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Development and evaluation of low friction TiSiCN nanocomposite coatings for piston ring applications

机译:用于活塞环的低摩擦TiSiCN纳米复合涂层的开发和评估

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To minimize the frictional losses and wear of piston rings in an automotive engine, thick low friction TiSiCN nanocomposite coatings have been developed. The coatings were deposited by sputtering titanium targets in argon, nitrogen, hexamethyldisilazane (HMDSN), and acetylene (C2H2) using plasma enhanced magnetron sputtering (PEMS). The substrates were AISI 304 stainless steel coupons and piston rings with bore diameters of 137 mm and 86 mm. The elemental composition and microstructure of the coatings were optimized by varying the HMDSN and C2H2 flow rates separately to achieve a combination of excellent adhesion, good mechanical properties, low coefficient of friction (COF) and wear rate. The optimized TiSiCN coatings exhibited a typical nanocomposite structure which showed excellent adhesion and dry COF in the range of 0.17 to 0.2 using a ball-on-disk tribometer. The tribological performance of the coated piston rings was evaluated using Plint TE77 tests in SAE 10W-30 diesel engine oil. The TE77 tests showed a 10% reduction in the COF (0.058) of the optimized coating compared to the uncoated baseline (0.065) at test conditions of 20 Hz, 30 N, and 25 mm stroke length. Finally, the coated rings were evaluated in a single cylinder gasoline engine using SAE 5W-20 engine oil and in a heavy duty diesel engine using 4.1% sooted SAE 10W-30 diesel engine oil. The gasoline engine test showed that the uncoated piston rings contributed 25% to 34% of the frictional loss in two separate baseline engine tests. In contrast, the coated rings contributed to 18% of the total frictional loss in the engine test. The diesel engine durability test showed a 28% and 40% lower ring weight loss for the coated top and second rings, respectively, as compared to the uncoated baseline. In addition, the cylinder liner, which was not coated, showed an average 50% lower wear than that in the uncoated baseline engine test. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了最小化汽车发动机中的摩擦损失和活塞环的磨损,已经开发了厚的低摩擦TiSiCN纳米复合涂层。通过使用等离子增强磁控溅射(PEMS)在氩气,氮气,六甲基二硅氮烷(HMDSN)和乙炔(C2H2)中溅射钛靶材来沉积涂层。基材为AISI 304不锈钢试样和直径为137 mm和86 mm的活塞环。通过分别改变HMDSN和C2H2流速来优化涂层的元素组成和微观结构,以实现优异的附着力,良好的机械性能,低摩擦系数(COF)和磨损率的组合。经过优化的TiSiCN涂层具有典型的纳米复合结构,使用圆盘摩擦计显示出出色的附着力和0.17至0.2的干COF。涂层活塞环的摩擦学性能通过在SAE 10W-30柴油机油中使用Plint TE77测试进行评估。 TE77测试显示,在20 Hz,30 N和25 mm行程长度的测试条件下,与未涂层的基准线(0.065)相比,优化涂层的COF(0.058)降低了10%。最后,在使用SAE 5W-20机油的单缸汽油发动机和使用4.1%烟灰的SAE 10W-30柴油机油的重型柴油发动机中对涂层环进行了评估。汽油发动机测试显示,在两次单独的基准发动机测试中,未涂层的活塞环占摩擦损耗的25%至34%。相反,在发动机测试中,涂层环占总摩擦损耗的18%。柴油机耐久性测试显示,与未涂层的基准线相比,涂层的顶部和第二个环的环重量损失分别降低了28%和40%。此外,未涂层的气缸套的磨损比未涂层的基准发动机测试平均降低了50%。 (C)2016 Elsevier B.V.保留所有权利。

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