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Effect of Ni sublayer thickness on sliding wear characteristics of electrodeposited Ni/Cu multilayer coatings

机译:Ni底层厚度对电沉积Ni / Cu多层镀层滑动磨损特性的影响

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The electrodeposition of Ni/Cu multilayer coatings with varied Ni sublayer thickness (t(Ni)) ranging 1.8-11 nm, keeping Cu sublayer thickness (t(Cu)) fixed at 1.97 run, has been carried out from sulphate based electrolyte. Residual stress and crystal structure of the electrodeposited multilayers were characterized by X-ray diffraction (XRD) method. It was found that the stress level within the deposited multilayer decreases with increase in t(Ni). Coefficient of friction (COF) and sliding wear test of the deposited multilayer coatings have been carried against standard WC ball in ball-on-plate geometry under dry condition. After wear test, the wear scar morphology was examined under laser surface profilometry and scanning electron microscopy (SEM) for calculation of wear volume and evaluation of wear mechanism respectively. The COF was found to be dependent on load and t(Ni). A typical sinusoidal variation of COF with sliding distance was noticed indicating stick-slip behaviour under adhesive-abrasive wear process. The hardness of the multilayers was found to be dependent on wavelength of the modulation. Among multilayers, sample with t(Ni) = 7.2 nm has shown the lowest wear rate owing to its high (HIE) ratio, high hardness and low residual stress. The calculated wear rate order was found to be quite well matching with the order of elastic strain to failure, i.e. (H/E) ratio of the multilayers. The multilayers with very high and low t(Ni) showed poor wear behaviour due to very weak multilayer effect. (C) 2007 Elsevier B.V. All rights reserved.
机译:从硫酸盐基电解质中进行了电沉积镍/铜多层镀层,该镀层具有在1.8-11 nm范围内变化的镍子层厚度(t(Ni)),保持铜子层厚度(t(Cu))固定在1.97游程。电沉积多层的残余应力和晶体结构通过X射线衍射(XRD)方法表征。发现随着t(Ni)的增加,沉积的多层内的应力水平降低。对于干燥条件下的标准WC球,已经对标准WC球进行了摩擦系数(COF)和沉积多层涂层的滑动磨损测试。磨损测试后,在激光表面轮廓仪和扫描电子显微镜(SEM)下检查磨损痕迹的形态,分别计算磨损量和评估磨损机理。发现COF取决于负载和t(Ni)。观察到COF随滑动距离呈典型的正弦变化,表明在粘着磨料磨损过程中粘滑行为。发现多层的硬度取决于调制的波长。在多层材料中,t(Ni)= 7.2 nm的样品由于其高(HIE)比,高硬度和低残余应力而显示出最低的磨损率。发现计算出的磨损率阶数与弹性应变至破坏的阶数,即多层的(H / E)比非常匹配。 t(Ni)很高和很低的多层由于很弱的多层效应而显示出较差的磨损行为。 (C)2007 Elsevier B.V.保留所有权利。

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