanocrystalline alloys and Ni-Cu/Cu multilayers
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Comparison of sliding wear behaviour of pulse electrodeposited Ni-Cu nanocrystalline alloys and Ni-Cu/Cu multilayers

机译:脉冲电沉积Ni-Cu纳米晶合金和Ni-Cu / Cu多层膜的滑动磨损行为比较

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摘要

This study presents a comparison of tribological properties of electrodeposited nanolayered Ni-Cu/Cu multilayers and nanocrystalline Ni-Cu alloys. In this work, nanocrystalline Ni-Cu alloys containing 35.8 and 26.0 wt-%Cu with grain sizes of 12.8 and 6.6 nm respectively were chosen for wear tests in which the tribological performances of these alloys were compared with Ni-Cu/Cu multilayers: [Ni-Cu (4.5 nm)/Cu (1.97nm)]_n (30.4 wt-%Cu) and [Ni-Cu (7.8 nm)/Cu (1.97 nm)]_n (20.2 wt-%Cu) respectively. All the test samples were electrodeposited under pulsed current conditions on polished stainless steel substrates keeping total thickness fixed at ~10 μm. Reciprocating dry sliding experiments of these samples at a constant normal load in the range 3-11 N were performed in ball on plate geometry keeping the amplitude fixed at 0.001 m. The obtained average coefficient of friction of nanocrystalline alloys was found to be slightly inferior compared to that of multilayers. On the other hand, the wear rate of nanocrystalline alloys was lower than that of multilayers under identical conditions. Higher hardness and lower elastic modulus of nanocrystalline alloys compared to that of multilayers was found to be responsible for the observed wear rate variation.
机译:这项研究提出了电沉积纳米层镍铜/铜多层和纳米晶镍铜合金的摩擦学性能的比较。在这项工作中,选择了分别包含35.8和26.0 wt%的Cu,晶粒尺寸分别为12.8和6.6 nm的纳米晶Ni-Cu合金进行磨损测试,其中将这些合金的摩擦学性能与Ni-Cu / Cu多层膜进行了比较: Ni-Cu(4.5 nm)/ Cu(1.97nm)] _ n(30.4 wt%Cu)和[Ni-Cu(7.8 nm)/ Cu(1.97 nm)] _ n(20.2 wt%Cu)。所有测试样品均在脉冲电流条件下电沉积在抛光的不锈钢基板上,总厚度固定在〜10μm。在3-11 N范围内的恒定法向载荷下,对这些样品进行往复式干式滑动实验,球对板的几何形状保持振幅固定在0.001 m。发现所获得的纳米晶体合金的平均摩擦系数与多层的平均摩擦系数相比稍差。另一方面,在相同条件下,纳米晶合金的磨损率低于多层膜的磨损率。与多层相比,纳米晶合金的较高硬度和较低的弹性模量是造成观察到的磨损率变化的原因。

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